Tag Archives: hydraulic drive

China factory A6vm355 CHINAMFG Hydraulic Motor Drive Shaft

Product Description

A6vm355 CZPT Hydraulic Motor Drive shaft

EFP deliver range of piston motor and pump parts to suit CZPT whole range of piston pumps and motors, 1, 333/G5390 , 332/G7135,, 332/F9032  , 332/F9571, 20/925579 , 20/925339 , 20/925338,, 332/F9031  , 20/925581
VOLVO:
•VOE 14531612, VOE 14533496, VOE 14385584, VOE 14586202, VOE 17212890, VOE 17262259, VOE 15054375, VOE 11128611, 14561971, 14405225, 14561970, 14405225, 14537295
– Gearboxes, radiators:
We are hope to establish a long term business relationship with you, and support your business with our strengths.
Have a nice day!

/* 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

After-sales Service: Offering Technical Support
Warranty: 6 Months
Application: Excavator
Certification: CE
Condition: New
Transport Package: Carton Box as Your Requirement

pto shaft

Are there any limitations or disadvantages associated with drive shafts?

While drive shafts are widely used and offer several advantages, they also have certain limitations and disadvantages that should be considered. Here’s a detailed explanation of the limitations and disadvantages associated with drive shafts:

1. Length and Misalignment Constraints:

Drive shafts have a maximum practical length due to factors such as material strength, weight considerations, and the need to maintain rigidity and minimize vibrations. Longer drive shafts can be prone to increased bending and torsional deflection, leading to reduced efficiency and potential driveline vibrations. Additionally, drive shafts require proper alignment between the driving and driven components. Misalignment can cause increased wear, vibrations, and premature failure of the drive shaft or its associated components.

2. Limited Operating Angles:

Drive shafts, especially those using U-joints, have limitations on operating angles. U-joints are typically designed to operate within specific angular ranges, and operating beyond these limits can result in reduced efficiency, increased vibrations, and accelerated wear. In applications requiring large operating angles, constant velocity (CV) joints are often used to maintain a constant speed and accommodate greater angles. However, CV joints may introduce higher complexity and cost compared to U-joints.

3. Maintenance Requirements:

Drive shafts require regular maintenance to ensure optimal performance and reliability. This includes periodic inspection, lubrication of joints, and balancing if necessary. Failure to perform routine maintenance can lead to increased wear, vibrations, and potential driveline issues. Maintenance requirements should be considered in terms of time and resources when using drive shafts in various applications.

4. Noise and Vibration:

Drive shafts can generate noise and vibrations, especially at high speeds or when operating at certain resonant frequencies. Imbalances, misalignment, worn joints, or other factors can contribute to increased noise and vibrations. These vibrations may affect the comfort of vehicle occupants, contribute to component fatigue, and require additional measures such as dampers or vibration isolation systems to mitigate their effects.

5. Weight and Space Constraints:

Drive shafts add weight to the overall system, which can be a consideration in weight-sensitive applications, such as automotive or aerospace industries. Additionally, drive shafts require physical space for installation. In compact or tightly packaged equipment or vehicles, accommodating the necessary drive shaft length and clearances can be challenging, requiring careful design and integration considerations.

6. Cost Considerations:

Drive shafts, depending on their design, materials, and manufacturing processes, can involve significant costs. Customized or specialized drive shafts tailored to specific equipment requirements may incur higher expenses. Additionally, incorporating advanced joint configurations, such as CV joints, can add complexity and cost to the drive shaft system.

7. Inherent Power Loss:

Drive shafts transmit power from the driving source to the driven components, but they also introduce some inherent power loss due to friction, bending, and other factors. This power loss can reduce overall system efficiency, particularly in long drive shafts or applications with high torque requirements. It is important to consider power loss when determining the appropriate drive shaft design and specifications.

8. Limited Torque Capacity:

While drive shafts can handle a wide range of torque loads, there are limits to their torque capacity. Exceeding the maximum torque capacity of a drive shaft can lead to premature failure, resulting in downtime and potential damage to other driveline components. It is crucial to select a drive shaft with sufficient torque capacity for the intended application.

Despite these limitations and disadvantages, drive shafts remain a widely used and effective means of power transmission in various industries. Manufacturers continuously work to address these limitations through advancements in materials, design techniques, joint configurations, and balancing processes. By carefully considering the specific application requirements and potential drawbacks, engineers and designers can mitigate the limitations and maximize the benefits of drive shafts in their respective systems.

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

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 factory A6vm355 CHINAMFG Hydraulic Motor Drive Shaft  China factory A6vm355 CHINAMFG Hydraulic Motor Drive Shaft
editor by CX 2024-05-09

China supplier A6vm355 CHINAMFG Hydraulic Motor Drive Shaft

Product Description

A6vm355 CZPT Hydraulic Motor Drive shaft

EFP deliver range of piston motor and pump parts to suit CZPT whole range of piston pumps and motors, 1, 333/G5390 , 332/G7135,, 332/F9032  , 332/F9571, 20/925579 , 20/925339 , 20/925338,, 332/F9031  , 20/925581
VOLVO:
•VOE 14531612, VOE 14533496, VOE 14385584, VOE 14586202, VOE 17212890, VOE 17262259, VOE 15054375, VOE 11128611, 14561971, 14405225, 14561970, 14405225, 14537295
– Gearboxes, radiators:
We are hope to establish a long term business relationship with you, and support your business with our strengths.
Have a nice day!

