Product Description
| OE | 9757101104 |
| Vehicle model | Panamera 970 |
We are committed to the production and research and development of transmission shafts, as well as the sales of mid to high-end automotive transmission shafts. We serve high-quality customers with high-quality products. At present, we mainly produce Mercedes Benz, BMW, Audi, Volkswagen, Porsche, Volvo, Land Rover, Jaguar, Maserati, Ferrari, Lamborghini, and Bentley
Reasons for choosing us
1. High quality (quieter to move)
2. After sales worry free (one-on-1 service)
3. Factory direct sales (bypassing intermediaries)
4. Support for 1 custom thread
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| After-sales Service: | 12 Months |
|---|---|
| Condition: | New |
| Color: | Black |
| Certification: | ISO |
| Type: | Drive Shaft |
| Application Brand: | Porsche |
| Samples: |
US$ 120/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Are there any limitations or disadvantages associated with drive shafts?
While drive shafts are widely used and offer several advantages, they also have certain limitations and disadvantages that should be considered. Here’s a detailed explanation of the limitations and disadvantages associated with drive shafts:
1. Length and Misalignment Constraints:
Drive shafts have a maximum practical length due to factors such as material strength, weight considerations, and the need to maintain rigidity and minimize vibrations. Longer drive shafts can be prone to increased bending and torsional deflection, leading to reduced efficiency and potential driveline vibrations. Additionally, drive shafts require proper alignment between the driving and driven components. Misalignment can cause increased wear, vibrations, and premature failure of the drive shaft or its associated components.
2. Limited Operating Angles:
Drive shafts, especially those using U-joints, have limitations on operating angles. U-joints are typically designed to operate within specific angular ranges, and operating beyond these limits can result in reduced efficiency, increased vibrations, and accelerated wear. In applications requiring large operating angles, constant velocity (CV) joints are often used to maintain a constant speed and accommodate greater angles. However, CV joints may introduce higher complexity and cost compared to U-joints.
3. Maintenance Requirements:
Drive shafts require regular maintenance to ensure optimal performance and reliability. This includes periodic inspection, lubrication of joints, and balancing if necessary. Failure to perform routine maintenance can lead to increased wear, vibrations, and potential driveline issues. Maintenance requirements should be considered in terms of time and resources when using drive shafts in various applications.
4. Noise and Vibration:
Drive shafts can generate noise and vibrations, especially at high speeds or when operating at certain resonant frequencies. Imbalances, misalignment, worn joints, or other factors can contribute to increased noise and vibrations. These vibrations may affect the comfort of vehicle occupants, contribute to component fatigue, and require additional measures such as dampers or vibration isolation systems to mitigate their effects.
5. Weight and Space Constraints:
Drive shafts add weight to the overall system, which can be a consideration in weight-sensitive applications, such as automotive or aerospace industries. Additionally, drive shafts require physical space for installation. In compact or tightly packaged equipment or vehicles, accommodating the necessary drive shaft length and clearances can be challenging, requiring careful design and integration considerations.
6. Cost Considerations:
Drive shafts, depending on their design, materials, and manufacturing processes, can involve significant costs. Customized or specialized drive shafts tailored to specific equipment requirements may incur higher expenses. Additionally, incorporating advanced joint configurations, such as CV joints, can add complexity and cost to the drive shaft system.
7. Inherent Power Loss:
Drive shafts transmit power from the driving source to the driven components, but they also introduce some inherent power loss due to friction, bending, and other factors. This power loss can reduce overall system efficiency, particularly in long drive shafts or applications with high torque requirements. It is important to consider power loss when determining the appropriate drive shaft design and specifications.
8. Limited Torque Capacity:
While drive shafts can handle a wide range of torque loads, there are limits to their torque capacity. Exceeding the maximum torque capacity of a drive shaft can lead to premature failure, resulting in downtime and potential damage to other driveline components. It is crucial to select a drive shaft with sufficient torque capacity for the intended application.
Despite these limitations and disadvantages, drive shafts remain a widely used and effective means of power transmission in various industries. Manufacturers continuously work to address these limitations through advancements in materials, design techniques, joint configurations, and balancing processes. By carefully considering the specific application requirements and potential drawbacks, engineers and designers can mitigate the limitations and maximize the benefits of drive shafts in their respective systems.

How do drive shafts enhance the performance of automobiles and trucks?
