Tag Archives: farm tractor

China wholesaler Pto Drive Shaft Farm Tractor Pto Shaft and Rotary Tiller Cardan Shaft for Agricultural Machinery

Product Description

                    Product: PTO Drive Shaft
Hardness: 58-64HRC
Delivery Date: 7-60 Days
MOQ: 1 /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Type: Agricultural Spare Part
Usage: Agricultural Spare Part-Pto
Material: 20crmnti
Power Source: Tractor
Weight: 4lbs
After-sales Service: 1year
Samples:
US$ 1/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

pto shaft

How do drive shafts ensure efficient power transfer while maintaining balance?

Drive shafts employ various mechanisms to ensure efficient power transfer while maintaining balance. Efficient power transfer refers to the ability of the drive shaft to transmit rotational power from the source (such as an engine) to the driven components (such as wheels or machinery) with minimal energy loss. Balancing, on the other hand, involves minimizing vibrations and eliminating any uneven distribution of mass that can cause disturbances during operation. Here’s an explanation of how drive shafts achieve both efficient power transfer and balance:

1. Material Selection:

The material selection for drive shafts is crucial for maintaining balance and ensuring efficient power transfer. Drive shafts are commonly made from materials such as steel or aluminum alloys, chosen for their strength, stiffness, and durability. These materials have excellent dimensional stability and can withstand the torque loads encountered during operation. By using high-quality materials, drive shafts can minimize deformation, flexing, and imbalances that could compromise power transmission and generate vibrations.

2. Design Considerations:

The design of the drive shaft plays a significant role in both power transfer efficiency and balance. Drive shafts are engineered to have appropriate dimensions, including diameter and wall thickness, to handle the anticipated torque loads without excessive deflection or vibration. The design also considers factors such as the length of the drive shaft, the number and type of joints (such as universal joints or constant velocity joints), and the use of balancing weights. By carefully designing the drive shaft, manufacturers can achieve optimal power transfer efficiency while minimizing the potential for imbalance-induced vibrations.

3. Balancing Techniques:

Balance is crucial for drive shafts as any imbalance can cause vibrations, noise, and accelerated wear. To maintain balance, drive shafts undergo various balancing techniques during the manufacturing process. Static and dynamic balancing methods are employed to ensure that the mass distribution along the drive shaft is uniform. Static balancing involves adding counterweights at specific locations to offset any weight imbalances. Dynamic balancing is performed by spinning the drive shaft at high speeds and measuring any vibrations. If imbalances are detected, additional adjustments are made to achieve a balanced state. These balancing techniques help minimize vibrations and ensure smooth operation of the drive shaft.

4. Universal Joints and Constant Velocity Joints:

Drive shafts often incorporate universal joints (U-joints) or constant velocity (CV) joints to accommodate misalignment and maintain balance during operation. U-joints are flexible joints that allow for angular movement between shafts. They are typically used in applications where the drive shaft operates at varying angles. CV joints, on the other hand, are designed to maintain a constant velocity of rotation and are commonly used in front-wheel-drive vehicles. By incorporating these joints, drive shafts can compensate for misalignment, reduce stress on the shaft, and minimize vibrations that can negatively impact power transfer efficiency and balance.

5. Maintenance and Inspection:

Regular maintenance and inspection of drive shafts are essential for ensuring efficient power transfer and balance. Periodic checks for wear, damage, or misalignment can help identify any issues that may affect the drive shaft’s performance. Lubrication of the joints and proper tightening of fasteners are also critical for maintaining optimal operation. By adhering to recommended maintenance procedures, any imbalances or inefficiencies can be addressed promptly, ensuring continued efficient power transfer and balance.

In summary, drive shafts ensure efficient power transfer while maintaining balance through careful material selection, thoughtful design considerations, balancing techniques, and the incorporation of flexible joints. By optimizing these factors, drive shafts can transmit rotational power smoothly and reliably, minimizing energy losses and vibrations that can impact performance and longevity.

pto shaft

Can drive shafts be customized for specific vehicle or equipment requirements?

Yes, drive shafts can be customized to meet specific vehicle or equipment requirements. Customization allows manufacturers to tailor the design, dimensions, materials, and other parameters of the drive shaft to ensure compatibility and optimal performance within a particular vehicle or equipment. Here’s a detailed explanation of how drive shafts can be customized:

1. Dimensional Customization:

Drive shafts can be customized to match the dimensional requirements of the vehicle or equipment. This includes adjusting the overall length, diameter, and spline configuration to ensure proper fitment and clearances within the specific application. By customizing the dimensions, the drive shaft can be seamlessly integrated into the driveline system without any interference or limitations.

2. Material Selection:

The choice of materials for drive shafts can be customized based on the specific requirements of the vehicle or equipment. Different materials, such as steel alloys, aluminum alloys, or specialized composites, can be selected to optimize strength, weight, and durability. The material selection can be tailored to meet the torque, speed, and operating conditions of the application, ensuring the drive shaft’s reliability and longevity.

3. Joint Configuration:

Drive shafts can be customized with different joint configurations to accommodate specific vehicle or equipment requirements. For example, universal joints (U-joints) may be suitable for applications with lower operating angles and moderate torque demands, while constant velocity (CV) joints are often used in applications requiring higher operating angles and smoother power transmission. The choice of joint configuration depends on factors such as operating angle, torque capacity, and desired performance characteristics.

4. Torque and Power Capacity:

Customization allows drive shafts to be designed with the appropriate torque and power capacity for the specific vehicle or equipment. Manufacturers can analyze the torque requirements, operating conditions, and safety margins of the application to determine the optimal torque rating and power capacity of the drive shaft. This ensures that the drive shaft can handle the required loads without experiencing premature failure or performance issues.

5. Balancing and Vibration Control:

Drive shafts can be customized with precision balancing and vibration control measures. Imbalances in the drive shaft can lead to vibrations, increased wear, and potential driveline issues. By employing dynamic balancing techniques during the manufacturing process, manufacturers can minimize vibrations and ensure smooth operation. Additionally, vibration dampers or isolation systems can be integrated into the drive shaft design to further mitigate vibrations and enhance overall system performance.

6. Integration and Mounting Considerations:

Customization of drive shafts takes into account the integration and mounting requirements of the specific vehicle or equipment. Manufacturers work closely with the vehicle or equipment designers to ensure that the drive shaft fits seamlessly into the driveline system. This includes adapting the mounting points, interfaces, and clearances to ensure proper alignment and installation of the drive shaft within the vehicle or equipment.

7. Collaboration and Feedback:

Manufacturers often collaborate with vehicle manufacturers, OEMs (Original Equipment Manufacturers), or end-users to gather feedback and incorporate their specific requirements into the drive shaft customization process. By actively seeking input and feedback, manufacturers can address specific needs, optimize performance, and ensure compatibility with the vehicle or equipment. This collaborative approach enhances the customization process and results in drive shafts that meet the exact requirements of the application.

8. Compliance with Standards:

Customized drive shafts can be designed to comply with relevant industry standards and regulations. Compliance with standards, such as ISO (International Organization for Standardization) or specific industry standards, ensures that the customized drive shafts meet quality, safety, and performance requirements. Adhering to these standards provides assurance that the drive shafts are compatible and can be seamlessly integrated into the specific vehicle or equipment.

In summary, drive shafts can be customized to meet specific vehicle or equipment requirements through dimensional customization, material selection, joint configuration, torque and power capacity optimization, balancing and vibration control, integration and mounting considerations, collaboration with stakeholders, and compliance with industry standards. Customization allows drive shafts to be precisely tailored to the needs of the application, ensuring compatibility, reliability, and optimal performance.

pto shaft

Are there variations in drive shaft designs for different types of machinery?