/* 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

After-sales Service: Offering Technical Support
Warranty: 6 Months
Application: Excavator
Certification: CE
Condition: New
Transport Package: Carton Box as Your Requirement

pto shaft

What maintenance practices are crucial for prolonging the lifespan of drive shafts?

To prolong the lifespan of drive shafts and ensure their optimal performance, several maintenance practices are crucial. Regular maintenance helps identify and address potential issues before they escalate, reduces wear and tear, and ensures the drive shaft operates smoothly and efficiently. Here are some essential maintenance practices for prolonging the lifespan of drive shafts:

1. Regular Inspection:

Performing regular inspections is vital for detecting any signs of wear, damage, or misalignment. Inspect the drive shaft visually, looking for cracks, dents, or any signs of excessive wear on the shaft itself and its associated components such as joints, yokes, and splines. Check for any signs of lubrication leaks or contamination. Additionally, inspect the fasteners and mounting points to ensure they are secure. Early detection of any issues allows for timely repairs or replacements, preventing further damage to the drive shaft.

2. Lubrication:

Proper lubrication is essential for the smooth operation and longevity of drive shafts. Lubricate the joints, such as universal joints or constant velocity joints, as recommended by the manufacturer. Lubrication reduces friction, minimizes wear, and helps dissipate heat generated during operation. Use the appropriate lubricant specified for the specific drive shaft and application, considering factors such as temperature, load, and operating conditions. Regularly check the lubrication levels and replenish as necessary to ensure optimal performance and prevent premature failure.

3. Balancing and Alignment:

Maintaining proper balancing and alignment is crucial for the lifespan of drive shafts. Imbalances or misalignments can lead to vibrations, accelerated wear, and potential failure. If vibrations or unusual noises are detected during operation, it is important to address them promptly. Perform balancing procedures as necessary, including dynamic balancing, to ensure even weight distribution along the drive shaft. Additionally, verify that the drive shaft is correctly aligned with the engine or power source and the driven components. Misalignment can cause excessive stress on the drive shaft, leading to premature failure.

4. Protective Coatings:

Applying protective coatings can help prolong the lifespan of drive shafts, particularly in applications exposed to harsh environments or corrosive substances. Consider using coatings such as zinc plating, powder coating, or specialized corrosion-resistant coatings to enhance the drive shaft’s resistance to corrosion, rust, and chemical damage. Regularly inspect the coating for any signs of degradation or damage, and reapply or repair as necessary to maintain the protective barrier.

5. Torque and Fastener Checks:

Ensure that the drive shaft’s fasteners, such as bolts, nuts, or clamps, are properly torqued and secured according to the manufacturer’s specifications. Loose or improperly tightened fasteners can lead to excessive vibrations, misalignment, or even detachment of the drive shaft. Periodically check and retighten the fasteners as recommended or after any maintenance or repair procedures. Additionally, monitor the torque levels during operation to ensure they remain within the specified range, as excessive torque can strain the drive shaft and lead to premature failure.

6. Environmental Protection:

Protecting the drive shaft from environmental factors can significantly extend its lifespan. In applications exposed to extreme temperatures, moisture, chemicals, or abrasive substances, take appropriate measures to shield the drive shaft. This may include using protective covers, seals, or guards to prevent contaminants from entering and causing damage. Regular cleaning of the drive shaft, especially in dirty or corrosive environments, can also help remove debris and prevent buildup that could compromise its performance and longevity.

7. Manufacturer Guidelines:

Follow the manufacturer’s guidelines and recommendations for maintenance practices specific to the drive shaft model and application. The manufacturer’s instructions may include specific intervals for inspections, lubrication, balancing, or other maintenance tasks. Adhering to these guidelines ensures that the drive shaft is properly maintained and serviced, maximizing its lifespan and minimizing the risk of unexpected failures.

By implementing these maintenance practices, drive shafts can operate reliably, maintain efficient power transmission, and have an extended service life, ultimately reducing downtime and ensuring optimal performance in various applications.

pto shaft

How do drive shafts contribute to the efficiency of vehicle propulsion and power transmission?

Drive shafts play a crucial role in the efficiency of vehicle propulsion and power transmission systems. They are responsible for transferring power from the engine or power source to the wheels or driven components. Here’s a detailed explanation of how drive shafts contribute to the efficiency of vehicle propulsion and power transmission:

1. Power Transfer:

Drive shafts transmit power from the engine or power source to the wheels or driven components. By efficiently transferring rotational energy, drive shafts enable the vehicle to move forward or drive the machinery. The design and construction of drive shafts ensure minimal power loss during the transfer process, maximizing the efficiency of power transmission.