Drive shafts play a significant role in enhancing the performance of automobiles and trucks. They contribute to various aspects of vehicle performance, including power delivery, traction, handling, and overall efficiency. Here’s a detailed explanation of how drive shafts enhance the performance of automobiles and trucks:
1. Power Delivery:
Drive shafts are responsible for transferring power from the engine to the wheels, enabling the vehicle to move forward. By efficiently transmitting power without significant losses, drive shafts ensure that the engine’s power is effectively utilized, resulting in improved acceleration and overall performance. Well-designed drive shafts with minimal power loss contribute to the vehicle’s ability to deliver power to the wheels efficiently.
2. Torque Transfer:
Drive shafts facilitate the transfer of torque from the engine to the wheels. Torque is the rotational force that drives the vehicle forward. High-quality drive shafts with proper torque conversion capabilities ensure that the torque generated by the engine is effectively transmitted to the wheels. This enhances the vehicle’s ability to accelerate quickly, tow heavy loads, and climb steep gradients, thereby improving overall performance.
3. Traction and Stability:
Drive shafts contribute to the traction and stability of automobiles and trucks. They transmit power to the wheels, allowing them to exert force on the road surface. This enables the vehicle to maintain traction, especially during acceleration or when driving on slippery or uneven terrain. The efficient power delivery through the drive shafts enhances the vehicle’s stability by ensuring balanced power distribution to all wheels, improving control and handling.
4. Handling and Maneuverability:
Drive shafts have an impact on the handling and maneuverability of vehicles. They help establish a direct connection between the engine and the wheels, allowing for precise control and responsive handling. Well-designed drive shafts with minimal play or backlash contribute to a more direct and immediate response to driver inputs, enhancing the vehicle’s agility and maneuverability.
5. Weight Reduction:
Drive shafts can contribute to weight reduction in automobiles and trucks. Lightweight drive shafts made from materials such as aluminum or carbon fiber-reinforced composites reduce the overall weight of the vehicle. The reduced weight improves the power-to-weight ratio, resulting in better acceleration, handling, and fuel efficiency. Additionally, lightweight drive shafts reduce the rotational mass, allowing the engine to rev up more quickly, further enhancing performance.
6. Mechanical Efficiency:
Efficient drive shafts minimize energy losses during power transmission. By incorporating features such as high-quality bearings, low-friction seals, and optimized lubrication, drive shafts reduce friction and minimize power losses due to internal resistance. This enhances the mechanical efficiency of the drivetrain system, allowing more power to reach the wheels and improving overall vehicle performance.
7. Performance Upgrades:
Drive shaft upgrades can be a popular performance enhancement for enthusiasts. Upgraded drive shafts, such as those made from stronger materials or with enhanced torque capacity, can handle higher power outputs from modified engines. These upgrades allow for increased performance, such as improved acceleration, higher top speeds, and better overall driving dynamics.
8. Compatibility with Performance Modifications:
Performance modifications, such as engine upgrades, increased power output, or changes to the drivetrain system, often require compatible drive shafts. Drive shafts designed to handle higher torque loads or adapt to modified drivetrain configurations ensure optimal performance and reliability. They enable the vehicle to effectively harness the increased power and torque, resulting in improved performance and responsiveness.
9. Durability and Reliability:
Robust and well-maintained drive shafts contribute to the durability and reliability of automobiles and trucks. They are designed to withstand the stresses and loads associated with power transmission. High-quality materials, appropriate balancing, and regular maintenance help ensure that drive shafts operate smoothly, minimizing the risk of failures or performance issues. Reliable drive shafts enhance the overall performance by providing consistent power delivery and minimizing downtime.
10. Compatibility with Advanced Technologies:
Drive shafts are evolving in tandem with advancements in vehicle technologies. They are increasingly being integrated with advanced systems such as hybrid powertrains, electric motors, and regenerative braking. Drive shafts designed to work seamlessly with these technologies maximize their efficiency and performance benefits, contributing to improved overall vehicle performance.
In summary, drive shafts enhance the performance of automobiles and trucks by optimizing power delivery, facilitating torque transfer, improving traction and stability, enhancing handling and maneuverability, reducing weight, increasing mechanical efficiency,and enabling compatibility with performance upgrades and advanced technologies. They play a crucial role in ensuring efficient power transmission, responsive acceleration, precise handling, and overall improved performance of vehicles.
What benefits do drive shafts offer for different types of vehicles and equipment?
Drive shafts offer several benefits for different types of vehicles and equipment. They play a crucial role in power transmission and contribute to the overall performance, efficiency, and functionality of various systems. Here’s a detailed explanation of the benefits that drive shafts provide:
1. Efficient Power Transmission:
Drive shafts enable efficient power transmission from the engine or power source to the wheels or driven components. By connecting the engine or motor to the driven system, drive shafts efficiently transfer rotational power, allowing vehicles and equipment to perform their intended functions. This efficient power transmission ensures that the power generated by the engine is effectively utilized, optimizing the overall performance and productivity of the system.
