China Custom Hb 20g Cylinder Furukawa Back Head Cylinder for Hydraulic Breaker Spare Parts vacuum pump brakes

Product Description

HB 20G Cylinder FURUKAWA Back Head Cylinder for Hydraulic Breaker Spare Parts

Product Information

Product Name Hydraulic Breaker Seal Kit Model NO. HB20G HB571G HB 20G
Color As showed OEM Welcome
Feature High Temperature Resistant MOQ 1 Set
Hardness 70 Degree-90 Degree Pressure 0~0.05MPa
Brand FURUKAWA Application FURUKAWA Hydraulic Breaker

FURUKAWA Series

HB-35G F-22 F-9 FXJ-475 FX-15 HB-8G FX-220 F-1 HB-3R
HB-18G F-17 F-4 FXJ-175 F-35 HB-2G FX-45 HB-200 HB-05R
HB-10G F-11 F-2 FX-360 F-27 HB-5G FX-25 HB-4R HB-40G
HB-20G F-19 F-5 FXJ-275 F-45 HB-3G FX-55 HB-300 HB-1R
HB-15G F-12 F-3 FX-470 F-30 HB-1G FX-35 HB-100 HB-50G
HB-30G F-20 F-6 FXJ-375 F-70 HB-5G FX-65 HB-400 HB-2R

 

SOOSA*N Series

SQ80 SB50 SB100 SU+55 SB151 SH35G SB10 ST200
SQ130 SB80 SB130 SU+125 SB162 SH400 SB35 ET300
SQ140 SB81 SB140 SU+145 SB202 SH700 SB40 ST300
SQ100 SB60 SB120 SU+85 SB152 SH40G SB20 ET200
SQ120 SB70 SB121 SU+105 SB160 SH200 SB30  
SQ150 SB81A SB145 SU+155 SH18G SQ60 SB43  
SQ180 SB81N SB150 SU+165 SH20G SQ70 SB45  

 

GENERAL Series

GB2T GB3T GB4T GB270E
GB8T GB5T GB6T GB290E
GB8AT GB9F GB130E GB300E
GB11T GB50E GB170E GB400E
GB14T GB230E GB228E GB500E

FINE Series Seal Kit

FINE10 FINE8 FINE6 FINE7 FINE12 FINE5
FINE23 FINE22 FINE20 FINE21 FINE25 FINE15
FINE45 FINE40 FINE35 FINE36 FINE50 FINE30
FINE4          

DAEMO Series

DMB03 S3600 S45
DMB04 S500-V S2200-2
DMB4000 DMB06 S2200-1
S150-V DMB5000 S900-V
S1800-V S1300-V S2500
S3000    

MSB Series

MS-200 MS-450 MS-800 XIHU (WEST LAKE) DIS.-20 XIHU (WEST LAKE) DIS.-120 XIHU (WEST LAKE) DIS.-350
MS-220 MS-460 MS-900 XIHU (WEST LAKE) DIS.-30 XIHU (WEST LAKE) DIS.-180 XIHU (WEST LAKE) DIS.-400
MS-225 MS-500 MS-1000 XIHU (WEST LAKE) DIS.-40 XIHU (WEST LAKE) DIS.-200 XIHU (WEST LAKE) DIS.-500
MS-250 MS-520 MS-35AT XIHU (WEST LAKE) DIS.-50 XIHU (WEST LAKE) DIS.-210 XIHU (WEST LAKE) DIS.-510
MS-255 MS-550 MS-45AT XIHU (WEST LAKE) DIS.-55 XIHU (WEST LAKE) DIS.-220  
MS-300 MS-600 MS-55AT XIHU (WEST LAKE) DIS.-81 XIHU (WEST LAKE) DIS.-250  
MS-400 MS-700 MS-75AT XIHU (WEST LAKE) DIS.-100 XIHU (WEST LAKE) DIS.-300  

KONAN Series

MKB500 MKB800
MKB900 MKB1200/N
MKB1300/N MKB1400/N/V
MKB1500 MKB1600
MKB1700 MKB1800

NPK Series

H-1XA H-2X/XA/XE H-3XA/XE H-4X/XE H-5X H-10XA/XB/XE
GH-1 H-30X H-12X/XE H-20X/XE H-6X/XA H-8X/XA
GH-2 GH-3 H-14X H-11X H-7X  
GH-6 GH-4 H-16/16XE E-212 E-240  
GH-9 GH-5 GH-10 GH-12 GH-15  
GH-18 E-208 E-18X E-24X E-210  
E-12X E-215 E-15X E-213 E-212  
E-216 E-218 E-220 E-225 E-224  