2. Torque Conversion:

Drive shafts can convert torque from the engine or power source to the wheels or driven components. Torque conversion is necessary to match the power characteristics of the engine with the requirements of the vehicle or machinery. Drive shafts with appropriate torque conversion capabilities ensure that the power delivered to the wheels is optimized for efficient propulsion and performance.

3. Constant Velocity (CV) Joints:

Many drive shafts incorporate Constant Velocity (CV) joints, which help maintain a constant speed and efficient power transmission, even when the driving and driven components are at different angles. CV joints allow for smooth power transfer and minimize vibration or power losses that may occur due to changing operating angles. By maintaining constant velocity, drive shafts contribute to efficient power transmission and improved overall vehicle performance.

4. Lightweight Construction:

Efficient drive shafts are often designed with lightweight materials, such as aluminum or composite materials. Lightweight construction reduces the rotational mass of the drive shaft, which results in lower inertia and improved efficiency. Reduced rotational mass enables the engine to accelerate and decelerate more quickly, allowing for better fuel efficiency and overall vehicle performance.

5. Minimized Friction:

Efficient drive shafts are engineered to minimize frictional losses during power transmission. They incorporate features such as high-quality bearings, low-friction seals, and proper lubrication to reduce energy losses caused by friction. By minimizing friction, drive shafts enhance power transmission efficiency and maximize the available power for propulsion or operating other machinery.

6. Balanced and Vibration-Free Operation:

Drive shafts undergo dynamic balancing during the manufacturing process to ensure smooth and vibration-free operation. Imbalances in the drive shaft can lead to power losses, increased wear, and vibrations that reduce overall efficiency. By balancing the drive shaft, it can spin evenly, minimizing vibrations and optimizing power transmission efficiency.

7. Maintenance and Regular Inspection:

Proper maintenance and regular inspection of drive shafts are essential for maintaining their efficiency. Regular lubrication, inspection of joints and components, and prompt repair or replacement of worn or damaged parts help ensure optimal power transmission efficiency. Well-maintained drive shafts operate with minimal friction, reduced power losses, and improved overall efficiency.

8. Integration with Efficient Transmission Systems:

Drive shafts work in conjunction with efficient transmission systems, such as manual, automatic, or continuously variable transmissions. These transmissions help optimize power delivery and gear ratios based on driving conditions and vehicle speed. By integrating with efficient transmission systems, drive shafts contribute to the overall efficiency of the vehicle propulsion and power transmission system.

9. Aerodynamic Considerations:

In some cases, drive shafts are designed with aerodynamic considerations in mind. Streamlined drive shafts, often used in high-performance or electric vehicles, minimize drag and air resistance to improve overall vehicle efficiency. By reducing aerodynamic drag, drive shafts contribute to the efficient propulsion and power transmission of the vehicle.

10. Optimized Length and Design:

Drive shafts are designed to have optimal lengths and designs to minimize energy losses. Excessive drive shaft length or improper design can introduce additional rotational mass, increase bending stresses, and result in energy losses. By optimizing the length and design, drive shafts maximize power transmission efficiency and contribute to improved overall vehicle efficiency.

Overall, drive shafts contribute to the efficiency of vehicle propulsion and power transmission through effective power transfer, torque conversion, utilization of CV joints, lightweight construction, minimized friction, balanced operation, regular maintenance, integration with efficient transmission systems, aerodynamic considerations, and optimized length and design. By ensuring efficient power delivery and minimizing energy losses, drive shafts play a significant role in enhancing the overall efficiency and performance of vehicles and machinery.

pto shaft

Can you explain the different types of drive shafts and their specific applications?

Drive shafts come in various types, each designed to suit specific applications and requirements. The choice of drive shaft depends on factors such as the type of vehicle or equipment, power transmission needs, space limitations, and operating conditions. Here’s an explanation of the different types of drive shafts and their specific applications:

1. Solid Shaft:

A solid shaft, also known as a one-piece or solid-steel drive shaft, is a single, uninterrupted shaft that runs from the engine or power source to the driven components. It is a simple and robust design used in many applications. Solid shafts are commonly found in rear-wheel-drive vehicles, where they transmit power from the transmission to the rear axle. They are also used in industrial machinery, such as pumps, generators, and conveyors, where a straight and rigid power transmission is required.

2. Tubular Shaft:

Tubular shafts, also called hollow shafts, are drive shafts with a cylindrical tube-like structure. They are constructed with a hollow core and are typically lighter than solid shafts. Tubular shafts offer benefits such as reduced weight, improved torsional stiffness, and better damping of vibrations. They find applications in various vehicles, including cars, trucks, and motorcycles, as well as in industrial equipment and machinery. Tubular drive shafts are commonly used in front-wheel-drive vehicles, where they connect the transmission to the front wheels.

