Descrição do produto
Descrição do produto
Basic Info.
| Model NO. | NH1B | Customize | Avaliable |
| Production Name | Wide Angle Forging Steel Pto Shaft Truck Agricultural Tractor Part Pto Drive Shaft | Garantia | 1 year |
| Trademark | Yontan | Specification | Personalizado |
| Origin | ZheJiang , China | Delivery time | 3-7 days |
| Application | for All The Dump Truck | Production capacity | 20000pcs/year |
| Transport Package | Wooden Case | HS Code | 8708994900 |
Descrição do produto
The function of the power take-off is to output power to external work. It is usually composed of a gearbox, a clutch, and a controller. It is 1 or more sets of transmission gears. There are many classifications of power take-offs. Among them, the power output form on the side of the transmission can only output one-half of the maximum power of the engine, while the power output form on the front of the transmission can obtain the maximum power of the engine, so it is called full power output take-off. Powerful weapon.
Company Profile
ZheJiang Yontan Import and Export Co., Ltd. was established in HangZhou, the capital of ZheJiang Province, a famous national historical and cultural city with profound heritage. The company is mainly engaged in the export of complete vehicles of SINOTRUk, HOWO, SHACMAN, FOTON, FAW, XIHU (WEST LAKE) DIS., XIHU (WEST LAKE) DIS.FENG and other brands. It is engaged in the export sales of a full range of truck accessories and assemblies. The products distributed by the company are mainly supplied to major domestic transportation units, oil and gas transportation teams, municipal engineering fleets and civil engineering fleets, as well as major foreign construction companies and transportation companies.
On the basis of the continuous development of the company’s business, we are committed to exploring the international market. So far, our market has covered China, Eastern Europe, the Middle East, Africa, Southeast Asia, South America and other countries and regions. Our integrity is everywhere and we are deeply trusted by customers. Our company has a large warehouse and a professional management team, which can quickly find suitable parts for customers, and can provide services such as good packaging, safe storage, and fast transportation to meet the diverse needs of customers at any time.
Perguntas frequentes
★ What is your terms of packing?
A: Generally, we pack our goods in neutral white boxes and brown cartons. If you have legally registered patent,
we can pack the goods in your branded boxes after getting your authorization letters.
★ What is your terms of payment?
A: T/T 30% as deposit, and 70% before delivery. We’ll show you the photos of the products and packages
before you pay the balance.
★Can you produce according to the samples?
A: Yes, we can produce by your samples or technical drawings. We can build the molds and fixtures.
Action now contact us for whole CATALOG.
More than 5000kinds of OEM parts waiting for you. Please contact us!
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| Serviço pós-venda: | Great |
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| Garantia: | 1year |
| Certification: | ISO9001 |
| Exemplos: |
US$ 30/Piece
1 unidade (pedido mínimo) | Order Sample |
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| Personalização: |
Disponível
| Solicitação personalizada |
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| 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 factors should be considered when selecting the right PTO shaft for an application?
When selecting the right Power Take-Off (PTO) shaft for an application, several factors need to be considered to ensure optimal performance, safety, and compatibility. PTO shafts are crucial components that transmit power from a power source to driven machinery or equipment. Here are the key factors to consider when selecting the appropriate PTO shaft for an application:
1. Power Requirements: The power requirements of the driven machinery play a vital role in determining the appropriate PTO shaft. Consider the horsepower (HP) or kilowatt (kW) rating of the power source and ensure that the PTO shaft can handle the required power transmission. It is essential to match the power capacity of the PTO shaft with the power output of the power source to ensure efficient and reliable operation.
2. Speed and Torque Requirements: Consider the speed and torque requirements of the driven machinery. Determine the desired rotational speed and torque levels necessary for the equipment to operate effectively. Some applications require specific speed or torque ratios, while others may require variable speeds. Ensure that the selected PTO shaft can handle the required speed and torque range to provide the necessary power transfer.