2. Versatility:
Drive shafts offer versatility in their applications. They are used in various types of vehicles, including cars, trucks, motorcycles, and off-road vehicles. Additionally, drive shafts are employed in a wide range of equipment and machinery, such as agricultural machinery, construction equipment, industrial machinery, and marine vessels. The ability to adapt to different types of vehicles and equipment makes drive shafts a versatile component for power transmission.
3. Torque Handling:
Drive shafts are designed to handle high levels of torque. Torque is the rotational force generated by the engine or power source. Drive shafts are engineered to efficiently transmit this torque without excessive twisting or bending. By effectively handling torque, drive shafts ensure that the power generated by the engine is reliably transferred to the wheels or driven components, enabling vehicles and equipment to overcome resistance, such as heavy loads or challenging terrains.
4. Flexibility and Compensation:
Drive shafts provide flexibility and compensation for angular movement and misalignment. In vehicles, drive shafts accommodate the movement of the suspension system, allowing the wheels to move up and down independently. This flexibility ensures a constant power transfer even when the vehicle encounters uneven terrain. Similarly, in machinery, drive shafts compensate for misalignment between the engine or motor and the driven components, ensuring smooth power transmission and preventing excessive stress on the drivetrain.
5. Weight Reduction:
Drive shafts contribute to weight reduction in vehicles and equipment. Compared to other forms of power transmission, such as belt drives or chain drives, drive shafts are typically lighter in weight. This reduction in weight helps improve fuel efficiency in vehicles and reduces the overall weight of equipment, leading to enhanced maneuverability and increased payload capacity. Additionally, lighter drive shafts contribute to a better power-to-weight ratio, resulting in improved performance and acceleration.
6. Durability and Longevity:
Drive shafts are designed to be durable and long-lasting. They are constructed using materials such as steel or aluminum, which offer high strength and resistance to wear and fatigue. Drive shafts undergo rigorous testing and quality control measures to ensure their reliability and longevity. Proper maintenance, including lubrication and regular inspections, further enhances their durability. The robust construction and long lifespan of drive shafts contribute to the overall reliability and cost-effectiveness of vehicles and equipment.
7. Safety:
Drive shafts incorporate safety features to protect operators and bystanders. In vehicles, drive shafts are often enclosed within a protective tube or housing, preventing contact with moving parts and reducing the risk of injury in the event of a failure. Similarly, in machinery, safety shields or guards are commonly installed around exposed drive shafts to minimize the potential hazards associated with rotating components. These safety measures ensure the well-being of individuals operating or working in proximity to vehicles and equipment.
In summary, drive shafts offer several benefits for different types of vehicles and equipment. They enable efficient power transmission, provide versatility in various applications, handle torque effectively, offer flexibility and compensation, contribute to weight reduction, ensure durability and longevity, and incorporate safety features. By providing these advantages, drive shafts enhance the performance, efficiency, reliability, and safety of vehicles and equipment across a wide range of industries.


editor by CX 2024-03-04
China Good quality Applicable to Porsche Panamera Drive Shaft 970 Series 97042101102 97042101104 Panamera Drive Shaft Universal Joint Disc Ball Cage Dust Cover Bearing
Product Description
| OE | 9757101104 |
| Vehicle model | Panamera 970 |
We are committed to the production and research and development of transmission shafts, as well as the sales of mid to high-end automotive transmission shafts. We serve high-quality customers with high-quality products. At present, we mainly produce Mercedes Benz, BMW, Audi, Volkswagen, Porsche, Volvo, Land Rover, Jaguar, Maserati, Ferrari, Lamborghini, and Bentley
Reasons for choosing us
1. High quality (quieter to move)
2. After sales worry free (one-on-1 service)
3. Factory direct sales (bypassing intermediaries)
4. Support for 1 custom thread
/* 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(/(.*?):(.*)$/))&&1
| After-sales Service: | 12 Months |
|---|---|
| Condition: | New |
| Color: | Black |
| Certification: | ISO |
| Type: | Drive Shaft |
| Application Brand: | Porsche |
| Samples: |
US$ 120/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

What maintenance practices are crucial for prolonging the lifespan of drive shafts?
To prolong the lifespan of drive shafts and ensure their optimal performance, several maintenance practices are crucial. Regular maintenance helps identify and address potential issues before they escalate, reduces wear and tear, and ensures the drive shaft operates smoothly and efficiently. Here are some essential maintenance practices for prolonging the lifespan of drive shafts:
1. Regular Inspection:
Performing regular inspections is vital for detecting any signs of wear, damage, or misalignment. Inspect the drive shaft visually, looking for cracks, dents, or any signs of excessive wear on the shaft itself and its associated components such as joints, yokes, and splines. Check for any signs of lubrication leaks or contamination. Additionally, inspect the fasteners and mounting points to ensure they are secure. Early detection of any issues allows for timely repairs or replacements, preventing further damage to the drive shaft.