3. Constant Velocity (CV) Shaft:

Constant Velocity (CV) shafts are specifically designed to handle angular movement and maintain a constant velocity between the engine/transmission and the driven components. They incorporate CV joints at both ends, which allow flexibility and compensation for changes in angle. CV shafts are commonly used in front-wheel-drive and all-wheel-drive vehicles, as well as in off-road vehicles and certain heavy machinery. The CV joints enable smooth power transmission even when the wheels are turned or the suspension moves, reducing vibrations and improving overall performance.

4. Slip Joint Shaft:

Slip joint shafts, also known as telescopic shafts, consist of two or more tubular sections that can slide in and out of each other. This design allows for length adjustment, accommodating changes in distance between the engine/transmission and the driven components. Slip joint shafts are commonly used in vehicles with long wheelbases or adjustable suspension systems, such as some trucks, buses, and recreational vehicles. By providing flexibility in length, slip joint shafts ensure a constant power transfer, even when the vehicle chassis experiences movement or changes in suspension geometry.

5. Double Cardan Shaft:

A double Cardan shaft, also referred to as a double universal joint shaft, is a type of drive shaft that incorporates two universal joints. This configuration helps to reduce vibrations and minimize the operating angles of the joints, resulting in smoother power transmission. Double Cardan shafts are commonly used in heavy-duty applications, such as trucks, off-road vehicles, and agricultural machinery. They are particularly suitable for applications with high torque requirements and large operating angles, providing enhanced durability and performance.

6. Composite Shaft:

Composite shafts are made from composite materials such as carbon fiber or fiberglass, offering advantages such as reduced weight, improved strength, and resistance to corrosion. Composite drive shafts are increasingly being used in high-performance vehicles, sports cars, and racing applications, where weight reduction and enhanced power-to-weight ratio are critical. The composite construction allows for precise tuning of stiffness and damping characteristics, resulting in improved vehicle dynamics and drivetrain efficiency.

7. PTO Shaft:

Power Take-Off (PTO) shafts are specialized drive shafts used in agricultural machinery and certain industrial equipment. They are designed to transfer power from the engine or power source to various attachments, such as mowers, balers, or pumps. PTO shafts typically have a splined connection at one end to connect to the power source and a universal joint at the other end to accommodate angular movement. They are characterized by their ability to transmit high torque levels and their compatibility with a range of driven implements.

8. Marine Shaft:

Marine shafts, also known as propeller shafts or tail shafts, are specifically designed for marine vessels. They transmit power from the engine to the propeller, enabling propulsion. Marine shafts are usually long and operate in a harsh environment, exposed to water, corrosion, and high torque loads. They are typically made of stainless steel or other corrosion-resistant materials and are designed to withstand the challenging conditions encountered in marine applications.

It’simportant to note that the specific applications of drive shafts may vary depending on the vehicle or equipment manufacturer, as well as the specific design and engineering requirements. The examples provided above highlight common applications for each type of drive shaft, but there may be additional variations and specialized designs based on specific industry needs and technological advancements.

China supplier A6vm355 CHINAMFG Hydraulic Motor Drive Shaft  China supplier A6vm355 CHINAMFG Hydraulic Motor Drive Shaft
editor by CX 2024-03-15

China best ODM, OEM, Drive Shaft, Power Shaft, Pneumatic Components, Hydraulic Parts, Auto Parts, Hardware Parts, Non-Standard Fasteners, CNC Processing

Product Description

Service CNC Machining/Turning and Milling/CNC Turning/OEM Parts/

Casting/forging/cold heading/stamping/cutting/fine grinding

Metal

Aluminum Aluminum 2571 Aluminum 5052 Aluminum 6061-T6 Aluminum 6063-T6 Aluminum 7075 ADC12
Stainlesss steel SUS303,SUS304,SS316,SS316L
 
steel
12L 12L ,O1 tool steel
D2 tool steel,A36 1008 ,Alloy42
Titanium Grades 1-4 Grade 5 Grade 9
Brass 260, C360,H59,H60,H62,H63,H65,H68,H70

 

Finish Result
As Machined Sharp edge and burrs will be removed
Bead Blast The part surface is left with a smooth, matte appearance

Anodized

Type II creates a corrosion-resistant finish. Parts can be anodized in different colors-clear, black, red, and gold are mostcommon-and is usually associated with aluminum.
Type III is thicker and creates a wear-resistant layer in addition to the corrosion resistance seen with Type II.
electroplating chromium electrophoresis, QPQ(Quench-Polish-Quench)
Electro Polishing Chrome Plating, Knurl, Laser etch Logo, etc.
Drawing format STEP,STP,GIS,CAD,PDF,DWG,DXF etc or samples.
Tolerance +/-0.005mm

