Product Description
Product Description
We can supply under universal Joint for European Vehicles:
Catalogue of Universal Joint for European Vehicles | ||||
Item Number | D mm | O mm | L mm | Quantity Per Carton(PCS) |
GU-500 | 23.8 | 61.3 | 100 | |
GU-207 | 24 | 74.5 | 50 | |
GU-728 | 35 | 73 | 106 | 20 |
GU-1000 | 27 | 81.75 | 40 | |
GU-1000C | 27 | 81.75 | 40 | |
GU-1000C | 27 | 81.75 | 40 | |
GU-1000Y | 27 | 81.75 | 40 | |
GU-1571 | 27 | 52.59 | 40 | |
22*55 | 22 | 55 | 100 | |
GU-700 | 27 | 62 | 40 | |
27*64 | 27 | 64 | 40 | |
27*70 | 27 | 70 | 40 | |
27*71 | 27 | 71 | 40 | |
GU-1100 | 27 | 74.6 | 40 | |
GU-1100C | 27 | 74.6 | 40 | |
GU-1100Y | 27 | 74.6 | 40 | |
GU-1780 | 27 | 80 | 40 | |
GU1210(27*62) | 27 | 62 | 40 | |
28.6*92 | 28.6 | 92 | 40 | |
GU-2000 | 30.18 | 106.3 | 40 | |
GU-2000C | 30.18 | 106.3 | 40 | |
GU-2000Y | 30.18 | 106.3 | 400 | |
GU-2200 | 30.18 | 92 | 40 | |
GU-2200C | 30.18 | 92 | 40 | |
GU-2200Y | 30.18 | 92 | 40 | |
GU-2571 | 32 | 106.3 | 40 | |
GU-2300 | 34.92 | 106.3 | 20 | |
GU-2500 | 31.25 | 46 | ||
GU-2560 | 30 | 57 | ||
GU-2600 | 31.25 | 71.4 | ||
GU-3000 | 39.69 | 115.95 | 10 | |
GU-3500 | 39.69 | 115.95 | 20 | |
GU-3500A | 39.69 | 115.95 | 20 | |
GU-3800 | 44 | 126 | 10 | |
GU-3810 | 50 | 152.6 | 6 | |
GU-3840 | 44 | 149 | 10 | |
GU-3850 | 39 | 129 | ||
GU-3860 | 50 | 164 | 10 | |
GU-4000 | 47.6 | 134.9 | 10 | |
GU-4000A | 47.6 | 134.9 | 10 | |
GU-5000 | 49.2 | 154.7 | 10 | |
GU7280/3 | 28 | 49 | 40 | |
GU7280/4 | 24 | 74.4 | 100 | |
GU-7300 | 38 | 57 | 100 | 20 |
GU-7301 | 38 | 57 | 100 | 20 |
GU-7301 BSC | 38 | 57 | 100 | 16 |
TATA1210 | 38 | 57 | 100 | 20 |
TATA1312 | 46 | 69 | 120 | 10 |
42*129 | 42 | 129 | 10 | |
GU-7420 | 30 | 81.7 | 40 | |
GU-7430 | 35 | 96.8 | 40 | |
GU-7440 | 38 | 106.1 | 20 | |
GU-7460 | 44 | 124.8 | 10 | |
GU-7470 | 42 | 66 | 10 | |
GU-7530 | 45 | 120.4 | 10 | |
GU-7560 | 52 | 133 | 10 | |
GU-7600 | 52 | 147 | 10 | |
GU-7610 | 53 | 135 | 10 | |
GU-7620 | 48 | 126 | 10 | |
GU-7630 | 57 | 152 | 10 | |
GU47130 | 47 | 130 | 10 | |
GU-8100 | 47 | 131 | 10 | |
GU-8110 | 50 | 131 | 10 | |
GU-8130 | 57 | 144 | 10 | |
40*110 | 40 | 110 | 20 | |
48*135 | 48 | 135 | 10 | |
48*136 | 48 | 136 | 10 | |
U447 | 42 | 104.5 | 20 | |
GU-9730 | 48 | 116.4 | 10 | |
U924 | 65 | 190 | 5 | |
GU-9450 | 38 | 148 | 10 | |
U948 | 48 | 161 | 5 | |
U948A | 48 | 161 | 5 | |
5-12062X | 48 | 161 | 5 | |
U954 | 57 | 164 | 5 | |
U954A | 57 | 164 | 5 | |
5-12072X | 57 | 164 | 5 | |
U985 | 65 | 172 | 5 | |
U992 | 68 | 89 | 165.5 | 5 |
U995 | 68 | 117 | 194 | 5 |
G5-170X | 23.8 | 35 | 100 | |
G5-155X | 34.9 | 126.1 | 20 | |
G5-155X | 34.9 | 126.1 | 10 | |
G5-303X | 34.9/42.8 | 126/148.4 | 10 | |
G5-279X | 47.6 | 134.9 | 10 | |
