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Descripción del Producto

 

Quality Shaft Selection: Drive, Gear, Cardan, Transmission, Rotor, Propeller, Motor, Spline, Axle, Steel, Flexible, and PTO Shafts Available

Materials Carbon steel: 10#, 18#, 1018, 22#, 1571, 40Cr, 45#, 1045, 50#, 55#, 60#, 65Mn, 70#, 72B, 80#, 82B
Alloy Structure Steel: B7, 20CrMo, 42Crmo, SCM415, SCM440, 4140
High-carbon chromium bearing steel: GCr15, 52100, SUJ2
Free-cutting steel: 12L14, 12L15
Stainless steel: 1Cr13, 2Cr13, 3Cr13, 4Cr13, 1Cr17, SUS410, SUS420, SUS430, SUS416, SUS440C, 17-4, 17-4PH, 130M, 200, 201, 202, 205, 303, 303Cu, 304, 316, 316L
Aluminum grade: 6061, 6063
Brass: Hpb58-2.5 (C38000), Hpb59-1 (C37710), Hpb61-1 (C37100), Hpb62-0.8 (C35000), Hpb63-0.1 (C34900), Hpb63-3 (C34500), H60, H62, H63, H65

 
Diameter Ø0.3-Ø25
Diameter tolerance 0.002mm
Roundness 0.0005mm
Roughness Ra0.05
Straightness 0.005mm
Dureza:  HRC/HV
Length 2mm-1000mm
Heat treatment 1. Oil Quenching
2. High frequency quenching
3. Carburization
4. Vacuum Heat treatment
5. Mesh belt CHINAMFG heat treatment
Surface treatment 1. Plating nickel
2. Plating zinc
3. Plating passivation
4. Plating phosphating
5. Black coating
6. Anodized treatment
Package Plastic bags inside and standard cartons outside.
Shipment by pallets or according to customer’s packing specifications.
Warranty Policy We confirm our qualities satisfy to 99.9%, and have 6-month quality warranty 
Servicio postventa We will follow up the requst strictly for customers and will help customers solve problems after sale. 

Swiss High-Precision CNC Machining Process

 

Other Category From Cold Forging Process

Perfil de la empresa

HangZhou CHINAMFG is an integrated manufacturing and trading enterprise with over 30 years of experience. We specialize in providing customized solutions for non-standard fasteners, CNC machined parts, stamping parts, and other metal products. With a sprawling facility covering an area of 5,500 square meters, we have 3 workshops including cold heading, stamping, and cnc machining. 

At Hanyee Metal, we take pride in our commitment to delivering high-quality products and tailor-made solutions to meet our customers’ specific needs. Our team of skilled professionals ensures precision and CHINAMFG in every aspect of the manufacturing process. Whether it’s fasteners for unique applications, intricately machined parts, or precision-stamped components, we have the capabilities to exceed your expectations.

Hanyee’s products exporting to more than 30 countries, especially in North American and European markets. Being the supplier for famous brands like : ITW, Ruen, Infenion, WMG,Fnox, ects. many years. 

inspection

Exhibiting

Customer reception

Packaging and transportation

 

Customer feedback

Preguntas frecuentes

Q: Please send your price list for our reference.

A: We do not have standard price list because we produce according to customer design.
We can provide the quotation for your inquiries in a shortest possible time.

Q:Please quote the price for me
A: Our standard response time is 2 working hours, once you confirm the demand and drawing we shall provide the quote within 12 working hours.

Q:Can I get some sample?
A: Sure. We believe sample order is a good way to start our cooperation.
  If it is a standard product, it would be for free but freight on your account.
  If customized, we shall prepare the sample after receipt of development cost.

Q: Have FASTENERS 100% assembled well in stock?
A: Some of standard size is in stock. Most is OEM item out of stock.

Q: Could I use my own LOGO or design on goods?
A: Yes, Customized logo and design on mass production are available.

Q: What is the delivery time?
A: Our lead time for samples is 1 week; 15-30 days for mass production. It is usually according to the quantity and items.

Q:What payment do you accept?
A: We accept T/T, West Union,L/C,Trade Assurance in Alibaba.

Q: Can I trust you?
A: Absolutely! We are “Made In China” & “Alibaba” verified supplier.

Q: May I visit your factory?
A: You are welcome to visit us anytime. We can also pick you up from nearest airport and Train station.

 

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eje de toma de fuerza

How do manufacturers ensure the compatibility of PTO shafts with different equipment?

