China supplier Bush Hog Pto Shaft for Agricultural Wide Angle Cardan CZPT Spline Cross Yoke

Описание продукта

 

Описание продукта

A Power Take-Off shaft (PTO shaft) is a mechanical device utilized to transmit power from a tractor or other power source to an attached implement, such as a mower, tiller, or baler. Typically situated at the rear of the tractor, the PTO shaft is driven by the tractor’s engine through the transmission.
The primary purpose of the PTO shaft is to supply a rotating power source to the implement, enabling it to carry out its intended function. To connect the implement to the PTO shaft, a universal joint is employed, allowing for movement between the tractor and the implement while maintaining a consistent power transfer. 

Here is our advantages when compare to similar products from China:
1.Forged yokes make PTO shafts strong enough for usage and working;
2.Internal sizes standard to confirm installation smooth;
3.CE and ISO certificates to guarantee to quality of our goods;
4.Strong and professional package to confirm the good situation when you receive the goods.

Product Specifications

 

In farming, the most common way to transmit power from a tractor to an implement is by a driveline, connected to the PTO (Power Take Off) of the tractor to the IIC(Implement Input Connection). Drivelines are also commonly connected to shafts within the implement to transmit power to various mechanisms.
The following dimensions of the PTO types are available.
Type B:13/8″Z6(540 min)
Type D:13/8″Z21(1000 min)
Coupling a driveline to a PTO should be quick and simple because in normal use tractors must operate multiple implements. Consequently, yokes on the tractor-end of the driveline are fitted with a quick-disconnect system, such as push-pin or ball collar.
Specifications for a driveline, including the way it is coupled to a PTO, depend CHINAMFG the implement.
Yokes on the llc side are rarely disconnected and may be fastened by quick-lock couplings (push-pin or ball collar).
Taper pins are the most stable connection for splined shafts and are commonly used in yokes and torque limiters. Taper pins are also often used to connect internal drive shafts on drivelines that are not frequently disconnected.
Torque limiter and clutches must always be installed on the implement side of the primary driveline.

 

Packaging & Shipping

 

 

 

Company Profile

HangZhou Hanon Technology Co.,ltd is a modern enterprise specilizing in the development,production,sales and services of Agricultural Parts like PTO shaft and Gearboxes and Hydraulic parts like  Cylinder , Valve ,Gearpump and motor etc..
We adhere to the principle of ” High Quality, Customers’Satisfaction”, using advanced technology and equipments to ensure all the technical standards of transmission .We follow the principle of people first , trying our best to set up a pleasant surroundings and platform of performance for each employee. So everyone can be self-consciously active to join Hanon Machinery.

Часто задаваемые вопросы

1.WHAT’S THE PAYMENT TERM?

When we quote for you,we will confirm with you the way of transaction,FOB,CIFetc.<br> For mass production goods, you need to pay 30% deposit before producing and70% balance against copy of documents.The most common way is by T/T.  

2.HOW TO DELIVER THE GOODS TO US?

Usually we will ship the goods to you by sea.

3.How long is your delivery time and shipment?

30-45days

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Тип: Pto Shaft
Usage: Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying
Материал: 45cr Steel
Power Source: Pto Dirven Shaft
Weight: 8-15kg
Послепродажное обслуживание: Online Support
Образцы:
US$ 20/Piece
1 штука (минимальный заказ)

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Индивидуальный запрос

Can spline shafts be customized for specific machinery and equipment?

Yes, spline shafts can be customized to suit specific machinery and equipment requirements. Here’s a detailed explanation:

1. Size and Length:

Spline shafts can be customized in terms of size and length to fit the dimensions of the machinery or equipment. Manufacturers can design spline shafts with the appropriate diameter, overall length, and spline length to ensure a proper fit within the system.

2. Spline Profile:

The spline profile can be customized based on the specific application. Different spline profiles, such as involute, serrated, or helical, can be used to optimize torque transmission, load distribution, and engagement characteristics based on the requirements of the machinery or equipment.

