China high quality Auto Spare Parts Clutch Master Cylinder for Volov 8172824 20553587 20835246 with Best Sales

Product Description

Part Name  Auto Spare Parts Clutch Master Cylinder for VOLOV  8172824  2571587  2571246
OEM Number  8172824  2571587  2571246
  Hole diameter: 28.5m 

Support diameter: 20mm

Thread size 1: M8

Number of bolts: 2

Spacing of fastening bolts: 60mm; 

Weight: 0.45kg

Flange diameter: 42mm

Quality Warranty 12 Months
Brand SI, PPB, or customized
Packing Neutral, SI, PPB brand packing or customized
OEM/ODM service Yes 
Manufacture place ZHangZhoug, China
Production Capacity 30000PCS
Inspection 100%
Certificate ISO9001:2015 TS16949
Payment T/T, PayPal, West Union

OEM

VOLVO : 25715588

VOLVO : 2571587

VOLVO : 2571246

VOLVO : 3192696

VOLVO : 8172824

 

REFERENCE

DT Spare Parts : 230008

FEBI BILSTEIN : 45502

FTE : 2100628

FTE : KG2801942

MEYLE : 5371420006

PE Automotive : 1457100A

SAMPA : 096310

SAMPA : 96310

ST-TEMPLIN : 0

TEXTAR : 50033300

TRUCKTEC AUTOMOTIVE : 0327004

TRUCKTEC AUTOMOTIVE : 327004

CAR APPLICATION

VOLVO  FH12 FH 12/340 1995- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/340 1993- D12A340,D12C340,D12D340 12100 250
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1995- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/380 1993- D12A380,D12C380,D12D380 12100 279
VOLVO  FH12 FH 12/420 1995- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/420 1993- D12A420,D12C420,D12D420 12100 309
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998-2005 D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/460 1998- D12C460,D12D460 12100 338
VOLVO  FH12 FH 12/500 2001- D12D500 12100 368
VOLVO  FM12 FM 12/340 1998-2005 D12C340,D12D340 12100 250
VOLVO  FM12 FM 12/340 1998-2005 D12C340,D12D340 12100 250
VOLVO  FM12 FM 12/340 1998-2005 D12C340,D12D340 12100 250
VOLVO  FM12 FM 12/340 1998-2005 D12C340,D12D340 12100 250
VOLVO  FM12 FM 12/340 1998-2005 D12C340,D12D340 12100 250
VOLVO  FM12 FM 12/340 1998-2005 D12C340,D12D340 12100 250
VOLVO  FM12 FM 12/340 1998-2005 D12C340,D12D340 12100 250
VOLVO  FM12 FM 12/340 1998-2005 D12C340,D12D340 12100 250
VOLVO  FM12 FM 12/380 1998-2005 D12C380,D12D380 12100 27

 

Packing and Delivery

Work shop

Exhibition

Our Advantages

More than 20 years of manufacturing and exporting experience
OEM manufacturing available
Full range, large stock
Quickly feedback
One year warranty
One-stop service
On-time delivery

FAQ
Q1.What is your shipping logistic?
Re: DHL, TNT, FedEx express, by air/sea/train.

Q2:What’s the MOQ?
Re: For the wheel hub assembly. The MOQ is always 50 sets. If ordering together with other models, small quantities can be organized. But need more time due to the production schedule.

Q3. What are your goods of packing?
Re: Generally, our goods will be packed in Neutral white or brown boxes for the hub bearing unit. Our brand packing SI & CHINAMFG are offered. If you have any other packing requests, we shall also handle them.

Q4. What is your sample policy?
Re: We can supply the sample if we have ready parts in stock.

Q5. Do you have any certificates?
Re: Yes, we have the certificate of ISO9001:2015.

Q6:Any warranty of your products.
Re: Sure, We are offering a guarantee for 12 months or 40,000-50,000 km for the aftermarket.
 

Q7: How can I make an inquiry?

Re: You can contact us by email, telephone, WhatsApp, , etc.

