Descripción del Producto
Customized High Precision Spare Parts Auto/Truck/Drive/Gear/Spline/Propeller/Half/Sleeve/Machinery/Sliding/Transmission Axle Shaft 42CrMo 20CrMoTi
(1) Accessory products of the truck, the product quality is stable and reliable.
(2) Forged with 42CrMo material and heat treated and tempered for 32 degrees, so that the half shaft has stronger toughness and is not easy to break and bend.
(3) Processed in the machining center, ensure that the products have rigorous dimensional coordinates to ensure 100% qualified rate of products.
(4) Products are inspected 1 by 1 and delivered out of the warehouse, with unified laser identification to ensure product traceability.
(5) Various sizes of axle shafts can be customized to meet customer needs.
(6) The unified brand carton, inner bag and integral foam packaging, which is strong and beautiful.
Factory Show
Más productos
| Truck Model | Sinotruk, Shacman, CHINAMFG Auman, CHINAMFG Xihu (West Lake) Dis., Xihu (West Lake) Dis.feng, Xihu (West Lake) Dis.feng Liuqi Balong, North BENZ( BEIBEN), C&C, JAC, etc. | |
| Product catalogue | Axle | Wheel Assembly |
| Differential Assembly | ||
| Main Reducer Assembly | ||
| Inner Ring Gear& Bracket | ||
| Basin Angle Gear/ Bevel Gear | ||
| Axle Shaft/ Half Shaft & Through Shaft | ||
| Axle Housing& Axle Assembly | ||
| Steering knuckle & Front Axle | ||
| Gear | ||
| Brake Drum& Wheel Hub | ||
| Flange | ||
| Bearing | ||
| Main Reducer Housing | ||
| Oil Seal Seat | ||
| Nut& Shim Series | ||
| Brake Backing Plate | ||
| Chassis Support Products | Leaf Spring Bracket | |
| Drop Arm Series | ||
| Bracket Series | ||
| Leaf Spring Shackle Series | ||
| Balanced Suspension Series | Balance Shaft Assembly | |
| Balance Shaft Housing | ||
| Axle Spring Seat | ||
| Thrust Rod | ||
| Balance Shaft Parts | ||
| Shock Absorber Series | Shock Absorber | |
| Shock Absorbing Airbag | ||
| Steering System | Power Steering Pump | |
| Power Steering Gear | ||
| Rubber Products | Oil Seal | |
| Rubber Support | ||
| Thrust Rod Rubber Core | ||
| Truck Belt | ||
| Engine support | ||
| Other | ||
| Clutch Series | Clutch Pressure Plate | |
| Clutch Disc | ||
| Flywheel Assembly | ||
| Flywheel Ring Gear | ||
| Adjusting Arm Series | ||
Función
Heavy trucks usually have double rear axles. If they are driven separately, they need to use 2 transmission shafts or add a transfer case at the output of the gearbox, which is heavy and cumbersome. Now a through shaft is designed in the middle axle to solve this problem. Only 1 transmission shaft is needed to drive 2 rear axles at the same time.
Embalaje y envío
Exhibition
Preguntas frecuentes
Q1. Are you a factory or trading company?
We are a factory integrating research, development, production and sales.
Q2. What are the advantages of your products?
We support product customization to meet customer needs for special products. We can strictly control the products from raw materials to production, processing, product quality inspection, delivery, packaging, etc., and provide customers with high-end products and the most advantageous prices.
Q3. How about products price?
We are a factory, all products are direct sale at factory price. For the same price, we will provide the best quality; for the same quality, we have the most advantageous price.
Q4. What is your terms of packing?
We have branded packaging and neutral packaging, and we can also do what you want with authorization. This is flexible.
Q5. How to guarantee your after-sales service?
Strict inspection during production, Strictly check the products before shipment to ensure our packaging in good condition. Track and receive feedback from customer regularly. Our products warranty is 365 days.
Each product provides quality assurance service. If there is a problem with the product within the warranty period, the customer can negotiate with us in detail about the related claims, and we will do our best to satisfy the customer.
Certifications
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| Material: | 45#Steel, 42CrMo, 20crmoti |
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| Carga: | Eje de transmisión |
| Precisión dimensional del diámetro del muñón: | High Precision |
| Muestras: | US$ 29/Piece 1 unidad (pedido mínimo) | Order Sample |
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| Personalización: | Disponible | Solicitud personalizada |
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.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}
| 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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¿Cómo contribuyen los ejes estriados a una transmisión de potencia eficiente?