3. Shaft Type and Design: Evaluate the type and design of the PTO shaft to ensure compatibility with the application. Consider factors such as the distance between the power source and the driven machinery, the need for angular misalignment, and the flexibility of movement required. Different shaft types, such as standard, telescopic, or Constant Velocity (CV) shafts, offer varying capabilities to accommodate different application requirements.
4. Considerações de segurança: Safety is a critical factor when selecting a PTO shaft. Assess the safety features provided by the PTO shaft, such as protective guards, shear bolt mechanisms, or other safety devices. Protective guards should be in place to prevent accidental contact with the rotating shaft. Shear bolt mechanisms can protect the driveline components from damage in case of excessive torque or sudden resistance. Prioritize safety features that align with the specific hazards and risks associated with the application.
5. Application Specifics: Consider the unique requirements of the application. Factors such as the type of machinery, industry sector, environmental conditions, and operating conditions should be taken into account. For example, agricultural applications may require PTO shafts that can handle debris and dirt accumulation, while industrial applications may require PTO shafts with high corrosion resistance or special sealing to protect against contaminants.
6. Compatibility and Interchangeability: Ensure that the selected PTO shaft is compatible with the power source and the driven machinery. Consider factors such as the shaft diameter, spline size, and connection type. Check if the PTO shaft adheres to industry standards and if it can be easily interchanged with other compatible components in case of replacement or upgrading needs. Compatibility and interchangeability can simplify maintenance and reduce downtime.
7. Manufacturer and Quality: Choose a reputable manufacturer or supplier to ensure the quality and reliability of the PTO shaft. Look for manufacturers with a track record of producing high-quality PTO shafts that meet industry standards and regulations. Consider factors such as warranty, after-sales support, and availability of spare parts when making a selection.
By considering these factors, you can select the right PTO shaft that meets the power, speed, torque, safety, and application requirements. It is advisable to consult with experts, such as equipment manufacturers or PTO shaft specialists, to ensure an optimal match between the PTO shaft and the application.

How do PTO shafts enhance the performance of tractors and agricultural machinery?
Power Take-Off (PTO) shafts play a crucial role in enhancing the performance of tractors and agricultural machinery. By providing a reliable power transfer mechanism, PTO shafts enable these machines to operate efficiently, effectively, and with increased versatility. Here’s a detailed explanation of how PTO shafts enhance the performance of tractors and agricultural machinery:
1. Transferência de energia: PTO shafts facilitate the transfer of power from the tractor’s engine to various agricultural implements and machinery. The rotating power generated by the engine is transmitted through the PTO shaft to drive the connected equipment. This direct power transfer eliminates the need for separate engines or motors on each implement, reducing complexity, weight, and maintenance requirements. PTO shafts ensure a consistent and reliable power supply, enabling agricultural machinery to perform tasks with optimal efficiency and effectiveness.
2. Versatilidade: PTO shafts provide tractors and agricultural machinery with increased versatility. Since PTO shafts have standardized dimensions and connection methods, a wide range of implements can be easily attached and powered by the same tractor. This versatility allows farmers to quickly switch between different tasks, such as mowing, tilling, planting, and harvesting, without the need for multiple specialized machines. The ability to use a single power unit for various operations reduces costs, saves storage space, and improves overall operational efficiency.
3. Improved Productivity: PTO shafts contribute to improved productivity in agricultural operations. By harnessing the power of tractors, agricultural machinery can operate at higher speeds and with greater efficiency compared to manual or alternative power methods. PTO-driven implements, such as mowers, balers, and harvesters, can cover larger areas and complete tasks more quickly, reducing the time required to perform agricultural operations. This increased productivity allows farmers to accomplish more within a given timeframe, leading to higher crop yields and improved overall farm efficiency.
4. Reduced Labor Requirements: PTO shafts help reduce labor requirements in agricultural operations. By utilizing mechanized equipment powered by PTO shafts, farmers can minimize manual labor and the associated physical effort. Tasks such as plowing, tilling, and harvesting can be performed more efficiently and with less reliance on human labor. This reduction in labor requirements allows farmers to allocate resources more effectively, focus on other essential tasks, and potentially reduce labor costs.
