Descripción del Producto
As a professional manufacturer for propeller shaft, we have +800 items for all kinds of car, main suitable
for AMERICA & EUROPE market.
Our advantage:
1. Full range of products
2. MOQ qty: 5pcs/items
3. Delivery on time
4: Warranty: 1 YEAR
5. Develope new items: FREE
| OEM NO. | 65-5012 37100-5712 936-724 |
| Solicitud | for CZPT Tacoma 07-14 |
| Material | SS430/45# steel |
| Balancing Standrad | G16, 3200rpm |
| Garantía | One Year |
For some items, we have stock, small order (+3000USD) is welcome.
The following items are some of propeller shafts for Toyota, If you need more information, pls contact us for ASAP.
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Propeller Shaft for TOYOTA |
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OEM |
Solicitud |
OEM |
Solicitud |
| 37302-20040 | for TOYOTA | 37110-65710 | for CZPT Land Cruiser 77-80 |
| 37120-0K030 | for TOYOTA | 37110-65710 | for CZPT Land Cruiser 81-85 |
| 37120-30420 | for TOYOTA | 37140-60170 | for CZPT Land Cruiser 85-87 |
| 37140-6571 | for TOYOTA | 37140-65710 | for CZPT Land Cruiser 88-90 |
| 37140-35050 | for TOYOTA | 37140-6 0571 | for CZPT Land Cruiser 90-06 |
| 37140-60480 | for CZPT 4Runner 03-09 | 37140-60540 | for CZPT Land Cruiser 90-07 |
| 37110-6A440 | for CZPT 4Runner 03-09 | 37110-60450 | for CZPT Land Cruiser 90-92 |
| 37140-60380 | for CZPT 4Runner 10-18 | 37110-6571 | for CZPT Land Cruiser 90-99 |
| 37140-35060 | for CZPT 4Runner 88-95 | 37140-65710 | for CZPT Land Cruiser 90-99 |
| 65-9919 | for CZPT 4Runner 89-95 | 37110-60460 | for CZPT Land Cruiser 91-97 |
| 37140-35090 | for CZPT 4Runner 89-95 | 37110-60520 | for CZPT Land Cruiser 92-97 |
| 37140-35071 | for CZPT 4Runner 90-92 | 37110-6A620 | for CZPT Land Cruiser 98-07 |
| 37140-35130 | for CZPT 4Runner 96-00 | 37110-6A250 | for CZPT Land Cruiser 99-00 |
| 936-711 | for CZPT 4Runner 96-02 | 37110-6A310 | for CZPT Land Crusier |
| 37110-6571 | for CZPT 4Runner 96-20 | 37110-6A610 | for CZPT Land Crusier 98-02 |
| 37110-3D300 | for CZPT 4Runner 96-20 | 65-9375 | for CZPT Pickup 79-83 |
| 37110-3D060 | for CZPT 4Runner 97-02 | 37140-35013 | for CZPT Pickup 80-83 |
| 37140-35190 | for CZPT 4Runner 99-02 | 65-9376 | for CZPT Pickup 84-87 |
| 37120-30390 | for CZPT Crown | 65-9842 | for CZPT Previa 91-97 |
| 37100-48571 | for CZPT Highlander 01-07 | 37100-42060 | for CZPT RAV4 01-05 |
| 37100-48030 | for CZPT Highlander 08-14 | 37100-42090 | for CZPT RAV4 06-16 |
| 37110-60A20 | for CZPT Hilux | 37110-34120 | for CZPT Sequoia 07 |
| 37140-0K571 | for CZPT Hilux | 37100-45571 | for CZPT Sienna 04-10 |
| 37100-0K181 | for CZPT Hilux | 37100-45571 | for CZPT SIENNA 2011-2018 |
| 37140-0K030 | for CZPT Hilux 05-11 | 936-728 | for CZPT Tacoma 05-15 |
| 37100-0K091 | for CZPT Hilux 05-15 | 37100-5712 | for CZPT Tacoma 07-14 |
| 37100-0K081 | for CZPT Hilux 05-15 | 936-708 | for CZPT Tacoma 2.7L 99-04 |
| 37100-0K480 | for CZPT Hilux 2571 | 37100-35750 | for CZPT Tacoma 2004 |
| 37140-35030 | for CZPT Hilux 93-95 | 37100-5712 | for CZPT Tacoma 2011-2015 |
| 37100-0K030 | for CZPT Hilux 05- | 936-738 | for CZPT Tacoma 4.0L 05-15 |
| 37110-60330 | for CZPT HJ60 82-84 | 37100-3D240 | for CZPT Tacoma 95-04 |
| 371002A190 | for CZPT JZX100 96-00 | 37140-35180 | for CZPT Tacoma 95-04 |
| 37140-60121 | for CZPT Land Cruiser | 37100-35820 | for CZPT Tacoma 95-99 |
| 37140-65710 | for CZPT Land Cruiser | 37100-3D250 | for CZPT Tacoma 98-04 |
| 37140-65710 | for CZPT Land Cruiser | 37100-3D260 | for CZPT Tacoma 99-04 |
| 37140-60320 | for CZPT Land Cruiser | 936-717 | for CZPT Tundra 04 |
| 37140-60330 | for CZPT Land Cruiser | 37100-34130 | for CZPT Tundra 05-06 |
| 37140-6571 | for CZPT Land Cruiser | 65-9257 | for CZPT Tundra 2001-2004 |
