Product Description
Product Description:
Products: Forged Alloy Steel Drive Shaft for Tractors
Material: 40CrMo
Weight: From 0.2kg-5kg
Packing: Wooden case
Min Order: 1000pcs
Customized Production: Available as per your drawings or sample
Company Name: HiHangZhou Precision Forging Technology Co., Ltd.
Process | Die Forging | |
Material | Stainless Steel, Carbon Steel, Alloy Steel | |
Weight | 0.1Kg~20Kg | |
Heat Treatment | Quenching, Annealing,Tempering,Normalizing, Quenching and Tempering | |
Testing instrument | composition testing | Spectrometer, Metallographic microscope |
Performance testing | Hardness tester, Tensile testing machine | |
Size Measuring | CMM,Micrometer, Vernier Caliper, Depth Caliper, feeler gauge | |
Thread Gauge , Height Gauge | ||
Roughness | Ra1.6~Ra6.3 | |
Machining Equipment | CNC Center , CNC Machines, Turning, Drilling, Milling, boring machine,Grinding Machines, | |
Wire EDM,Laser Cutting&Welding, Plasma Cutting &Welding, EDM etc. | ||
Quality control | Sampling inspection of raw materials and semi-finished products, 100% Inspection of finished products | |
Surface Treatment | Shot Blast , Powder Coating, Polishing, Galvanized , Chrome Plated | |
Production Capacity | 60000T / Years | |
Lead Time | Normally 30 – 45 Days. | |
Payment Terms | T/T , L/C | |
Material Standard | ASTM , AISI , DIN , BS, JIS, GB, | |
Certification | ISO9001:2008, IATF16949:2016 |
Products Quality Control
Quality control at HiHangZhou Precision Forging Technology Co., Ltd. involves thorough inspection and control of incoming materials, production processes, and finished products.
The quality control process includes:
- Analysis of incoming raw materials using a metallographic microscope to ensure the chemical composition meets production requirements.
- Timely sampling during production to ensure products are defect-free and to address any quality issues promptly.
- Utilization of a magnetic particle flaw detector in the final step of production to detect hidden cracks or defects in metal parts.
- Sampling of finished metal parts for mechanical performance tests, size measurement, and 100% manual surface quality inspection in the laboratory.
Below are pictures of the relevant testing equipment:
Quality Management System Control:
At HiHangZhou Precision Forging Technology Co., Ltd., we adhere to strict system management in accordance with ISO9001 and TS16949 quality standards. Our production site follows 5S lean production management to ensure efficiency and quality.
HiHangZhou Precision Forging Technology Co., Ltd.
Our Advantages:
- Brand: Our parent company, HiHangZhou Group, is a world-renowned high-end machinery manufacturing enterprise with 40 domestic subsidiaries and branches and 8 foreign manufacturing plants. We have a long-term experience and good reputation in cooperation with world-renowned enterprises.
- Technology: We have a complete production process and equipment research and development capabilities for ferrous metals forming. With over 25 years of production experience in forging equipment and casting equipment manufacturers, one-third of our company’s employees are technicians and R&D personnel, ensuring high-quality products are produced efficiently.
- Service: We provide custom and standard manufacturing services with multiple manufacturing process integrations. The quality and delivery of products are fully guaranteed, with quick and effective communication abilities.
- Culture: Our unique corporate culture unleashes the potential of individuals and provides strong vitality for the sustainable development of the company.
- Social Responsibility: Our company strictly implements low-carbon environmental protection, energy-saving, and emission-reduction production, making us a benchmark enterprise in the local region.
Company Culture
Our Vision
To become 1 of the leading companies.
Our Mission
To become a platform for employees to realize their dreams.
To become a transforming and upgrading pacemaker of Chinese enterprises.
To set national brands with pride.
Our Belief
We strive to build the company into an ideal platform for entrepreneurs to realize their self-worth and contribute to society.
Values
Improvement is innovation, everyone can innovate.
Innovation is inspired, and failures are tolerated.
Frequently Asked Questions
- Q: Are you a trading company or a manufacturer?
A: We are a manufacturer specializing in forging products, casting products, and machining capabilities. - Q: What series products do you offer?
A: We focus on forming processing of ferrous metals through casting, forging, and machining for various industries. - Q: Do you provide samples? Is it free?
A: Yes, we provide samples with customers covering the freight costs to show mutual cooperation sincerity. - Q: Is OEM available?
A: Yes, we offer OEM services. - Q: What’s your quality guarantee?
A: We prioritize continuous product quality improvement through strict control measures and certifications like ISO/TS16949 and SGS. - Q: How about the packing?
A: We typically use iron boxes or wooden cases, but can customize as per customer requirements. - Q: What is your minimum order quantity?
A: Minimum order quantity varies based on product features like material, weight, and construction. - Q: What is the lead time?
A: Lead time for new dies or molds and samples is 30-45 days, with large batch production within the same timeframe, subject to part complexity and quantity. - Q: What payment methods do you accept?
A: Payments can be made via T/T or L/C, with a 30% deposit in advance and 70% balance against the copy of B/L.
Certification
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Processing Object: | Metal |
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Molding Style: | Forging |
Molding Technics: | Pressure Casting |
Samples: |
US$ 20/Piece
1 Piece(Min.Order) | Order Sample |
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Customization: |
Available
| Customized Request |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: |
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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How do manufacturers ensure the compatibility of drive shafts with different equipment?
Manufacturers employ various strategies and processes to ensure the compatibility of drive shafts with different equipment. Compatibility refers to the ability of a drive shaft to effectively integrate and function within a specific piece of equipment or machinery. Manufacturers take into account several factors to ensure compatibility, including dimensional requirements, torque capacity, operating conditions, and specific application needs. Here’s a detailed explanation of how manufacturers ensure the compatibility of drive shafts:
1. Application Analysis:
Manufacturers begin by conducting a thorough analysis of the intended application and equipment requirements. This analysis involves understanding the specific torque and speed demands, operating conditions (such as temperature, vibration levels, and environmental factors), and any unique characteristics or constraints of the equipment. By gaining a comprehensive understanding of the application, manufacturers can tailor the design and specifications of the drive shaft to ensure compatibility.
2. Customization and Design:
Manufacturers often offer customization options to adapt drive shafts to different equipment. This customization involves tailoring the dimensions, materials, joint configurations, and other parameters to match the specific requirements of the equipment. By working closely with the equipment manufacturer or end-user, manufacturers can design drive shafts that align with the equipment’s mechanical interfaces, mounting points, available space, and other constraints. Customization ensures that the drive shaft fits seamlessly into the equipment, promoting compatibility and optimal performance.
3. Torque and Power Capacity:
Drive shaft manufacturers carefully determine the torque and power capacity of their products to ensure compatibility with different equipment. They consider factors such as the maximum torque requirements of the equipment, the expected operating conditions, and the safety margins necessary to withstand transient loads. By engineering drive shafts with appropriate torque ratings and power capacities, manufacturers ensure that the shaft can handle the demands of the equipment without experiencing premature failure or performance issues.
4. Material Selection:
Manufacturers choose materials for drive shafts based on the specific needs of different equipment. Factors such as torque capacity, operating temperature, corrosion resistance, and weight requirements influence material selection. Drive shafts may be made from various materials, including steel, aluminum alloys, or specialized composites, to provide the necessary strength, durability, and performance characteristics. The selected materials ensure compatibility with the equipment’s operating conditions, load requirements, and other environmental factors.
5. Joint Configurations:
Drive shafts incorporate joint configurations, such as universal joints (U-joints) or constant velocity (CV) joints, to accommodate different equipment needs. Manufacturers select and design the appropriate joint configuration based on factors such as operating angles, misalignment tolerances, and the desired level of smooth power transmission. The choice of joint configuration ensures that the drive shaft can effectively transmit power and accommodate the range of motion required by the equipment, promoting compatibility and reliable operation.
6. Quality Control and Testing:
Manufacturers implement stringent quality control processes and testing procedures to verify the compatibility of drive shafts with different equipment. These processes involve conducting dimensional inspections, material testing, torque and stress analysis, and performance testing under simulated operating conditions. By subjecting drive shafts to rigorous quality control measures, manufacturers can ensure that they meet the required specifications and performance criteria, guaranteeing compatibility with the intended equipment.
7. Compliance with Standards:
Manufacturers ensure that their drive shafts comply with relevant industry standards and regulations. Compliance with standards, such as ISO (International Organization for Standardization) or specific industry standards, provides assurance of quality, safety, and compatibility. Adhering to these standards helps manufacturers meet the expectations and requirements of equipment manufacturers and end-users, ensuring that the drive shafts are compatible and can be seamlessly integrated into different equipment.
8. Collaboration and Feedback:
Manufacturers often collaborate closely with equipment manufacturers, OEMs (Original Equipment Manufacturers), or end-users to gather feedback and incorporate their specific requirements into the drive shaft design and manufacturing processes. This collaborative approach ensures that the drive shafts are compatible with the intended equipment and meet the expectations of the end-users. By actively seeking input and feedback, manufacturers can continuously improve their products’ compatibility and performance.
In summary, manufacturers ensure the compatibility of drive shafts with different equipment through a combination of application analysis, customization, torque and power capacity considerations, material selection, joint configurations, quality control and testing, compliance with standards, and collaboration with equipment manufacturers and end-users. These efforts enable manufacturers to design and produce drive shafts that seamlessly integrate with various equipment, ensuring optimal performance, reliability, and compatibility in different applications.
Can drive shafts be customized for specific vehicle or equipment requirements?
Yes, drive shafts can be customized to meet specific vehicle or equipment requirements. Customization allows manufacturers to tailor the design, dimensions, materials, and other parameters of the drive shaft to ensure compatibility and optimal performance within a particular vehicle or equipment. Here’s a detailed explanation of how drive shafts can be customized:
1. Dimensional Customization:
Drive shafts can be customized to match the dimensional requirements of the vehicle or equipment. This includes adjusting the overall length, diameter, and spline configuration to ensure proper fitment and clearances within the specific application. By customizing the dimensions, the drive shaft can be seamlessly integrated into the driveline system without any interference or limitations.
2. Material Selection:
The choice of materials for drive shafts can be customized based on the specific requirements of the vehicle or equipment. Different materials, such as steel alloys, aluminum alloys, or specialized composites, can be selected to optimize strength, weight, and durability. The material selection can be tailored to meet the torque, speed, and operating conditions of the application, ensuring the drive shaft’s reliability and longevity.
3. Joint Configuration:
Drive shafts can be customized with different joint configurations to accommodate specific vehicle or equipment requirements. For example, universal joints (U-joints) may be suitable for applications with lower operating angles and moderate torque demands, while constant velocity (CV) joints are often used in applications requiring higher operating angles and smoother power transmission. The choice of joint configuration depends on factors such as operating angle, torque capacity, and desired performance characteristics.
4. Torque and Power Capacity:
Customization allows drive shafts to be designed with the appropriate torque and power capacity for the specific vehicle or equipment. Manufacturers can analyze the torque requirements, operating conditions, and safety margins of the application to determine the optimal torque rating and power capacity of the drive shaft. This ensures that the drive shaft can handle the required loads without experiencing premature failure or performance issues.