2. Lubrication:
Proper lubrication is essential for the smooth operation and longevity of drive shafts. Lubricate the joints, such as universal joints or constant velocity joints, as recommended by the manufacturer. Lubrication reduces friction, minimizes wear, and helps dissipate heat generated during operation. Use the appropriate lubricant specified for the specific drive shaft and application, considering factors such as temperature, load, and operating conditions. Regularly check the lubrication levels and replenish as necessary to ensure optimal performance and prevent premature failure.
3. Balancing and Alignment:
Maintaining proper balancing and alignment is crucial for the lifespan of drive shafts. Imbalances or misalignments can lead to vibrations, accelerated wear, and potential failure. If vibrations or unusual noises are detected during operation, it is important to address them promptly. Perform balancing procedures as necessary, including dynamic balancing, to ensure even weight distribution along the drive shaft. Additionally, verify that the drive shaft is correctly aligned with the engine or power source and the driven components. Misalignment can cause excessive stress on the drive shaft, leading to premature failure.
4. Protective Coatings:
Applying protective coatings can help prolong the lifespan of drive shafts, particularly in applications exposed to harsh environments or corrosive substances. Consider using coatings such as zinc plating, powder coating, or specialized corrosion-resistant coatings to enhance the drive shaft’s resistance to corrosion, rust, and chemical damage. Regularly inspect the coating for any signs of degradation or damage, and reapply or repair as necessary to maintain the protective barrier.
5. Torque and Fastener Checks:
Ensure that the drive shaft’s fasteners, such as bolts, nuts, or clamps, are properly torqued and secured according to the manufacturer’s specifications. Loose or improperly tightened fasteners can lead to excessive vibrations, misalignment, or even detachment of the drive shaft. Periodically check and retighten the fasteners as recommended or after any maintenance or repair procedures. Additionally, monitor the torque levels during operation to ensure they remain within the specified range, as excessive torque can strain the drive shaft and lead to premature failure.
6. Environmental Protection:
Protecting the drive shaft from environmental factors can significantly extend its lifespan. In applications exposed to extreme temperatures, moisture, chemicals, or abrasive substances, take appropriate measures to shield the drive shaft. This may include using protective covers, seals, or guards to prevent contaminants from entering and causing damage. Regular cleaning of the drive shaft, especially in dirty or corrosive environments, can also help remove debris and prevent buildup that could compromise its performance and longevity.
7. Manufacturer Guidelines:
Follow the manufacturer’s guidelines and recommendations for maintenance practices specific to the drive shaft model and application. The manufacturer’s instructions may include specific intervals for inspections, lubrication, balancing, or other maintenance tasks. Adhering to these guidelines ensures that the drive shaft is properly maintained and serviced, maximizing its lifespan and minimizing the risk of unexpected failures.
By implementing these maintenance practices, drive shafts can operate reliably, maintain efficient power transmission, and have an extended service life, ultimately reducing downtime and ensuring optimal performance in various applications.

How do drive shafts enhance the performance of automobiles and trucks?
Drive shafts play a significant role in enhancing the performance of automobiles and trucks. They contribute to various aspects of vehicle performance, including power delivery, traction, handling, and overall efficiency. Here’s a detailed explanation of how drive shafts enhance the performance of automobiles and trucks:
1. Power Delivery: Drive shafts are responsible for transmitting power from the engine to the wheels, enabling the vehicle to move forward. By efficiently transferring power without significant losses, drive shafts ensure that the engine’s power is effectively utilized, resulting in improved acceleration and overall performance. Well-designed drive shafts with minimal power loss contribute to the vehicle’s ability to deliver power to the wheels efficiently.
2. Torque Transfer: Drive shafts facilitate the transfer of torque from the engine to the wheels. Torque is the rotational force that drives the vehicle forward. High-quality drive shafts with proper torque conversion capabilities ensure that the torque generated by the engine is effectively transmitted to the wheels. This enhances the vehicle’s ability to accelerate quickly, tow heavy loads, and climb steep gradients, thereby improving overall performance.
3. Traction and Stability: Drive shafts contribute to the traction and stability of automobiles and trucks. They transmit power to the wheels, allowing them to exert force on the road surface. This enables the vehicle to maintain traction, especially during acceleration or when driving on slippery or uneven terrain. The efficient power delivery through the drive shafts enhances the vehicle’s stability by ensuring balanced power distribution to all wheels, improving control and handling.