ATLAS COPCO Series

SB-50 SB-450 SBC-800 HB-4100/4200 HBC-6000 MB-700/750 TEX-80 TEX-700
SB-52 SB-452 SBC-850 HB-4700 PB-110 MB-800 TEX-100 TEX-900
SB-100 SB-552 HB-2000 HB-5800 PB-160 MB-1000 TEX-110 TEX-1400
SB-102 SBC-115 HB-2200 HB-7000 PB-210 MB-1200 TEX-180 TEX-1800
SB-150 SBC-225 HB-2500 HBC-1100 PB-310 MB-1500 TEX-200 TEX-2000
SB-152 SBC-410 HB-3000 HBC-1700 PB-420 MB-1600 TEX-250  
SB-200 SBC-610 HB-3100 HBC-2500 PB-530 MB-1700 TEX-400  
SB-300 SBC-650 HB-3600 HBC-4000 MB-500 TEX-75 TEX-600  

And also can be supply related poducts spare parts

Seal Kit Diaphragm Chisel
Lower Bush Upper Bush Thrust Bush
Side Rod Assy Stop Pin Tie Rod
Retainer Pin Pipe Clamp Auxiliary Valve
Moil Chisel Wedge Chisel Blunt Chisel
Through Bolt Set Side Bolt Charging Valve
Back Cylinder Front Cylinder Piston
Cone Chisel Oring box Hose Pipe
Accumulator Wear Bush Coupling
Hydraulic Breaker Valve Rod Chisel Membrane

More Available Brand Hydraulic Hammer Model

MONTABERT BRH125,BRH250,BRH501,BRH625,SC12,BRV32,BRV43,etc
K*RUPP HM900,HM901,HM902,HM950,HM960,etc
RAMMER S23,S24,S25,S26,E63,E64,E66,E68,G90,G100,etc
INDECO MES2500,MES3000,MES3500,MES4000,etc
TOKU/T*OYO TNB 5E6E7E8E10E,TNB150151,TNB310,THBB301,THBB401,THBB801,
EVERDIGM RHB305,RHB313,RHB320,RHB321,RHB323,RHB324,RHB325,RHB326,etc
BLT/EDT BLT80-1,BLT80-2,BLT81,BLT100/EDT2000,EDT2200,EDT3000,EDT3200,EDT3500,etc
KWANGLIM SG200,SG300,SG350,SG400,SG600,SG800,SG1800,SG2000,SG2100,SG2500,
SG2800,SG3300,SG4000,SG1200
MONTABERT SC28,BRP130,BRP140,BRP150,V32,V43,V45,V53,V55,V1200,v1600,V2500,
BRH125,BRH270,BRH501,BRH570,BRH250,BRH625,BRH750,BRH1100
RAMMER M300,M600,M700,M900,XL1000,,XL1300,XL1600,XL1700,XL1900,,XL1700,XL2600

Hot Sales
If you have other breaker spare parts demand, such as Rod pin, aTool pin, Through bolt, Side bolt, Piston, Diaphragm, Seal kit, Ring bush, Front cover, Control valve, Accumulator, etc, please click the below picture for more information, we believe we can save much of your time and be your ONE-STOP supplier.

Now you can stop searching and comparison, I bet our factory can be your best choice. WHY?

First,Stable quality in various actual fields worldwide
Our chisels have been supplied to over 70 companies of more than 30 countries
Certificate such as CE, ISO, can also be a proof of our quality.

Second,Well equipped production facility.
We have own manufacturing factories for hydraulic breaker Spare Parts,
and it with an up-to-date production facility for high-end hydraulic breaker, chisel, and spare parts

Third,we have pistons for the following hydraulic breaker/hammers:
you can also send us your drawing for mass customized production
 
Fourth,Quality Assurance
Every working procedure would influence the product quality, thus each working procedure should
sustaining testing on our production lines.  Our warranty policy could make you rest easy.

Hence, Xihu (West Lake) Dis.an is available to show you our product range and guide you in the choice of the products that best fit your needs,

FAQ

Q1. How many days for the delivery time?
It is about 1-7 working days after the order confirmation.