5. Balancing and Vibration Control:
Drive shafts can be customized with precision balancing and vibration control measures. Imbalances in the drive shaft can lead to vibrations, increased wear, and potential driveline issues. By employing dynamic balancing techniques during the manufacturing process, manufacturers can minimize vibrations and ensure smooth operation. Additionally, vibration dampers or isolation systems can be integrated into the drive shaft design to further mitigate vibrations and enhance overall system performance.
6. Integration and Mounting Considerations:
Customization of drive shafts takes into account the integration and mounting requirements of the specific vehicle or equipment. Manufacturers work closely with the vehicle or equipment designers to ensure that the drive shaft fits seamlessly into the driveline system. This includes adapting the mounting points, interfaces, and clearances to ensure proper alignment and installation of the drive shaft within the vehicle or equipment.
7. Collaboration and Feedback:
Manufacturers often collaborate with vehicle manufacturers, OEMs (Original Equipment Manufacturers), or end-users to gather feedback and incorporate their specific requirements into the drive shaft customization process. By actively seeking input and feedback, manufacturers can address specific needs, optimize performance, and ensure compatibility with the vehicle or equipment. This collaborative approach enhances the customization process and results in drive shafts that meet the exact requirements of the application.
8. Compliance with Standards:
Customized drive shafts can be designed to comply with relevant industry standards and regulations. Compliance with standards, such as ISO (International Organization for Standardization) or specific industry standards, ensures that the customized drive shafts meet quality, safety, and performance requirements. Adhering to these standards provides assurance that the drive shafts are compatible and can be seamlessly integrated into the specific vehicle or equipment.
In summary, drive shafts can be customized to meet specific vehicle or equipment requirements through dimensional customization, material selection, joint configuration, torque and power capacity optimization, balancing and vibration control, integration and mounting considerations, collaboration with stakeholders, and compliance with industry standards. Customization allows drive shafts to be precisely tailored to the needs of the application, ensuring compatibility, reliability, and optimal performance.
How do drive shafts contribute to transferring rotational power in various applications?
Drive shafts play a crucial role in transferring rotational power from the engine or power source to the wheels or driven components in various applications. Whether it’s in vehicles or machinery, drive shafts enable efficient power transmission and facilitate the functioning of different systems. Here’s a detailed explanation of how drive shafts contribute to transferring rotational power:
1. Vehicle Applications:
In vehicles, drive shafts are responsible for transmitting rotational power from the engine to the wheels, enabling the vehicle to move. The drive shaft connects the gearbox or transmission output shaft to the differential, which further distributes the power to the wheels. As the engine generates torque, it is transferred through the drive shaft to the wheels, propelling the vehicle forward. This power transfer allows the vehicle to accelerate, maintain speed, and overcome resistance, such as friction and inclines.
2. Machinery Applications:
In machinery, drive shafts are utilized to transfer rotational power from the engine or motor to various driven components. For example, in industrial machinery, drive shafts may be used to transmit power to pumps, generators, conveyors, or other mechanical systems. In agricultural machinery, drive shafts are commonly employed to connect the power source to equipment such as harvesters, balers, or irrigation systems. Drive shafts enable these machines to perform their intended functions by delivering rotational power to the necessary components.
3. Power Transmission:
Drive shafts are designed to transmit rotational power efficiently and reliably. They are capable of transferring substantial amounts of torque from the engine to the wheels or driven components. The torque generated by the engine is transmitted through the drive shaft without significant power losses. By maintaining a rigid connection between the engine and the driven components, drive shafts ensure that the power produced by the engine is effectively utilized in performing useful work.
4. Flexible Coupling:
One of the key functions of drive shafts is to provide a flexible coupling between the engine/transmission and the wheels or driven components. This flexibility allows the drive shaft to accommodate angular movement and compensate for misalignment between the engine and the driven system. In vehicles, as the suspension system moves or the wheels encounter uneven terrain, the drive shaft adjusts its length and angle to maintain a constant power transfer. This flexibility helps prevent excessive stress on the drivetrain components and ensures smooth power transmission.
5. Torque and Speed Transmission:
Drive shafts are responsible for transmitting both torque and rotational speed. Torque is the rotational force generated by the engine or power source, while rotational speed is the number of revolutions per minute (RPM). Drive shafts must be capable of handling the torque requirements of the application without excessive twisting or bending. Additionally, they need to maintain the desired rotational speed to ensure the proper functioning of the driven components. Proper design, material selection, and balancing of the drive shafts contribute to efficient torque and speed transmission.
6. Length and Balance:
The length and balance of drive shafts are critical factors in their performance. The length of the drive shaft is determined by the distance between the engine or power source and the driven components. It should be appropriately sized to avoid excessive vibrations or bending. Drive shafts are carefully balanced to minimize vibrations and rotational imbalances, which can affect the overall performance, comfort, and longevity of the drivetrain system.
7. Safety and Maintenance:
Drive shafts require proper safety measures and regular maintenance. In vehicles, drive shafts are often enclosed within a protective tube or housing to prevent contact with moving parts, reducing the risk of injury. Safety shields or guards may also be installed around exposed drive shafts in machinery to protect operators from potential hazards. Regular maintenance includes inspecting the drive shaft for wear, damage, or misalignment, and ensuring proper lubrication of the U-joints. These measures help prevent failures, ensure optimal performance, and extend the service life of the drive shaft.
In summary, drive shafts play a vital role in transferring rotational power in various applications. Whether in vehicles or machinery, drive shafts enable efficient power transmission from the engine or power source to the wheels or driven components. They provide a flexible coupling, handle torque and speed transmission, accommodate angular movement, and contribute to the safety and maintenance of the system. By effectively transferring rotational power, drive shafts facilitate the functioning and performance of vehicles and machinery in numerous industries.
editor by CX 2024-04-04
China Hot selling Precision Machining 1045 S45c Forged Drive Shaft for Sale
Product Description
Product Description
structural carbon steel :45# with details in under sheet :
Standard No. | Alloy No. | Chemical compositions(%) | ||||||
C | Cr | Mn | Ni | P | S | Si | ||
GB/T699-1999 | 45# | 0.42~0.50 | ≤0.25 | 0.50~0.80 | ≤0.25 | ≤0.035 | ≤0.035 | 0.17~0.37 |
Mechanical Property |
Tensile Strength(Mpa) | Yeild Strength(Mpa) | Elongation(%) | Contraction of area Z(%) | ||||
≥600 | ≥355 | ≥16 | ≥40 |
The correlation between properties and parameters-S45C (JIS)-SAE1045(Aisi)-SM45 of No. 45 steel(45 steel) was studied:
No. 45 steel is a carbon structural steel with 0.45% carboncontent. It is characterized by low price, good cutting performance, high hardness after quenching, good strength, toughness and wear resistance after quenching and temperingtreatment, is widely used in manufacturing structural partsand low-grade plastic mold. “45 steel” is a popular name, thesymbol is generally recorded as”45 #”. In fact GB standardsteel number is”45″, it is not a sequential number, read as”45steel” is not very accurate. Ingredient code 45 steels of similar designation are S45C (JIS) and 1045(Aisi) . In addition, ourcountry metallurgical technology standard has SM45 brandnumber to express the plastic mold use specially. Comparedwith 45 steel, SM45 has lower phosphorus and sulfur contentand better steel purity.
Standards | YB/T 094 | AISI | JIS G4051 |
Alloy No. | SM45 | 1045 | S45C |
C | 0.42-0.48 | 0.43-0.50 | 0.42-0.48 |
Si | 0.17-0.37 | 0.15-0.35 | |
Mn | 0.50-0.80 | 0.60-0.90 | 0.60-0.90 |
P | <0.030 | <0.030 | <0.030 |
S | <0.035 | <0.035 | <0.035 |
Recommended process specification for heat treatment andhardness: quenching temperature 820 – 860″ C, water-oroil-cooled, hardness 250 HRC. Recommended tempering pro-cess specifcation: tempering temperature is 500 – 560″ C, aircooling, hardness is 25 – 33HRC. Tempering in this temperature range is the tempering treatment, Quenching and tempering make the strength, plasticity and toughness of 45 steelget a good balance, the comprehensive performance is good,can adapt to the alternating load environment. After quench-ing and tempering, the surface hardness of 45 steel is low anddoes not wear well. So commonly used quenching and tempering + surface quenching to improve the surface hardnessof parts.
Tempering temperature | After quenching | Unit centigrade | |||||
200 | 300 | 400 | 500 | 550 | 600 | ||
Hardness HRC |
57 | 55 | 50 | 41 | 33 | 26 | 22 |
Mechanical properties (GB/T 699-1999) | |||
Sample size | mm | 25 | |
Heat treatments recommended | Normalizing | ºC | 850 |
Quenching | ºC | 840 | |
Tempering | ºC | 600 | |
Mechanical properties | Tensile strongth | Mpa | ≥600 |
Strong yield | Mpa | ≥355 | |
Elongation | Mpa | ≥16 | |
Section shrinkago | Mpa | ≥40 | |
Impact | Mpa | ≥39 | |
Hardness of delivery | HB | ≤229 | |
HB | ≤197 |
Main Products
Company Profile
ZheJiang Xihu (West Lake) Dis. Equipment Manufacturing Co, Ltd., located in HangZhou City, ZheJiang Province, is a steel forging manufacturing enterprise specializing in the production of forged round steel, square steel, shaft forgings, ring forgings, cylinder forgings, and forging processing, heat treatment, mechanical processing, and finished parts processing. 0.75 tons to 30 tons of ingot steel can also be supplied. The company has a strong special steel supply channel as support, especially in the special steel forgings more resource advantages, products include “chromium-nick- el-molybdenum steel, bonded steel, carbon steel, stainless steel, spring steel, bearing steel, rolls and other series.”Our company can also ensure flaw detection at all levels according to customer requirements and provide quality certification documents.
Forging Equipment
The main equipment is 2000 tons of hydraulic press, ring rolling machine, 3 tons of forging hammer, 2 tons of forging hammer, 1 ton forging hammer, 750KG forging hammer, 30T heat treatment and temper- ing furnace, lathe, sawing machine and other more than 30 sets of equipment, which can produce
forgings weighing 20Kg-20000Kg. Products are not only widely used in domestic large locomotives, coal machines, petroleum machinery, shipbuilding and other industries, but also exported to Europe, South- east Asia, and other countries and regions, forging products using advanced production technology
“high-power electric CZPT (EF)furnace external refining (LF) vacuum degassing (VD) fast forging annealing (or normalizing) turning, Ensure chemical composition and mechanical property require-ments.
FAQ
-
What is the difference between forging and casting?
Forging: It is the process of transforming a CZPT from 1 shape to another. Casting: It is the process of transforming a shapeless liquid metal into a CZPT with a shape. The so-called casting is the process of casting molten metal into a model to obtain a casting. The casting profession focuses on the metal melting process and the control of processes during the casting process. Forging is a plastic forming process in the CZPT state, which can be divided into hot processing and cold processing. Forgings include extrusion, drawing, roughening, punching, and so on. Casting is a CZPT liquid CZPT process, while forging is a CZPT to CZPT process where a CZPT can change its shape into another shape at high temperatures. There are still differences in the shape process and process of the two.
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How to choose high-quality forgings?