5. Precision and Accuracy: PTO shafts contribute to precision and accuracy in agricultural operations. The consistent power supply from the tractor’s engine ensures uniform operation and performance of the connected machinery. This precision is crucial for tasks such as seed placement, fertilizer or chemical application, and crop harvesting. PTO-driven equipment can provide consistent rotations per minute (RPM) and maintain the necessary operational parameters, resulting in precise and accurate agricultural practices. This precision leads to improved crop quality, reduced waste, and optimized resource utilization.
6. Adaptability to Various Tasks: PTO shafts enhance the adaptability of tractors and agricultural machinery to perform various tasks. With the ability to connect different implements, such as mowers, seeders, sprayers, or balers, via PTO shafts, farmers can quickly transform their tractors into specialized machines for specific operations. This adaptability allows for efficient utilization of equipment across different stages of crop production, enabling farmers to respond to changing needs and conditions in a cost-effective manner.
7. Enhanced Safety: PTO shafts contribute to enhanced safety in agricultural operations. Many PTO shafts are equipped with safety features, such as shields or guards, to protect operators from potential hazards associated with rotating components. These safety measures help prevent entanglement accidents and reduce the risk of injuries. Additionally, by using PTO-driven machinery, farmers can keep a safe distance from certain hazardous tasks, such as mowing or shredding, further improving overall safety on the farm.
8. Integration with Technology: PTO shafts can be integrated with advanced technology and automation systems in modern tractors and agricultural machinery. This integration allows for precise control, data monitoring, and optimization of machine performance. For example, precision guidance systems can be synchronized with PTO-driven implements to ensure accurate seed placement or chemical application. Furthermore, data collection and analysis can provide insights into fuel efficiency, maintenance needs, and overall equipment performance, leading to optimized operation and improved productivity.
In summary, PTO shafts enhance the performance of tractors and agricultural machinery by enabling efficient power transfer, increasing versatility, improving productivity, reducing labor requirements, ensuring precision and accuracy, facilitating adaptability, enhancing safety, and integrating with advanced technologies. These benefits contribute to overall operational efficiency, cost-effectiveness, and the ability of farmers to effectively manage theiragricultural operations.
Você pode explicar os diferentes tipos de eixos de tomada de força (PTO) e suas aplicações?
Os eixos de tomada de força (PTO, na sigla em inglês) vêm em vários tipos, cada um projetado para aplicações e requisitos específicos. Os diferentes tipos de eixos de tomada de força oferecem versatilidade e compatibilidade com uma ampla gama de máquinas e implementos. Aqui está uma explicação dos tipos mais comuns de eixos de tomada de força e suas aplicações:
1. Eixo da tomada de força padrão: O eixo de tomada de força (TDF) padrão, também conhecido como eixo estriado, é o tipo mais comum usado em máquinas agrícolas e industriais. Consiste em um eixo de aço maciço com estrias ou ranhuras ao longo de seu comprimento. O eixo de TDF padrão normalmente possui seis estrias, embora também existam variações com quatro ou oito estrias. Este tipo de eixo de TDF é amplamente utilizado em tratores e diversos implementos, incluindo segadoras, enfardadeiras, cultivadores e roçadeiras. As estrias proporcionam uma conexão segura entre a fonte de energia e a máquina acionada, garantindo uma transferência de potência eficiente.
2. Parafuso de cisalhamento do eixo da tomada de força: Os eixos de tomada de força (TDF) com parafuso de cisalhamento são projetados com um recurso de segurança que permite a separação do eixo em caso de sobrecarga ou choque repentino, protegendo os componentes da transmissão. Esses eixos de TDF incorporam um mecanismo de parafuso de cisalhamento que conecta a tomada de força do trator à máquina acionada. Em caso de carga excessiva ou resistência repentina, o parafuso de cisalhamento é projetado para romper, desconectando o eixo de TDF e evitando danos à transmissão. Os eixos de TDF com parafuso de cisalhamento são comumente usados em equipamentos que podem encontrar obstruções repentinas ou situações de alta tensão, como trituradores de madeira, destocadores e cortadores rotativos de alta potência.