Yes, there are variations in drive shaft designs to cater to the specific requirements of different types of machinery. The design of a drive shaft is influenced by factors such as the application, power transmission needs, space limitations, operating conditions, and the type of driven components. Here’s an explanation of how drive shaft designs can vary for different types of machinery:

1. Automotive Applications:

In the automotive industry, drive shaft designs can vary depending on the vehicle’s configuration. Rear-wheel-drive vehicles typically use a single-piece or two-piece drive shaft, which connects the transmission or transfer case to the rear differential. Front-wheel-drive vehicles often use a different design, employing a drive shaft that combines with the constant velocity (CV) joints to transmit power to the front wheels. All-wheel-drive vehicles may have multiple drive shafts to distribute power to all wheels. The length, diameter, material, and joint types can differ based on the vehicle’s layout and torque requirements.

2. Industrial Machinery:

Drive shaft designs for industrial machinery depend on the specific application and power transmission requirements. In manufacturing machinery, such as conveyors, presses, and rotating equipment, drive shafts are designed to transfer power efficiently within the machine. They may incorporate flexible joints or use a splined or keyed connection to accommodate misalignment or allow for easy disassembly. The dimensions, materials, and reinforcement of the drive shaft are selected based on the torque, speed, and operating conditions of the machinery.

3. Agriculture and Farming:

Agricultural machinery, such as tractors, combines, and harvesters, often requires drive shafts that can handle high torque loads and varying operating angles. These drive shafts are designed to transmit power from the engine to attachments and implements, such as mowers, balers, tillers, and harvesters. They may incorporate telescopic sections to accommodate adjustable lengths, flexible joints to compensate for misalignment during operation, and protective shielding to prevent entanglement with crops or debris.

4. Construction and Heavy Equipment:

Construction and heavy equipment, including excavators, loaders, bulldozers, and cranes, require robust drive shaft designs capable of transmitting power in demanding conditions. These drive shafts often have larger diameters and thicker walls to handle high torque loads. They may incorporate universal joints or CV joints to accommodate operating angles and absorb shocks and vibrations. Drive shafts in this category may also have additional reinforcements to withstand the harsh environments and heavy-duty applications associated with construction and excavation.

5. Marine and Maritime Applications:

Drive shaft designs for marine applications are specifically engineered to withstand the corrosive effects of seawater and the high torque loads encountered in marine propulsion systems. Marine drive shafts are typically made from stainless steel or other corrosion-resistant materials. They may incorporate flexible couplings or dampening devices to reduce vibration and mitigate the effects of misalignment. The design of marine drive shafts also considers factors such as shaft length, diameter, and support bearings to ensure reliable power transmission in marine vessels.

6. Mining and Extraction Equipment:

In the mining industry, drive shafts are used in heavy machinery and equipment such as mining trucks, excavators, and drilling rigs. These drive shafts need to withstand extremely high torque loads and harsh operating conditions. Drive shaft designs for mining applications often feature larger diameters, thicker walls, and specialized materials such as alloy steel or composite materials. They may incorporate universal joints or CV joints to handle operating angles, and they are designed to be resistant to abrasion and wear.

These examples highlight the variations in drive shaft designs for different types of machinery. The design considerations take into account factors such as power requirements, operating conditions, space constraints, alignment needs, and the specific demands of the machinery or industry. By tailoring the drive shaft design to the unique requirements of each application, optimal power transmission efficiency and reliability can be achieved.

China wholesaler Pto Drive Shaft Farm Tractor Pto Shaft and Rotary Tiller Cardan Shaft for Agricultural Machinery  China wholesaler Pto Drive Shaft Farm Tractor Pto Shaft and Rotary Tiller Cardan Shaft for Agricultural Machinery
editor by CX 2024-04-22

China supplier CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft

Product Description

CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft

 

Product Description

 

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 CZPT 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.

FAQ

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.HOE LONG IS YOUR DELIVERY TIME AND SHIPMENT?

30-45days.

  /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Type: Pto Shaft
Usage: Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying, Agricultural Machinery,Farm Tractor
Material: 45cr Steel
Samples:
US$ 20/Piece
1 Piece(Min.Order)

|

Order Sample

Customization:
Available

|

Customized Request

.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.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

pto shaft

How do drive shafts ensure efficient power transfer while maintaining balance?

Drive shafts employ various mechanisms to ensure efficient power transfer while maintaining balance. Efficient power transfer refers to the ability of the drive shaft to transmit rotational power from the source (such as an engine) to the driven components (such as wheels or machinery) with minimal energy loss. Balancing, on the other hand, involves minimizing vibrations and eliminating any uneven distribution of mass that can cause disturbances during operation. Here’s an explanation of how drive shafts achieve both efficient power transfer and balance:

1. Material Selection:

The material selection for drive shafts is crucial for maintaining balance and ensuring efficient power transfer. Drive shafts are commonly made from materials such as steel or aluminum alloys, chosen for their strength, stiffness, and durability. These materials have excellent dimensional stability and can withstand the torque loads encountered during operation. By using high-quality materials, drive shafts can minimize deformation, flexing, and imbalances that could compromise power transmission and generate vibrations.

2. Design Considerations:

The design of the drive shaft plays a significant role in both power transfer efficiency and balance. Drive shafts are engineered to have appropriate dimensions, including diameter and wall thickness, to handle the anticipated torque loads without excessive deflection or vibration. The design also considers factors such as the length of the drive shaft, the number and type of joints (such as universal joints or constant velocity joints), and the use of balancing weights. By carefully designing the drive shaft, manufacturers can achieve optimal power transfer efficiency while minimizing the potential for imbalance-induced vibrations.

3. Balancing Techniques:

Balance is crucial for drive shafts as any imbalance can cause vibrations, noise, and accelerated wear. To maintain balance, drive shafts undergo various balancing techniques during the manufacturing process. Static and dynamic balancing methods are employed to ensure that the mass distribution along the drive shaft is uniform. Static balancing involves adding counterweights at specific locations to offset any weight imbalances. Dynamic balancing is performed by spinning the drive shaft at high speeds and measuring any vibrations. If imbalances are detected, additional adjustments are made to achieve a balanced state. These balancing techniques help minimize vibrations and ensure smooth operation of the drive shaft.

4. Universal Joints and Constant Velocity Joints:

Drive shafts often incorporate universal joints (U-joints) or constant velocity (CV) joints to accommodate misalignment and maintain balance during operation. U-joints are flexible joints that allow for angular movement between shafts. They are typically used in applications where the drive shaft operates at varying angles. CV joints, on the other hand, are designed to maintain a constant velocity of rotation and are commonly used in front-wheel-drive vehicles. By incorporating these joints, drive shafts can compensate for misalignment, reduce stress on the shaft, and minimize vibrations that can negatively impact power transfer efficiency and balance.

5. Maintenance and Inspection:

Regular maintenance and inspection of drive shafts are essential for ensuring efficient power transfer and balance. Periodic checks for wear, damage, or misalignment can help identify any issues that may affect the drive shaft’s performance. Lubrication of the joints and proper tightening of fasteners are also critical for maintaining optimal operation. By adhering to recommended maintenance procedures, any imbalances or inefficiencies can be addressed promptly, ensuring continued efficient power transfer and balance.