In the quality inspection of forgings, there are mainly external observation methods and internal inspection methods. The appearance method, as the name suggests, is to observe the appearance of the product, such as the shape, geometric dimensions, surface condition, etc. of the forging, in order to understand whether it meets the standards and whether there are external defects. Specifically, it is to check whether the external dimensions of the forging meet the specifications and whether there are defects on the surface, such as cracks, wrinkles, bubbles, indentations, pits, impurities, scratches, etc. on the surface of the forging. Internal testing mainly involves analyzing the chemical composition, macroscopic and microscopic structures, and mechanical properties of forgings. This inspection process requires the use of specialized instruments for high magnification inspection, with the aim of checking for any phenomena such as fractures and shrinkage within the forging, as well as defects such as dendrites and white spots, disordered flow lines, and throughflow. It also includes the tensile strength, ductility, hardness, plasticity, and heat resistance temperature of the forging.
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What are the characteristics of the forging process for blank forgings?
The forging process of circular forgings mainly consists of the following processes: pier roughening, elongation, punching, and expanding. The difference between free forging and ring rolling processes is mainly in the process of expanding holes. In the production of ring forgings, free forging is usually used to expand the hole with a horse screw, while ring rolling is mainly used to expand the hole with rolling.
/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Processing Object: | Metal |
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Molding Style: | Forging |
Molding Technics: | Hot Forging |
Application: | Machinery Parts |
Material: | Steel |
Heat Treatment: | Tempering |
Samples: |
US$ 1100/Ton
1 Ton(Min.Order) | |
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Customization: |
Available
| Customized Request |
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Can drive shafts be adapted for use in both automotive and industrial settings?
Yes, drive shafts can be adapted for use in both automotive and industrial settings. While there may be some differences in design and specifications based on the specific application requirements, the fundamental principles and functions of drive shafts remain applicable in both contexts. Here’s a detailed explanation:
1. Power Transmission:
Drive shafts serve the primary purpose of transmitting rotational power from a power source, such as an engine or motor, to driven components, which can be wheels, machinery, or other mechanical systems. This fundamental function applies to both automotive and industrial settings. Whether it’s delivering power to the wheels of a vehicle or transferring torque to industrial machinery, the basic principle of power transmission remains the same for drive shafts in both contexts.
2. Design Considerations:
While there may be variations in design based on specific applications, the core design considerations for drive shafts are similar in both automotive and industrial settings. Factors such as torque requirements, operating speeds, length, and material selection are taken into account in both cases. Automotive drive shafts are typically designed to accommodate the dynamic nature of vehicle operation, including variations in speed, angles, and suspension movement. Industrial drive shafts, on the other hand, may be designed for specific machinery and equipment, taking into consideration factors such as load capacity, operating conditions, and alignment requirements. However, the underlying principles of ensuring proper dimensions, strength, and balance are essential in both automotive and industrial drive shaft designs.
3. Material Selection:
The material selection for drive shafts is influenced by the specific requirements of the application, whether in automotive or industrial settings. In automotive applications, drive shafts are commonly made from materials such as steel or aluminum alloys, chosen for their strength, durability, and ability to withstand varying operating conditions. In industrial settings, drive shafts may be made from a broader range of materials, including steel, stainless steel, or even specialized alloys, depending on factors such as load capacity, corrosion resistance, or temperature tolerance. The material selection is tailored to meet the specific needs of the application while ensuring efficient power transfer and durability.
4. Joint Configurations:
Both automotive and industrial drive shafts may incorporate various joint configurations to accommodate the specific requirements of the application. Universal joints (U-joints) are commonly used in both contexts to allow for angular movement and compensate for misalignment between the drive shaft and driven components. Constant velocity (CV) joints are also utilized, particularly in automotive drive shafts, to maintain a constant velocity of rotation and accommodate varying operating angles. These joint configurations are adapted and optimized based on the specific needs of automotive or industrial applications.
5. Maintenance and Service:
While maintenance practices may vary between automotive and industrial settings, the importance of regular inspection, lubrication, and balancing remains crucial in both cases. Both automotive and industrial drive shafts benefit from periodic maintenance to ensure optimal performance, identify potential issues, and prolong the lifespan of the drive shafts. Lubrication of joints, inspection for wear or damage, and balancing procedures are common maintenance tasks for drive shafts in both automotive and industrial applications.
6. Customization and Adaptation:
Drive shafts can be customized and adapted to meet the specific requirements of various automotive and industrial applications. Manufacturers often offer drive shafts with different lengths, diameters, and joint configurations to accommodate a wide range of vehicles or machinery. This flexibility allows for the adaptation of drive shafts to suit the specific torque, speed, and dimensional requirements of different applications, whether in automotive or industrial settings.
In summary, drive shafts can be adapted for use in both automotive and industrial settings by considering the specific requirements of each application. While there may be variations in design, materials, joint configurations, and maintenance practices, the fundamental principles of power transmission, design considerations, and customization options remain applicable in both contexts. Drive shafts play a crucial role in both automotive and industrial applications, enabling efficient power transfer and reliable operation in a wide range of mechanical systems.
Can drive shafts be customized for specific vehicle or equipment requirements?
Yes, drive shafts can be customized to meet specific vehicle or equipment requirements. Customization allows manufacturers to tailor the design, dimensions, materials, and other parameters of the drive shaft to ensure compatibility and optimal performance within a particular vehicle or equipment. Here’s a detailed explanation of how drive shafts can be customized:
1. Dimensional Customization:
Drive shafts can be customized to match the dimensional requirements of the vehicle or equipment. This includes adjusting the overall length, diameter, and spline configuration to ensure proper fitment and clearances within the specific application. By customizing the dimensions, the drive shaft can be seamlessly integrated into the driveline system without any interference or limitations.
2. Material Selection:
The choice of materials for drive shafts can be customized based on the specific requirements of the vehicle or equipment. Different materials, such as steel alloys, aluminum alloys, or specialized composites, can be selected to optimize strength, weight, and durability. The material selection can be tailored to meet the torque, speed, and operating conditions of the application, ensuring the drive shaft’s reliability and longevity.
3. Joint Configuration:
Drive shafts can be customized with different joint configurations to accommodate specific vehicle or equipment requirements. For example, universal joints (U-joints) may be suitable for applications with lower operating angles and moderate torque demands, while constant velocity (CV) joints are often used in applications requiring higher operating angles and smoother power transmission. The choice of joint configuration depends on factors such as operating angle, torque capacity, and desired performance characteristics.
4. Torque and Power Capacity:
Customization allows drive shafts to be designed with the appropriate torque and power capacity for the specific vehicle or equipment. Manufacturers can analyze the torque requirements, operating conditions, and safety margins of the application to determine the optimal torque rating and power capacity of the drive shaft. This ensures that the drive shaft can handle the required loads without experiencing premature failure or performance issues.
5. Balancing and Vibration Control:
Drive shafts can be customized with precision balancing and vibration control measures. Imbalances in the drive shaft can lead to vibrations, increased wear, and potential driveline issues. By employing dynamic balancing techniques during the manufacturing process, manufacturers can minimize vibrations and ensure smooth operation. Additionally, vibration dampers or isolation systems can be integrated into the drive shaft design to further mitigate vibrations and enhance overall system performance.
6. Integration and Mounting Considerations:
Customization of drive shafts takes into account the integration and mounting requirements of the specific vehicle or equipment. Manufacturers work closely with the vehicle or equipment designers to ensure that the drive shaft fits seamlessly into the driveline system. This includes adapting the mounting points, interfaces, and clearances to ensure proper alignment and installation of the drive shaft within the vehicle or equipment.
7. Collaboration and Feedback:
Manufacturers often collaborate with vehicle manufacturers, OEMs (Original Equipment Manufacturers), or end-users to gather feedback and incorporate their specific requirements into the drive shaft customization process. By actively seeking input and feedback, manufacturers can address specific needs, optimize performance, and ensure compatibility with the vehicle or equipment. This collaborative approach enhances the customization process and results in drive shafts that meet the exact requirements of the application.
8. Compliance with Standards:
Customized drive shafts can be designed to comply with relevant industry standards and regulations. Compliance with standards, such as ISO (International Organization for Standardization) or specific industry standards, ensures that the customized drive shafts meet quality, safety, and performance requirements. Adhering to these standards provides assurance that the drive shafts are compatible and can be seamlessly integrated into the specific vehicle or equipment.
In summary, drive shafts can be customized to meet specific vehicle or equipment requirements through dimensional customization, material selection, joint configuration, torque and power capacity optimization, balancing and vibration control, integration and mounting considerations, collaboration with stakeholders, and compliance with industry standards. Customization allows drive shafts to be precisely tailored to the needs of the application, ensuring compatibility, reliability, and optimal performance.
What is a drive shaft and how does it function in vehicles and machinery?
A drive shaft, also known as a propeller shaft or prop shaft, is a mechanical component that plays a critical role in transmitting rotational power from the engine to the wheels or other driven components in vehicles and machinery. It is commonly used in various types of vehicles, including cars, trucks, motorcycles, and agricultural or industrial machinery. Here’s a detailed explanation of what a drive shaft is and how it functions:
1. Definition and Construction: A drive shaft is a cylindrical metal tube that connects the engine or power source to the wheels or driven components. It is typically made of steel or aluminum and consists of one or more tubular sections with universal joints (U-joints) at each end. These U-joints allow for angular movement and compensation of misalignment between the engine/transmission and the driven wheels or components.
2. Power Transmission: The primary function of a drive shaft is to transmit rotational power from the engine or power source to the wheels or driven components. In vehicles, the drive shaft connects the transmission or gearbox output shaft to the differential, which then transfers power to the wheels. In machinery, the drive shaft transfers power from the engine or motor to various driven components such as pumps, generators, or other mechanical systems.
3. Torque and Speed: The drive shaft is responsible for transmitting both torque and rotational speed. Torque is the rotational force generated by the engine or power source, while rotational speed is the number of revolutions per minute (RPM). The drive shaft must be capable of transmitting the required torque without excessive twisting or bending and maintaining the desired rotational speed for efficient operation of the driven components.
4. Flexible Coupling: The U-joints on the drive shaft provide a flexible coupling that allows for angular movement and compensation of misalignment between the engine/transmission and the driven wheels or components. As the suspension system of a vehicle moves or the machinery operates on uneven terrain, the drive shaft can adjust its length and angle to accommodate these movements, ensuring smooth power transmission and preventing damage to the drivetrain components.
5. Length and Balance: The length of the drive shaft is determined by the distance between the engine or power source and the driven wheels or components. It should be appropriately sized to ensure proper power transmission and avoid excessive vibrations or bending. Additionally, the drive shaft is carefully balanced to minimize vibrations and rotational imbalances, which can cause discomfort, reduce efficiency, and lead to premature wear of drivetrain components.
6. Safety Considerations: Drive shafts in vehicles and machinery require proper safety measures. In vehicles, drive shafts are often enclosed within a protective tube or housing to prevent contact with moving parts and reduce the risk of injury in the event of a malfunction or failure. Additionally, safety shields or guards are commonly installed around exposed drive shafts in machinery to protect operators from potential hazards associated with rotating components.