Manufacturers employ various measures to ensure the compatibility of PTO (Power Take-Off) shafts with different equipment. Compatibility is crucial to ensure that PTO shafts can effectively transfer power from the power source to the driven machinery without compromising performance, safety, or ease of use. Here’s a detailed explanation of how manufacturers ensure compatibility:

1. Standardization: PTO shafts are designed and manufactured based on standardized specifications. These specifications outline the essential parameters such as shaft dimensions, spline sizes, torque ratings, and safety requirements. By adhering to standardized designs, manufacturers ensure that PTO shafts are compatible with a wide range of equipment that meets the same standards. Standardization allows for interchangeability, meaning that PTO shafts from one manufacturer can be used with equipment from another manufacturer as long as they conform to the same specifications.

2. Collaboration with Equipment Manufacturers: PTO shaft manufacturers often collaborate closely with equipment manufacturers to ensure compatibility. They work together to understand the specific requirements of the equipment and design PTO shafts that seamlessly integrate with the machinery. This collaboration may involve sharing technical specifications, conducting joint testing, and exchanging feedback. By working in partnership, manufacturers can address any compatibility issues early in the design and development process, resulting in PTO shafts that are tailored to the equipment’s needs.

3. Customization Options: PTO shaft manufacturers offer customization options to accommodate different equipment configurations. They provide flexibility in terms of shaft length, spline sizes, yoke designs, and coupling mechanisms. Equipment manufacturers can specify the required parameters, and the PTO shafts can be customized accordingly. This ensures that the PTO shafts precisely match the equipment’s power input/output requirements and connection methods, guaranteeing compatibility and efficient power transfer.

4. Testing and Validation: Manufacturers conduct rigorous testing and validation processes to ensure the compatibility and performance of PTO shafts. They subject the shafts to various tests, including torque testing, rotational speed testing, and durability testing. These tests verify that the PTO shafts can handle the expected power loads and operating conditions without failure. By validating the performance of the PTO shafts, manufacturers can ensure that they are compatible with a wide range of equipment and can reliably transfer power under different operating scenarios.

5. Compliance with Industry Standards: PTO shaft manufacturers adhere to industry standards and regulations to ensure compatibility. Organizations such as the American Society of Agricultural and Biological Engineers (ASABE) establish safety and performance standards for PTO shafts. Manufacturers design and produce their shafts in accordance with these standards, ensuring that their products meet the necessary requirements for compatibility and safety. Compliance with industry standards provides assurance to equipment manufacturers and end-users that the PTO shafts are compatible and suitable for use with different equipment.

6. Documentation and Guidelines: Manufacturers provide comprehensive documentation and guidelines to assist equipment manufacturers and end-users in ensuring compatibility. This documentation includes technical specifications, installation instructions, maintenance guidelines, and safety recommendations. The documentation helps equipment manufacturers select the appropriate PTO shaft for their equipment and provides guidance on proper installation and use. By following the manufacturer’s guidelines, equipment manufacturers can ensure compatibility and optimize the performance of the PTO shafts.

7. Ongoing Research and Development: PTO shaft manufacturers continuously invest in research and development to enhance compatibility with different equipment. They stay updated with industry trends, technological advancements, and evolving equipment requirements. This ongoing research and development enable manufacturers to improve the design, materials, and features of PTO shafts, ensuring compatibility with the latest equipment innovations and addressing any compatibility challenges that may arise.

By employing standardization, collaborating with equipment manufacturers, offering customization options, conducting thorough testing, complying with industry standards, providing documentation and guidelines, and investing in research and development, manufacturers ensure the compatibility of PTO shafts with different equipment. This compatibility allows for seamless integration, efficient power transfer, and optimal performance across a wide range of machinery and equipment in various industries.

eje de toma de fuerza

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. Power Transfer: 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. Versatility: 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.eje de toma de fuerza

¿Cómo contribuyen los ejes de la toma de fuerza a la transferencia de potencia de los tractores a los implementos?

Los ejes de toma de fuerza (PTO, por sus siglas en inglés) desempeñan un papel fundamental en la transferencia de potencia de los tractores a los implementos en entornos agrícolas e industriales. Proporcionan un medio de transmisión de potencia fiable y eficiente, lo que permite a los tractores accionar diversos implementos y realizar una amplia gama de tareas. A continuación, se ofrece una explicación detallada de cómo los ejes de toma de fuerza contribuyen a la transferencia de potencia de los tractores a los implementos:

Fuente de alimentación: Los tractores están equipados con potentes motores diseñados para generar una gran cantidad de potencia mecánica. Esta potencia se aprovecha para impulsar las ruedas del tractor y accionar los sistemas hidráulicos, así como para proporcionar potencia para la conexión de implementos a través del eje de toma de fuerza (TDF). El eje de TDF generalmente se conecta a la parte trasera o lateral del tractor, donde se ubica el mecanismo de toma de fuerza. Este mecanismo obtiene la potencia directamente del motor o la transmisión del tractor, lo que permite una transferencia de potencia eficiente al eje de TDF.