In summary, drive shafts ensure efficient power transfer while maintaining balance through careful material selection, thoughtful design considerations, balancing techniques, and the incorporation of flexible joints. By optimizing these factors, drive shafts can transmit rotational power smoothly and reliably, minimizing energy losses and vibrations that can impact performance and longevity.

pto shaft

How do drive shafts handle variations in load and vibration during operation?

Drive shafts are designed to handle variations in load and vibration during operation by employing various mechanisms and features. These mechanisms help ensure smooth power transmission, minimize vibrations, and maintain the structural integrity of the drive shaft. Here’s a detailed explanation of how drive shafts handle load and vibration variations:

1. Material Selection and Design:

Drive shafts are typically made from materials with high strength and stiffness, such as steel alloys or composite materials. The material selection and design take into account the anticipated loads and operating conditions of the application. By using appropriate materials and optimizing the design, drive shafts can withstand the expected variations in load without experiencing excessive deflection or deformation.

2. Torque Capacity:

Drive shafts are designed with a specific torque capacity that corresponds to the expected loads. The torque capacity takes into account factors such as the power output of the driving source and the torque requirements of the driven components. By selecting a drive shaft with sufficient torque capacity, variations in load can be accommodated without exceeding the drive shaft’s limits and risking failure or damage.

3. Dynamic Balancing:

During the manufacturing process, drive shafts can undergo dynamic balancing. Imbalances in the drive shaft can result in vibrations during operation. Through the balancing process, weights are strategically added or removed to ensure that the drive shaft spins evenly and minimizes vibrations. Dynamic balancing helps to mitigate the effects of load variations and reduces the potential for excessive vibrations in the drive shaft.

4. Dampers and Vibration Control:

Drive shafts can incorporate dampers or vibration control mechanisms to further minimize vibrations. These devices are typically designed to absorb or dissipate vibrations that may arise from load variations or other factors. Dampers can be in the form of torsional dampers, rubber isolators, or other vibration-absorbing elements strategically placed along the drive shaft. By managing and attenuating vibrations, drive shafts ensure smooth operation and enhance overall system performance.

5. CV Joints:

Constant Velocity (CV) joints are often used in drive shafts to accommodate variations in operating angles and to maintain a constant speed. CV joints allow the drive shaft to transmit power even when the driving and driven components are at different angles. By accommodating variations in operating angles, CV joints help minimize the impact of load variations and reduce potential vibrations that may arise from changes in the driveline geometry.

6. Lubrication and Maintenance:

Proper lubrication and regular maintenance are essential for drive shafts to handle load and vibration variations effectively. Lubrication helps reduce friction between moving parts, minimizing wear and heat generation. Regular maintenance, including inspection and lubrication of joints, ensures that the drive shaft remains in optimal condition, reducing the risk of failure or performance degradation due to load variations.

7. Structural Rigidity:

Drive shafts are designed to have sufficient structural rigidity to resist bending and torsional forces. This rigidity helps maintain the integrity of the drive shaft when subjected to load variations. By minimizing deflection and maintaining structural integrity, the drive shaft can effectively transmit power and handle variations in load without compromising performance or introducing excessive vibrations.

8. Control Systems and Feedback:

In some applications, drive shafts may be equipped with control systems that actively monitor and adjust parameters such as torque, speed, and vibration. These control systems use sensors and feedback mechanisms to detect variations in load or vibrations and make real-time adjustments to optimize performance. By actively managing load variations and vibrations, drive shafts can adapt to changing operating conditions and maintain smooth operation.

In summary, drive shafts handle variations in load and vibration during operation through careful material selection and design, torque capacity considerations, dynamic balancing, integration of dampers and vibration control mechanisms, utilization of CV joints, proper lubrication and maintenance, structural rigidity, and, in some cases, control systems and feedback mechanisms. By incorporating these features and mechanisms, drive shafts ensure reliable and efficient power transmission while minimizing the impact of load variations and vibrations on overall system performance.

pto shaft

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.

China supplier CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft  China supplier CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft
editor by CX 2024-01-04

China high quality CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft

Product Description

CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft

 

Product Description

 

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 CZPT 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.

FAQ

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.HOE LONG IS YOUR DELIVERY TIME AND SHIPMENT?

30-45days.

  /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Type: Pto Shaft
Usage: Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying, Agricultural Machinery,Farm Tractor
Material: 45cr Steel
Samples:
US$ 20/Piece
1 Piece(Min.Order)

|

Order Sample

Customization:
Available

|

Customized Request

.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.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

pto shaft

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

Manufacturers employ various strategies and processes to ensure the compatibility of drive shafts with different equipment. Compatibility refers to the ability of a drive shaft to effectively integrate and function within a specific piece of equipment or machinery. Manufacturers take into account several factors to ensure compatibility, including dimensional requirements, torque capacity, operating conditions, and specific application needs. Here’s a detailed explanation of how manufacturers ensure the compatibility of drive shafts:

1. Application Analysis:

Manufacturers begin by conducting a thorough analysis of the intended application and equipment requirements. This analysis involves understanding the specific torque and speed demands, operating conditions (such as temperature, vibration levels, and environmental factors), and any unique characteristics or constraints of the equipment. By gaining a comprehensive understanding of the application, manufacturers can tailor the design and specifications of the drive shaft to ensure compatibility.

2. Customization and Design:

Manufacturers often offer customization options to adapt drive shafts to different equipment. This customization involves tailoring the dimensions, materials, joint configurations, and other parameters to match the specific requirements of the equipment. By working closely with the equipment manufacturer or end-user, manufacturers can design drive shafts that align with the equipment’s mechanical interfaces, mounting points, available space, and other constraints. Customization ensures that the drive shaft fits seamlessly into the equipment, promoting compatibility and optimal performance.

3. Torque and Power Capacity:

Drive shaft manufacturers carefully determine the torque and power capacity of their products to ensure compatibility with different equipment. They consider factors such as the maximum torque requirements of the equipment, the expected operating conditions, and the safety margins necessary to withstand transient loads. By engineering drive shafts with appropriate torque ratings and power capacities, manufacturers ensure that the shaft can handle the demands of the equipment without experiencing premature failure or performance issues.

4. Material Selection:

Manufacturers choose materials for drive shafts based on the specific needs of different equipment. Factors such as torque capacity, operating temperature, corrosion resistance, and weight requirements influence material selection. Drive shafts may be made from various materials, including steel, aluminum alloys, or specialized composites, to provide the necessary strength, durability, and performance characteristics. The selected materials ensure compatibility with the equipment’s operating conditions, load requirements, and other environmental factors.

5. Joint Configurations:

Drive shafts incorporate joint configurations, such as universal joints (U-joints) or constant velocity (CV) joints, to accommodate different equipment needs. Manufacturers select and design the appropriate joint configuration based on factors such as operating angles, misalignment tolerances, and the desired level of smooth power transmission. The choice of joint configuration ensures that the drive shaft can effectively transmit power and accommodate the range of motion required by the equipment, promoting compatibility and reliable operation.

6. Quality Control and Testing:

Manufacturers implement stringent quality control processes and testing procedures to verify the compatibility of drive shafts with different equipment. These processes involve conducting dimensional inspections, material testing, torque and stress analysis, and performance testing under simulated operating conditions. By subjecting drive shafts to rigorous quality control measures, manufacturers can ensure that they meet the required specifications and performance criteria, guaranteeing compatibility with the intended equipment.