7. Maintenance and Inspection: Regular maintenance and inspection of drive shafts are essential to ensure their proper functioning and longevity. This includes checking for signs of wear, damage, or excessive play in the U-joints, inspecting the drive shaft for any cracks or deformations, and lubricating the U-joints as recommended by the manufacturer. Proper maintenance helps prevent failures, ensures optimal performance, and prolongs the service life of the drive shaft.
In summary, a drive shaft is a mechanical component that transmits rotational power from the engine or power source to the wheels or driven components in vehicles and machinery. It functions by providing a rigid connection between the engine/transmission and the driven wheels or components, while also allowing for angular movement and compensation of misalignment through the use of U-joints. The drive shaft plays a crucial role in power transmission, torque and speed delivery, flexible coupling, length and balance considerations, safety, and maintenance requirements. Its proper functioning is essential for the smooth and efficient operation of vehicles and machinery.
editor by CX 2024-02-14
China manufacturer Forged Drum Shaft/ Forging Products /Shaft drive shaft parts
Product Description
Brief Introduction
We supply all kinds of winder drum shaft for mining and power stations in unit weight more than 50 tons.
Other products you may like
FAQ
Q1: What’s the advantage of your company?
A: Our company specializes in trading for more than 13 years. We know how to solve any kinds of emergency accident during trading to give you a high quality and safety services . Choose the most suitable manufacture to satisfy your requirements is our goal.
Q2: I do not have experience to purchase from China before. How to start my first order?
A: It is easy and simple. Please feel free to contact with us. Experienced team is ready to help you step by step.
Q3: Can I get some samples?
A: Yes, we’re honored to offer you samples for quality check.
Q4:How to confirm the quality ?
A: Third party inspection is warmly welcome before shipment. We have cooperated with SGS,IEI, CCIC,TECHNICO,BV,FIDES,etc.If you require the previous release notice issued by them,we would like to send you before order.
Q5: Is it possible to know how is my product going on without visiting your company?
A: We will offer a detailed products schedule and send weekly reports with digital pictures and videos which show the machining progress.
Q6: What is the production cycle?
A: It varies a lot depending on product dimension,technical requirements and quantity. We always try to meet customers’ requirement by adjusting workshop schedule.
Q7: What is your payment?
A: Normally, by T/T 30% down payment, 70% balance before shipment. 100% L/C at sight is also accepted by us. Besides, we have Kun Lun bank to receive Iranian payment.
Contact Information
Mobile: Nick 1890625713
Material: | Carbon Steel |
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Load: | Drive Shaft |
Stiffness & Flexibility: | Flexible Shaft |
Journal Diameter Dimensional Accuracy: | IT6-IT9 |
Axis Shape: | Straight Shaft |
Shaft Shape: | Real Axis |
Samples: |
US$ 50/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
| Customized Request |
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How to tell if your driveshaft needs replacing
What is the cause of the unbalanced drive shaft? Unstable U-joint? Your car may make clicking noises while driving. If you can hear it from both sides, it might be time to hand it over to the mechanic. If you’re not sure, read on to learn more. Fortunately, there are many ways to tell if your driveshaft needs replacing.
unbalanced
An unbalanced driveshaft can be the source of strange noises and vibrations in your vehicle. To fix this problem, you should contact a professional. You can try a number of things to fix it, including welding and adjusting the weight. The following are the most common methods. In addition to the methods above, you can use standardized weights to balance the driveshaft. These standardized weights are attached to the shaft by welders.
An unbalanced drive shaft typically produces lateral vibrations per revolution. This type of vibration is usually caused by a damaged shaft, missing counterweights, or a foreign object stuck on the drive shaft. On the other hand, torsional vibrations occur twice per revolution, and they are caused by shaft phase shifts. Finally, critical speed vibration occurs when the RPM of the drive shaft exceeds its rated capacity. If you suspect a driveshaft problem, check the following:
Manually adjusting the imbalance of a drive shaft is not the easiest task. To avoid the difficulty of manual balancing, you can choose to use standardized weights. These weights are fixed on the outer circumference of the drive shaft. The operator can manually position the weight on the shaft with special tools, or use a robot. However, manual balancers have many disadvantages.
unstable
When the angular velocity of the output shaft is not constant, it is unstable. The angular velocity of the output shaft is 0.004 at ph = 29.5 and 1.9 at t = 1.9. The angular velocity of the intermediate shaft is not a problem. But when it’s unstable, the torque applied to it is too much for the machine. It might be a good idea to check the tension on the shaft.
An unstable drive shaft can cause a lot of noise and mechanical vibration. It can lead to premature shaft fatigue failure. CZPT studies the effect of shaft vibration on the rotor bearing system. They investigated the effect of flex coupling misalignment on the vibration of the rotor bearing system. They assume that the vibrational response has two components: x and y. However, this approach has limited application in many situations.
Experimental results show that the presence of cracks in the output shaft may mask the unbalanced excitation characteristics. For example, the presence of superharmonic peaks on the spectrum is characteristic of cracks. The presence of cracks in the output shaft masks unbalanced excitation characteristics that cannot be detected in the transient response of the input shaft. Figure 8 shows that the frequency of the rotor increases at critical speed and decreases as the shaft passes the natural frequency.
Unreliable
If you’re having trouble driving your car, chances are you’ve run into an unreliable driveshaft. This type of drivetrain can cause the wheels to stick or not turn at all, and also limit the overall control of the car. Whatever the reason, these issues should be resolved as soon as possible. Here are some symptoms to look for when diagnosing a driveshaft fault. Let’s take a closer look.
The first symptom you may notice is an unreliable drive shaft. You may feel vibrations, or hear noises under the vehicle. Depending on the cause, it could be a broken joint or a broken shaft. The good news is that driveshaft repairs are generally relatively inexpensive and take less time than a complete drivetrain replacement. If you’re not sure what to do, CZPT has a guide to replacing the U-connector.
One of the most common signs of an unreliable driveshaft is clanging and vibration. These sounds can be caused by worn bushings, loose U-joints, or damaged center bearings. This can cause severe vibration and noise. You can also feel these vibrations through the steering wheel or the floor. An unreliable driveshaft is a symptom of a bigger problem.
Unreliable U-joints
A car with an unreliable U-joint on the drive shaft can be dangerous. A bad u-joint can prevent the vehicle from driving properly and may even cause you trouble. Unreliable u-joints are cheap to replace and you should try getting parts from quality manufacturers. Unreliable U-joints can cause the car to vibrate in the chassis or gear lever. This is a sure sign that your car has been neglected in maintenance.
Replacing a U-joint is not a complicated task, but it requires special tools and a lot of elbow grease. If you don’t have the right tools, or you’re unfamiliar with mechanical terminology, it’s best to seek the help of a mechanic. A professional mechanic will be able to accurately assess the problem and propose an appropriate solution. But if you don’t feel confident enough, you can replace your own U-connector by following a few simple steps.
To ensure the vehicle’s driveshaft is not damaged, check the U-joint for wear and lubrication. If the U-joint is worn, the metal parts are likely to rub against each other, causing wear. The sooner a problem is diagnosed, the faster it can be resolved. Also, the longer you wait, the more you lose on repairs.
damaged drive shaft
The driveshaft is the part of the vehicle that connects the wheels. If the driveshaft is damaged, the wheels may stop turning and the vehicle may slow down or stop moving completely. It bears the weight of the car itself as well as the load on the road. So even a slight bend or break in the drive shaft can have dire consequences. Even a piece of loose metal can become a lethal missile if dropped from a vehicle.
If you hear a screeching noise or growl from your vehicle when shifting gears, your driveshaft may be damaged. When this happens, damage to the u-joint and excessive slack in the drive shaft can result. These conditions can further damage the drivetrain, including the front half. You should replace the driveshaft as soon as you notice any symptoms. After replacing the driveshaft, you can start looking for signs of wear.
A knocking sound is a sign of damage to the drive shaft. If you hear this sound while driving, it may be due to worn couplings, damaged propshaft bearings, or damaged U-joints. In some cases, the knocking noise can even be caused by a damaged U-joint. When this happens, you may need to replace the entire driveshaft, requiring a new one.
Maintenance fees
The cost of repairing a driveshaft varies widely, depending on the type and cause of the problem. A new driveshaft costs between $300 and $1,300, including labor. Repairing a damaged driveshaft can cost anywhere from $200 to $300, depending on the time required and the type of parts required. Symptoms of a damaged driveshaft include unresponsiveness, vibration, chassis noise and a stationary car.
The first thing to consider when estimating the cost of repairing a driveshaft is the type of vehicle you have. Some vehicles have more than one, and the parts used to make them may not be compatible with other cars. Even if the same car has two driveshafts, the damaged ones will cost more. Fortunately, many auto repair shops offer free quotes to repair damaged driveshafts, but be aware that such work can be complicated and expensive.
editor by CX
2023-04-14
China Forged Marine Boat Propeller Transmission Shaft with high quality
Item Description
Substantial Top quality Solid Marine Boat Propeller Shaft For Ship
Item Description
1- Common: DIN, ASTM, ASME, AISI, EN, JIS, GB/T
two- Primary Solution: Shaft, Step Shaft, Equipment & Gear Shaft, Flange, Pipe Fitting, Bearing, and other people.
3- Manufacturing Process
Forging
a- Open die forging (merchandise variety: Max size 16000mm Max excess weight 35 Mt)
b- Ring forging (merchandise range: Max OD 4000mm Max height 500mm Max excess weight 4Mt)
Heat Treatment method
Normalizing, Tempering, Annealing,
Q + T (Quenching and Tempering)
Machining
Premachining, Finish machining
Surface Ending
Sand blasting, Coating, Painting
four- Raw Materials:
Alloy steel, Carbon metal, Stainless metal, Steel ingot, Round steel bar
Note: The substance shown underneath is only component of typically utilised substance, the other materials and specific prerequisite from Consumer is accepted.
Wind Turbine Shaft
42CrMo4V, 34CrNiMo6
Wind Tower Flange
S355NL, C22, 16Mn, 20Mn, 42CrMo, F304
Shaft Forgings
25CrMo4, 42CrMo4, 40CrNiMo, 34CrNi3Mo, 25Cr2Ni4MoV, 18CrNiMo5, 30CrMo, 4130, 4140.
Gear Forgings
35CrMo, 34CrMo4, 4137, 42CrMo, 4140, SCM440, 20CrMnMo, 40CrNiMo, 20CrNi2Mo, 20Cr2Ni4A, 34CrNi3Mo.