G5-280X | 49.2 | 154.9 | 6 | |
G5-407X | 49.2 | 178 | 6 | |
G5-281X | 49.2 | 191.9 | 6 | |
G5-674X | 47.6 | 135 | 10 | |
G5-675X | 49.2 | 154.7/157 | 6 | |
G5-676X | 49.2 | 191.7/194 | 6 | |
G5-677X | 49.2 | 178/180 | 6 | |
G5-324X | 49.2/71.4 | 191.7/209.5 | 5 | |
G5-324X-1 | 71.4 | 209.5 | 5 | |
G5-326X | 55.5/71.4 | 206/209.3 | 5 | |
G5-308X | 55.5 | 206 | 5 | |
EQ-240 | 39 | 118 | 10 | |
EQ-246 | 47 | 140 | 10 | |
GUA-01 | 18 | 47 | 100 | |
GUA-03 | 22 | 54 | 100 | |
GUA-04 | 22 | 55 | 100 | |
GUA-05 | 23.8 | 61.3 | 100 | |
GUA-07 | 27 | 70 | 40 | |
GUA-08 | 27 | 74.6 | 40 | |
GUA-10 | 30 | 82 | 40 | |
30.18*82 | 30.18 | 82 | 40 | |
GUA-11 | 30.2 | 80 | 40 | |
30*80 | 30 | 80 | 40 | |
GUA-12 | 30.2 | 92 | 40 | |
GUA-13 | 30.2 | 106.3 | 40 | |
GUA-14 | 32 | 76 | 40 | |
GUA-15 | 34 | 52 | 90 | 40 |
GUA-17 | 34.9 | 106.3 | 20 | |
GUA-18 | 39.68 | 115.95 | 20 | |
GUA-21 | 41 | 118 | 20 | |
GUA-22 | 23.8 | 91 | ||
G5-4143X | 36.5 | 108 | 10 | |
G5-5177X | 42.8 | 115 | 10 | |
G5-5000X | 42.8 | 115 | 10 | |
G5-5154X | 42.8/33.3 | 79 | 115 | 10 |
G5-6128X | 42.8 | 140.4 | 10 | |
W-6139X | 42.8/33.3 | 104.5 | 148.4 | 10 |
G5-7126X | 49.2 | 148.4 | 10 | |
AE-7245 | 41.27 | 104.5 | 152 | 10 |
W-7300 | 49.2/41.27 | 104.5 | 148.4 | 10 |
G5-8516X | 71.8 | 165 | 6 | |
G5-8575X | 71.8 | 165 | 6 | |
G5-8105X | 49.2 | 206.4 | 5 | |
G5-9016X | 71.44 | 209.6 | 5 | |
154-20-0571 | 50 | 208 | 5 | |
SPL-90X | 41.27 | 126.1 | 10 | |
SPL-90X | 41.27 | 126.1 | 10 | |
SPL-140X | 49.2 | 138.8 | 10 | |
SPL-170X | 55 | 164 | 6 | |
SPL-250X | 60 | 163 | 5 | |
5-124X | 59 | 167.5 | 6 | |
5-124X | 59 | 167.5 | 6 | |
57*172 | 57 | 172 | 5 | |
G5-273X | 27 | 62 | 40 | |
G5-353X | 27/27.4 | 50.9 | 81.76 | 40 |
G5-297X | 30.2 | 52.5 | 40 | |
57*152.7(1651229) | 57 | 152.7 | 6 | |
42*119.7(2518) | 42 | 119.7 | 20 | |
42*120 | 42 | 120 | 10 | |
ST2055 | 20 | 55 | 100 | |
ST2050 | 20 | 50 | 100 | |
ST1948 | 19 | 48 | 100 | |
ST1847 | 18 | 47 | 100 | |
ST1638 | 16 | 38 | 100 | |
ST1639 | 16 | 39 | 100 | |
ST1640 | 16 | 40 | 100 | |
ST1538 | 15 | 38 | 100 | |
ST1539 | 15 | 39 | 100 | |
ST1540 | 15 | 40 | 100 | |
CZ-116 | 30 | 82.45 | 40 | |
CZ-117 | 27 | 70.1 | 40 | |
CZ-148 | 30 | 83 | 40 | |
CZ-185 | 35 | 97.5 | 20 | |
CZ-186 | 30.196 | 106.3 | 40 | |
EQ-240 | 50 | |||
EQ-246 | 50 | |||
CP20RPLS | 71.2/52.3 | 177.2/175 | 5 | |
CP25PLS | 71.2/52.3 | 214/208 | 5 | |
HW1000 | 26.5/33.3 | 56.8/79.4 | 40 |
Our Advantages
Production Capacity: With annual output of 500,000 universal joint,there is a professional production team to deal emergency production task.