7. Compliance with Standards:

Manufacturers ensure that their drive shafts comply with relevant industry standards and regulations. Compliance with standards, such as ISO (International Organization for Standardization) or specific industry standards, provides assurance of quality, safety, and compatibility. Adhering to these standards helps manufacturers meet the expectations and requirements of equipment manufacturers and end-users, ensuring that the drive shafts are compatible and can be seamlessly integrated into different equipment.

8. Collaboration and Feedback:

Manufacturers often collaborate closely with equipment manufacturers, OEMs (Original Equipment Manufacturers), or end-users to gather feedback and incorporate their specific requirements into the drive shaft design and manufacturing processes. This collaborative approach ensures that the drive shafts are compatible with the intended equipment and meet the expectations of the end-users. By actively seeking input and feedback, manufacturers can continuously improve their products’ compatibility and performance.

In summary, manufacturers ensure the compatibility of drive shafts with different equipment through a combination of application analysis, customization, torque and power capacity considerations, material selection, joint configurations, quality control and testing, compliance with standards, and collaboration with equipment manufacturers and end-users. These efforts enable manufacturers to design and produce drive shafts that seamlessly integrate with various equipment, ensuring optimal performance, reliability, and compatibility in different applications.

pto shaft

What safety precautions should be followed when working with drive shafts?

Working with drive shafts requires adherence to specific safety precautions to prevent accidents, injuries, and damage to equipment. Drive shafts are critical components of a vehicle or machinery’s driveline system and can pose hazards if not handled properly. Here’s a detailed explanation of the safety precautions that should be followed when working with drive shafts:

1. Personal Protective Equipment (PPE):

Always wear appropriate personal protective equipment when working with drive shafts. This may include safety goggles, gloves, steel-toed boots, and protective clothing. PPE helps protect against potential injuries from flying debris, sharp edges, or accidental contact with moving parts.

2. Lockout/Tagout Procedures:

Before working on a drive shaft, ensure that the power source is properly locked out and tagged out. This involves isolating the power supply, such as shutting off the engine or disconnecting the electrical power, and securing it with a lockout/tagout device. This prevents accidental engagement of the drive shaft while maintenance or repair work is being performed.

3. Vehicle or Equipment Support:

When working with drive shafts in vehicles or equipment, use proper support mechanisms to prevent unexpected movement. Securely block the vehicle’s wheels or utilize support stands to prevent the vehicle from rolling or shifting during drive shaft removal or installation. This helps maintain stability and reduces the risk of accidents.

4. Proper Lifting Techniques:

When handling heavy drive shafts, use proper lifting techniques to prevent strain or injuries. Lift with the help of a suitable lifting device, such as a hoist or jack, and ensure that the load is evenly distributed and securely attached. Avoid lifting heavy drive shafts manually or with improper lifting equipment, as this can lead to accidents and injuries.

5. Inspection and Maintenance:

Prior to working on a drive shaft, thoroughly inspect it for any signs of damage, wear, or misalignment. If any abnormalities are detected, consult a qualified technician or engineer before proceeding. Regular maintenance is also essential to ensure the drive shaft is in good working condition. Follow the manufacturer’s recommended maintenance schedule and procedures to minimize the risk of failures or malfunctions.

6. Proper Tools and Equipment:

Use appropriate tools and equipment specifically designed for working with drive shafts. Improper tools or makeshift solutions can lead to accidents or damage to the drive shaft. Ensure that tools are in good condition, properly sized, and suitable for the task at hand. Follow the manufacturer’s instructions and guidelines when using specialized tools or equipment.

7. Controlled Release of Stored Energy:

Some drive shafts, particularly those with torsional dampers or other energy-storing components, can store energy even when the power source is disconnected. Exercise caution when working on such drive shafts and ensure that the stored energy is safely released before disassembly or removal.

8. Training and Expertise:

Work on drive shafts should only be performed by individuals with the necessary training, knowledge, and expertise. If you are not familiar with drive shafts or lack the required skills, seek assistance from qualified technicians or professionals. Improper handling or installation of drive shafts can lead to accidents, damage, or compromised performance.

9. Follow Manufacturer’s Guidelines:

Always follow the manufacturer’s guidelines, instructions, and warnings specific to the drive shaft you are working with. These guidelines provide important information regarding installation, maintenance, and safety considerations. Deviating from the manufacturer’s recommendations may result in unsafe conditions or void warranty coverage.

10. Disposal of Old or Damaged Drive Shafts:

Dispose of old or damaged drive shafts in accordance with local regulations and environmental guidelines. Improper disposal can have negative environmental impacts and may violate legal requirements. Consult with local waste management authorities or recycling centers to ensure appropriate disposal methods are followed.

By following these safety precautions, individuals can minimize the risks associated with working with drive shafts and promote a safe working environment. It is crucial to prioritize personal safety, use proper equipment and techniques, and seek professional help when needed to ensure the proper handling and maintenance of drive shafts.

pto shaft

What benefits do drive shafts offer for different types of vehicles and equipment?

Drive shafts offer several benefits for different types of vehicles and equipment. They play a crucial role in power transmission and contribute to the overall performance, efficiency, and functionality of various systems. Here’s a detailed explanation of the benefits that drive shafts provide:

1. Efficient Power Transmission:

Drive shafts enable efficient power transmission from the engine or power source to the wheels or driven components. By connecting the engine or motor to the driven system, drive shafts efficiently transfer rotational power, allowing vehicles and equipment to perform their intended functions. This efficient power transmission ensures that the power generated by the engine is effectively utilized, optimizing the overall performance and productivity of the system.

2. Versatility:

Drive shafts offer versatility in their applications. They are used in various types of vehicles, including cars, trucks, motorcycles, and off-road vehicles. Additionally, drive shafts are employed in a wide range of equipment and machinery, such as agricultural machinery, construction equipment, industrial machinery, and marine vessels. The ability to adapt to different types of vehicles and equipment makes drive shafts a versatile component for power transmission.

3. Torque Handling:

Drive shafts are designed to handle high levels of torque. Torque is the rotational force generated by the engine or power source. Drive shafts are engineered to efficiently transmit this torque without excessive twisting or bending. By effectively handling torque, drive shafts ensure that the power generated by the engine is reliably transferred to the wheels or driven components, enabling vehicles and equipment to overcome resistance, such as heavy loads or challenging terrains.

4. Flexibility and Compensation:

Drive shafts provide flexibility and compensation for angular movement and misalignment. In vehicles, drive shafts accommodate the movement of the suspension system, allowing the wheels to move up and down independently. This flexibility ensures a constant power transfer even when the vehicle encounters uneven terrain. Similarly, in machinery, drive shafts compensate for misalignment between the engine or motor and the driven components, ensuring smooth power transmission and preventing excessive stress on the drivetrain.

5. Weight Reduction:

Drive shafts contribute to weight reduction in vehicles and equipment. Compared to other forms of power transmission, such as belt drives or chain drives, drive shafts are typically lighter in weight. This reduction in weight helps improve fuel efficiency in vehicles and reduces the overall weight of equipment, leading to enhanced maneuverability and increased payload capacity. Additionally, lighter drive shafts contribute to a better power-to-weight ratio, resulting in improved performance and acceleration.

6. Durability and Longevity:

Drive shafts are designed to be durable and long-lasting. They are constructed using materials such as steel or aluminum, which offer high strength and resistance to wear and fatigue. Drive shafts undergo rigorous testing and quality control measures to ensure their reliability and longevity. Proper maintenance, including lubrication and regular inspections, further enhances their durability. The robust construction and long lifespan of drive shafts contribute to the overall reliability and cost-effectiveness of vehicles and equipment.