Q2. What kind of payments you accept?
Now we accept T/T,L/C or Western Union,other terms also could be negotiated,Recommended Trade Assurance to guarantee buyer’s property.

Q3. Are you able to manufacturing products according to customer’s design?
Sure,we have made many special orders from oversea for 10 years since 2571. So we have enough ability to deal with any cases. OEM certificate is available to provided.

Q4. What’s your advantages in the machinery manufacturing industry?
Fast delivery time,High quality products,Best customer service,Adopting the latest production technology.

Q5. Which countries have you been exported recently?
Canada,Australia,Peru,Egypt,Brazil,Mexico,South Africa,etc.

Q6. Are you sure that your product will my hydraulic breaker?
We have different brand hydraulic breakers. Show me your model number,and we can give you best match products.

Q7. How about the packing of the goods?
Standard export package,wood cases,or as customers’ demands.

 

Warranty: 3-6 Months
Type: Cylinder
Application: Hydraulic Breaker
Certification: CE, ISO9001: 2000
Condition: New
MOQ: 1 PCS
Customization:
Available

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hydraulic cylinder

How do hydraulic cylinders compare to other methods of force generation like electric motors?

Hydraulic cylinders and electric motors are two different methods of force generation with distinct characteristics and applications. While both hydraulic cylinders and electric motors can generate force, they differ in terms of their working principles, performance attributes, and suitability for specific applications. Here’s a detailed comparison of hydraulic cylinders and electric motors:

1. Working Principle:

– Hydraulic Cylinders: Hydraulic cylinders generate force through the conversion of fluid pressure into linear motion. They consist of a cylinder barrel, piston, piston rod, and hydraulic fluid. When pressurized hydraulic fluid enters the cylinder, it pushes against the piston, causing the piston rod to extend or retract, thereby generating linear force.

– Electric Motors: Electric motors generate force through the conversion of electrical energy into rotational motion. They consist of a stator, rotor, and electromagnetic field. When an electrical current is applied to the motor’s windings, it creates a magnetic field that interacts with the rotor, causing it to rotate and generate torque.

2. Force and Power:

– Hydraulic Cylinders: Hydraulic cylinders are known for their high force capabilities. They can generate substantial linear forces, making them suitable for heavy-duty applications that require lifting, pushing, or pulling large loads. Hydraulic systems can provide high force output even at low speeds, allowing for precise control over force application. However, hydraulic systems typically operate at lower speeds compared to electric motors.

– Electric Motors: Electric motors excel in providing high rotational speeds and are commonly used for applications that require rapid motion. While electric motors can generate significant torque, they tend to have lower force output compared to hydraulic cylinders. Electric motors are suitable for applications that involve continuous rotary motion, such as driving conveyor belts, rotating machinery, or powering vehicles.

3. Control and Precision:

– Hydraulic Cylinders: Hydraulic systems offer excellent control over force, speed, and positioning. By regulating the flow of hydraulic fluid, the force and speed of hydraulic cylinders can be precisely controlled. Hydraulic systems can provide gradual acceleration and deceleration, allowing for smooth and precise movements. This level of control makes hydraulic cylinders well-suited for applications that require precise positioning, such as in industrial automation or construction equipment.

– Electric Motors: Electric motors also offer precise control over speed and positioning. Through motor control techniques such as varying voltage, frequency, or pulse width modulation (PWM), the rotational speed and position of electric motors can be accurately controlled. Electric motors are commonly used in applications that require precise speed control, such as robotics, CNC machines, or servo systems.

4. Efficiency and Energy Consumption:

– Hydraulic Cylinders: Hydraulic systems can be highly efficient, especially when properly sized and designed. However, hydraulic systems typically have higher energy losses due to factors such as fluid leakage, friction, and heat generation. The overall efficiency of a hydraulic system depends on the design, component selection, and maintenance practices. Hydraulic systems require a hydraulic power unit to pressurize the hydraulic fluid, which consumes additional energy.

– Electric Motors: Electric motors can have high efficiency, especially when operated at their optimal operating conditions. Electric motors have lower energy losses compared to hydraulic systems, primarily due to the absence of fluid leakage and lower friction losses. The overall efficiency of an electric motor depends on factors such as motor design, load conditions, and control techniques. Electric motors require an electrical power source, and their energy consumption depends on the motor’s power rating and the duration of operation.