4. Handling and Maneuverability: Drive shafts have an impact on the handling and maneuverability of vehicles. They help establish a direct connection between the engine and the wheels, allowing for precise control and responsive handling. Well-designed drive shafts with minimal play or backlash contribute to a more direct and immediate response to driver inputs, enhancing the vehicle’s agility and maneuverability.
5. Weight Reduction: Drive shafts can contribute to weight reduction in automobiles and trucks. Lightweight drive shafts made from materials such as aluminum or carbon fiber-reinforced composites reduce the overall weight of the vehicle. The reduced weight improves the power-to-weight ratio, resulting in better acceleration, handling, and fuel efficiency. Additionally, lightweight drive shafts reduce the rotational mass, allowing the engine to rev up more quickly, further enhancing performance.
6. Mechanical Efficiency: Efficient drive shafts minimize energy losses during power transmission. By incorporating features such as high-quality bearings, low-friction seals, and optimized lubrication, drive shafts reduce friction and minimize power losses due to internal resistance. This enhances the mechanical efficiency of the drivetrain system, allowing more power to reach the wheels and improving overall vehicle performance.
7. Performance Upgrades: Drive shaft upgrades can be popular performance enhancements for enthusiasts. Upgraded drive shafts, such as those made from stronger materials or with enhanced torque capacity, can handle higher power outputs from modified engines. These upgrades allow for increased performance, such as improved acceleration, higher top speeds, and better overall driving dynamics.
8. Compatibility with Performance Modifications: Performance modifications, such as engine upgrades, increased power output, or changes to the drivetrain system, often require compatible drive shafts. Drive shafts designed to handle higher torque loads or adapt to modified drivetrain configurations ensure optimal performance and reliability. They enable the vehicle to effectively harness the increased power and torque, resulting in improved performance and responsiveness.
9. Durability and Reliability: Robust and well-maintained drive shafts contribute to the durability and reliability of automobiles and trucks. They are designed to withstand the stresses and loads associated with power transmission. High-quality materials, appropriate balancing, and regular maintenance help ensure that drive shafts operate smoothly, minimizing the risk of failures or performance issues. Reliable drive shafts enhance the overall performance by providing consistent power delivery and minimizing downtime.
10. Compatibility with Advanced Technologies: Drive shafts are evolving in tandem with advancements in vehicle technologies. They are increasingly being integrated with advanced systems such as hybrid powertrains, electric motors, and regenerative braking. Drive shafts designed to work seamlessly with these technologies maximize their efficiency and performance benefits, contributing to improved overall vehicle performance.
In summary, drive shafts enhance the performance of automobiles and trucks by optimizing power delivery, facilitating torque transfer, improving traction and stability, enhancing handling and maneuverability, reducing weight, increasing mechanical efficiency, enabling compatibility with performance upgrades and advanced technologies, and ensuring durability and reliability. They play a crucial role in ensuring efficient power transmission, responsive acceleration, precise handling, and overall improved performance of vehicles.

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 2024-02-06
in Dhanbad India sales price shop near me near me shop factory supplier 1300 1300k Series Ring Cold Machine Self-Aligning Ball Bearing manufacturer best Cost Custom Cheap wholesaler

Full use has been made of all types of superior methods and engineering to get to excelsior production. specialize in energy transmission items, CATV products, mechanical seal, hydraulic and Pheumatic, and promotional goods. In this way, our items have continued to acquire market place acceptance and customers fulfillment over the earlier handful of a long time. About Self-aligning Ball EPTT
Self-aligning ball bearings have two rows of balls and a common sphered raceway in the outer ring. The bearings are insensitive to angular misalignment of the shaft relative to the housing.
Self-aligning ball bearings create significantly less friction than any other type of rolling bearing, which enables them to operate cooler even at substantial speeds.