| 37140-60430 | for CZPT Land Cruiser | 37100-34120 | for CZPT Tundra 4.7L 05-06 |
| 37140-60450 | for CZPT Land Cruiser | 37110-6A430 | for CZPT Land Cruiser 00-02 |
| 37140-6A610 | for CZPT Land Cruiser | 37140-6571 | for CZPT Land Cruiser 02-09 |
| 37140-60080 | for CZPT Land Cruiser | 37110-60A50 | for CZPT Land Cruiser 07 |
| 37110-60620 | for CZPT Land Cruiser | 37140-60590 | for CZPT Land Cruiser 08-15 |
| 37110-6A260 | for CZPT Land Cruiser | 37140-60090 | for CZPT Land Cruiser 74-80 |
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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.

¿Cómo mejoran los ejes de transmisión el rendimiento de los automóviles y camiones?
Los ejes de transmisión desempeñan un papel fundamental en la mejora del rendimiento de automóviles y camiones. Contribuyen a diversos aspectos del desempeño del vehículo, como la entrega de potencia, la tracción, el manejo y la eficiencia general. A continuación, se presenta una explicación detallada de cómo los ejes de transmisión mejoran el rendimiento de automóviles y camiones:
1. Suministro de energía: 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. Transferencia de par: Los ejes de transmisión facilitan la transferencia del par motor a las ruedas. El par motor es la fuerza de rotación que impulsa el vehículo hacia adelante. Los ejes de transmisión de alta calidad con una adecuada capacidad de conversión de par garantizan que el par generado por el motor se transmita eficazmente a las ruedas. Esto mejora la capacidad del vehículo para acelerar rápidamente, remolcar cargas pesadas y subir pendientes pronunciadas, optimizando así su rendimiento general.
3. Tracción y estabilidad: Los ejes de transmisión contribuyen a la tracción y estabilidad de automóviles y camiones. Transmiten potencia a las ruedas, permitiéndoles ejercer fuerza sobre la superficie de la carretera. Esto permite que el vehículo mantenga la tracción, especialmente durante la aceleración o al circular por terrenos resbaladizos o irregulares. La eficiente transmisión de potencia a través de los ejes de transmisión mejora la estabilidad del vehículo al garantizar una distribución equilibrada de la potencia a todas las ruedas, lo que optimiza el control y la maniobrabilidad.
4. Manejo y maniobrabilidad: Los ejes de transmisión influyen en el manejo y la maniobrabilidad de los vehículos. Establecen una conexión directa entre el motor y las ruedas, lo que permite un control preciso y una respuesta ágil. Los ejes de transmisión bien diseñados, con una holgura mínima, contribuyen a una respuesta más directa e inmediata a las acciones del conductor, mejorando la agilidad y la maniobrabilidad del vehículo.
5. Reducción de peso: Los ejes de transmisión pueden contribuir a la reducción de peso en automóviles y camiones. Los ejes de transmisión ligeros, fabricados con materiales como aluminio o compuestos reforzados con fibra de carbono, reducen el peso total del vehículo. Esta reducción de peso mejora la relación potencia-peso, lo que se traduce en una mejor aceleración, manejo y eficiencia de combustible. Además, los ejes de transmisión ligeros reducen la masa rotacional, lo que permite que el motor acelere más rápidamente, mejorando aún más el rendimiento.
6. Eficiencia mecánica: Los ejes de transmisión eficientes minimizan las pérdidas de energía durante la transmisión de potencia. Al incorporar características como rodamientos de alta calidad, sellos de baja fricción y lubricación optimizada, los ejes de transmisión reducen la fricción y minimizan las pérdidas de potencia debidas a la resistencia interna. Esto mejora la eficiencia mecánica del sistema de transmisión, permitiendo que llegue más potencia a las ruedas y optimizando el rendimiento general del vehículo.