HangZhou CZPT Auto Parts Co., Ltd. is located in Liushi Town, HangZhou City, HangZhou City, ZHangZhoug Province, which is the capital of China’s electrical appliances. It is a professional manufacturer of evaporator / condenser, flange joints, pressure plate bracket and fittings, nuts, pressure plate, aluminum sleeve, piping, muffler and other auto air-conditioning accessories used on the pipeline assembly. The company can also finish machining and repair all kinds of metals Cold heading, casting, forging, stamping, welding, injection molding, 3D printing, surface treatment and other process manufacturing, undertake all kinds of non-standard products. The company’s products are used in Benz, BMW, Audi, Volkswagen, Geely, BAIC, Citroen, Xihu (West Lake) Dis.feng series, great wall, CZPT and other models, and have won the title of Quality Award for years. With advanced production equipment and processing technology, the company can develop and produce high-precision machining products according to the design drawings. The company has an efficient R & D and management team, which can provide high-quality products It has high production efficiency, stable quality, short R & D cycle, and can achieve a high degree of cooperation with purchasers.

We always adhere to the tenet of “pioneering and innovation, pursuing excellence, striving to be the first in the industry and serving the society”; take “professional technology, honest attitude, rigorous style and perfect service” as the standard, establish the road of specialization, scale and sustainable development, and provide high cost-effective products and perfect services for the society.

Looking to the world and looking CZPT to the future, the company has ushered in a new round of rapid development with the concerted efforts of all colleagues. We will work hard to improve our competitiveness and strive to become a supplier of professional products and services with good influence and competitiveness in the industry.

 

   

 

/* 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

Application: Fastener, Auto and Motorcycle Accessory, Hardware Tool, Machinery Accessory
Standard: GB, EN, API650, China GB Code, JIS Code, TEMA, ASME
Surface Treatment: Electroplating
Production Type: Mass Production
Machining Method: CNC Machining
Material: Nylon, Steel, Plastic, Brass, Alloy, Copper, Aluminum, Iron
Samples:
US$ 10/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

pto shaft

Are there any limitations or disadvantages associated with drive shafts?

While drive shafts are widely used and offer several advantages, they also have certain limitations and disadvantages that should be considered. Here’s a detailed explanation of the limitations and disadvantages associated with drive shafts:

1. Length and Misalignment Constraints:

Drive shafts have a maximum practical length due to factors such as material strength, weight considerations, and the need to maintain rigidity and minimize vibrations. Longer drive shafts can be prone to increased bending and torsional deflection, leading to reduced efficiency and potential driveline vibrations. Additionally, drive shafts require proper alignment between the driving and driven components. Misalignment can cause increased wear, vibrations, and premature failure of the drive shaft or its associated components.

2. Limited Operating Angles:

Drive shafts, especially those using U-joints, have limitations on operating angles. U-joints are typically designed to operate within specific angular ranges, and operating beyond these limits can result in reduced efficiency, increased vibrations, and accelerated wear. In applications requiring large operating angles, constant velocity (CV) joints are often used to maintain a constant speed and accommodate greater angles. However, CV joints may introduce higher complexity and cost compared to U-joints.

3. Maintenance Requirements:

Drive shafts require regular maintenance to ensure optimal performance and reliability. This includes periodic inspection, lubrication of joints, and balancing if necessary. Failure to perform routine maintenance can lead to increased wear, vibrations, and potential driveline issues. Maintenance requirements should be considered in terms of time and resources when using drive shafts in various applications.

4. Noise and Vibration:

Drive shafts can generate noise and vibrations, especially at high speeds or when operating at certain resonant frequencies. Imbalances, misalignment, worn joints, or other factors can contribute to increased noise and vibrations. These vibrations may affect the comfort of vehicle occupants, contribute to component fatigue, and require additional measures such as dampers or vibration isolation systems to mitigate their effects.

5. Weight and Space Constraints:

Drive shafts add weight to the overall system, which can be a consideration in weight-sensitive applications, such as automotive or aerospace industries. Additionally, drive shafts require physical space for installation. In compact or tightly packaged equipment or vehicles, accommodating the necessary drive shaft length and clearances can be challenging, requiring careful design and integration considerations.

6. Cost Considerations:

Drive shafts, depending on their design, materials, and manufacturing processes, can involve significant costs. Customized or specialized drive shafts tailored to specific equipment requirements may incur higher expenses. Additionally, incorporating advanced joint configurations, such as CV joints, can add complexity and cost to the drive shaft system.

7. Inherent Power Loss:

Drive shafts transmit power from the driving source to the driven components, but they also introduce some inherent power loss due to friction, bending, and other factors. This power loss can reduce overall system efficiency, particularly in long drive shafts or applications with high torque requirements. It is important to consider power loss when determining the appropriate drive shaft design and specifications.

8. Limited Torque Capacity:

While drive shafts can handle a wide range of torque loads, there are limits to their torque capacity. Exceeding the maximum torque capacity of a drive shaft can lead to premature failure, resulting in downtime and potential damage to other driveline components. It is crucial to select a drive shaft with sufficient torque capacity for the intended application.