 

Q8: How long can reply inquiry?

Re: Within 24 hours.

 

Q9: What’s the delivery time?

Re: Ready stock 10-15 days, production for 30 to 45 days.

 

Q10: How do you maintain our good business relationship?

Re: 1. Keep stable, reliable quality, competitive price to ensure our customer’s benefit;

2. Optimal lead time.

3. Keep customers updated about the new goods.

4. Make customers satisfaction as our main goal.

 

Q11: Can we visit the company & factory?

Re: Yes, welcome for your visit & business discussion.

After-sales Service: One Year
Warranty: Yes
Part: Clutch Master Cylinder
Material: Plastic
Classification: Hydraulic Clutch
Certification: ISO/TS16949:2002
Samples:
US$ 50/Piece
1 Piece(Min.Order)

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Customization:
Available

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hydraulic cylinder

How do hydraulic cylinders enhance the performance of construction and mining equipment?

Hydraulic cylinders play a vital role in enhancing the performance of construction and mining equipment by providing powerful and precise linear motion. These industries require heavy-duty machinery that can withstand demanding conditions and efficiently perform tasks such as lifting, pushing, and digging. Here’s a detailed explanation of how hydraulic cylinders enhance the performance of construction and mining equipment:

1. Power and Force:

– Hydraulic cylinders are capable of generating substantial force, allowing construction and mining equipment to handle heavy loads and perform challenging tasks. The hydraulic system applies pressure to the fluid, which is transmitted to the hydraulic cylinder, resulting in the movement of the piston rod. The larger the diameter of the cylinder, the greater the force that can be generated. Hydraulic cylinders enable the equipment to exert significant force, making it possible to lift and move heavy materials, excavate soil and rock, and perform other demanding operations.

2. Precise Control:

– Hydraulic cylinders offer precise control over the movement of construction and mining equipment. By regulating the flow of hydraulic fluid into and out of the cylinder through control valves, operators can precisely control the speed, position, and force exerted by the hydraulic cylinder. This level of control allows for accurate and controlled movements, enabling operators to perform tasks with precision and efficiency. Whether it’s lifting a specific load, positioning an attachment, or maneuvering in tight spaces, hydraulic cylinders provide the necessary control for optimal equipment performance.

3. Adaptability:

– Hydraulic cylinders are highly adaptable to various construction and mining equipment. They can be designed and manufactured in different sizes, stroke lengths, and configurations to suit specific requirements. Hydraulic cylinders can be integrated into different types of equipment, such as excavators, loaders, bulldozers, and drilling rigs. Their adaptability allows for the customization of equipment to meet the needs of different applications and operating conditions, enhancing overall performance.

4. Durability and Reliability:

– Construction and mining environments are known for their harsh conditions, including extreme temperatures, vibrations, and exposure to dust, dirt, and debris. Hydraulic cylinders are designed to withstand these challenging conditions and provide long-lasting performance. They are constructed using robust materials, such as high-strength steel, and equipped with seals and components that can endure heavy loads, impacts, and contaminants. The durability and reliability of hydraulic cylinders ensure that construction and mining equipment can operate continuously and withstand the demanding nature of these industries.

5. Safety:

– Hydraulic cylinders contribute to the safety of construction and mining equipment operations. Their precise control allows operators to perform tasks with accuracy, minimizing the risk of accidents and damage to the equipment or surrounding structures. Hydraulic cylinders also enable the implementation of safety features, such as overload protection systems and emergency stop mechanisms, ensuring the safe operation of the equipment. The reliable and controlled movements provided by hydraulic cylinders enhance overall safety in construction and mining operations.

6. Increased Productivity:

– By providing the necessary power, precise control, and adaptability, hydraulic cylinders contribute to increased productivity in construction and mining applications. Construction and mining equipment equipped with hydraulic cylinders can perform tasks more efficiently and effectively, reducing the time and effort required to complete projects. The ability to handle heavy loads, control movements precisely, and adapt to various tasks improves the overall productivity of the equipment, leading to cost savings and improved project timelines.