7. Safety:

Drive shafts incorporate safety features to protect operators and bystanders. In vehicles, drive shafts are often enclosed within a protective tube or housing, preventing contact with moving parts and reducing the risk of injury in the event of a failure. Similarly, in machinery, safety shields or guards are commonly installed around exposed drive shafts to minimize the potential hazards associated with rotating components. These safety measures ensure the well-being of individuals operating or working in proximity to vehicles and equipment.

In summary, drive shafts offer several benefits for different types of vehicles and equipment. They enable efficient power transmission, provide versatility in various applications, handle torque effectively, offer flexibility and compensation, contribute to weight reduction, ensure durability and longevity, and incorporate safety features. By providing these advantages, drive shafts enhance the performance, efficiency, reliability, and safety of vehicles and equipment across a wide range of industries.

China high quality CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft  China high quality CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft
editor by CX 2023-12-22

China 1 Series Connect Triangle Tube Yokes PTO Shaft Components Driveline Parts For Farm Tractor Agriculture Machinery drive shaft parts

Condition: New
Guarantee: 1 12 months
Relevant Industries: Production Plant, Equipment Repair Outlets, Farms, Retail, Development works
Weight (KG): 1.5 KG
Showroom Place: None
Video clip outgoing-inspection: Presented
Equipment Check Report: Offered
Advertising Kind: Ordinary Solution
Variety: Tube Yokes
Use: Tractors
Solution name: Triangle Tube Yokes PTO Shaft Components Driveline Areas
Coloration: Silver, Yellow,black,OEM
Perform: Energy transmission
Keyword: PTO Generate Shaft Tube yoke
MOQ: 1
Technics: Forge, Chilly-Drawn
Packing depth: pp bag + paper box
Substance: 40Cr,forty five#
Emission Standard: Euro II
Dimensions: OEM
Packaging Particulars: Shaft Elements -> Plastic Bag -> White/Color box -> Carton -> Pallet
Port: HangZhou or ZheJiang

Solution Overview one Sequence Connect Triangle Tube Yokes PTO Shaft Factors Driveline Elements For Farm Tractor Agriculture Machinery Item Specs

Name1 Series Connect Triangle Tube Yokes PTO Shaft Components Driveline Parts For Farm Tractor Agriculture Equipment
AdvantageWe are 1 specialist maker of all varieties driveline, Pto shaft and elements.Our manufacturing unit Protect an location of 13320.
ApplicationKinds of Tractors & Farm Implements
PartsJapanese tractor transmission clutch disc areas for B1400 B7000
Processing Of YokeForging
Plastic ProtectYWBWYSBSEtc
ColorGreenOrangeYellowBlack Ect.
SeriesT1-T10 L1-L6S6-S1010HP-150HP with SA,RA, HangZhou CZPT industrial air compressor steam turbine compressor SB,SFF,WA,CV, Etc
Tube KindLemon,Trianglar,Star,Square,Hexangular,Spline,Unique, Ect
Spline Variety1 1/8″ Z61 3/8″ Z6 1 3/8″ Z21 1 3/4″ Z20 1 3/4″ Z6 8-38*32*6 8-42*36*7 8-48*42*8 Head Gasket Bolts Set Match For Md976845 Md97-6845 Motor Parts Total Gasket Established Kit
Tractor Model we can supplyB1500/1400,B5000,B6000, B7000, TU1400, TX1400, TX1500, YM F1401, YM1400 And many others.
Characteristics AT A Look Other pertinent elements for vehicles or machinery we have manufactured in our workshop are as follows:Travel shaft parts and assemblies,Universal joint elements and assemblies,PTO drive shafts,Spline shafts,Slip yokes,Weld yokes,Flange yokes,Steering columns,Connecting rods,and so forth. Item packaging Exhibition Why Choose Us FAQ Q: Do you supply samples ? A: Yes, we could supply the sample.Q: How prolonged is your supply time ? What is your terms of payment ?A: Normally it is thirty-45 times. The time may fluctuate based on the merchandise and the degree of customization.Q: What is the exact MOQ or price tag for your item ?A: As an OEM organization, we can offer and adapt our items to a extensive variety of wants.Hence, MOQ and value could significantly range with measurement, content and even more technical specs For occasion, S sequence helical-worm gearbox electricity transmission vertical to horizontal gear reducer high priced goods or normal goods will generally have a reduced MOQ.Please speak to us with all related particulars to get the most correct quotation.If you have an additional question, make sure you really feel totally free to contact us.

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How to Identify a Faulty Drive Shaft

The most common problems associated with automotive driveshafts include clicking and rubbing noises. While driving, the noise from the driver’s seat is often noticeable. An experienced auto mechanic can easily identify whether the sound is coming from both sides or from one side. If you notice any of these signs, it’s time to send your car in for a proper diagnosis. Here’s a guide to determining if your car’s driveshaft is faulty:

Symptoms of Driveshaft Failure

If you’re having trouble turning your car, it’s time to check your vehicle’s driveshaft. A bad driveshaft can limit the overall control of your car, and you should fix it as soon as possible to avoid further problems. Other symptoms of a propshaft failure include strange noises from under the vehicle and difficulty shifting gears. Squeaking from under the vehicle is another sign of a faulty driveshaft.
If your driveshaft fails, your car will stop. Although the engine will still run, the wheels will not turn. You may hear strange noises from under the vehicle, but this is a rare symptom of a propshaft failure. However, you will have plenty of time to fix the problem. If you don’t hear any noise, the problem is not affecting your vehicle’s ability to move.
The most obvious signs of a driveshaft failure are dull sounds, squeaks or vibrations. If the drive shaft is unbalanced, it is likely to damage the transmission. It will require a trailer to remove it from your vehicle. Apart from that, it can also affect your car’s performance and require repairs. So if you hear these signs in your car, be sure to have it checked by a mechanic right away.

Drive shaft assembly

When designing a propshaft, the design should be based on the torque required to drive the vehicle. When this torque is too high, it can cause irreversible failure of the drive shaft. Therefore, a good drive shaft design should have a long service life. Here are some tips to help you design a good driveshaft. Some of the main components of the driveshaft are listed below.
Snap Ring: The snap ring is a removable part that secures the bearing cup assembly in the yoke cross hole. It also has a groove for locating the snap ring. Spline: A spline is a patented tubular machined element with a series of ridges that fit into the grooves of the mating piece. The bearing cup assembly consists of a shaft and end fittings.
U-joint: U-joint is required due to the angular displacement between the T-shaped housing and the pinion. This angle is especially large in raised 4x4s. The design of the U-joint must guarantee a constant rotational speed. Proper driveshaft design must account for the difference in angular velocity between the shafts. The T-bracket and output shaft are attached to the bearing caps at both ends.
air-compressor

U-joint

Your vehicle has a set of U-joints on the driveshaft. If your vehicle needs to be replaced, you can do it yourself. You will need a hammer, ratchet and socket. In order to remove the U-joint, you must first remove the bearing cup. In some cases you will need to use a hammer to remove the bearing cup, you should be careful as you don’t want to damage the drive shaft. If you cannot remove the bearing cup, you can also use a vise to press it out.
There are two types of U-joints. One is held by a yoke and the other is held by a c-clamp. A full ring is safer and ideal for vehicles that are often used off-road. In some cases, a full circle can be used to repair a c-clamp u-joint.
In addition to excessive torque, extreme loads and improper lubrication are common causes of U-joint failure. The U-joint on the driveshaft can also be damaged if the engine is modified. If you are driving a vehicle with a heavily modified engine, it is not enough to replace the OE U-joint. In this case, it is important to take the time to properly lubricate these components as needed to keep them functional.