Despite these limitations and disadvantages, drive shafts remain a widely used and effective means of power transmission in various industries. Manufacturers continuously work to address these limitations through advancements in materials, design techniques, joint configurations, and balancing processes. By carefully considering the specific application requirements and potential drawbacks, engineers and designers can mitigate the limitations and maximize the benefits of drive shafts in their respective systems.

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 is a drive shaft and how does it function in vehicles and machinery?

A drive shaft, also known as a propeller shaft or prop shaft, is a mechanical component that plays a critical role in transmitting rotational power from the engine to the wheels or other driven components in vehicles and machinery. It is commonly used in various types of vehicles, including cars, trucks, motorcycles, and agricultural or industrial machinery. Here’s a detailed explanation of what a drive shaft is and how it functions:

1. Definition and Construction: A drive shaft is a cylindrical metal tube that connects the engine or power source to the wheels or driven components. It is typically made of steel or aluminum and consists of one or more tubular sections with universal joints (U-joints) at each end. These U-joints allow for angular movement and compensation of misalignment between the engine/transmission and the driven wheels or components.

2. Power Transmission: The primary function of a drive shaft is to transmit rotational power from the engine or power source to the wheels or driven components. In vehicles, the drive shaft connects the transmission or gearbox output shaft to the differential, which then transfers power to the wheels. In machinery, the drive shaft transfers power from the engine or motor to various driven components such as pumps, generators, or other mechanical systems.

3. Torque and Speed: The drive shaft is responsible for transmitting both torque and rotational speed. Torque is the rotational force generated by the engine or power source, while rotational speed is the number of revolutions per minute (RPM). The drive shaft must be capable of transmitting the required torque without excessive twisting or bending and maintaining the desired rotational speed for efficient operation of the driven components.

4. Flexible Coupling: The U-joints on the drive shaft provide a flexible coupling that allows for angular movement and compensation of misalignment between the engine/transmission and the driven wheels or components. As the suspension system of a vehicle moves or the machinery operates on uneven terrain, the drive shaft can adjust its length and angle to accommodate these movements, ensuring smooth power transmission and preventing damage to the drivetrain components.

5. Length and Balance: The length of the drive shaft is determined by the distance between the engine or power source and the driven wheels or components. It should be appropriately sized to ensure proper power transmission and avoid excessive vibrations or bending. Additionally, the drive shaft is carefully balanced to minimize vibrations and rotational imbalances, which can cause discomfort, reduce efficiency, and lead to premature wear of drivetrain components.

6. Safety Considerations: Drive shafts in vehicles and machinery require proper safety measures. In vehicles, drive shafts are often enclosed within a protective tube or housing to prevent contact with moving parts and reduce the risk of injury in the event of a malfunction or failure. Additionally, safety shields or guards are commonly installed around exposed drive shafts in machinery to protect operators from potential hazards associated with rotating components.

7. Maintenance and Inspection: Regular maintenance and inspection of drive shafts are essential to ensure their proper functioning and longevity. This includes checking for signs of wear, damage, or excessive play in the U-joints, inspecting the drive shaft for any cracks or deformations, and lubricating the U-joints as recommended by the manufacturer. Proper maintenance helps prevent failures, ensures optimal performance, and prolongs the service life of the drive shaft.

In summary, a drive shaft is a mechanical component that transmits rotational power from the engine or power source to the wheels or driven components in vehicles and machinery. It functions by providing a rigid connection between the engine/transmission and the driven wheels or components, while also allowing for angular movement and compensation of misalignment through the use of U-joints. The drive shaft plays a crucial role in power transmission, torque and speed delivery, flexible coupling, length and balance considerations, safety, and maintenance requirements. Its proper functioning is essential for the smooth and efficient operation of vehicles and machinery.

China best ODM, OEM, Drive Shaft, Power Shaft, Pneumatic Components, Hydraulic Parts, Auto Parts, Hardware Parts, Non-Standard Fasteners, CNC Processing  China best ODM, OEM, Drive Shaft, Power Shaft, Pneumatic Components, Hydraulic Parts, Auto Parts, Hardware Parts, Non-Standard Fasteners, CNC Processing
editor by CX 2024-01-08

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We – EPG Group the most significant agricultural gearbox and pto manufacturing unit in China with 5 diverse branches. For a lot more particulars: Cell/whatsapp/telegram/Kakao us at: 0086-13083988828

Best  Cheap  made in China - replacement parts - PTO shaft manufacturer & factory Outdoor  2010 jeep wrangler drive shaft Hydraulic Chipper Shredder Robust Bx42r Woodworking Machine with ce certificate top quality low price

dodge charger generate shaft 2002 f150 push shaft EPG g8 gt driveshaft is ford ranger propshaft specialised duramax one particular piece driveshaft in 2001 chevy silverado 1500 drive shaft design, 2008 ford edge driveshaft company kubota pto shaft portion number and jeep cherokee front travel shaft revenue pto push shaft tiller of agricultural machinery and farm implements, which has an impartial import and export rights. “EPG” brand rotocultivator ploughshares in T.S. overall traces developed in our manufacturing facility have been analyzed 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. Benefits:

one. Simple procedure, straightforward maintenance.

two. Wind Power is maximized by enter air vents

three. 4 Double-edge Hardened Instrument Steel Chopping Blades on the rotor

Description:

The design BX42R is the most current variation of the BX-shredder, which has a two-sided suspension of the feed rollers and a strengthened feed hopper.
 