Maritime Forgings
20Mn, 50Mn, C45, 42CrMo, 20MnMo, CK45, 34CrNi1Mo
Stress Vessel Forgings
SA105, SA350 LF2, 16Mn, 20MnMo, 15MnMo, 12Cr2Mo1, 14Cr1Mo, F304, F316, seventeen-4PH
Forged Pipe Fittings
SA106 CL B, SA106 CL C, WB36, 12Cr1MoV, SA335 P11, P12, P22, P91, SA182 Gr.F1, Gr.F5, Gr.F11 CL2, Gr.F12 CL2, Gr.F22 CL3, SA350 Gr.LF1, Gr.LF2, Gr.LF3
Product name | Substantial Good quality Cast Maritime Boat Propeller Shaft For Ship |
Brand name | Believe in |
Use | construction machinery, agricultural machinery,Automoble parts and general engineering industries |
typical material | carbon steel, alloy steel, stainless steel, 45#,40Cr,42CrMo,35CrMo,20CrMnTi,20# |
Technologies | Casting forging,free forging,Investment Casting |
Dimensions | Different size available |
MOQ | Negotiable |
Packing | wood/carton/stretch film package or as your requirement |
Delivery time | 15-45 days from order date |
Payment | T/T, L/C,D/A,D/P, Western Union, MoneyGram |
Edge | OEM service available |
Notes | special specifications and marks can be made according to customers requirements |
our company equipment | we source all sorts of marine equipments |
Certifications | ISO9001:2008 |
Capacity Goal | fifty Sets / month |
the material of this kind of Metal propeller shaft that we can provide | |
Quality | three.6,4.6,4.8,5.6,6.8,8.8,9.8,ten.9,12.9,etc |
Carbon metal | Gr.B,Gr.C,Gr.D,Gr.36,Gr.fifty eight,1571,1015,1016,1571,1045,and so forth |
Alloy metal | 4130,4140,G51150,and so forth |
Stainless steel | 201,202,301,302,303,304,316,310,430,and so on |
Brass | C28000,C37710,C3450,C27200,and so on |
Bronze | C51900,C60600,C17200,and so on |
Alumimum | one hundred,5052,6061,6063,etc |
the floor complete of the propeller shaft | |
Electroplate | Zinc plated(even though,colour,dacroment),Nickel plated,copper plated,gold plated,chrome(3+Rohs &6+ ) plated,anodic oxidation,etc |
Dip plating | black oxide coating,very hot dip galvanizing,and many others |
Flame plating | Light oil,spray coating,electrophoretic coating,and so forth |
Polishing | Grinding and polishing,and so forth,apart from mirror end |
the tolerance of the propeller shaft | |
Roundess | .002mm |
Cylindricity | .003mm |
Roughness | Ra0.32 |
Straightness | .01/200mm |
WE CAN Layout AND MANUFACTURE THE Entire PROPULSION Program, INCXIHU (WEST LAKE) DIS. PROPELLER, SHAFTING, RUDDER, Etc. According TO THE GA OF THE VESSEL.
To Be Negotiated | 1 Piece (Min. Order) |
###
Material: | Alloy Steel |
---|---|
Load: | Drive Shaft |
Stiffness & Flexibility: | Flexible Shaft |
Journal Diameter Dimensional Accuracy: | IT01-IT5 |
Axis Shape: | Straight Shaft |
Shaft Shape: | Real Axis |
###
Customization: |
Available
|
---|
###
Product name | High Quality Forged Marine Boat Propeller Shaft For Ship |
Brand name | TRUST |
Usage | construction machinery, agricultural machinery,Automoble parts and general engineering industries |
typical material | carbon steel, alloy steel, stainless steel, 45#,40Cr,42CrMo,35CrMo,20CrMnTi,20# |
Technology | Casting forging,free forging,Investment Casting |
Size | Different size available |
MOQ | Negotiable |
Packing | wooden/carton/stretch film package or as your requirement |
Delivery time | 15-45 days from order date |
Payment | T/T, L/C,D/A,D/P, Western Union, MoneyGram |
Advantage | OEM service available |
Notes | special specifications and marks can be made according to customers requirements |
our company equipment | we supply all kinds of marine equipments |
Certifications | ISO9001:2008 |
Capacity Goal | 50 Sets / month |
###
the material of this kind of Metal propeller shaft that we can offer | |
Grade | 3.6,4.6,4.8,5.6,6.8,8.8,9.8,10.9,12.9,etc |
Carbon steel | Gr.B,Gr.C,Gr.D,Gr.36,Gr.58,1010,1015,1016,1020,1045,etc |
Alloy steel | 4130,4140,G51150,etc |
Stainless steel | 201,202,301,302,303,304,316,310,430,etc |
Brass | C28000,C37710,C3450,C27200,etc |
Bronze | C51900,C60600,C17200,etc |
Alumimum | 100,5052,6061,6063,etc |
the surface finish of the propeller shaft | |
Electroplate | Zinc plated(while,colour,dacroment),Nickel plated,copper plated,gold plated,chrome(3+Rohs &6+ ) plated,anodic oxidation,etc |
Dip plating | black oxide coating,hot dip galvanizing,etc |
Flame plating | Light oil,spray coating,electrophoretic coating,etc |
Polishing | Grinding and polishing,etc,except mirror finish |
the tolerance of the propeller shaft | |
Roundess | 0.002mm |
Cylindricity | 0.003mm |
Roughness | Ra0.32 |
Straightness | 0.01/200mm |
To Be Negotiated | 1 Piece (Min. Order) |
###
Material: | Alloy Steel |
---|---|
Load: | Drive Shaft |
Stiffness & Flexibility: | Flexible Shaft |
Journal Diameter Dimensional Accuracy: | IT01-IT5 |
Axis Shape: | Straight Shaft |
Shaft Shape: | Real Axis |
###
Customization: |
Available
|
---|
###
Product name | High Quality Forged Marine Boat Propeller Shaft For Ship |
Brand name | TRUST |
Usage | construction machinery, agricultural machinery,Automoble parts and general engineering industries |
typical material | carbon steel, alloy steel, stainless steel, 45#,40Cr,42CrMo,35CrMo,20CrMnTi,20# |
Technology | Casting forging,free forging,Investment Casting |
Size | Different size available |
MOQ | Negotiable |
Packing | wooden/carton/stretch film package or as your requirement |
Delivery time | 15-45 days from order date |
Payment | T/T, L/C,D/A,D/P, Western Union, MoneyGram |
Advantage | OEM service available |
Notes | special specifications and marks can be made according to customers requirements |
our company equipment | we supply all kinds of marine equipments |
Certifications | ISO9001:2008 |
Capacity Goal | 50 Sets / month |
###
the material of this kind of Metal propeller shaft that we can offer | |
Grade | 3.6,4.6,4.8,5.6,6.8,8.8,9.8,10.9,12.9,etc |
Carbon steel | Gr.B,Gr.C,Gr.D,Gr.36,Gr.58,1010,1015,1016,1020,1045,etc |
Alloy steel | 4130,4140,G51150,etc |
Stainless steel | 201,202,301,302,303,304,316,310,430,etc |
Brass | C28000,C37710,C3450,C27200,etc |
Bronze | C51900,C60600,C17200,etc |
Alumimum | 100,5052,6061,6063,etc |
the surface finish of the propeller shaft | |
Electroplate | Zinc plated(while,colour,dacroment),Nickel plated,copper plated,gold plated,chrome(3+Rohs &6+ ) plated,anodic oxidation,etc |
Dip plating | black oxide coating,hot dip galvanizing,etc |
Flame plating | Light oil,spray coating,electrophoretic coating,etc |
Polishing | Grinding and polishing,etc,except mirror finish |
the tolerance of the propeller shaft | |
Roundess | 0.002mm |
Cylindricity | 0.003mm |
Roughness | Ra0.32 |
Straightness | 0.01/200mm |
Why Checking the Drive Shaft is Important
If you hear clicking noises while driving, your driveshaft may need repair. An experienced mechanic can tell if the noise is coming from one side or both sides. This problem is usually related to the torque converter. Read on to learn why it’s so important to have your driveshaft inspected by an auto mechanic. Here are some symptoms to look for. Clicking noises can be caused by many different things. You should first check if the noise is coming from the front or the rear of the vehicle.
hollow drive shaft
Hollow driveshafts have many benefits. They are light and reduce the overall weight of the vehicle. The largest manufacturer of these components in the world is CZPT. They also offer lightweight solutions for various applications, such as high-performance axles. CZPT driveshafts are manufactured using state-of-the-art technology. They offer excellent quality at competitive prices.
The inner diameter of the hollow shaft reduces the magnitude of the internal forces, thereby reducing the amount of torque transmitted. Unlike solid shafts, hollow shafts are getting stronger. The material inside the hollow shaft is slightly lighter, which further reduces its weight and overall torque. However, this also increases its drag at high speeds. This means that in many applications hollow driveshafts are not as efficient as solid driveshafts.
A conventional hollow drive shaft consists of a first rod 14 and a second rod 14 on both sides. The first rod is connected with the second rod, and the second rod extends in the rotation direction. The two rods are then friction welded to the central area of the hollow shaft. The frictional heat generated during the relative rotation helps to connect the two parts. Hollow drive shafts can be used in internal combustion engines and environmentally-friendly vehicles.
The main advantage of a hollow driveshaft is weight reduction. The splines of the hollow drive shaft can be designed to be smaller than the outside diameter of the hollow shaft, which can significantly reduce weight. Hollow shafts are also less likely to jam compared to solid shafts. Hollow driveshafts are expected to eventually occupy the world market for automotive driveshafts. Its advantages include fuel efficiency and greater flexibility compared to solid prop shafts.
Cardan shaft
Cardan shafts are a popular choice in industrial machinery. They are used to transmit power from one machine to another and are available in a variety of sizes and shapes. They are available in a variety of materials, including steel, copper, and aluminum. If you plan to install one of these shafts, it is important to know the different types of Cardan shafts available. To find the best option, browse the catalog.
Telescopic or “Cardan” prop shafts, also known as U-joints, are ideal for efficient torque transfer between the drive and output system. They are efficient, lightweight, and energy-efficient. They employ advanced methods, including finite element modeling (FEM), to ensure maximum performance, weight, and efficiency. Additionally, the Cardan shaft has an adjustable length for easy repositioning.
Another popular choice for driveshafts is the Cardan shaft, also known as a driveshaft. The purpose of the driveshaft is to transfer torque from the engine to the wheels. They are typically used in high-performance car engines. Some types are made of brass, iron, or steel and have unique surface designs. Cardan shafts are available in inclined and parallel configurations.
Single Cardan shafts are a common replacement for standard Cardan shafts, but if you are looking for dual Cardan shafts for your vehicle, you will want to choose the 1310 series. This type is great for lifted jeeps and requires a CV-compatible transfer case. Some even require axle spacers. The dual Cardan shafts are also designed for lifts, which means it’s a good choice for raising and lowering jeeps.
universal joint
Cardan joints are a good choice for drive shafts when operating at a constant speed. Their design allows a constant angular velocity ratio between the input and output shafts. Depending on the application, the recommended speed limit may vary depending on the operating angle, transmission power, and application. These recommendations must be based on pressure. The maximum permissible speed of the drive shaft is determined by determining the angular acceleration.
Because gimbal joints don’t require grease, they can last a long time but eventually fail. If they are poorly lubricated or dry, they can cause metal-to-metal contact. The same is true for U-joints that do not have oil filling capability. While they have a long lifespan, it can be difficult to spot warning signs that could indicate impending joint failure. To avoid this, check the drive shaft regularly.
U-joints should not exceed seventy percent of their lateral critical velocity. However, if this speed is exceeded, the part will experience unacceptable vibration, reducing its useful life. To determine the best U-joint for your application, please contact your universal joint supplier. Typically, lower speeds do not require balancing. In these cases, you should consider using a larger pitch diameter to reduce axial force.