Self aligning ball bearings are non separable double-row radial bearings:
- Outstanding alignment compensation due to the spherical outer ring raceway
- Suited for lower to medium radial loads and lower thrust loads
- Obtainable in open and sealed versions, as well as in EPTTred bore (suffix K)
- StXiHu (West EPT) Dis.Hu (West EPT) Dis.rds: DIN 616, DIN 630
Sequence: 1200, 1300, 2200, 2300, 11200, 11300
Parameters
| EPTT No. | Boundary dimensions | Mass | ||
| mm | kg | |||
| d | D | B | #8776 | |
| 1300 | 10 | 35 | 11 | .058 |
| 1301 | twelve | 37 | twelve | .066 |
| 1302 | 15 | forty two | thirteen | .092 |
| 1303 | seventeen | forty seven | fourteen | .128 |
| 1304 | 20 | fifty two | fifteen | .16 |
| 1304K | 20 | 52 | fifteen | .158 |
| 1305 | twenty five | 62 | 17 | .255 |
| 1305K | twenty five | sixty two | 17 | .251 |
| 1306 | thirty | seventy two | 19 | .383 |
| 1306K | thirty | seventy two | 19 | .377 |
| 1307 | 35 | 80 | 21 | .five |
| 1307K | 35 | 80 | 21 | .492 |
| 1308 | forty | ninety | 23 | .709 |
| 1308K | 40 | 90 | 23 | .698 |
| 1309 | 45 | 100 | twenty five | .953 |
| 1309K | 45 | one hundred | 25 | .938 |
| 1310 | fifty | a hundred and ten | 27 | one.two |
| 1310K | fifty | a hundred and ten | 27 | 1.eighteen |
| 1311 | fifty five | 120 | 29 | one.58 |
| 1311K | 55 | 120 | 29 | 1.fifty six |
| 1312 | 60 | 130 | 31 | 1.ninety six |
| 1312K | sixty | a hundred thirty | 31 | 1.93 |
| 1313 | sixty five | one hundred forty | 33 | 2.42 |
| 1313K | sixty five | 140 | 33 | 2.38 |
| 1314 | 70 | a hundred and fifty | 35 | two.99 |
| 1315 | seventy five | one hundred sixty | 37 | 3.55 |
| 1315K | seventy five | one hundred sixty | 37 | three.5 |
| 1316 | 80 | 170 | 39 | 4.17 |
| 1316K | 80 | a hundred and seventy | 39 | 4.eleven |
| 1317 | 85 | a hundred and eighty | 41 | four.ninety six |
| 1317K | eighty five | 180 | forty one | four.89 |
| 1318 | 90 | a hundred ninety | forty three | 5.78 |
| 1318K | ninety | one hundred ninety | 43 | 5.sixty nine |
| 1319 | 95 | two hundred | 45 | six.69 |
| 1319K | ninety five | 200 | 45 | 6.59 |
| 1320 | one hundred | 215 | 47 | eight.3 |
| 1320K | 100 | 215 | forty seven | 8.19 |
| 1321 | one zero five | 225 | 49 | 10 |
| 1322 | a hundred and ten | 240 | 50 | eleven.eight |
| 1322K | 110 | 240 | fifty | eleven.seven |
We also supply amp make
| Ball EPTT | Deep Groove Ball EPTT |
sixty **,618 ** (1008), 619**(1009),sixty two **, 63 **, 64 **, 160 **(70001 ) |
| Thrust Ball EPTT |
511 ** (eighty one) ,512 **(eighty two) ,513 (83) ,514 ** (eighty four) series and Angular Make contact with Thrust all EPTTs like: 5617 ** (1687) ,5691 ** (91681), 5692 ** (91682) series |
|
| Angular Speak to Ball bearing |
SN718 **(11068 ) ,70 ** 72 **,73 **, and B (sixty six), C (36), AC (forty six) collection otherwise incEPTT QJ and QJF sequence |
|
| Roller EPTT | Spherical Roller bearing |
239**, 230**,240**, 231**, 241**, 222**, 232**, 223**, 233**, 213**, 238**, 248**, 249**and EPTT series incEPTT 26** i.e 2638 (3738), 2644 (3844) and so on |
| EPTTper Roller EPTT |
329**(20079),210**(71), 320**(20071),302**(72), 322**(seventy five), 303**(seventy three), 313**(273),323**(seventy six), 3519**(1571), 3529**(2571),3510**(971), 3520**(2571),3511**(10977), 3521**(20977), 3522**(975), 319**(10076),3819**(1571),3829**(2571), 3810**(777,771), 3820**(2571), 3811**(10777,777) for example: 77752, 77788, 77779 and also incEPTT Inch series bearings these kinds of as 938/932 one and double row i.e M255410CD and so on. |
|
| Thrust Roller EPTT |
292**(90392), 293**(90393),294**(90394),994**(90194), and 9069 series. |
|
| Cylindrical Roller EPTT |
NU10**, NU2**,NU22**, NU3**,NU23**, NU4**, N, NJ ,NUP collection as properly as NB, NN, NNU collection of huge bearings, and we also have SpEPTT EPTTs 412740, 422740 employed in cement sector.And FC, FCD sequence utilised in steel Sector. |
Advantages and Features
- XSY bearing EPTT, Ltd. has its own manufacturing facility. We make sure to offer you the most aggressive price.
- XSY bearing EPTT, Ltd. has a skilled R ampD staff and an after-sale staff, so what you purchase is leading-stop, and what you use is high quality amp service guaranteed.