Spline shafts play a vital role in enabling efficient power transmission in various mechanical systems. Here’s a detailed explanation of how spline shafts contribute to efficient power transmission:
1. Transmisión de par:
Los ejes estriados están diseñados para transmitir par motor de un componente a otro. Proporcionan una conexión firme y antideslizante que permite una transferencia de potencia eficiente sin deslizamiento ni pérdida de energía. Las estrías del eje se acoplan con las estrías correspondientes del componente de acoplamiento, creando una conexión mecánica robusta para la transmisión de par.
2. Distribución de carga:
Spline shafts distribute the applied load evenly across the engagement surfaces. The teeth or grooves on the shaft’s spline profile ensure that the load is shared across multiple contact points. This even load distribution helps prevent localized stress concentrations and reduces the risk of premature wear or failure. Efficient load distribution ensures that power is transmitted smoothly and reliably.
3. Compensación de desalineación:
Los ejes estriados permiten cierto grado de desalineación entre los componentes acoplados. El diseño del perfil estriado posibilita la desalineación angular o paralela sin comprometer la capacidad de transmisión de potencia. Esta capacidad de compensación de desalineación es crucial para mantener una transmisión de potencia eficiente en situaciones donde la alineación perfecta es difícil o está sujeta a variaciones.
4. Alta capacidad de torsión:
Los ejes estriados están diseñados para soportar altos niveles de torsión. El perfil de la estría, la longitud de acoplamiento y la selección de materiales están optimizados para cumplir con los requisitos de torsión previstos. Esta alta capacidad de torsión garantiza que el eje pueda transmitir potencia de manera eficiente sin sufrir deformaciones excesivas ni fallos en condiciones normales de funcionamiento.
5. Rigidez torsional:
Spline shafts exhibit high torsional stiffness, which means they resist twisting or torsional deflection when subjected to torque. The shaft’s design, including its diameter, spline profile, and material properties, contributes to its torsional stiffness. High torsional stiffness minimizes power loss due to deformation or flexing of the shaft, allowing for efficient power transmission.
6. Conexión fiable:
Los ejes estriados proporcionan una conexión fiable y repetible entre los componentes motriz y accionado. Una vez acoplado correctamente, el eje estriado mantiene su conexión, asegurando una transmisión de potencia constante a lo largo del tiempo. Esta fiabilidad es crucial para mantener la eficiencia y evitar pérdidas o interrupciones de potencia durante el funcionamiento.
7. Reacción negativa mínima:
El juego libre se refiere a la ligera holgura rotacional entre los componentes acoplados. Los ejes estriados, cuando están diseñados y fabricados correctamente, pueden minimizar el juego libre en el sistema de transmisión de potencia. Un juego libre reducido garantiza un funcionamiento más suave, mayor precisión y eficiencia al minimizar las pérdidas de potencia asociadas con la inversión o el cambio de dirección.
8. Diseño compacto:
Los ejes estriados ofrecen una solución compacta y que ahorra espacio para la transmisión de potencia. Su diseño permite un tamaño relativamente reducido a la vez que proporciona una transmisión de par robusta. El diseño compacto resulta especialmente ventajoso en aplicaciones donde el espacio es limitado, como en sistemas de transmisión de automóviles o maquinaria compacta.
Al incorporar ejes estriados en sistemas mecánicos, los ingenieros pueden lograr una transmisión de potencia eficiente, asegurando que la energía se transfiera eficazmente desde la fuente de accionamiento a los componentes accionados. Las características de diseño únicas de los ejes estriados permiten una transmisión de par fiable, una distribución uniforme de la carga, compensación de desalineaciones, alta capacidad de par, rigidez torsional, conexiones fiables, mínima holgura y compacidad.
¿Se pueden utilizar ejes estriados en aplicaciones automotrices y, de ser así, cómo?
Yes, spline shafts are extensively used in automotive applications due to their ability to transmit torque and provide reliable power transmission. Here’s how spline shafts are used in automotive applications:
Los ejes estriados desempeñan un papel crucial en diversos sistemas y componentes automotrices, entre ellos:
- Sistema de transmisión: Los ejes estriados son una parte integral del sistema de transmisión de los vehículos. Transmiten el par motor a las ruedas, permitiendo el movimiento del vehículo. Se encuentran en componentes como la transmisión, el diferencial y los semiejes. En las transmisiones manuales, el eje estriado conecta el eje de entrada de la transmisión con el disco de embrague, permitiendo la transferencia de potencia desde el motor. En las transmisiones automáticas, los ejes estriados se utilizan en el convertidor de par y el eje de salida.