To minimize the angular velocity and torque of the output shaft, the two joints must be in phase. Therefore, the output shaft angular displacement does not completely follow the input shaft. Instead, it will lead or lag. Figure 3 illustrates the angular velocity variation and peak displacement lead of the gimbal. The ratios are shown below. The correct torque for this application is 1360 in-Ibs.
Refurbished drive shaft
Refurbished driveshafts are a good choice for a number of reasons. They are cheaper than brand new alternatives and generally just as reliable. Driveshafts are essential to the function of any car, truck, or bus. These parts are made of hollow metal tubes. While this helps reduce weight and expense, it is vulnerable to external influences. If this happens, it may crack or bend. If the shaft suffers this type of damage, it can cause serious damage to the transmission.
A car’s driveshaft is a critical component that transmits torque from the engine to the wheels. A1 Drive Shaft is a global supplier of automotive driveshafts and related components. Their factory has the capability to refurbish and repair almost any make or model of driveshafts. Refurbished driveshafts are available for every make and model of vehicle. They can be found on the market for a variety of vehicles, including passenger cars, trucks, vans, and SUVs.
Unusual noises indicate that your driveshaft needs to be replaced. Worn U-joints and bushings can cause excessive vibration. These components cause wear on other parts of the drivetrain. If you notice any of these symptoms, please take your vehicle to the AAMCO Bay Area Center for a thorough inspection. If you suspect damage to the driveshaft, don’t wait another minute – it can be very dangerous.
The cost of replacing the drive shaft
The cost of replacing a driveshaft varies, but on average, this repair costs between $200 and $1,500. While this price may vary by vehicle, the cost of parts and labor is generally equal. If you do the repair yourself, you should know how much the parts and labor will cost before you start work. Some parts can be more expensive than others, so it’s a good idea to compare the cost of several locations before deciding where to go.
If you notice any of these symptoms, you should seek a repair shop immediately. If you are still not sure if the driveshaft is damaged, do not drive the car any distance until it is repaired. Symptoms to look for include lack of power, difficulty moving the car, squeaking, clanking, or vibrating when the vehicle is moving.
Parts used in drive shafts include center support bearings, slip joints, and U-joints. The price of the driveshaft varies by vehicle and may vary by model of the same year. Also, different types of driveshafts require different repair methods and are much more expensive. Overall, though, a driveshaft replacement costs between $300 and $1,300. The process may take about an hour, depending on the vehicle model.
Several factors can lead to the need to replace the drive shaft, including bearing corrosion, damaged seals, or other components. In some cases, the U-joint indicates that the drive shaft needs to be replaced. Even if the bearings and u-joints are in good condition, they will eventually break and require the replacement of the drive shaft. However, these parts are not cheap, and if a damaged driveshaft is a symptom of a bigger problem, you should take the time to replace the shaft.
editor by czh 2022-12-29
China CNC Machining Forged Metal Stainless Steel Transmission Shaft for Truck drive shaft coupler
Merchandise Description
HangZhou FRIMA is IATF16949 certificated manufacturer ,found in HangZhou,China.We are specialized in production personalized-made precision Machining Components. We supply a extensive variety of production solutions, including machining, and stamping Our engineering group has rich expertise in doing work in this discipline for numerous many years.
We have expert high quality handle crew which is developed up by wealthy seasoned QC & QA. They will monitor each procedure of manufacturing. Each element or component will go by means of our QA for closing inspection and testing. Make positive each solution is below customer’s requirement prior to CZPT consumers.
Our concentrate is to close the hole and supply reduced value production during the globe. Sourcing your areas with FRIMA is the closest point to managing your personal production facility in China. We offer severe overall flexibility for you and your venture needs.
HangZhou FRIMA will supply you with the subsequent rewards and rewards:
·More saving on manufacturing expense.
·State-of-the-art manufacturing services.
·On internet site producing supervision for high quality manage.
·Bilingual engineers reporting on your undertaking.
·Reasonable limited guide time.
Equipments: CNC machining heart, CNC Lathe, milling device, normal lathe, grinding machine, wire-cut machine, top gauge, projector, and other precise types.
Components: Aluminum, Alloy metal, Stainless Metal, brass, and so forth.
About 80% of FRIMAI’s organization is exported, and twenty% domestic. FRIMAhas quite stringent quality control ask for and method dependent on IATF16949 management system.
Any enquiries and orders together with drawing or sample as well as investments are incredibly welcomed. We sincerely would like to cooperate with your business and develop brilliance.
Feature of CNC areas
1. Precision Cnc stainless steel parts strictly according to customer’s drawing, packing, and good quality request
two. Tolerance: Can be kept at +/-.005mm
3. The most sophisticated CMM inspector to ensure the good quality
4. Knowledgeable technologies engineers and well-qualified personnel
five. Fast and well timed supply. Speedily&skilled provider
six. Good quality assurance in accordance with PPAP-3 stage system inIATF16949
WMeasuring Facilties | Quadratic Element,Peak Gauge,Micrometer,Gauge Block,Needle Gauge,Plug gauge,Caliper,Screw Thread Gauge | |||
Machining Amenities | Machining Tolerance(mm) | Mchining Precision(mm) | Qty | Self-owned |
CNC Machining Centre | 800×500 | .005-.01 | 20pcs | Head Plant |
CNC Machining Centre | 650×500 | .005-.01 | 5pcs | Head Plant |
CNC Turning | 750×40 | .015-.005 | 20pcs | Head Plant |
Turning | 750×250 | .01-.02 | 10pcs | Head Plant |
Milling | 1200×550 | .01-.02 | 6pcs | Head Plant |
Grinding | 160x360x280 | .005-.01 | 4pcs | Head Plant |
Grinding | 300×680 | .01 | 1pcs | Head Plant |
Wire-reducing | 400×350 | .01-.02 | 4pcs | Head Plant |
Content Obtainable for CNC Turning Provider
Material | Stainless steel | SS201 SS303 SS304 SS316 seventeen-4PH SUS440C |
Steel | Q235 twenty#-forty five# etc | |
Brass | C36000(C26800) C37700(HPb59) C38500(HP6 fifty eight) C27200(CuzN37)etc | |
Iron | 1213 12L14 1215 and so on | |
Bronze | C51000 C52100 C5400etc | |
Aluminum | Al6061 Al6063 Al7075 AL5052 etc | |
Alloy | A2 D2 SKD11 DF2 XW/5 ASP-23 |
Terms and Conditions
Our Processing | CNC machining, CNC milling and turning, drilling, grinding, stamping, tapping, |
Floor end | Tough Coating/Black Anodize/ Clear Anodize/ Difficult Chrome /Obvious Zinc/Plasma Niride |
Tolerance | .005mm |
QC Technique | 100% inspection before cargo |
Drawing format | CAD / PDF/ DWG/ IGS/ Action/So |
Packaging | Regular package / Carton box or Pallet / As per customized specifications |
Testing equipment | CMM (Coordinate Measuring Device), Top gauge, Caliper, Hardness tester, Roughness tester, Projector equipment, Pin/Angle/Block/Plug/Thickness/Thread/Radius gauge, and so forth. |
Trade terms | EXW, FOB, CIF, As per the customer’s ask for |
Shipment Terms | one) -100kg: specific & air freight precedence two) >100kg: sea freight precedence 3) As per customized technical specs |
Be aware | All CNC machining parts are personalized-manufactured in accordance to the customer’s drawings or samples, with no inventory. If you have any CNC machining elements to be created, please come to feel totally free to send out your kind drawings/samples to us at any time by email. |
Surface Complete | Anodized/Zinc/Nickle/ZiNi plating |
Our advantage:
eleven a long time 1-cease custom-made steel items manufacturing facility.
We will total distinct processing designs dependent on customers’ processing wants and blend different processing techniques to
give buyers the greatest remedies this sort of as CNC machining turning milling stamping forging extrusion casting bending welding and so on.
ODM/OEM speedy support
We can do it you only require to offer your venture drawings and samples and we can customise and manufacture for you.
Offer substantial-good quality items at a aggressive value
Personalized processing can be attained in 5 working times to acquire prototypes and modest batch creation components to supply buyers with
higher-top quality and reduced-expense CNC processed merchandise.