In summary, hydraulic cylinders enhance the performance of construction and mining equipment by providing power, precise control, adaptability, durability, and safety. They enable these machines to handle heavy loads, perform tasks with accuracy, withstand harsh conditions, and increase productivity. Hydraulic cylinders are integral components that contribute to the efficiency and effectiveness of construction and mining operations.

hydraulic cylinder

Integration of Hydraulic Cylinders with Equipment Requiring Rapid and Dynamic Movements

Hydraulic cylinders can indeed be integrated with equipment that requires rapid and dynamic movements. While hydraulic systems are generally known for their ability to provide high force and precise control, they can also be designed and optimized for applications that demand fast and dynamic motion. Let’s explore how hydraulic cylinders can be integrated with such equipment:

  1. High-Speed Hydraulic Systems: Hydraulic cylinders can be part of high-speed hydraulic systems designed specifically for rapid and dynamic movements. These systems incorporate features such as high-flow valves, optimized hydraulic circuitry, and responsive control systems. By carefully engineering the system components and hydraulic parameters, it is possible to achieve the desired speed and responsiveness, enabling the equipment to perform rapid movements.
  2. Valve Control: The control of hydraulic cylinders plays a crucial role in achieving rapid and dynamic movements. Proportional or servo valves can be used to precisely control the flow of hydraulic fluid into and out of the cylinder. These valves offer fast response times and precise flow control, allowing for rapid acceleration and deceleration of the cylinder’s piston. By adjusting the valve settings and optimizing the control algorithms, equipment can be designed to execute dynamic movements with high speed and accuracy.
  3. Optimized Cylinder Design: The design of hydraulic cylinders can be optimized to facilitate rapid and dynamic movements. Lightweight materials, such as aluminum alloys or composite materials, can be used to reduce the moving mass of the cylinder, enabling faster acceleration and deceleration. Additionally, the cylinder’s internal components, such as the piston and seals, can be designed for low friction to minimize energy losses and enhance responsiveness. These design optimizations contribute to the overall speed and dynamic performance of the equipment.
  4. Accumulator Integration: Hydraulic accumulators can be integrated into the system to enhance the dynamic capabilities of hydraulic cylinders. Accumulators store pressurized hydraulic fluid, which can be rapidly released to supplement the flow from the pump during high-demand situations. This stored energy can provide an extra boost of power, allowing for faster and more dynamic movements. By strategically sizing and configuring the accumulator, the system can be optimized for the specific rapid and dynamic requirements of the equipment.
  5. System Feedback and Control: To achieve precise and dynamic movements, hydraulic systems can incorporate feedback sensors and advanced control algorithms. Position sensors, such as linear potentiometers or magnetostrictive sensors, provide real-time position feedback of the hydraulic cylinder. This information can be used in closed-loop control systems to maintain precise positioning and execute rapid movements. Advanced control algorithms can optimize the control signals sent to the valves, ensuring smooth and dynamic motion while minimizing overshooting or oscillations.

In summary, hydraulic cylinders can be integrated with equipment that requires rapid and dynamic movements by utilizing high-speed hydraulic systems, employing responsive valve control, optimizing cylinder design, integrating accumulators, and incorporating feedback sensors and advanced control algorithms. These measures enable hydraulic systems to deliver the speed, responsiveness, and precision necessary for equipment operating in dynamic environments. By leveraging the capabilities of hydraulic cylinders, manufacturers can design and integrate systems that meet the requirements of applications demanding rapid and dynamic movements.

hydraulic cylinder

What safety precautions should be followed when working with hydraulic cylinders?