5. Environmental Considerations:

– Hydraulic Cylinders: Hydraulic systems typically use hydraulic fluids that can pose environmental concerns if they leak or are not properly disposed of. The choice of hydraulic fluid can impact factors such as biodegradability, toxicity, and potential environmental hazards. Proper maintenance and leak prevention practices are essential to minimize the environmental impact of hydraulic systems.

– Electric Motors: Electric motors are generally considered more environmentally friendly since they do not require hydraulic fluids. However, the environmental impact of electric motors depends on the source of electricity used to power them. When powered by renewable energy sources, such as solar or wind, electric motors can offer a greener solution compared to hydraulic systems.

6. Application Suitability:

– Hydraulic Cylinders: Hydraulic cylinders are commonly used in applications that require high force output, precise control, and durability. They are widely employed in industries such as construction, manufacturing, mining, and aerospace. Hydraulic systems are well-suited for heavy-duty applications, such as lifting heavy objects, operating heavy machinery, or controlling large-scale movements.

– Electric Motors: Electric motors are widely used in various industries and applications that require rotational motion, speed control, and precise positioning. They are commonly found in appliances, transportation, robotics, HVAC systems, and automation. Electric motorsare suitable for applications that involve continuous rotary motion, such as driving conveyor belts, rotating machinery, or powering vehicles.In summary, hydraulic cylinders and electric motors have different working principles, force capabilities, control characteristics, efficiency levels, and application suitability. Hydraulic cylinders excel in providing high force output, precise control, and durability, making them ideal for heavy-duty applications. Electric motors, on the other hand, offer high rotational speeds, precise speed control, and are commonly used for applications that involve continuous rotary motion. The choice between hydraulic cylinders and electric motors depends on the specific requirements of the application, including the type of motion, force output, control precision, and environmental considerations.

hydraulic cylinder

Ensuring Stable Performance of Hydraulic Cylinders Under Fluctuating Loads

Hydraulic cylinders are designed to provide stable performance even under fluctuating loads. They achieve this through various mechanisms and features that allow for efficient load control and compensation. Let’s explore how hydraulic cylinders ensure stable performance under fluctuating loads:

  1. Piston Design: The piston inside the hydraulic cylinder plays a crucial role in load control. It is typically equipped with seals and rings that prevent leakage of hydraulic fluid and ensure effective transfer of force. The piston design may incorporate features such as stepped or tandem pistons, which provide enhanced load-bearing capabilities and improved stability by distributing the load across multiple surfaces.
  2. Cylinder Cushioning: Hydraulic cylinders often incorporate cushioning mechanisms to minimize the impact and shock caused by fluctuating loads. Cushioning can be achieved through various methods, such as adjustable cushion screws, hydraulic cushioning valves, or elastomeric cushioning rings. These mechanisms slow down the piston’s movement near the end of the stroke, reducing the impact and preventing sudden stops that could lead to instability.
  3. Pressure Compensation: Fluctuating loads can result in pressure variations within the hydraulic system. To ensure stable performance, hydraulic cylinders are equipped with pressure compensation mechanisms. These mechanisms maintain a consistent pressure level in the system, regardless of load changes. Pressure compensation can be achieved through the use of pressure relief valves, compensating pistons, or pressure-compensated flow control valves.
  4. Flow Control: Hydraulic cylinders often incorporate flow control valves to regulate the speed of the cylinder’s movement. By controlling the flow rate of hydraulic fluid, the cylinder’s motion can be adjusted to match the changing load conditions. Flow control valves allow for smooth and controlled movement, preventing abrupt changes that could lead to instability.
  5. Feedback Systems: To ensure stable performance under fluctuating loads, hydraulic cylinders can be integrated with feedback systems. These systems provide real-time information on the cylinder’s position, velocity, and force. By continuously monitoring these parameters, the hydraulic system can make immediate adjustments to maintain stability and compensate for load fluctuations. Feedback systems can include position sensors, pressure sensors, or load sensors, depending on the specific application.
  6. Proper Sizing and Selection: Ensuring stable performance under fluctuating loads starts with proper sizing and selection of hydraulic cylinders. It is crucial to choose cylinders with appropriate bore size, rod diameter, and stroke length to match the anticipated load conditions. Oversized or undersized cylinders can lead to instability and reduced performance. Proper sizing also involves considering factors such as the required force, speed, and duty cycle of the application.