US $0.1-1 / Piece | |
10 Pieces (Min. Order) |
###
Application: | Automotive Industry |
---|---|
Certification: | IATF16949, RoHS, ISO9001 |
Transport Package: | Each Pack by PE Bag, Then Pack in Carton |
Specification: | SS316/S304, Brass, Aluminum |
Trademark: | OEM |
Origin: | Ningbo China |
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Customization: |
Available
|
---|
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WMeasuring Facilties | Quadratic Element,Height Gauge,Micrometer,Gauge Block,Needle Gauge,Plug gauge,Caliper,Screw Thread Gauge | |||
Machining Facilities | Machining Tolerance(mm) | Mchining Precision(mm) | Qty | Self-owned |
CNC Machining Centre | 800×500 | 0.005-0.01 | 20pcs | Head Plant |
CNC Machining Centre | 650×500 | 0.005-0.01 | 5pcs | Head Plant |
CNC Turning | 750×40 | 0.015-0.005 | 20pcs | Head Plant |
Turning | 750×250 | 0.01-0.02 | 10pcs | Head Plant |
Milling | 1200×550 | 0.01-0.02 | 6pcs | Head Plant |
Grinding | 160x360x280 | 0.005-0.01 | 4pcs | Head Plant |
Grinding | 300×680 | 0.01 | 1pcs | Head Plant |
Wire-cutting | 400×350 | 0.01-0.02 | 4pcs | Head Plant |
###
Material | Stainless steel | SS201 SS303 SS304 SS316 17-4PH SUS440C |
Steel | Q235 20#-45# etc | |
Brass | C36000(C26800) C37700(HPb59) C38500(HP6 58) C27200(CuzN37)etc | |
Iron | 1213 12L14 1215 etc | |
Bronze | C51000 C52100 C5400etc | |
Aluminum | Al6061 Al6063 Al7075 AL5052 etc | |
Alloy | A2 D2 SKD11 DF2 XW/5 ASP-23 |
###
Our Processing | CNC machining, CNC milling and turning, drilling, grinding, stamping, tapping, |
Surface finish | Hard Coating/Black Anodize/ Clear Anodize/ Hard Chrome /Clear Zinc/Plasma Niride |
Tolerance | 0.005mm |
QC System | 100% inspection before shipment |
Drawing format | CAD / PDF/ DWG/ IGS/ STEP/So |
Packaging | Standard package / Carton box or Pallet / As per customized specifications |
Testing equipment | CMM (Coordinate Measuring Machine), Height gauge, Caliper, Hardness tester, Roughness tester, Projector machine, Pin/Angle/Block/Plug/Thickness/Thread/Radius gauge, etc. |
Trade terms | EXW, FOB, CIF, As per the customer’s request |
Shipment Terms | 1) 0-100kg: express & air freight priority 2) >100kg: sea freight priority 3) As per customized specifications |
Note | All CNC machining parts are custom-made according to the customer’s drawings or samples, with no stock. If you have any CNC machining parts to be made, please feel free to send your kind drawings/samples to us anytime by email. |
Surface Finish | Anodized/Zinc/Nickle/ZiNi plating |
US $0.1-1 / Piece | |
10 Pieces (Min. Order) |
###
Application: | Automotive Industry |
---|---|
Certification: | IATF16949, RoHS, ISO9001 |
Transport Package: | Each Pack by PE Bag, Then Pack in Carton |
Specification: | SS316/S304, Brass, Aluminum |
Trademark: | OEM |
Origin: | Ningbo China |
###
Customization: |
Available
|
---|
###
WMeasuring Facilties | Quadratic Element,Height Gauge,Micrometer,Gauge Block,Needle Gauge,Plug gauge,Caliper,Screw Thread Gauge | |||
Machining Facilities | Machining Tolerance(mm) | Mchining Precision(mm) | Qty | Self-owned |
CNC Machining Centre | 800×500 | 0.005-0.01 | 20pcs | Head Plant |
CNC Machining Centre | 650×500 | 0.005-0.01 | 5pcs | Head Plant |
CNC Turning | 750×40 | 0.015-0.005 | 20pcs | Head Plant |
Turning | 750×250 | 0.01-0.02 | 10pcs | Head Plant |
Milling | 1200×550 | 0.01-0.02 | 6pcs | Head Plant |
Grinding | 160x360x280 | 0.005-0.01 | 4pcs | Head Plant |
Grinding | 300×680 | 0.01 | 1pcs | Head Plant |
Wire-cutting | 400×350 | 0.01-0.02 | 4pcs | Head Plant |
###
Material | Stainless steel | SS201 SS303 SS304 SS316 17-4PH SUS440C |
Steel | Q235 20#-45# etc | |
Brass | C36000(C26800) C37700(HPb59) C38500(HP6 58) C27200(CuzN37)etc | |
Iron | 1213 12L14 1215 etc | |
Bronze | C51000 C52100 C5400etc | |
Aluminum | Al6061 Al6063 Al7075 AL5052 etc | |
Alloy | A2 D2 SKD11 DF2 XW/5 ASP-23 |
###
Our Processing | CNC machining, CNC milling and turning, drilling, grinding, stamping, tapping, |
Surface finish | Hard Coating/Black Anodize/ Clear Anodize/ Hard Chrome /Clear Zinc/Plasma Niride |
Tolerance | 0.005mm |
QC System | 100% inspection before shipment |
Drawing format | CAD / PDF/ DWG/ IGS/ STEP/So |
Packaging | Standard package / Carton box or Pallet / As per customized specifications |
Testing equipment | CMM (Coordinate Measuring Machine), Height gauge, Caliper, Hardness tester, Roughness tester, Projector machine, Pin/Angle/Block/Plug/Thickness/Thread/Radius gauge, etc. |
Trade terms | EXW, FOB, CIF, As per the customer’s request |
Shipment Terms | 1) 0-100kg: express & air freight priority 2) >100kg: sea freight priority 3) As per customized specifications |
Note | All CNC machining parts are custom-made according to the customer’s drawings or samples, with no stock. If you have any CNC machining parts to be made, please feel free to send your kind drawings/samples to us anytime by email. |
Surface Finish | Anodized/Zinc/Nickle/ZiNi plating |
How to Identify a Faulty Drive Shaft
The most common problems associated with automotive driveshafts include clicking and rubbing noises. While driving, the noise from the driver’s seat is often noticeable. An experienced auto mechanic can easily identify whether the sound is coming from both sides or from one side. If you notice any of these signs, it’s time to send your car in for a proper diagnosis. Here’s a guide to determining if your car’s driveshaft is faulty:
Symptoms of Driveshaft Failure
If you’re having trouble turning your car, it’s time to check your vehicle’s driveshaft. A bad driveshaft can limit the overall control of your car, and you should fix it as soon as possible to avoid further problems. Other symptoms of a propshaft failure include strange noises from under the vehicle and difficulty shifting gears. Squeaking from under the vehicle is another sign of a faulty driveshaft.
If your driveshaft fails, your car will stop. Although the engine will still run, the wheels will not turn. You may hear strange noises from under the vehicle, but this is a rare symptom of a propshaft failure. However, you will have plenty of time to fix the problem. If you don’t hear any noise, the problem is not affecting your vehicle’s ability to move.
The most obvious signs of a driveshaft failure are dull sounds, squeaks or vibrations. If the drive shaft is unbalanced, it is likely to damage the transmission. It will require a trailer to remove it from your vehicle. Apart from that, it can also affect your car’s performance and require repairs. So if you hear these signs in your car, be sure to have it checked by a mechanic right away.
Drive shaft assembly
When designing a propshaft, the design should be based on the torque required to drive the vehicle. When this torque is too high, it can cause irreversible failure of the drive shaft. Therefore, a good drive shaft design should have a long service life. Here are some tips to help you design a good driveshaft. Some of the main components of the driveshaft are listed below.
Snap Ring: The snap ring is a removable part that secures the bearing cup assembly in the yoke cross hole. It also has a groove for locating the snap ring. Spline: A spline is a patented tubular machined element with a series of ridges that fit into the grooves of the mating piece. The bearing cup assembly consists of a shaft and end fittings.
U-joint: U-joint is required due to the angular displacement between the T-shaped housing and the pinion. This angle is especially large in raised 4x4s. The design of the U-joint must guarantee a constant rotational speed. Proper driveshaft design must account for the difference in angular velocity between the shafts. The T-bracket and output shaft are attached to the bearing caps at both ends.
U-joint
Your vehicle has a set of U-joints on the driveshaft. If your vehicle needs to be replaced, you can do it yourself. You will need a hammer, ratchet and socket. In order to remove the U-joint, you must first remove the bearing cup. In some cases you will need to use a hammer to remove the bearing cup, you should be careful as you don’t want to damage the drive shaft. If you cannot remove the bearing cup, you can also use a vise to press it out.
There are two types of U-joints. One is held by a yoke and the other is held by a c-clamp. A full ring is safer and ideal for vehicles that are often used off-road. In some cases, a full circle can be used to repair a c-clamp u-joint.
In addition to excessive torque, extreme loads and improper lubrication are common causes of U-joint failure. The U-joint on the driveshaft can also be damaged if the engine is modified. If you are driving a vehicle with a heavily modified engine, it is not enough to replace the OE U-joint. In this case, it is important to take the time to properly lubricate these components as needed to keep them functional.
tube yoke
QU40866 Tube Yoke is a common replacement for damaged or damaged driveshaft tubes. They are desirably made of a metallic material, such as an aluminum alloy, and include a hollow portion with a lug structure at one end. Tube yokes can be manufactured using a variety of methods, including casting and forging. A common method involves drawing solid elements and machining them into the final shape. The resulting components are less expensive to produce, especially when compared to other forms.
The tube fork has a connection point to the driveshaft tube. The lug structure provides attachment points for the gimbal. Typically, the driveshaft tube is 5 inches in diameter and the lug structure is 4 inches in diameter. The lug structure also serves as a mounting point for the drive shaft. Once installed, Tube Yoke is easy to maintain. There are two types of lug structures: one is forged tube yoke and the other is welded.
Heavy-duty series drive shafts use bearing plates to secure the yoke to the U-joint. All other dimensions are secured with external snap rings. Yokes are usually machined to accept U-bolts. For some applications, grease fittings are used. This attachment is more suitable for off-road vehicles and performance vehicles.
end yoke
The end yoke of the drive shaft is an integral part of the drive train. Choosing a high-quality end yoke will help ensure long-term operation and prevent premature failure. Pat’s Driveline offers a complete line of automotive end yokes for power take-offs, differentials and auxiliary equipment. They can also measure your existing parts and provide you with high quality replacements.
A U-bolt is an industrial fastener with threaded legs. When used on a driveshaft, it provides greater stability in unstable terrain. You can purchase a U-bolt kit to secure the pinion carrier to the drive shaft. U-bolts also come with lock washers and nuts. Performance cars and off-road vehicles often use this type of attachment. But before you install it, you have to make sure the yoke is machined to accept it.
End yokes can be made of aluminum or steel and are designed to provide strength. It also offers special bolt styles for various applications. CZPT’s drivetrain is also stocked with a full line of automotive flange yokes. The company also produces custom flanged yokes for many popular brands. Since the company has a comprehensive line of replacement flange yokes, it can help you transform your drivetrain from non-serviceable to serviceable.
bushing
The first step in repairing or replacing an automotive driveshaft is to replace worn or damaged bushings. These bushings are located inside the drive shaft to provide a smooth, safe ride. The shaft rotates in a rubber sleeve. If a bushing needs to be replaced, you should first check the manual for recommendations. Some of these components may also need to be replaced, such as the clutch or swingarm.
editor by czh 2022-12-24
China factory Accept customized Heavy Duty forged steel main shaft straight tooth spline shaft gear for Agricultural Machine with high quality
Condition: New
Guarantee: 1.5 years
Shape: Spur
Relevant Industries: Production Plant, Building works , Energy & Mining, equipment, agricultural equipment, industrial equipment, construction machinery, automobile
Bodyweight (KG): 13.fifty four
Showroom Place: None
Video outgoing-inspection: Supplied
Equipment Test Report: Offered
Marketing Kind: New Solution 2019
Guarantee of core parts: 1 12 months
Core Components: Gear
Content: Steel
Merchandise Identify: Personalized solid steel spline shaft for Agricultural Device
Module: M0.3-M30
Content Common: Metal
Floor remedy: Carbonization
Warmth treatment method: Quenching + Tempering
Accuracy Grade: 5-ten
Processing Type: Normal(ASTM/AGMA/ANSI/DIN/JIS/ISO/GB)
After Guarantee Support: Online Video clip Assistance
Packaging Specifics: Normal export bundle or customized for every customer’s ask for
Port: ZheJiang or HangZhou
Products Description
Specification | ||
Precision quality | ISO 1328 quality seven | |
Helix Angle(β) | 15° | |
Pressure Angle(α) | 20° | |
Material | SAE 4320 | |
Heat Remedy | Carburizing | |
Hardness | 58±2 HRC, .8~.95mm deep |
Catalog No. | Module | No. of teeth | Helix Course | Pitch dia.(d) | Idea dia.(OD) | Confront width(B) | Dia.(d1) | Whole length(L) | Mating Gear |
I0001402 | two.twenty five | twenty | still left | forty six.69 | fifty one.56 | 49 | forty one | 116 | I0001434 |
I0001418 | 2.five | seventeen | proper | 44.00 | 49.00 | 36 | 30 | 241 | I0005887 |
I0005223 | two.5 | 19 | proper | forty nine.18 | fifty four.eighteen | forty five | fifty four | 281 | I0005888 |
I0001404 | 3 | 21 | still left | 65.22 | 71.31 | 50 | 35 | 146 | I0005222 |
I0005220 | 3 | 21 | still left | 65.22 | seventy one.31 | 50 | 35 | 175 | I0005222 |
I0005219 | three.5 | 19 | correct | sixty eight.ninety two | seventy six.51 | sixty eight | fifty five | 380 | I0003897 |
I0006056 | three.five | 21 | left | 72.26 | eighty three.78 | fifty four | forty five | 205 | I0003896 |
I0006057 | 3.5 | 21 | still left | 72.26 | 83.78 | 54 | 60 | 164 | I0005224 |
I00571 | 4.5 | 21 | left | 97.83 | 106.eighty three | 65 | 60 | 262 | I0003898 |
I0001412 | 4.5 | 21 | remaining | 97.83 | 106.eighty three | 92 | 50 | 262 | I0003899 |
What is a drive shaft?