Diseño del eje de la toma de fuerza: Los ejes de la toma de fuerza (TDF) están diseñados como componentes de la transmisión que transmiten potencia y par motor desde la toma de fuerza del tractor al implemento. Consisten en un tubo metálico hueco con juntas universales en cada extremo. Las juntas universales compensan las desalineaciones angulares y permiten que el eje de la TDF transmita potencia incluso cuando el tractor y el implemento no están perfectamente alineados. El eje de la TDF también está equipado con una protección para evitar el contacto accidental con el eje giratorio, garantizando así la seguridad del operador durante el funcionamiento.

Participación de la PTO: Para transferir potencia del tractor al implemento, es necesario acoplar la toma de fuerza (TDF). Los tractores están equipados con un mecanismo de embrague de la TDF que permite al operador acoplar o desacoplar la toma de fuerza según sea necesario. Cuando el embrague de la TDF está acoplado, la potencia fluye desde el motor del tractor a través del mecanismo de toma de fuerza hacia la toma de fuerza. Esta potencia rotacional se transmite a través de la toma de fuerza al implemento, accionando sus componentes.

Transmisión de potencia rotacional: La potencia rotacional generada por el motor del tractor se transfiere al eje de la toma de fuerza (TDF) mediante el mecanismo de toma de fuerza. El eje de la TDF, al estar conectado directamente a la toma de fuerza, gira a la misma velocidad que el motor. Esta potencia rotacional se transmite desde el eje de la TDF a la transmisión o caja de cambios del implemento. La transmisión del implemento, a su vez, distribuye la potencia a los componentes de trabajo del implemento, como cuchillas, barrenas o bombas, permitiéndoles realizar sus respectivas funciones.

Velocidad y potencia a la par: Los ejes de la toma de fuerza (TDF) están diseñados para adaptarse a la velocidad de rotación y a los requisitos de potencia de los distintos implementos. Los tractores suelen contar con varias velocidades para la TDF, lo que permite a los operadores seleccionar la velocidad adecuada para cada implemento. Cada implemento puede requerir una velocidad de rotación diferente para funcionar de forma óptima, y ​​el eje de la TDF facilita el ajuste para satisfacer dichas necesidades. Además, la potencia generada por el motor del tractor se transmite a través del eje de la TDF, proporcionando el par necesario para accionar eficazmente los componentes del implemento.

Versatilidad y eficiencia: Los ejes de toma de fuerza (TDF) ofrecen una gran versatilidad y eficiencia en operaciones agrícolas e industriales. Permiten que los tractores accionen una amplia gama de implementos, como segadoras, empacadoras, cultivadoras, pulverizadoras y sinfines de grano, entre otros. Al conectar los implementos directamente a la fuente de energía del tractor, los operadores pueden cambiar rápidamente de tarea sin necesidad de generadores o motores independientes. Esta versatilidad y eficiencia optimizan el flujo de trabajo, reducen costos y aumentan la productividad general en entornos agrícolas e industriales.

Consideraciones de seguridad: Si bien los ejes de toma de fuerza (TDF) son esenciales para la transmisión de potencia, su manipulación incorrecta puede suponer riesgos para la seguridad. El eje giratorio y las juntas universales pueden causar lesiones graves si los operarios entran en contacto con ellos durante el funcionamiento. Por ello, los ejes de TDF están equipados con protectores o salvaguardas para evitar el contacto accidental. Los operarios deben asegurarse siempre de que los protectores estén colocados y bien sujetos antes de accionar el eje de TDF. La formación adecuada, el cumplimiento de las normas de seguridad y el mantenimiento periódico de los ejes de TDF y sus dispositivos de seguridad son fundamentales para garantizar un funcionamiento seguro.

En resumen, los ejes de la toma de fuerza (TDF) son componentes vitales que permiten la transferencia de potencia de los tractores a los implementos en aplicaciones agrícolas e industriales. Proporcionan un medio de transmisión de potencia fiable y eficiente, lo que permite a los tractores accionar diversos implementos y realizar una amplia gama de tareas. Al acoplar el embrague de la TDF y transmitir la potencia de rotación a través del eje, los tractores impulsan los componentes de trabajo de los implementos, lo que proporciona versatilidad, eficiencia y productividad en las operaciones agrícolas e industriales.

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editor by lmc 2024-11-08