- XSY bearing EPTT, Ltd. is a bearing producer considering that 1990. Prosperous experience tends to make us much more professional.
- The bearing is EPTT toughness, substantial pace and minimal sounds.
- OEM amp ODM are obtainable.
- All types of bearing simples are obtainable.
Aout us
ZheJiang XSY bearing EPTT, Ltd. is an EPTTrprise majoring in the producing of precision bearings. It has a integrate service EPT of study, creating and income. The bearings with manufacturer trademark of quotEPT quot acquire good quality reputation in domestic bearing marketplace. The company is equipped with contemporary production faXiHu (West EPT) Dis.Hu (West EPT) Dis.ties and EPTd testing instruments, mainly specific to EPTTed top-selection goods. We skillfully generate precise bearings this kind of as spherical roller bearings, thrust ball bearings, deep groove ball bearings, cylindrical roller bearings, EPTTred roller bearings, thrust spherical roller bearings and so on. The productions are widely employed as auXiHu (West EPT) Dis.liary products in metallurgy, EPT EPTT, EPT, petroleum, chemical, coal, cement, paper creating, wind electrical power, weighty EPTTry, engineering EPTTry, port EPTTry and other EPTT.
Packaging amp Shipments
EPTT Particulars:
1.tube /plastic bag box cartons pallets
2.plastic bag one box cartons pallets
three.EPTT EPTT cartons pallets
Shipping and delivery Details:
Less than 1000PCS, produce in five daEPTTby Convey or Airplane.
Far more than 1000PCS, deliver inside of 15 daEPTTby sea.
Application
As their roller linearly come into contact with interior and outer ring with significantly less coeffcient frictiion, these bearings have really excellent potential of radial load, ideal for electric motors, cars, tasnsmission shafts, EPT shafts and so on. EPTT row cylindrical roller bearings are excellent at the spindles of EPTT tools.
FAQ
one. Are you a manufacturing facility or a buying and selling organization?
ZheJiang XSY EPTT EPTT, Ltd. is a skilled manufacture of deep groove ball bearings and other bearings.
two. Is OEM offered?
Of course, OEM is obtainable. We have professional designer to help your manufacturer promotion.
three. Is the sample obtainable?
Indeed, samples are accessible for you to check the quality.
four. Have the merchandise been examined ahead of shipping and delivery?
Sure, all of our bearings have been examined just before shipping.
five. How EPTT is your supply time?
As described over, there are various varieties of delivery for your buy. We make sure to provide goods once all goods are developed and examined.
6. What is your terms of payment ?
You can pay out by T/T, L/C, Westunion, Paypal,and many others., and it can be negotiated in accordance to various orders with different volume.
7. Can we check out your manufacturing facility ?
Positive. Welcome to XSY EPTT EPTT, Ltd. and provide your variety tips.
Contact us


Flanged made in China replacement parts Ball Bearing 1 1 2in dia 500rpm

“We are always serving our customers with our best products.” EPT#TW10 Specifications
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| Ball Material: Carbon Steel | Flange Thickness: 0.07" |
| Width: 1/2" | Dynamic Load Capacity: 135 lb. |
| Temp. Range: -25 Degrees F to 130 Degrees F | Lubrication: Gadus S2 V100 2 |
| Max. RPM: 500 | Flange Dia.: 1-39/64" |
| Outside Dia.: 1-1/2" | Bore Dia.: 5/8" |
| Seal Material: Synthetic Rubber | Bearing Type: Ball |
| Item: Unground Flanged Radial Ball Bearing | Country of Origin (subject to change): United States |
Help us improve our product information
EPT offers deep groove, steel, ceramic, and radial ball bearings for your convenience. EPTUnground Flanged Radial Ball Bearing include characteristics like: Width: 1/2″, Bearing Type: Ball.
Description




china Trusted and Audited Suppliers supplier high quality cheap price deep groove ball bearing 6714 2rs

It has set up steady cooperation with many properly recognized universities and institutes in china such as, Zhejiang University, Jilin College, Complex committee of nationwide chain push common, Institute of national chain generate, Zhejiang application engineering content institute, Huhan substance safety institute and it cooperated to discovered China 1st Auto chain institute with Nationwide chain travel institute.