- Steering System: Spline shafts are employed in the steering system to transmit torque from the steering wheel to the steering rack or gearbox. They provide a direct connection between the driver’s input and the movement of the wheels, allowing for steering control.
- Power Take-Off (PTO) Systems: Some vehicles, particularly commercial trucks and agricultural machinery, utilize PTO systems. Spline shafts are used in PTOs to transfer power from the vehicle’s engine to auxiliary equipment, such as hydraulic pumps, generators, or agricultural implements.
- Cajas de transferencia: En vehículos con tracción en las cuatro ruedas (4WD) o tracción integral (AWD), las cajas de transferencia se utilizan para distribuir la potencia a los ejes delantero y trasero. Los ejes estriados se emplean en la caja de transferencia para transferir el par motor entre la transmisión y los ejes de transmisión delantero y trasero.
- Ejes de transmisión: Los ejes de transmisión incorporan estrías que transmiten el par motor desde la transmisión o la caja de transferencia al eje trasero en vehículos de tracción trasera. Estas estrías permiten compensar el movimiento relativo entre la transmisión y el eje debido al recorrido de la suspensión.
En aplicaciones automotrices, los ejes estriados están diseñados para soportar altas cargas de torsión, proporcionar una transmisión de par precisa y compensar desalineaciones y fluctuaciones en las condiciones de funcionamiento. Generalmente se fabrican con acero de alta resistencia o aleaciones para garantizar su durabilidad y resistencia al desgaste. Una lubricación adecuada es esencial para minimizar la fricción y asegurar un funcionamiento suave.
El uso de ejes estriados en aplicaciones automotrices permite una transmisión de potencia eficiente, un control preciso y un rendimiento fiable, lo que contribuye a la funcionalidad y la facilidad de conducción generales de los vehículos.
How does a spline shaft differ from other types of shafts?
A spline shaft differs from other types of shafts in several ways. Here’s a detailed explanation:
1. Spline Structure:
A spline shaft features a series of ridges or teeth (splines) that are machined onto its surface. These splines create a precise and controlled interface with mating components, allowing for torque transmission and relative movement. In contrast, other types of shafts, such as plain shafts or keyed shafts, do not have the splines and rely on different mechanisms for torque transmission.
2. Torque Transmission and Relative Movement:
Unlike plain shafts or keyed shafts, which transmit torque through a frictional or mechanical connection, spline shafts allow for both torque transmission and relative movement between the shaft and mating components. The splines on the shaft engage with corresponding splines on the mating component, creating an interlock that transfers rotational force while accommodating axial or radial displacement. This feature provides flexibility and is particularly useful in applications where misalignment or relative movement needs to be accommodated.
3. Distribución de la carga:
One of the advantages of spline shafts is their ability to distribute loads over a larger surface area. The multiple contact points created by the splines help distribute the applied load evenly along the shaft’s length. This load distribution minimizes stress concentrations and reduces the risk of premature wear or failure. In contrast, other types of shafts may rely on a single keyway or frictional contact, which can result in higher stress concentrations and limited load distribution.
4. Design Flexibility:
Spline shafts offer greater design flexibility compared to other types of shafts. The number, size, and shape of the splines can be customized to meet specific design requirements. This allows for optimization of torque transmission, load-bearing capacity, and relative movement characteristics based on the application’s needs. Other types of shafts may have more standardized designs and limited customization options.
5. Application Variability:
Spline shafts find widespread use in various industries and applications where torque transmission, relative movement, and load distribution are crucial. They are commonly employed in gearboxes, power transmission systems, steering mechanisms, and other rotational systems. Other types of shafts, such as plain shafts or keyed shafts, may be more suitable for applications that require simpler torque transmission without the need for relative movement.
6. Installation and Maintenance:
When compared to other types of shafts, spline shafts may require more precise machining and alignment during installation. The mating components must be accurately matched to ensure proper engagement and torque transfer. Additionally, spline shafts may require periodic inspection and maintenance to ensure the integrity of the splines and optimal performance.
In summary, spline shafts differ from other types of shafts due to their spline structure, ability to accommodate relative movement, load distribution capability, design flexibility, application variability, and specific installation and maintenance requirements. These characteristics make spline shafts well-suited for applications that demand precise torque transmission, flexibility, and load distribution.
editor by CX 2024-04-12