Management System: Developping active management,and constantly deepen the quality and innovation management with system,standardization and institutionalization,promoting our staff with full enthusiasm,sincere attitude and unremitting efforts to improve product quality and management stanards.All of universal joint is made as oem no.
Research and development ability: For new technologies,new materials research and pplication,pingchai set up R & D center,a group with highly qualified engineers and technicians who are in charge of product development and continue to improve.at the same time with OE customers and tertiary institutions continue to dialogue and interchange of ideas.
Quality Control:
As a manufacture of quality,we adhere to the first time to do a good job that runs through every aspect of work.Customer salisfaction is our goal,it needs the entire team to complete,our staff to achieve this goal with unremiting efforts.
Company Profile
ZheJiang CHINAMFG Inc is located in the beautiful scenery of ZheJiang mountain city in China, we can supply a wide range of auto parts and machine and equipment, we have our own crankshaft processing plant, is a combination of industry and trade enterprises.
Auto parts included CHINAMFG wheel and pinion, crankshaft, camshaft, cylinder head, axleshaft, cylinder liner, piston ring, clutch disc assy, V-belt, tooth belt, hydraulic brake cylinder cups, rotary shaft lip seals,Sealed beam, halogen bulb, cleaner, startor etc.
Besides auto parts, we engage in the export of equipment, machine tool, packing machine,Hardware, tools and filling machine, labeling machine, etc. It exports to almost 100 countries and regions of the world including USA, European, Southeast Asia, Russia, Hong Kong etc.
We are ready to render cordially our services to friends of industry and commerce, trade, science and technology, finance and friends of other circles throughout the world, and to become your reliable cooperative partner.
Certifications
After Sales Service
Our Payment terms
1) T/T:30% deposit by T/T,70% balance by T/T before shipment.
2) L/C at sight;
Packing details
In carton or various way of packing are choosable, according to different requirement;
Shipment terms
After receive deposit it can be finished within 30 days.
If you have any further queries, please don’t hesitate to contact us.
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After-sales Service: | 12 Months |
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Warranty: | 12 Months |
Condition: | New |
Color: | Natural Color, Silver |
Certification: | ISO, SGS |
Structure: | Single |
Customization: |
Available
| Customized Request |
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What are the potential challenges in designing and manufacturing universal joints?