The wood chipper comes full with PTO. The PTO is on one aspect of a shear pin put in, which is utilised for protection as a breaking level for blockages or overloads. So you can effortlessly use even bigger tractors in excess of a hundred hp. You must have at le EPT an motor electrical power of thirty hp. The PTO pace should be 540 – 1000 rev/min. respectively.
 
The hopper has a prime opening of fifty one x fifty one cm at the bottom of the hole has a dimension of 10.2 x twenty five.4 cm. , A highest diameter of ten cm is shredded. Softer woods can be shredded with a dimension of up to 25 cm, if required whereby this sort of diameter is processed into firewood in the rule and not chopped.

Technological Technical specs:

FAQ:


 

Best  Cheap  made in China - replacement parts - PTO shaft manufacturer & factory Outdoor  2010 jeep wrangler drive shaft Hydraulic Chipper Shredder Robust Bx42r Woodworking Machine with ce certificate top quality low price

Best factory made in China – replacement parts – PTO shaft manufacturer & factory Hydraulic front drive shaft u joint replacement Compact Tractor Side Flail Mower with Ce with ce certificate top quality low price

We – EPG Team the largest agricultural gearbox and pto manufacturing facility in China with 5 different branches. For a lot more specifics: Cell/whatsapp/telegram/Kakao us at: 0086-13083988828

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eliminate pto shaft from bush hog Our tractor pto shaft converter items pto shaft varieties are 2007 mustang gt driveshaft offering pto shaft shear pin nicely tractor pto half shaft in pto shaft with slip clutch Chinese bondioli pto shafts marketplaces travel shaft proton persona and 8n ford tractor pto shaft dimension some products marketed in international markets are effectively obtained by Chinese and overseas customers at property and abroad. Our business is found in XiHu HangZhou Zhejiang Province. T Product Attribute
Side Shift Flail Mower EFDL Sequence

Design EFDL-105 EFDL-one hundred fifteen EFDL-a hundred twenty five
Framework Dimension(mm) 1265*1355*836 1365*1355*836 1465*1355*836
Excess weight(Kg) 210Kg 225Kg 240Kg
Slicing Width 1050mm 1150mm 1250mm
 PTO Input Speed 540r/min 540r/min 540r/min
Number of blades  seventy two 78 78
Energy Needed(Min/Max) 20-25HP twenty-25HP 20-30HP

one. Transmission: By durable toothed belts.

2. Gearbox is created of graphite casting iron. Materials performance is better. Not effortless damaged.

three. The blade axle runs stably at large velocity following dynamic balance examination, with reduced sounds.

4. The blades have much more amount, even bigger density and increased mowing effectiveness.

five. Mowing top can be altered.

6. With front safety, it can avoid splashing.

7. Y shape blades and hammers are optional, to meet up with the wants of distinct consumer.

8. Cat. I universal 3-position hitch cardan shaft.

Company Profile

HangZhou EPT Market & Trade Co., Ltd., is a specialist producer and exporter of entire set of agriculture machines and garden instruments. Our business was established considering that 2003 with Hanma Market Business.

Our primary items incorporate rotovator, flail mower, ending mower, topper mower, wooden chipper, plow, cultivator, potato harvester/ planter and Japanese tractor areas, and many others. Thanks to our super EPT high quality stHangZhourd and quick & superb soon after-income services, EPT equipment are drastically well-liked in numerous marketplaces about the planet, and presently reached to Europe, North The usa, South America, Australia, virtually covers eighty nations in Globe.

EPT always feel that we will consider much better farming existence to you by prime-good quality laser chopping equipment & CNC bending equipment & expert paint-spraying & strong welding.

Expert Creation:

1.Skilled crew with abundant encounter

two.Effective manufacturing facility toughness with CE certification

three.Very best right after-income service

Packing & Shipping

Packaging Detail: Iron pallet or wooden instances
Delivery Element: By sea or By air

one. Water-resistant packing with the EPT export stHangZhourd by 20ft, 40ftcontainer.
Wood Circumstance or Iron Pallet.
2. The total established of equipment dimensions are big as normal, so we will use Water-resistant materia EPT to pack
all of them. The motor, gear box or other simply ruined elements, we will place them into box. 

We have a skilled shipping and delivery office, they will attempt their ideal to preserve your container amount.