Working with hydraulic cylinders requires strict adherence to safety precautions to prevent accidents, injuries, and damage to equipment or property. Hydraulic systems operate under high pressures and involve moving parts, which can pose serious hazards if not handled properly. Here’s a detailed explanation of the safety precautions that should be followed when working with hydraulic cylinders:

1. Training and Knowledge:

– Ensure that personnel working with hydraulic cylinders have received adequate training and possess a thorough understanding of hydraulic system operation, maintenance, and safety protocols. Proper training should cover topics such as hydraulic principles, pressure ratings, safe work practices, and emergency procedures. Only trained and authorized personnel should be allowed to handle hydraulic cylinders.

2. Wear Personal Protective Equipment (PPE):

– Always wear appropriate personal protective equipment when working with hydraulic cylinders. This may include safety glasses, gloves, protective clothing, and steel-toed boots. PPE helps protect against potential hazards, such as hydraulic fluid leaks, flying debris, or accidental contact with moving parts.

3. Hydraulic System Inspection:

– Before working with hydraulic cylinders, inspect the entire hydraulic system for any signs of damage, leaks, or loose connections. Check hydraulic hoses, fittings, valves, and cylinders for integrity and secure fastening. If any issues are detected, the system should be repaired or serviced before operation.

4. Relieve Pressure:

– Before performing any maintenance or disassembly on a hydraulic cylinder, it is crucial to relieve the pressure in the system. Follow the manufacturer’s instructions to properly release pressure and ensure that the hydraulic cylinder is depressurized before starting any work. Failure to do so can result in sudden and uncontrolled movement of the cylinder or hydraulic lines, leading to serious injuries.

5. Lockout/Tagout Procedures:

– Implement lockout/tagout procedures to prevent accidental energization of the hydraulic system while maintenance or repair work is being conducted. Lockout/tagout involves isolating the energy source, such as shutting off the hydraulic pump and locking or tagging the controls to prevent unauthorized operation. This procedure ensures that the hydraulic cylinder remains in a safe, non-operational state during maintenance activities.

6. Use Proper Lifting Techniques:

– When working with heavy hydraulic cylinders or components, use proper lifting techniques and equipment to avoid strain or injury. Hydraulic cylinders can be heavy and awkward to handle, so ensure that lifting equipment, such as cranes or hoists, is properly rated and used correctly. Follow safe lifting practices, including securing the load and maintaining a stable lifting posture.

7. Hydraulic Fluid Handling:

– Handle hydraulic fluid with care and follow proper procedures for fluid filling, transfer, and disposal. Avoid contact with the skin or eyes, as hydraulic fluid may be hazardous. Use appropriate containers and equipment to prevent spills or leaks. If any hydraulic fluid comes into contact with the skin or eyes, rinse thoroughly with water and seek medical attention if necessary.

8. Regular Maintenance:

– Perform regular maintenance and inspections on hydraulic cylinders to ensure their safe and reliable operation. This includes checking for leaks, inspecting seals, monitoring fluid levels, and conducting periodic servicing as recommended by the manufacturer. Proper maintenance helps prevent unexpected failures and ensures the continued safe use of hydraulic cylinders.

9. Follow Manufacturer Guidelines:

– Always follow the manufacturer’s guidelines, instructions, and recommendations for the specific hydraulic cylinders and equipment being used. Manufacturers provide important safety information, maintenance schedules, and operational guidelines that should be strictly adhered to for safe and optimal performance.

10. Emergency Preparedness:

– Be prepared for potential emergencies by having appropriate safety equipment, such as fire extinguishers, first aid kits, and emergency eyewash stations, readily available. Establish clear communication channels and emergency response procedures to promptly address any accidents, leaks, or injuries that may occur during hydraulic cylinder operations.

By following these safety precautions, individuals working with hydraulic cylinders can minimize the risk of accidents, injuries, and property damage. It is essential to prioritize safety, maintain awareness of potential hazards, and ensure compliance with relevant safety regulations and industry standards.

China high quality Auto Spare Parts Clutch Master Cylinder for Volov 8172824 20553587 20835246   with Best Sales China high quality Auto Spare Parts Clutch Master Cylinder for Volov 8172824 20553587 20835246   with Best Sales
editor by CX 2023-12-01