tube yoke

QU40866 Tube Yoke is a common replacement for damaged or damaged driveshaft tubes. They are desirably made of a metallic material, such as an aluminum alloy, and include a hollow portion with a lug structure at one end. Tube yokes can be manufactured using a variety of methods, including casting and forging. A common method involves drawing solid elements and machining them into the final shape. The resulting components are less expensive to produce, especially when compared to other forms.
The tube fork has a connection point to the driveshaft tube. The lug structure provides attachment points for the gimbal. Typically, the driveshaft tube is 5 inches in diameter and the lug structure is 4 inches in diameter. The lug structure also serves as a mounting point for the drive shaft. Once installed, Tube Yoke is easy to maintain. There are two types of lug structures: one is forged tube yoke and the other is welded.
Heavy-duty series drive shafts use bearing plates to secure the yoke to the U-joint. All other dimensions are secured with external snap rings. Yokes are usually machined to accept U-bolts. For some applications, grease fittings are used. This attachment is more suitable for off-road vehicles and performance vehicles.
air-compressor

end yoke

The end yoke of the drive shaft is an integral part of the drive train. Choosing a high-quality end yoke will help ensure long-term operation and prevent premature failure. Pat’s Driveline offers a complete line of automotive end yokes for power take-offs, differentials and auxiliary equipment. They can also measure your existing parts and provide you with high quality replacements.
A U-bolt is an industrial fastener with threaded legs. When used on a driveshaft, it provides greater stability in unstable terrain. You can purchase a U-bolt kit to secure the pinion carrier to the drive shaft. U-bolts also come with lock washers and nuts. Performance cars and off-road vehicles often use this type of attachment. But before you install it, you have to make sure the yoke is machined to accept it.
End yokes can be made of aluminum or steel and are designed to provide strength. It also offers special bolt styles for various applications. CZPT’s drivetrain is also stocked with a full line of automotive flange yokes. The company also produces custom flanged yokes for many popular brands. Since the company has a comprehensive line of replacement flange yokes, it can help you transform your drivetrain from non-serviceable to serviceable.

bushing

The first step in repairing or replacing an automotive driveshaft is to replace worn or damaged bushings. These bushings are located inside the drive shaft to provide a smooth, safe ride. The shaft rotates in a rubber sleeve. If a bushing needs to be replaced, you should first check the manual for recommendations. Some of these components may also need to be replaced, such as the clutch or swingarm.

China 1 Series Connect Triangle Tube Yokes PTO Shaft Components Driveline Parts For Farm Tractor Agriculture Machinery     drive shaft parts	China 1 Series Connect Triangle Tube Yokes PTO Shaft Components Driveline Parts For Farm Tractor Agriculture Machinery     drive shaft parts
editor by Cx 2023-06-19

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Rotary cultivator for fifteen-160HP tractor

Design

Matched EPTT

(hp)

Functioning width(cm)

Functioning depth(cm)

No.of knives

Type of knife

Fat

(kg)

1GQN/GN-80

15-twenty

70

10-18

eighteen

IT225

170

1GQN/GN-one hundred

18-twenty

ninety

10-eighteen

22

IT225

one hundred eighty

1GQN/GN-a hundred twenty five

twenty five

a hundred and fifteen

ten-18

26

IT225

one hundred ninety

1GQN/GN-a hundred thirty five

twenty five-30

125

ten-18

28

IT225

195

1GQN/GN-140

twenty five-30

130

10-18

thirty

IT225

200

1GQN/GN-150

twenty five-thirty

one hundred forty

10-eighteen

34

IT225

210

1GQN/GN-160

30-40

150

ten-eighteen

38

IT225

230

1GQN/GN-a hundred and eighty

fifty-55

a hundred sixty five

twelve-twenty

forty two

IT245

350

1GQN/GN-200

fifty five-seventy five

185

twelve-20

forty six

IT245

370

1GQN/GN-220

sixty-eighty

205

twelve-twenty

fifty

IT245

390

1GQN/GN-250

70-ninety

235

twelve-20

fifty eight

IT245

420

1GQN/GN-300

80-90

285

twelve-20

70

IT245

480

1GQN/GN-250

middle box

90-120

235

twelve-20

fifty eight

IT245

580

1GQN/GN-300

middle box

ninety-120

285

twelve-20

70

IT245

600

1GQN/GN-300

Large box

130-a hundred and sixty

285

twelve-twenty

70

IT245

800

1GQN/GN-350

Massive box

130-160

335

12-twenty

82

IT245

870

1GQN/GN-four hundred

Big box

one hundred thirty-160

385

twelve-20

ninety four

IT245

940

HangEPT EPT EPTTry EPTT,Ltd
Cellular 1342985717

Web site:

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Manufacturing unit Adress:West,baotong street of the weiEPTT,ZheJiang province,china

Characteristic
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(2) Dual phase clutch,16F 8R EPTshift, flat deck available,straightforward to run
(three) Adopt EPT engine, EPTT popular diesel motor , quality assurance
(four)Rear three-stage suspension, multi way valve, equipped all varieties of the farm implement
(five)Streamlined design, novel and gorgeous appearance

TG Chassis Sequence 16F 8R EPTshift / EPT 6-cylinEPTTEngine Tractor

Major EPTnical Info of TH1804-TH2104 Tractor
Tractor parameters Design No TH1804 / TH2004 / TH2104
Kind four X four wheeled EPT
L X W X H(mm) 5270mm X 2450mm X 3000mm
Wheel base(mm) 2680
Entrance wheel tread(mm) 1850(step adjustable)
Rear wheel tread(mm) 1875(stepless adjustable)
Min ground clearance 530mm
Dry mass(kg) 5930
EPTT Dry Kind EPTT Motion EPTTly EPTing
Steering EPT Steering
Motor data Engine design EPT WP6G220E330
Engine type Inline,cooled h2o,four stroke
Motor Rated EPTT 135kw / 150kw / 154.4kw
Motor Rated velocity 2200(r/min)
Fuel diesel
Tyre Entrance Tyre 14.nine-28
Rear Tyre eighteen.4-38
PTO EPTT box 16f 8r shifts
Suspension sort Rear three stage suspension classification II
Pto pace 760/850 r /min,540/1000r/min
Pto shift amp spline dimensions 35 spline 6 enamel
EPT power(N) 37056

EPTT EPTTlements
Rear 3-point suspension, multi way valve, outfitted all kinds of the farm implement
We offer all types of tractor implements, like entrance finish loader, backhoe, disc plough, disc hEPT, tiller, cultivator, sprayer, corn soya EPTTer/ seeder, rice transEPTTer, rice harvester, rice mill, potato harvestor, mower, front finish loaEPTTand pbackhoe, snowbrush, hay baler, EPTTer etc. We provide you excellent rates with high quality.

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We have handed ISO9001, CE, CCC and other worldwide export certification

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WeiEPTT EPTTihong Tractor EPTT,Ltd estabEPTTd in 1990, with protection of 206677 sq. meters, is one particular of the most specialist tractor manufacturer in EPTT. With 20 a long time deveXiHu (West EPT) Dis.Hu (West EPT) Dis.ment, EPTTihong is able of making tractor from 25HP to 240HP and has a large market place share at property and overseas. EPTTihong has its very own foundry, casting, EPTTry processing cEPTTr. Some parts are produced by itself to realize the EPTT high quality management from spare areas.
Numerous types tractors for decision,welcome to inquiry!