3. Number of Splines:

The number of splines on the shaft can be customized to match the mating component. The number of splines determines the engagement area and affects the torque-carrying capacity of the spline shaft. By adjusting the number of splines, manufacturers can tailor the spline shaft to the specific torque and load requirements of the machinery or equipment.

4. Material Selection:

The choice of material for spline shafts can be customized based on the operating conditions and environmental factors of the machinery or equipment. Different materials, such as alloy steels or stainless steels, can be selected to provide the necessary strength, durability, corrosion resistance, or other specific properties required for the application.

5. Surface Treatment:

The surface of spline shafts can be customized with various treatments to enhance their performance. Surface treatments like heat treatment, coating, or plating can be applied to improve hardness, wear resistance, or corrosion resistance based on the specific requirements of the machinery or equipment.

6. Tolerances and Fit:

Tolerances and fit between the spline shaft and mating components can be customized to achieve the desired clearance or interference fit. This ensures proper engagement, smooth operation, and optimal performance of the machinery or equipment.

7. Special Features:

In certain cases, spline shafts can be customized with additional features to meet specific needs. This may include the incorporation of keyways, threads, or other specialized features required for the machinery or equipment.

Manufacturers and engineers work closely with the machinery or equipment designers to understand the specific requirements and tailor the spline shafts accordingly. By considering factors such as size, spline profile, number of splines, material selection, surface treatment, tolerances, fit, and any special features, customized spline shafts can be developed to ensure optimal performance and compatibility with the machinery or equipment.

It is important to consult with experienced spline shaft manufacturers or engineering professionals to determine the most suitable customization options for a particular machinery or equipment application.

How do spline shafts handle variations in environmental conditions?

Spline shafts are designed to handle variations in environmental conditions and maintain their performance and reliability. Here’s a detailed explanation:

1. Temperature Variations:

Spline shafts are engineered to withstand a wide range of temperature variations. They are constructed from materials that exhibit good thermal stability, such as high-grade steels or alloys. These materials have low coefficients of thermal expansion, minimizing the effects of temperature changes on the shaft’s dimensional stability. Additionally, proper lubrication with temperature-resistant lubricants helps reduce friction and wear in the spline engagement, even under extreme temperature conditions.

2. Moisture and Corrosion Resistance:

Spline shafts can be designed to resist moisture and corrosion, ensuring their performance in humid or corrosive environments. Protective coatings, such as platings or surface treatments, can be applied to the shaft’s surfaces to enhance their resistance to moisture, oxidation, and corrosion. Additionally, selecting materials with inherent corrosion resistance, such as stainless steel or specialized alloys, can further enhance the spline shaft’s ability to handle environmental conditions.

3. Dust and Contaminant Protection:

Spline shafts used in environments with high levels of dust, dirt, or contaminants can be equipped with protective measures. Seals, gaskets, or covers can be employed to prevent the ingress of particles into the spline engagement. These protective measures help maintain the integrity of the spline profile, minimize wear, and ensure smooth operation even in dirty or dusty conditions.

4. Lubrication and Maintenance:

Proper lubrication is essential for the reliable operation of spline shafts, especially in challenging environmental conditions. Lubricants with appropriate viscosity and additives can be selected to provide effective lubrication and protection against wear, friction, and corrosion. Regular maintenance and lubrication intervals should be followed to ensure optimal performance and longevity of the spline shaft.

5. Shock and Vibration Resistance:

Spline shafts are designed to withstand shock and vibration encountered in various applications. The spline engagement and shaft design can incorporate features such as tighter tolerances, increased contact area, or damping elements to minimize the effects of shock and vibration. Additionally, proper fastening and mounting techniques help secure the shaft and reduce the risk of loosening or failure due to dynamic loads.