Overview
Fast Details
- Type:
-
BALL, Ball Bearing, Ball
- Framework:
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Deep Groove, Deep Groove
- Relevant Industries:
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Building Material Outlets, Producing Plant, Equipment Restore Outlets, Retail, Promoting Organization
- Bore Dimension:
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3 – 100 mm
- Design Variety:
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6000
- Precision Ranking:
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P0 P6 P5 P4 P2
- Seals Kind:
-
Open up ZZ 2RS RS
- Quantity of Row:
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single row
- Place of Origin:Zhejiang, China
- Application:
-
equipment
- Substance:
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Chrome Metal, Carbon metal,Stainless Steel
- Merchandise title:
-
deep groove bearings
- Clearance:
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C0,C2,C3
- Vibration and Sounds amount:
-
Z1V1, Z2V2
- Certificate:
-
ISO9001
Offer Potential
- Provide Ability:
- 2000000 Piece/Parts for every Month deep groove bearings
Packaging & Delivery
- Packaging Specifics
- 2. Personal Paper Box/Carton/Pallet
three. As the clients’ necessity”>1. Industrial Exporting Package with anti-tarnish paper/Carton/Pallet
2. Personal Paper Box/Carton/Pallet
3. As the clients’ requirement
- Port
- Qingdao/Shanghai/Tianjin/Guangzhou
On the internet Customization
HangZhou At any time-Energy transmission Co. Ltd. One particular of branch of Ever-Electricity Team – the greatest China transmisssion provider. With 1200 employee and precision products, we generate high top quality goods to Usa and EU and other regions.
Solution parameter
Custom made all varieties of bearings
| Single Row Radial Ball Bearings | Miniature Bearings |
Self-Aligning Ball Bearings |
Angular Speak to Ball Bearings | ||
| Metric | Inch | Single Row | Double Row | ||
| 6900 Collection | RLS Collection | 670 Sequence | 1200 Series | 7000 Collection | 5200 Series |
| 6000 Collection | RMS Sequence | 680 Collection | 1300 Sequence | 7200 Series | 5300 Sequence |
| 6200 Sequence | R Collection | 690 Sequence | 2200 Collection | 7300 Sequence | |
| 6300 Collection | 1600 Collection | 600 Sequence | 2300 Sequence | ||
| 6400 Sequence | 3000 Sequence | 620 Sequence | |||
| 16000 Collection | 630 Collection | ||||
| BR00 Collection | |||||
| Spherical Roller Bearings |
Cylindrical Roller Bearings |
Tapered Roller Bearings |
Needle Roller Bearings |
Thrust Roller Bearings |
Thrust Roller Bearings |
| 23000 Collection | N Collection | 30200 Series | K Collection | 51100 Sequence | 29200 Sequence |
| 24000 Sequence | NU Collection | 30300 Collection | NA Series | 51200 Series | 29300 Series |
| 22200 Series | NJ Collection | 31300 Series | NKI Sequence | 51300 Collection | 29400 Collection |
| 22300 Series | NUP Sequence | 32200 Sequence | RNA Series | 51400 Collection | two hundred/500 Sequence |
| 23200 Series | NNU Sequence | 32300 Collection | NK Sequence | 52200 Sequence | 200/600 Sequence |
| NF Series | LM Sequence | HK Collection | 52300 Collection | two hundred/seven-hundred Collection | |
| NN Collection | JLM Series | BK Series | 52400 Series | ||
| JM Sequence | 53200 Sequence | ||||
| L Collection | 53300 Collection | ||||
| 53400 Collection | |||||
| 54200 Sequence | |||||
| 54300 Collection | |||||
| 54400 Collection | |||||
Please get in touch with us for any bearings unlisted here.
Item present
Pillow block bearing
skateboard bearings
Much more Merchandise
Company Info
Founded in May possibly 1979, the yr when China started its open up plan, we are a said owned extensive organization combining “industry & trading, technologies & trading”. In 2002, our firm changed from condition-owned business to personal owned company.
Backed up by strong economic electricity, innovative amenities & technology, and enormous production functionality of numerous factories, Xinguang has been establishing speedily in enterprise given that its basis build extended- phrase and welcoming romantic relationship with many buyers from most places of the planet.
Now, our workers are much more than sixty, in which 50 percent of them are engineers. Possibly what can make us various from other investing organizations is that we have a special personnel of the two businessmen and seasoned mechanical engineers, who have been operating in the sector for many years. This feature of us functions an vital position in top quality management, value control, and provider efficiency.
Bearings & energy transmission factors are our main export products. Our bearings, chains, sprockets, pulleys, tapered bushings, and shaft collars have been mass -exported to different international locations and locations this sort of as North The united states, Europe, Africa, South America and Southeast Asia.
Our good quality goods, prompt shipping and delivery, and competitive pricing have obtained us considerably praise from the consumers. By the difficult function of our workers via thirty several years, Xinguang has grow to be 1 of the principal exporters of bearings& energy transmission components in China.
We welcome buyers from the whole entire world to cooperate with us.
Make contact with us