3. Eixo da tomada de força com embreagem de fricção: Os eixos de tomada de força (TDF) com embreagem de fricção possuem um mecanismo de embreagem que permite o engate e desengate suaves da transmissão de potência. Esses eixos de TDF geralmente incorporam um disco de fricção e uma placa de pressão, semelhante a um sistema de embreagem tradicional de veículo. A embreagem de fricção permite que os operadores engatem ou desengatem a transmissão de potência gradualmente, reduzindo impactos e minimizando o desgaste dos componentes da transmissão. Os eixos de TDF com embreagem de fricção são comumente usados em aplicações onde é necessário um controle preciso do engate de potência, como em bombas hidráulicas, geradores e misturadores industriais.
4. Eixo da tomada de força (TDF) de velocidade constante (CV): Eixos de tomada de força (TDF) de velocidade constante (CV), também conhecidos como eixos homocinéticos, são projetados para acomodar altos ângulos de desalinhamento sem afetar a transmissão de potência. Eles utilizam um mecanismo de junta universal que permite uma transferência de potência suave mesmo quando a máquina acionada está em um ângulo em relação à fonte de energia. Os eixos de TDF CV são frequentemente usados em aplicações onde a máquina requer uma amplitude significativa de movimento ou articulação, como em carregadeiras articuladas, manipuladores telescópicos e pulverizadores autopropelidos.
5. Eixo telescópico da tomada de força: Eixos telescópicos de tomada de força (TDF) têm comprimento ajustável, permitindo flexibilidade na configuração do equipamento e em diferentes distâncias entre a fonte de energia e a máquina acionada. Consistem em dois ou mais eixos concêntricos que deslizam um dentro do outro, possibilitando a extensão ou retração do eixo da TDF conforme a necessidade. Eixos telescópicos de TDF são comumente utilizados em aplicações onde a distância entre a tomada de força do trator e o implemento varia, como em implementos frontais, sopradores de neve e vagões autocarregáveis. O design telescópico facilita a adaptação a diferentes configurações de equipamentos e minimiza o risco de o eixo da TDF arrastar no solo.
6. Eixo da tomada de força da caixa de engrenagens: Os eixos de tomada de força (TDF) com caixa de engrenagens são projetados para adaptar a transmissão de potência entre diferentes velocidades ou direções de rotação. Eles incorporam um mecanismo de caixa de engrenagens que permite a redução ou o aumento da velocidade, bem como a capacidade de alterar o sentido de rotação. Os eixos de TDF com caixa de engrenagens são comumente usados em aplicações onde a máquina acionada requer uma velocidade ou sentido de rotação diferente daquele da tomada de força do trator. Exemplos incluem transportadores de grãos, misturadores de ração e equipamentos industriais que requerem relações de velocidade específicas ou capacidade de reversão.
É importante observar que a disponibilidade e as aplicações específicas dos tipos de eixos de tomada de força (TDF) podem variar de acordo com fatores regionais e específicos do setor. Além disso, determinadas máquinas ou implementos podem exigir eixos de TDF especializados ou personalizados para atender a requisitos específicos.
Em resumo, os diferentes tipos de eixos de tomada de força (TDF), como os eixos padrão, de parafuso de cisalhamento, de embreagem de fricção, de velocidade constante (CV), telescópicos e de caixa de engrenagens, oferecem versatilidade e compatibilidade com diversas máquinas e implementos. Cada tipo de eixo de TDF é projetado para atender a necessidades específicas, como eficiência na transferência de potência, segurança, engate suave, tolerância a desalinhamento, adaptabilidade e ajuste de velocidade/direção. Compreender os diferentes tipos de eixos de TDF e suas aplicações é crucial para selecionar o eixo apropriado para a máquina em questão e garantir desempenho e confiabilidade ideais.

editor by CX 2024-05-03