6. Environmental Sealing:

In certain applications where spline shafts are exposed to harsh environmental conditions, such as underwater or in chemical environments, environmental sealing can be employed. Sealing methods such as O-rings, gaskets, or specialized seals provide an additional barrier against external elements, ensuring the integrity and performance of the spline shaft.

7. Compliance with Standards:

Spline shafts used in specific industries or applications may need to comply with industry standards or regulations regarding environmental conditions. Manufacturers can design and test their spline shafts to meet these requirements, ensuring that the shafts can handle the specified environmental conditions and perform reliably.

By incorporating design considerations, appropriate materials, protective coatings, lubrication, and maintenance practices, spline shafts can effectively handle variations in environmental conditions. This enables them to maintain their functionality, performance, and longevity even in challenging operating environments.

В чём преимущества использования шлицевых валов в механических системах?

Using spline shafts in mechanical systems offers several advantages. Here’s a detailed explanation:

1. Передача крутящего момента:

Шлицевые валы обеспечивают эффективную передачу крутящего момента между ведущим и ведомым компонентами. Взаимозацепляющиеся шлицы гарантируют надежную и стабильную передачу вращательного усилия, обеспечивая передачу мощности и движения в механических системах.

2. Относительная адаптация к движению:

Шлицевые валы позволяют компенсировать относительное перемещение между ведущим и ведомым компонентами. Они допускают осевые, радиальные и угловые смещения, компенсируя несоосность, тепловое расширение и вибрации. Эта гибкость помогает поддерживать надлежащее зацепление и минимизировать концентрацию напряжений.

3. Распределение нагрузки:

Шлицевые соединения на валу распределяют передаваемую нагрузку по всей поверхности зацепления. Это помогает снизить локальные напряжения и предотвращает преждевременный износ или выход из строя компонентов. Способность шлицевых валов распределять нагрузку способствует общей прочности и долговечности механической системы.

4. Точное позиционирование и управление:

Шлицевые валы обеспечивают точное позиционирование и управление механическими компонентами. Шлицевые соединения обеспечивают точное вращательное выравнивание, позволяя осуществлять точное угловое позиционирование и индексацию. Это крайне важно в тех областях применения, где требуется точное управление и синхронизация движений.

5. Взаимозаменяемость и стандартизация:

Шлицевые валы выпускаются в стандартизированных конструкциях и размерах. Это обеспечивает взаимозаменяемость компонентов и упрощает техническое обслуживание и замену. Стандартизация также упрощает процессы проектирования и производства, снижая затраты и сроки поставки.

6. Высокая пропускная способность линий электропередачи:

Шлицевые валы рассчитаны на высокие крутящие моменты. Взаимозацепляющиеся шлицы обеспечивают большую площадь контакта, распределяя передаваемый крутящий момент между несколькими зубьями. Это позволяет шлицевым валам выдерживать более высокие требования к передаче мощности, что делает их пригодными для тяжелых условий эксплуатации.

7. Универсальность:

Шлицевые валы могут быть спроектированы и изготовлены в соответствии с различными требованиями к применению. Их можно настроить по размеру, форме, количеству шлицов и профилю шлицов в соответствии со специфическими потребностями механической системы. Эта универсальность делает шлицевые валы пригодными для широкого спектра отраслей и применений.

8. Снижение проскальзывания и люфта:

При правильном проектировании и изготовлении шлицевые валы демонстрируют минимальное проскальзывание и люфт. Плотная посадка между шлицами предотвращает значительные осевые или радиальные перемещения при передаче крутящего момента, что приводит к повышению эффективности и точности в механических системах.

В заключение, преимущества использования шлицевых валов в механических системах включают эффективную передачу крутящего момента, компенсацию относительного перемещения, распределение нагрузки, точное позиционирование и управление, взаимозаменяемость, высокую мощность передачи, универсальность, а также уменьшение проскальзывания и люфта. Эти преимущества делают шлицевые валы надежным и эффективным выбором в различных областях применения, где важны передача мощности, гибкость и точное управление движением.


editor by CX 2024-03-15

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