In summary, hydraulic cylinders ensure stable performance under fluctuating loads through features such as piston design, cushioning mechanisms, pressure compensation, flow control, feedback systems, and proper sizing and selection. These mechanisms and considerations allow hydraulic cylinders to provide consistent and controlled movement, even in dynamic load conditions, resulting in reliable and stable performance.

hydraulic cylinder

What maintenance practices are essential for extending the lifespan of hydraulic cylinders?

Maintaining hydraulic cylinders is crucial for extending their lifespan and ensuring optimal performance. Regular maintenance helps prevent premature wear, damage, and failure, ultimately reducing downtime and saving costs. Here are some essential maintenance practices to consider for extending the lifespan of hydraulic cylinders:

1. Regular Inspections:

– Conduct routine visual inspections of hydraulic cylinders to identify any signs of damage, leaks, or wear. Inspect the cylinder body, piston rod, seals, and mounting points. Look for fluid leaks, rust, dents, or any abnormal wear patterns. Early detection of issues allows for timely repairs or replacements, preventing further damage and extending the lifespan of the cylinder.

2. Cleanliness:

– Maintain a clean environment around hydraulic cylinders to prevent contaminants from entering the system. Dust, dirt, and debris can damage seals and other internal components, leading to accelerated wear and reduced performance. Regularly clean the cylinder and its surroundings to minimize the risk of contamination.

3. Proper Lubrication:

– Adequate lubrication is critical for the smooth operation and longevity of hydraulic cylinders. Follow the manufacturer’s recommendations for lubrication intervals and use the appropriate lubricant. Apply lubrication to the cylinder’s moving parts, such as the piston rod, to reduce friction and minimize wear.

4. Seal Maintenance:

– Seals play a vital role in preventing hydraulic fluid leaks and maintaining the cylinder’s performance. Inspect and replace worn or damaged seals promptly. Ensure that seals are properly installed and lubricated. Regularly clean the seal grooves to remove any debris that could compromise seal effectiveness.

5. Pressure Checks:

– Periodically check the hydraulic system’s pressure to ensure it is within the recommended operating range. Excessive pressure can strain the cylinder and its components, leading to premature wear. Monitor pressure levels and make adjustments as necessary to prevent overloading the cylinder.

6. Control Valve Maintenance:

– Maintain and inspect control valves that regulate the flow and direction of hydraulic fluid. Ensure that the valves are functioning correctly and not causing excessive stress or pressure spikes in the cylinder. Clean or replace control valves if they are damaged or malfunctioning.

7. Cylinder Alignment:

– Proper alignment of hydraulic cylinders is essential for their longevity. Misalignment can cause excessive side loads, leading to uneven wear and potential damage. Ensure that the cylinder is correctly aligned with other components and that the mounting points are secure.

8. Preventing Overloading:

– Avoid subjecting hydraulic cylinders to loads exceeding their rated capacity. Overloading can cause internal damage, seal failure, and reduced lifespan. Ensure that the load requirements are within the cylinder’s capabilities and consider using safety devices like overload protection systems when necessary.

9. Training and Operator Awareness:

– Provide proper training to equipment operators on the correct use and handling of hydraulic cylinders. Operators should be aware of the cylinder’s limitations, safe operating procedures, and the importance of regular maintenance. Promote a culture of proactive maintenance and encourage operators to report any potential issues promptly.

10. Documentation and Record-Keeping:

– Maintain detailed documentation of all maintenance activities, including inspections, repairs, and replacements. Keep records of lubrication schedules, pressure checks, and any maintenance performed on the hydraulic cylinders. This documentation helps track the cylinder’s history, identify recurring issues, and plan future maintenance effectively.

By following these maintenance practices, hydraulic cylinder lifespan can be extended, ensuring reliable performance and reducing the risk of unexpected failures. Regular inspections, cleanliness, proper lubrication, seal maintenance, pressure checks, control valve maintenance, cylinder alignment, preventing overloading, operator training, and documentation contribute to the overall longevity and optimal functioning of hydraulic cylinders.

China Custom Hb 20g Cylinder Furukawa Back Head Cylinder for Hydraulic Breaker Spare Parts   vacuum pump brakesChina Custom Hb 20g Cylinder Furukawa Back Head Cylinder for Hydraulic Breaker Spare Parts   vacuum pump brakes
editor by CX 2023-11-06

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