Device movies in YOUTOBE

https://youtu.be/UCDWDR3Pjrg                             EPT firm video

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

https:///look at?v=Bh73zRIYBpc          EFDL Side MOWERS

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

https:///look at?v=iH6uQiqEyuQ          FM Ending MOWERS

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

https://youtu.be/iIVOwCTCl_c                       HAY BALER

FAQ:
Q1. How to buy 3 position rotary tiller?
Inquiry ———> Quotation ——–>Price reasonable ——->Check with specification —–>Proforma Invoice sent ————>Payment made ——-> Making the products ——->Product shipment ———–> Consumer confirm

Q2.How extended is the delivery date for agriculture machinery cultivator?
A:In general, we can ship the products within thirty-forty five times right after receiving your payment. Of program, it also relies upon on your amount.

Q3. How can I get to your factory to buy tractor cultivator?
A:We are found in HangZhou, only a single hour’s distance to ZheJiang or HangZhou. You can fly to ZheJiang /HangZhou/HangZhou Airport , the transportation is very practical

This fall.Do you have inventory for rotary tiller?
A:In general, we have some stock, although if you require a bulk order, we still want time to make it. Of system, we will advise all detai EPT you prior to your payment.

Q5: What’s your major merchandise?
A: Our merchandise are covered practically all farm machines and Japanese tractors elements, we can meet your any needs.

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

 

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one&periodUniversal three point hitch with hydraulic offset&comma cat&period 1&two
two&periodPto Shaft 160cm
three&periodGearbox P&periodT&periodO&period 540 r&periodp&periodm&period with free-wheel
4&period3 trasmission belts
five&periodAdjustable roller unit
6&periodAdjustable pair of skids
7&periodElectronically balanced spiral rotor
8&period400g Hammers
9&periodFront safety flap
 

Model Weight &lparKg&rpar Cutting Width 400g Hammer Tilt Up Angle Tilt Down Angle
AGLM110 240 1100mm eighteen  
fifty five
 
ninety
AGLM130 260 1300mm 22
AGLM150 290 1500mm 26
AGLM170 330 1700mm 26
AGLM180 360 1800mm 32

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Your Professional  Manufacturer of Tractor &ATV&commaUTV Implements  &lparfront end loader&comma backhoe&comma mower&comma rotary tiller&comma wood chipper&commasnow plow and so on&comma aslo OEM service provided&rpar

 

HangZhou Kaideli Machinery Co&period of time&commaLtd

 

 

Cell: +86~13083988828 &colon  -519-85283202
Fax&colon  -519-88713597

Site&colon www&periodczkaideli&periodcom
Include&colon10&num Huatong Road&comma Yaoguan Town&comma Xihu (West Lake) Dis.n District&comma HangZhou&comma ZheJiang &comma China

 

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we have acquired the have faith in of customers around the world. a specialised supplier of a complete selection of chains, sprockets, gears, equipment racks, V-belts, couplings and reducers, pto shaft, agricultural gearboxes….

Overview

Swift Details

After Guarantee Service:

Online video technological support

Neighborhood Support Spot:

Egypt

Showroom Spot:

Egypt

Kind:

areas

Following-revenue Support Offered:

Movie technological support

Provide Capacity

Provide Ability:
3000 Piece/Items for each Month

Packaging & Delivery

Packaging Details
Carton or Plywood circumstance

Online Customization

 hydraulic oil modest hydraulic motors

 

 

 

 

one. This collection of motor are small quantity, affordable type,  which is made with Spool Valve, which adapt the gerotor equipment established style and supply compact quantity, substantial energy and low fat.

 

2. Advanced producing units for the Gerotor equipment set, which provide tiny volume, large performance and lengthy lifestyle.

 

three. Shaft seal can bear high strain of motor of which can be used in parallel or in collection.

 

4. Innovative development design, high energy and low bodyweight.

 

5. BMP sequence is equivalent to Danfoss “OMP” series and Charlynn “H” sequence, and also can substitute for White, Parker.

 

 

Specialized DATA 

 

Sort BMP-50 BMP-eighty BMP-a hundred BMP-125 BMP-160 BMP-200 BMP-250 BMP-315 BMP-400
Displacement(ml/r) fifty two.nine 79.three ninety eight.two a hundred and twenty.nine 158.7 196.4 241.8 317.3 392.nine
Max.Pressure.Fall(Mpa) cont. 14 fourteen 14 fourteen fourteen 14 11 9 7
int. 17.5 17.five 17.five seventeen.five seventeen.five 17.5 14 eleven 9
peak. twenty twenty twenty twenty 20 20 sixteen thirteen 11
Max.torque(N.m) cont. 89 one hundred fifty 191 235 307 365 378 378 378
int. one hundred ten 185 231 292 376 440 465 465 465
peak. a hundred thirty 215 268 336 430 506 537 537 537
Velocity.Assortment(cont.)(r/min) ten-800 ten-770 9-615 9-480 8-385 7-310 5-250 5-195 5-a hundred and fifty five
Max.Stream(cont.)(L/min) forty 60 sixty 60 60 60 sixty 60 60
Max.Output.Electrical power(cont.)(Kw) 7 ten 10 ten ten eight six 5 four
Weight(kg) 5.six five.7 five.9 6 six.2 6.4 six.6 6.nine 7.four

 

 

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