Descrição do produto
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.
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More Products
| Truck Model | Sinotruk, Shacman, CZPT Auman, CZPT 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 | ||
Função
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.
Packaging & Shipping
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Perguntas frequentes
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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| Carregar: | Eixo de transmissão |
| Precisão dimensional do diâmetro do munhão: | Alta precisão |
| Exemplos: |
US$ 29/Piece
1 unidade (pedido mínimo) | Order Sample |
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| Personalização: |
Disponível
| Solicitação personalizada |
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.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}
| Custo do frete:
Frete estimado por unidade. |
sobre o custo do frete e o prazo estimado de entrega. |
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| Método de pagamento: |
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Pagamento inicial Pagamento integral |
| Moeda: | US$ |
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| Devoluções e reembolsos: | Você pode solicitar um reembolso em até 30 dias após o recebimento dos produtos. |
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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.

De que forma os eixos de transmissão contribuem para a eficiência da propulsão e transmissão de potência de um veículo?
Os eixos de transmissão desempenham um papel crucial na eficiência dos sistemas de propulsão e transmissão de potência dos veículos. Eles são responsáveis por transferir a potência do motor ou da fonte de energia para as rodas ou componentes acionados. Aqui está uma explicação detalhada de como os eixos de transmissão contribuem para a eficiência da propulsão e transmissão de potência dos veículos:
1. Transferência de energia:
Os eixos de transmissão transmitem a potência do motor ou da fonte de energia para as rodas ou componentes acionados. Ao transferir energia rotacional de forma eficiente, os eixos de transmissão permitem que o veículo se mova para a frente ou acione a máquina. O projeto e a construção dos eixos de transmissão garantem a mínima perda de potência durante o processo de transferência, maximizando a eficiência da transmissão de potência.
2. Conversão de Torque:
Os eixos de transmissão convertem o torque do motor ou da fonte de energia para as rodas ou componentes acionados. A conversão de torque é necessária para adequar as características de potência do motor às necessidades do veículo ou da máquina. Eixos de transmissão com capacidade de conversão de torque apropriada garantem que a potência fornecida às rodas seja otimizada para uma propulsão e um desempenho eficientes.
3. Juntas de Velocidade Constante (CV):
Muitos eixos de transmissão incorporam juntas homocinéticas (CV), que ajudam a manter uma velocidade constante e uma transmissão de potência eficiente, mesmo quando os componentes de acionamento e acionados estão em ângulos diferentes. As juntas homocinéticas permitem uma transferência de potência suave e minimizam a vibração ou as perdas de potência que podem ocorrer devido à mudança dos ângulos de operação. Ao manter a velocidade constante, os eixos de transmissão contribuem para uma transmissão de potência eficiente e para um melhor desempenho geral do veículo.
4. Construção leve:
Eixos de transmissão eficientes são frequentemente projetados com materiais leves, como alumínio ou materiais compósitos. A construção leve reduz a massa rotacional do eixo de transmissão, resultando em menor inércia e maior eficiência. A redução da massa rotacional permite que o motor acelere e desacelere mais rapidamente, proporcionando melhor economia de combustível e desempenho geral do veículo.
5. Atrito minimizado:
Eixos de transmissão eficientes são projetados para minimizar as perdas por atrito durante a transmissão de potência. Eles incorporam características como rolamentos de alta qualidade, vedações de baixo atrito e lubrificação adequada para reduzir as perdas de energia causadas pelo atrito. Ao minimizar o atrito, os eixos de transmissão aumentam a eficiência da transmissão de potência e maximizam a potência disponível para propulsão ou operação de outras máquinas.
6. Funcionamento equilibrado e livre de vibrações:
Os eixos de transmissão passam por balanceamento dinâmico durante o processo de fabricação para garantir uma operação suave e sem vibrações. Desbalanceamentos no eixo de transmissão podem levar a perdas de potência, aumento do desgaste e vibrações que reduzem a eficiência geral. Ao balancear o eixo de transmissão, ele gira uniformemente, minimizando vibrações e otimizando a eficiência da transmissão de potência.
7. Manutenção e Inspeção Regular:
A manutenção adequada e a inspeção regular dos eixos de transmissão são essenciais para manter sua eficiência. A lubrificação regular, a inspeção das juntas e componentes e o reparo ou substituição imediatos de peças desgastadas ou danificadas ajudam a garantir a máxima eficiência na transmissão de potência. Eixos de transmissão bem conservados operam com atrito mínimo, perdas de potência reduzidas e maior eficiência geral.
8. Integração com sistemas de transmissão eficientes:
Os eixos de transmissão funcionam em conjunto com sistemas de transmissão eficientes, como transmissões manuais, automáticas ou continuamente variáveis (CVT). Essas transmissões ajudam a otimizar a entrega de potência e as relações de marcha com base nas condições de direção e na velocidade do veículo. Ao se integrarem a sistemas de transmissão eficientes, os eixos de transmissão contribuem para a eficiência geral do sistema de propulsão e transmissão de potência do veículo.
9. Considerações aerodinâmicas:
Em alguns casos, os eixos de transmissão são projetados levando em consideração aspectos aerodinâmicos. Eixos de transmissão aerodinâmicos, frequentemente usados em veículos elétricos ou de alto desempenho, minimizam o arrasto e a resistência do ar para melhorar a eficiência geral do veículo. Ao reduzir o arrasto aerodinâmico, os eixos de transmissão contribuem para a propulsão e transmissão de potência eficientes do veículo.
10. Comprimento e design otimizados:
Os eixos de transmissão são projetados com comprimentos e formatos ideais para minimizar as perdas de energia. Um comprimento excessivo ou um projeto inadequado podem introduzir massa rotacional adicional, aumentar as tensões de flexão e resultar em perdas de energia. Ao otimizar o comprimento e o formato, os eixos de transmissão maximizam a eficiência da transmissão de potência e contribuem para uma melhoria na eficiência geral do veículo.
De forma geral, os eixos de transmissão contribuem para a eficiência da propulsão e transmissão de potência de veículos por meio da transferência eficaz de potência, conversão de torque, utilização de juntas homocinéticas, construção leve, minimização do atrito, operação balanceada, manutenção regular, integração com sistemas de transmissão eficientes, considerações aerodinâmicas e otimização de comprimento e design. Ao garantir a entrega eficiente de potência e minimizar as perdas de energia, os eixos de transmissão desempenham um papel significativo na melhoria da eficiência e do desempenho geral de veículos e máquinas.

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.


editor by CX 2024-04-22