Services and Guarantee
Pre-sales provider
1.24 hours on the web, Any queries about our EPTT will be speedily replied.
two.The best possible design and variety in accordance to customer’s demands and environment
three. Welcome to go to our manufacturing unit and examine cooperation
Promoting services
1.examination and examine every single tractor carefully and critically
two. EPTnical guidance on typical problems, Give XiHu (West EPT) Dis.Hu (West EPT) Dis.traces and video clips on how to use them
three.deliver you the tractor photographs for you prior to EPTT for your comfimation
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FAQ
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We are a professional manufacturer of tractors. It has more than twenty many years of expertise.
2. Q: Can we use our emblem or layout?
Confident,OEM is welcome any time.we can also supply EPTT tractor model design.
3. Q:About price tag
The price tag is negotiable. It can be transformed according to tractor optional or bundle.
four. Q:what’s your payment phrases?
Usually we use T/T, we also settle for other payment terms,this sort of as Wstern Uion,Pypal and L/C
five. Q: What’s your MOQ?
one set.
6.Q:what is actually the tractor optional elements?
Can be geared up with air EPT,Anti-flap,EPTT,Other motor,Paddy tire,A/C taxi,EPTT tire or your requipment.
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Insisting on operation tenet of quotgood religion and top quality very first quot, we do our greatest to supply best products and EPTT-hearted provider. We actively cooperate with study institutes and transnational company, in orEPTTto realize continual innovation. WeiEPTT EPTTiEPTTractor EPTT, Ltd. warmly welcomes domestic and abroad customers to check out us!!

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With integrated frame and independent expHangZhouble PTO may easily add such accessories as loading, excavation, bulldozing, well digging, and lifting etc. to expand functions of tractor and increase utilization rate of tractor.
 
B. Easy to utilize matured technology
Adoption of matured technology in loading truck, engineering machinery, and other industry may directly be made for product components. For example, application of such technologies as caliper disc brake, wet clutch, synchronizer, fuel and gas booster etc may accelerate to upgrade technology of large-power tractor products relying on developing advantages in the other industries.

C. Easy to expand portfolio of product
Adoption of matured products from loading truck, engineering machinery, and agricultural machinery are made for the components. For each type of product, different series of specification have been designed. Optimized portfolios of these series of components have formed products with different power ranges, which may greatly reduce developing cycle of products. Over four years, eight models with more than 30 variants have totally been developed by 110-280 HP in successively, where mass production has been made for six models.

D. Easy to meet user’ requirement of individualization 
Adjustment of speed ratio of transfer box may have different speed with different shifts to meet agricultural requirements of refinement in different areas. Adjustment of speed ratio of final transfer box may meet the requirements of downstream output rpm against different countries. The tractors may be customized according to user’s requirements against functional modules.

E. Easy to organize mass production
Adoption of general components has been made for modularized structures to fully utilize social resources and professionalized production and manufacturing platform in C. Large-scale fixed assets is unnecessarily invested to produce wheel type of large tractor with high power in mass production, which may change traditional production organization method of tractor and solve current production bottleneck for production of large traditional tractor.

F. Easy to Service
All possible defects can easily be found and easy maintenance may be made due to modularized structure.
 

Model   KAT1604-F
Engine Power/velocity kW/r/min 118(a hundred and sixty)/2200
Specific Fuel Consumption g/kw.h  
Drive Type / 4×4
Dimension(Size/Width/Top) mm 5990/2580(dual3510)/3280
Wheel Base mm 3080
Track(Front wheel) mm 1888-2124
Track(Rear wheel) mm 1952-2568
Min. Ground Clearance mm 450
Min.running weight kg 7800
Front counter weight kg four hundred
Rated Traction Force kN 36
No. of gear   24F+8R
Forward Gear Pace km/h two-34
Reverse Gear Pace km/h 2-19
Tyre Model Front Tires / 14.9-28
Rear Tires / eighteen.4-38
Power-output shaft Type / Rear position or independent
Power-output shaft Rated Speed r/min 540/one thousand
Max. Pull-down piston pull kN 36

 

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Specification:

  1. 3 level linkage
  2. Graphite casting iron gearbox
  3. Tractor energy needed: 18-30HP
  4. With CE certificate

TM90-one hundred forty:forty eight-21 sets in 20ft container, ninety six-43sets in 40ft container and 112-50 sets in 40HQ.
Production time: 22 -30 doing work times.
Product Description                                    
Perform

  1. It is utilised for reducing larger weeds in the discipline, and also suitable for bushes or rougher weeds.
  2. It cuts grass by high-pace by higher-pace parallel turned blades.

Efficiency AND Advantage

  1. Gearbox is created of graphite casting iron, with far better content efficiency, not effortless broken.
  2. With adjustable rear wheel (option), it can avert the entire body tail sinking, and the spacers over it can change the slicing top.
  3. Blade spacers between up and down blade seat plates or relationship plates can be changed more simply following wearing, and the substitution cost will be scaled-down.
  4. The improved design can increase slicing efficiency, and the blades are thicker and heavier, not effortless to crack when meeting hard objects.
  5. The machine is more tough and performs a lot more stably owing to its heavier excess weight.
  6. The blades are thicker, and the plates all around has been strengthened. Two blades and three blades can be decided on in accordance to distinct needs.  
  7. With front protection chain, it can prevent splashing.
  8. Cat. I universal three-point hitch cardan shaft.

Merchandise Screen                                         
  

 
 
Specs

 

Design TM-90 TM-a hundred TM-one hundred twenty TM-one hundred forty
Dimension(mm) 950*900*900mm 1050*one thousand*900 1250*1200*900 1450*1400*900
Excess weight(Kg) 115KG 145KG 165KG 175KG
Chopping width 85cm 95cm 115cm 135cm
PTO Enter Pace 540r/min 540 r/min 540 r/min 540 r/min
Power Necessary eighteen-25HP 18-25HP twenty-30HP 20-30HP
Packing size(mm) 1050*1000*2200 1150*1100*2200 1350*1300*2200 1550*1500*2200

Product Depth                                            
Company Profile                                                             

HangZhou EPT Business & Trade Co., Ltd., is a expert company and exporter of whole established of agriculture equipment and backyard equipment. Our business was set up given that 2003 with Hanma Market Firm.

Our main merchandise include rotovator, flail mower, ending mower, topper mower, wooden chipper, plow, cultivator, potato harvester/ planter and Japanese tractor components, and many others. Thanks to our super EPT good quality stHangZhourd and speedy & excellent after-product sales service, EPT machines are tremendously popular in various marketplaces around the entire world, and presently arrived at to Europe, North The united states, South The us, Australia, virtually handles 80 nations around the world in World.

EPT always feel that we will take better farming existence to you by top-quality laser slicing device & CNC bending device & expert paint-spraying & strong welding.

Packing & Transport                                                                      

Packaging Detail: Iron pallet or wood instances
Shipping and delivery Element: By sea or By air

1. Water-proof packing with the EPT export stHangZhourd by 20ft, 40ftcontainer.
Picket Scenario or Iron Pallet.
2. The entire set of machines measurement are massive as typical, so we will use Watertight materia EPT to pack
all of them. The motor, gear box or other very easily broken areas, we will place them into box. 