7. Mejoras de rendimiento: 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. Compatibilidad con modificaciones de rendimiento: Las modificaciones de rendimiento, como las mejoras del motor, el aumento de la potencia o los cambios en el sistema de transmisión, suelen requerir ejes de transmisión compatibles. Los ejes de transmisión diseñados para soportar mayores cargas de torsión o adaptarse a configuraciones de transmisión modificadas garantizan un rendimiento y una fiabilidad óptimos. Permiten que el vehículo aproveche eficazmente la mayor potencia y el par motor, lo que se traduce en un mejor rendimiento y una mayor capacidad de respuesta.
9. Durabilidad y fiabilidad: Los ejes de transmisión robustos y bien mantenidos contribuyen a la durabilidad y fiabilidad de automóviles y camiones. Están diseñados para soportar las tensiones y cargas asociadas a la transmisión de potencia. Los materiales de alta calidad, el equilibrado adecuado y el mantenimiento regular garantizan un funcionamiento suave de los ejes de transmisión, minimizando el riesgo de fallos o problemas de rendimiento. Los ejes de transmisión fiables mejoran el rendimiento general al proporcionar una entrega de potencia constante y minimizar el tiempo de inactividad.
10. Compatibilidad con tecnologías avanzadas: Los ejes de transmisión evolucionan a la par de los avances en la tecnología automotriz. Cada vez se integran más con sistemas avanzados como los sistemas de propulsión híbridos, los motores eléctricos y el frenado regenerativo. Los ejes de transmisión diseñados para funcionar a la perfección con estas tecnologías maximizan su eficiencia y rendimiento, contribuyendo a una mejora general del desempeño del vehículo.
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.

How do drive shafts handle variations in length and torque requirements?
Drive shafts are designed to handle variations in length and torque requirements in order to efficiently transmit rotational power. Here’s an explanation of how drive shafts address these variations:
Length Variations:
Drive shafts are available in different lengths to accommodate varying distances between the engine or power source and the driven components. They can be custom-made or purchased in standardized lengths, depending on the specific application. In situations where the distance between the engine and the driven components is longer, multiple drive shafts with appropriate couplings or universal joints can be used to bridge the gap. These additional drive shafts effectively extend the overall length of the power transmission system.
Additionally, some drive shafts are designed with telescopic sections. These sections can be extended or retracted, allowing for adjustments in length to accommodate different vehicle configurations or dynamic movements. Telescopic drive shafts are commonly used in applications where the distance between the engine and the driven components may change, such as in certain types of trucks, buses, and off-road vehicles.
Torque Requirements:
Drive shafts are engineered to handle varying torque requirements based on the power output of the engine or power source and the demands of the driven components. The torque transmitted through the drive shaft depends on factors such as the engine power, load conditions, and the resistance encountered by the driven components.
Manufacturers consider torque requirements when selecting the appropriate materials and dimensions for drive shafts. Drive shafts are typically made from high-strength materials, such as steel or aluminum alloys, to withstand the torque loads without deformation or failure. The diameter, wall thickness, and design of the drive shaft are carefully calculated to ensure it can handle the expected torque without excessive deflection or vibration.
In applications with high torque demands, such as heavy-duty trucks, industrial machinery, or performance vehicles, drive shafts may have additional reinforcements. These reinforcements can include thicker walls, cross-sectional shapes optimized for strength, or composite materials with superior torque-handling capabilities.
Furthermore, drive shafts often incorporate flexible joints, such as universal joints or constant velocity (CV) joints. These joints allow for angular misalignment and compensate for variations in the operating angles between the engine, transmission, and driven components. They also help absorb vibrations and shocks, reducing stress on the drive shaft and enhancing its torque-handling capacity.
In summary, drive shafts handle variations in length and torque requirements through customizable lengths, telescopic sections, appropriate materials and dimensions, and the inclusion of flexible joints. By carefully considering these factors, drive shafts can efficiently and reliably transmit power while accommodating the specific needs of different applications.
<img src="https://img.hzpt.com/img/Drive-shaft/drive-shaft-l1.webp" alt="China factory 37100-04342 for CHINAMFG Tacoma 07-14 Propshaft Tail Shaft Drive Shaft Manufacturer “><img src="https://img.hzpt.com/img/Drive-shaft/drive-shaft-l2.webp" alt="China factory 37100-04342 for CHINAMFG Tacoma 07-14 Propshaft Tail Shaft Drive Shaft Manufacturer “>
editor by lmc 2024-09-09