Designing and manufacturing universal joints can present various challenges that need to be addressed to ensure optimal performance and reliability. Here’s a detailed explanation:
1. Misalignment Compensation: Universal joints are primarily designed to accommodate angular misalignment between two shafts. Designing a universal joint that can effectively compensate for misalignment while maintaining smooth power transmission can be challenging. The joint must provide flexibility without sacrificing strength or introducing excessive play, which could lead to vibration, noise, or premature wear.
2. Torque Transmission: Universal joints are often used in applications that require the transfer of high torque loads. Designing the joint to handle these loads without failure or excessive wear is a significant challenge. The selection of appropriate materials, heat treatment processes, and bearing designs becomes crucial to ensure the strength, durability, and reliability of the joint.
3. Lubrication and Sealing: Universal joints require proper lubrication to minimize friction, heat generation, and wear between the moving components. Designing an effective lubrication system that ensures sufficient lubricant supply to all critical areas can be challenging. Additionally, designing seals and protective covers to prevent contamination and retain lubrication presents a challenge, as the joint must maintain flexibility while ensuring adequate sealing.
4. Bearing Design and Wear: Universal joints rely on bearings to facilitate smooth rotation and to support the shafts. Designing the bearing arrangement to withstand the loads, maintain proper alignment, and resist wear is essential. Choosing the appropriate bearing type, such as needle bearings or plain bearings, and optimizing their size, material, and lubrication conditions are key challenges in the design process.
5. Manufacturability: Manufacturing universal joints with precision and consistency can be challenging due to their complex geometries and the need for tight tolerances. The manufacturing process must ensure accurate machining, assembly, and balancing of the joint components to achieve proper fit, alignment, and balance. Specialized machining techniques and quality control measures are often required to meet the desired specifications.
6. Cost and Size Optimization: Designing universal joints that are cost-effective and compact while meeting performance requirements can be a challenging task. Balancing the need for robustness, durability, and material efficiency with cost considerations requires careful engineering and optimization. Designers must strike a balance between performance, weight, space constraints, and manufacturing costs to create an efficient and economical universal joint.
7. Application-Specific Considerations: Designing universal joints for specific applications may introduce additional challenges. Factors such as environmental conditions, temperature extremes, exposure to corrosive substances, high-speed operation, or heavy-duty applications need to be carefully considered and addressed in the design and material selection process. Customization and adaptation of universal joints to meet unique application requirements can pose additional challenges.
Addressing these challenges in the design and manufacturing process requires a combination of engineering expertise, material science knowledge, advanced manufacturing techniques, and thorough testing and validation procedures. Collaboration between design engineers, manufacturing engineers, and quality control personnel is crucial to ensure the successful development and production of reliable universal joints.
In summary, the potential challenges in designing and manufacturing universal joints include misalignment compensation, torque transmission, lubrication and sealing, bearing design and wear, manufacturability, cost and size optimization, and application-specific considerations. Overcoming these challenges requires careful engineering, precision manufacturing processes, and consideration of various factors to achieve high-performance and reliable universal joints.
What is the lifespan of a typical universal joint?
The lifespan of a typical universal joint can vary depending on several factors. Here’s a detailed explanation:
The lifespan of a universal joint depends on various factors, including the quality of the joint, operating conditions, maintenance practices, and the specific application. While it is challenging to provide an exact lifespan, considering the following factors can help estimate the longevity of a universal joint:
- Quality and Materials: The quality of the universal joint and the materials used in its construction play a significant role in determining its lifespan. High-quality joints made from durable materials, such as alloy steels or stainless steels, tend to have longer lifespans compared to lower-quality or less robust joints made from inferior materials.
- Operating Conditions: The operating conditions in which the universal joint is used can significantly impact its lifespan. Factors such as torque levels, rotational speed, angular misalignment, vibration, temperature, and exposure to contaminants can all affect the joint’s performance and longevity. Operating the joint within its specified limits, avoiding excessive or extreme conditions, and providing proper maintenance can help extend its lifespan.
- Maintenance Practices: Regular maintenance is essential for maximizing the lifespan of a universal joint. Proper lubrication, periodic inspection for wear or damage, and timely replacement of worn components can help prevent premature failure. Adhering to the manufacturer’s recommended maintenance schedule and guidelines is crucial to ensure optimal performance and longevity.