Machine videos in YOUTOBE                                       
https://youtu.be/UCDWDR3Pjrg                             EPT business movie

https://youtu.be/Bc8UzmpHiyU                         EFD flail mower

https:///observe?v=Bh73zRIYBpc          EFDL Side MOWERS

https:///watch?v=O_tVXodWdN8         EFG FLAIL MOWERS   

https:///look at?v=ZuWSCmiPows         EFGL Facet MOWERS

https:///watch?v=iH6uQiqEyuQ          FM Ending MOWERS

https:///observe?v=VLUEyam_5DY        TM TOPPER MOWERS

https:///view?v=jphaylxaKUg            RT ROTARY TILLERS

https://youtu.be/d3H1-yXUImc                                 AP-90 POTATO HARVESTER

https://youtu.be/AAkgnV_bY80                        LF-PT32 POTATO PLANTER

https:///observe?v=pb76s1cHRgU&feature  Wood chipper BRH80 

https://youtu.be/66geQQOUTLY                        wood chipper BX-42

FAQ:                                                                               
Q1. How to get Topper mowers?
Inquiry ———> Quotation ——–>Price affordable ——->Check with specification —–>Proforma Bill despatched ————>Payment made ——-> Generating the objects ——->Product cargo ———–> Client confirm

Q2.How long is the shipping and delivery day for brush mowers?
A:In basic, we can ship the merchandise inside thirty-forty five days following receiving your payment. Of training course, it also depends on your quantity.

Q3. How can I get to your manufacturing unit to get brush mowers?
A:We are found in HangZhou, only 1 hour’s distance to ZheJiang or HangZhou. You can fly to ZheJiang /HangZhou/HangZhou Airport , the transportation is extremely practical

This fall.Do you have inventory for brush mowers?
A:In basic, we have some inventory, although if you require a bulk purchase, we nonetheless need to have time to make it. Of program, we will advise all detai EPT you just before your payment.

Q5: What’s your major goods?
A: Our products are coated virtually all farm machines and Japanese tractors parts, we can meet your any needs.

Q6. What is your phrases of payment?
A: T/T, L/C, Paypal, Western Union
 

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                     3WPZ-5000X4 sort self propelled spray boom sprayer

3WPZ-5000X4 collection of sprayer is suitable for spraying the medicament for the planter of bean, corn, cotton, grain.
Also for lawn,fruiter,vegetable, road facet tree. The potential could be 5000L, the spraying width could be twenty five with 73hp.
Positive aspects:
•This sort of boom sprayer is a tractor mounted sprayer.
•Wide functioning scope,spraying for bean,cotton,corn and many others.
•Wide spraying with to be 16m max.and the doing work angle of this tractor sprayer could be modified.
•The capability of mounted growth sprayer could be adjusted to meet up with distinct need to have from the person.

 Model  3WPZ-5000X4 self-propelled increase sprayer  Pump type  Plunger pump
 Engine design  4L88 (Changchai) turbocharged EPT engine  Pump product  OS-5200
 Power / pace  73hp      2400r/min  Pump stress  0-45kgf/cm²
 Displacement stage  China III  Pump movement  200-240L/min
 Gear  Forward gear 4,reverse equipment one  Pump velocity  600-800r/min
 Drive manner  Four-wheel travel  Tank capacity  5000L
 Steering mode  Hydraulic steering  Spray peak  0.5-3.0m
 Mixing way  Jet mixing  Nozzle product  No.3
 Folding way  Hydraulic folding  Spray angle  110 °
 Boom  29m(customizable)  Nozzle stream  1.2L/min
 Ground clearance  1.1-1.4m(customizable)  System work stress  0.3-.5Mpa
 Wheel monitor  2.6-3.2m(adjustable)  3 filtration system  Tank inlet, pump inlet, nozzle
 Operating performance  38-forty eight acres / hour  Battery  12V/120AH
 Walking speed  ≤ 35km/h  Front tire model  Tractor tires 9.5-32
 Overall dimension  7500mm x 3400mm x 3400mm  Rear tire model  Tractor tires 9.5-32
 Weight  5033kg  Water tank  15L

Q:Are you a factory or buying and selling company?

A:We are a manufacturing facility.

Q: How does your manufacturing facility do with regards to quality manage?

A: Quality is priority. we  often say excellent relevance to top quality controlling from the really starting to the really stop.

Q: Do you have a item accessory?

A: Yes, we have the accessories of the solution.

Q:Can you personalize the product?

A:We can customise the item.

Q: What’s your payment terms?

A: Payment terms is T/T or L/C,We accept all reasonable payment.

Q: How about delivery time of your machine?

A: The delivery time is in 60 working days. It depending your quantity.

 

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Competence for industrial chains and sprockets It is our everyday challenge to offer our consumers with the optimum merchandise – that signifies optimal for the needed application and for the customers’ certain needs. In some circumstances it signifies that we really build and manufacture quite particular chain kinds for one particular distinct consumer. In buy to be in a position to do so, a few factors are important:We also can layout and make non-common items to fulfill customers’ particular requirements.

Overview

Quick Information

Applicable Industries:

Manufacturing Plant

Material:
The lemon tube is suited for transmissible power of sixteen-35HP, it is the chosen option for substantial speeds and lower torque transmission. The two-lobe lemon tube grants lower vibrations up to 2600 rpm with lengths not exceeding 800mm. AC sequence with 6-lobe tubes (star)

solid iron

Software:

K-700 Elements

Bundle:

Carton

Feature:

Transmission Electrical power

Shipping time:

seven-15days

Size:

ten*ten*4.2cm

Weight:

.44kg

Quality:

100%examined

Certification:

ISO9001:2008

OEM:

236-1701138

Source Capability

Provide Capacity:
1000 Piece/Parts per Day

Packaging & Delivery

EPG aims at enjoying a leading role in a market place which keeps building new competition strategies with regard to good quality, economy and presence. This goal is to be reached by means of the joint assistance coming from all the company’s departments (Production dept., Technological dept. and Sales dept.) and a highly experienced throughout the world distribution community.

Packaging Details
Carton packing
Port
Tianjin xingang port, Lianyungang port. Yiwu port, Shanghai
Lead Time
:
Amount(Bags) 1 – 150 >150
Est. Time(days) 5 To be negotiated

On the web Customization

 
 
 
 
Relevant IndustriesEquipment Restore Retailers,Farms
SortK-700 Parts
UseK-seven-hundred Elements
Area of OriginCHINA
Brand NameEP
Materialssolid  iron
ApplicationK-700 Parts
BundleCarton
CharacteristicTransmission Electricity
Shipping time7-15days
Dimensions10*10*4.2cm
Excess weight.44kg
Top quality100%analyzed
CertificationISO9001:2008
OEM236-1701138
 
 
 
 
 
 
 
 
 
If you need any favorable or fast delivery welcome to contact us
Q1:How your organization typically transports items to your countries?
This issue is largely determined by the amount of the goods. If the number of orders is ample for a container, it is advisable that containers be shipped by sea or rail if the variety of orders is tiny, they can be transported by the shipping business.
Q2:Is your firm’s goods retailable?
Sorry, we do not acknowledge retail orders. Our purchase amount is decided according to the packaging of the goods. For example, if there are thirty instances in one box, then thirty are the most affordable get amount.
Q3:What is the payment method?
If it is a spot, we need to acquire the total payment prior to they can be shipped if it is an buy, then in accordance to the prepaid 30″EPG” model rotocultivator ploughshares in T.S. complete traces created in our manufacturing unit have been examined and appraised by the Ministry of Agriculture and have received the license of popularizing farm machinery promulgated by the Ministry of Agriculture of the People’s Republic of China. %, the remaining 70% of the payment prior to the deal to indication the contract.

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