If you notice a clicking noise while driving, it is most likely the driveshaft. An experienced auto mechanic will be able to tell you if the noise is coming from both sides or from one side. If it only happens on one side, you should check it. If you notice noise on both sides, you should contact a mechanic. In either case, a replacement driveshaft should be easy to find.
The drive shaft is a mechanical part
A driveshaft is a mechanical device that transmits rotation and torque from the engine to the wheels of the vehicle. This component is essential to the operation of any driveline, as the mechanical power from the engine is transmitted to the PTO (power take-off) shaft, which hydraulically transmits that power to connected equipment. Different drive shafts contain different combinations of joints to compensate for changes in shaft length and angle. Some types of drive shafts include connecting shafts, internal constant velocity joints, and external fixed joints. They also contain anti-lock system rings and torsional dampers to prevent overloading the axle or causing the wheels to lock.
Although driveshafts are relatively light, they need to handle a lot of torque. Torque applied to the drive shaft produces torsional and shear stresses. Because they have to withstand torque, these shafts are designed to be lightweight and have little inertia or weight. Therefore, they usually have a joint, coupling or rod between the two parts. Components can also be bent to accommodate changes in the distance between them.
The drive shaft can be made from a variety of materials. The most common material for these components is steel, although alloy steels are often used for high-strength applications. Alloy steel, chromium or vanadium are other materials that can be used. The type of material used depends on the application and size of the component. In many cases, metal driveshafts are the most durable and cheapest option. Plastic shafts are used for light duty applications and have different torque levels than metal shafts.
It transfers power from the engine to the wheels
A car’s powertrain consists of an electric motor, transmission, and differential. Each section performs a specific job. In a rear-wheel drive vehicle, the power generated by the engine is transmitted to the rear tires. This arrangement improves braking and handling. The differential controls how much power each wheel receives. The torque of the engine is transferred to the wheels according to its speed.
The transmission transfers power from the engine to the wheels. It is also called “transgender”. Its job is to ensure power is delivered to the wheels. Electric cars cannot drive themselves and require a gearbox to drive forward. It also controls how much power reaches the wheels at any given moment. The transmission is the last part of the power transmission chain. Despite its many names, the transmission is the most complex component of a car’s powertrain.
The driveshaft is a long steel tube that transmits mechanical power from the transmission to the wheels. Cardan joints connect to the drive shaft and provide flexible pivot points. The differential assembly is mounted on the drive shaft, allowing the wheels to turn at different speeds. The differential allows the wheels to turn at different speeds and is very important when cornering. Axles are also important to the performance of the car.
It has a rubber boot that protects it from dust and moisture
To keep this boot in good condition, you should clean it with cold water and a rag. Never place it in the dryer or in direct sunlight. Heat can deteriorate the rubber and cause it to shrink or crack. To prolong the life of your rubber boots, apply rubber conditioner to them regularly. Indigenous peoples in the Amazon region collect latex sap from the bark of rubber trees. Then they put their feet on the fire to solidify the sap.
it has a U-shaped connector
The drive shaft has a U-joint that transfers rotational energy from the engine to the axle. Defective gimbal joints can cause vibrations when the vehicle is in motion. This vibration is often mistaken for a wheel balance problem. Wheel balance problems can cause the vehicle to vibrate while driving, while a U-joint failure can cause the vehicle to vibrate when decelerating and accelerating, and stop when the vehicle is stopped.
The drive shaft is connected to the transmission and differential using a U-joint. It allows for small changes in position between the two components. This prevents the differential and transmission from remaining perfectly aligned. The U-joint also allows the drive shaft to be connected unconstrained, allowing the vehicle to move. Its main purpose is to transmit electricity. Of all types of elastic couplings, U-joints are the oldest.
Your vehicle’s U-joints should be inspected at least twice a year, and the joints should be greased. When checking the U-joint, you should hear a dull sound when changing gears. A clicking sound indicates insufficient grease in the bearing. If you hear or feel vibrations when shifting gears, you may need to service the bearings to prolong their life.
it has a slide-in tube
The telescopic design is a modern alternative to traditional driveshaft designs. This innovative design is based on an unconventional design philosophy that combines advances in material science and manufacturing processes. Therefore, they are more efficient and lighter than conventional designs. Slide-in tubes are a simple and efficient design solution for any vehicle application. Here are some of its benefits. Read on to learn why this type of shaft is ideal for many applications.
The telescopic drive shaft is an important part of the traditional automobile transmission system. These driveshafts allow linear motion of the two components, transmitting torque and rotation throughout the vehicle’s driveline. They also absorb energy if the vehicle collides. Often referred to as foldable driveshafts, their popularity is directly dependent on the evolution of the automotive industry.
It uses a bearing press to replace worn or damaged U-joints
A bearing press is a device that uses a rotary press mechanism to install or remove worn or damaged U-joints from a drive shaft. With this tool, you can replace worn or damaged U-joints in your car with relative ease. The first step involves placing the drive shaft in the vise. Then, use the 11/16″ socket to press the other cup in far enough to install the clips. If the cups don’t fit, you can use a bearing press to remove them and repeat the process. After removing the U-joint, use a grease nipple Make sure the new grease nipple is installed correctly.
Worn or damaged U-joints are a major source of driveshaft failure. If one of them were damaged or damaged, the entire driveshaft could dislocate and the car would lose power. Unless you have a professional mechanic doing the repairs, you will have to replace the entire driveshaft. Fortunately, there are many ways to do this yourself.
If any of these warning signs appear on your vehicle, you should consider replacing the damaged or worn U-joint. Common symptoms of damaged U-joints include rattling or periodic squeaking when moving, rattling when shifting, wobbling when turning, or rusted oil seals. If you notice any of these symptoms, take your vehicle to a qualified mechanic for a full inspection. Neglecting to replace a worn or damaged u-joint on the driveshaft can result in expensive and dangerous repairs and can cause significant damage to your vehicle.
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EPG has established up a complete set of good quality management system which is offered with superior inspection and take a look at gear. If you want any information or samples, you should make contact with us and you will have our quickly reply. Our merchandise are used in a lot of fields.
Usage | For new strength vehicle electric EPT shaft/EPT motor shaft/EPT rotation shaft/EPT spline shaft/EPT shaft,etc |
Specification | Size:100-500mm,Outside the house Dia.:twenty-90mm,Spline module:.8-three or EPTT |
Surface area Treament | Anodizing/ OXiHu (West EPT) Dis.ding/ Zinc plating/ Nickel plating/ Chrome plating/ Silver plating/ EPT plating/ Imitation EPT plating/ Sand blasted/ Brushed/ Silk EPT/ Passivation/ EPTT coating/ Painting/ Alodine/ Heat therapy/ Teflon and so forth. |
Tolerance | /-.005mm or /- .0002 |
EPT | Stainless Steel,EPTT Metal We deal with a lot of other sort of materials. You should speak to us if your necessary materials is not shown over. |
Inspecation EPT | Coordinate measuring machining/ Projector/ Caliper/ EPTscope/ EPTmeter/ EPT gauge/ Roughness tester/ Gauge block/ Thread gauge and so forth. |
EPTT EPTT | 100% inspection |
EPTT | Yes,all are EPT according clients’ drawings design or sample |
Our Consumer | BYD,EPT,Honda,GAIC Team ,SAIC group, BAIC team,Wide-EPTT,AKEI,Inovance, EPTTeEPT,and so forth |
Forged China pto shaft accidents Shaft Hot Forgings Alloy Steel 1.7225 Part with ce certificate top quality low price
We – EPG Group the biggest agricultural gearbox and pto factory in China with 5 diverse branches. For far more specifics: Cell/whatsapp/telegram/Kakao us at: 0086-13083988828
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Welcome to visit our web site:
Integral forging, with no welding!
All forgings examine UT! 100% competent!
Generation Flow
Raw Material | Select One-Stage ingot metal, examine chemical aspect , confirm obtain specifications. |
Forging | Heating to the specified time and temperature. Have two types forging harmmer open forging and die forging . |
Warmth Therapy | According Tensile,Generate, Hardness demands, entirely heating. Incloud A,N,Q,T, surface HT and neighborhood HT. |
Machining | Equip horizontal lathe, vertical lathe, CNC lathe, CNC machining centre, turning equipment,boring equipment, milling machine, grinder. Tolerance can keep +/-.02mm, surface roughness can hole Ra0.eight. Grindering geometric tolerance. |
Inspect |
Every products mad a test bar, utilised for take a look at hardness and mechanical homes. All forging rough a hundred% UT inspect.
|
Business introduce
The history of HangZhou EPT dated back to 1983. The firm’s proprietor from a frontline employee produce to a company manager. Has accrued rich understanding and knowledge in the p EPT 30 a long time.
Factory located in Xihu (West Lake) Dis., ZheJiang Province. Handles an region of sixty six,000 Square meter, and has a building region of fourteen,000 Sq. meter. At present, EPT has one hundred sixty staff, owns mounted belongings reaching RMB 35 million, and offers an yearly output value of RMB eighty million and creates a lot more than RMB 4 million taxes.
EPT is a professional producer who concentrating on forging and machining. Offering supporting goods for engineering, electrical and chemical equipment. Like shaft, ring, wheel, cylinder, block, sleeve, pin, plate and many others class products.
Very lucky to cooperate with some entire world-popular firms, like: Siemens, Putzmeister, FLSmidth, SANY, , MSP/Drilex,etc. These cooperation bring us more than revenue, what’s more, high quality is lifestyle. In our coustomers’ support, set up a strict quality control technique.From uncooked material to finished parts, every single approach should inpect, have traceable information.
Production ablility
- we have qualified environmental affect assessment. So our manufacturing will not be influenced by environmental inspection.
- We the two have forging and machining capacity.
- Two gasoline heating furnaces, monitored and managed by laptop applications to ensure exact heating in established time and temperature selection as necessary.
- Which includes a 2500 Tons friction push, a 5 Tons hydraulic harmmer.
- A 3 axis CNC machining heart, a milling planer, three CNC machining heart, 4 milling heart, 3 turning middle, twenty CNC lathes. More than 80 employees.
- Value-included providers this kind of as, rolling, grindring, warmth treatment method, welding, difficult chrome plating, sprucing, portray, assembling are also avaliable.
- Regarding certification: BV,ISO9001-2008,TUV,PED.
- Three fields: Engineering equipment Hydraulic cylinder parts, oilfield equipments parts, Custom-made high precision spare components.
- Proportions assortment: φ50mm > φ1000mm Duration: 150mm > 4000mm Excess weight: 20kg > 3 Ton
- Relating to assortment of content: Carbon metal, Cr&Mo Alloy steel, Stainless Steel
Our buyer and industry: The us, Australia, Britain, Canada, France, Spain, Italy, ect.
Service and gain
- The two forging (open up forging and die forging) and machining
- Much more than thirty several years forging knowledge
- Far more than twenty many years machining knowledge
- Members of the Forging Association, the association offers complex help
- Turning, milling, grindering,unexciting,drilling. Exceptional machining system.
- Layout and programming
- Custom-made
- Sample support, MOQ is 1 pcs
- FOB, CIF, DAP delivery
- By sea, by air, by trian transport