- Application Requirements: The specific application requirements and demands placed on the universal joint influence its lifespan. Heavy-duty applications with high torque, frequent load fluctuations, or extreme operating conditions may result in increased stress and wear on the joint, potentially shortening its lifespan. Selecting a universal joint that is specifically designed and rated for the application’s requirements can help ensure a longer lifespan.
Given these factors, it is challenging to provide a precise lifespan for a typical universal joint. In some applications with proper maintenance and suitable operating conditions, a universal joint can last for several years. However, in demanding or harsh operating environments, or if subjected to excessive loads or misalignment, the lifespan of the joint may be shorter, requiring more frequent replacements.
It’s important to consult the manufacturer’s guidelines and recommendations for the specific universal joint being used, as they can provide more accurate information regarding its expected lifespan under different operating conditions. Additionally, monitoring the joint’s performance, conducting regular inspections, and addressing any signs of wear or deterioration can help identify the need for replacement and ensure safe and reliable operation.
What are the benefits of using a universal joint in a mechanical system?
Using a universal joint in a mechanical system offers several benefits that contribute to the efficient and reliable operation of the system. Here are some of the key advantages:
- Misalignment compensation: One of the primary benefits of a universal joint is its ability to compensate for misalignment between rotating shafts. Universal joints can effectively transmit rotary motion between shafts that are not perfectly aligned, allowing for flexibility in system design and assembly. This flexibility accommodates various installation constraints and helps to minimize stress and wear on components.
- Angular motion transmission: Universal joints enable the transmission of angular motion between shafts that are not parallel or collinear. They can transfer rotational movement even when the shafts are at different angles to each other. This capability is particularly useful in applications where the shafts need to be connected at non-linear or offset angles, providing versatility and enabling complex mechanical systems.
- Torque transmission: Universal joints are capable of transmitting torque between shafts efficiently. They allow for the transfer of power from one shaft to another without a direct and rigid connection. This feature is especially important in applications where there may be slight misalignment or movement between the shafts due to factors like suspension systems, articulation, or vibration.
- Reduced vibration and shock absorption: Universal joints can help dampen vibration andshocks in a mechanical system. They absorb and distribute the impact forces caused by uneven movement or external disturbances, reducing the transmission of vibrations to other parts of the system. This feature is particularly beneficial in applications where smooth operation and reduced wear and tear are essential, such as automotive drivelines or industrial machinery.
- Constant velocity transmission: Certain types of universal joints, such as double joints or constant velocity joints, provide constant velocity transmission. These joints eliminate speed variations and maintain a consistent rotational speed even when the input and output shafts are at different angles. Constant velocity transmission is crucial in applications where precise and uniform motion is required, such as automotive steering systems or robotics.
- Flexibility and articulation: Universal joints offer flexibility and articulation, allowing for movement and rotation in multiple directions. They can accommodate changes in the orientation and position of connected shafts, providing mechanical systems with the ability to adapt to dynamic conditions. This flexibility is particularly advantageous in applications involving moving parts, such as suspension systems, robotic arms, or machinery with articulating components.
- Compact design: Universal joints are relatively compact in size, making them suitable for applications with space constraints. Their compact design allows for efficient integration into mechanical systems without occupying excessive space. This feature is valuable in various industries, including automotive, aerospace, and robotics, where optimizing space utilization is crucial.
- Reliability and durability: Universal joints are designed to be durable and reliable, with the ability to withstand high loads, torque, and operating conditions. They are constructed from robust materials and undergo rigorous testing to ensure long-lasting performance. This reliability makes them suitable for demanding applications in industries such as automotive, manufacturing, agriculture, and more.
The benefits of using a universal joint in a mechanical system contribute to improved functionality, increased efficiency, and extended component lifespan. By enabling misalignment compensation, angular motion transmission, torque transfer, vibration reduction, constant velocity transmission, flexibility, and compact design, universal joints enhance the overall performance and reliability of mechanical systems.
editor by CX 2023-12-20