Product Description
Soo san Hydraulic Breaker Front/Back Head Cylinder
F22 Furukawa hydraulic breaker front head for hydraulic hammer cylinder
| HM700/702/705,HM710/720CS,HM800,HM900/901/902,HM950/960CS,HM1200,HM1300/1500CS,HM1800/2000CS,HM2200/2500CS | |
| RAMMER | S21,S20/22,S23/D30,S24,S25,S26,S29,S52,S54/D60,S55,S56/D70,S82,S83/D110,S84,S86,ROX100,ROX400,ROX700, |
| E64,E66,E68,G80,G100,G120 | |
| N.P.K | H08X,H1XA,H2XA,H3XA,H4X,MB5X/6X,H7X,H8XA,H9X,H10X,H10XB/10XE,H11X/14X,H12X,H16X,H20X/20XE,H12X/E212,H18X/E218 |
| INDECO | MES350,HB5,MES553,MES621,MES1200,HB12,HB19,MES1800,HB27,MES2500 |
| MONTABERT | BRH30,BRH40,BRH45,BRH60,BRH76/91,BRP100,BRP130,BRP125,BRH250, |
| RH501,BRH620, BRH625,BRH750,BRV32 | |
| STANLEY | MB125,MB250/350,MB550,MB800/875,MB1500/1550,MB1950/1875,MB3950,MB30EX,MB40EX |
| FURUKAWA | HB05R,HB1G,HB2G,HB3G,HB5G,HB8G,HB10G,HB15G,HB20G,HB30G,HB40G,HB50G, |
| F-1,F-2,F-3,F-4,F-5,F-6,F-9,F-12,F-19,F-20,F-22,F-27,F-35,F-45,HB100,HB200,HB700 | |
| TO KU | TNB1E,TNB2E,TNB4E,TNB5E/6E,TNB7E/8E/10E,TNB13E,TNB14E/16E,TNB22E |
| OKADA | OUB301,OUB302,OUB303,OUB305,OUB308,OUB310,OUB312,OUB316,OUB318, UB8,UB11,UB14 |
| SOO SAN | SB10,SB20,SB30,SB35,SB40,SB43,SB45,SB50,SB60,SB70,SB81,SB81NSB100,SB121,SB130,SB151 |
| SH200,SH400,SH700,SH18G,SH20G,SH30G,SH35G,SH40G,SH50G | |
| KWANGLIM | SG200,SG300,KSG350,SG400,SG600,SG800,SG1200,SG1800,SG2100,SG2500, |
| DAEMO | DMB03,DMB04,DMB06,DMB4000,DMB5000,S150-V,S500-V,S900-V,S1300-V,S1800-V,S2200-1,S2200-2,S2500,S3000/3600/4500 |
| HANWOO | RHB301,RHB302,RHB303,RHB304,RHB305,RHB306,RHB308,RHB309,RHB313, RHB322,RHB328/332 |
| DAINONG | D30,D50,D60,D70/90,D110,D130,D160,T180,K20 |
| K25,K30,K50,K80,K120,K55S,K40S, | |
| ATLASCOPCO | TEX75/80/100H/HS,TEX110H/HS,TEX180H/HS,TEX250H1,TEX400H/HS,TEX600/700/900H/HS,TEX1400H/HS,TEX1800/2000H/HS |
| GB | GB1T,GB2T,GB3T,GB4T,GB5T,GB6T,GB8T,GB8AT,GB11T,GB14T,GB170E,GB220E,GB290E/300E,GB400E |
| TO YO | THBB71,THBB101,THBB301,THBB401,THBB801,THBB1400,THBB2000 |
Mining:Mining,second-time breaking;
Metallurgy:Clearing slag,Demolition of CHINAMFG and foundation;
Road:Repairing,Breaking,Foundation work;
Railway:Tunneling,Demolition of bridge;
Construction:Demolition of building and reinforced concrete;
Ship repairing:Clearing clam and rust from the hull;
others:Breaking Frozen mud.
Features of our hydraulic breakers:
1. New Mobil Dragon series became lighter, stronger and more powerful than ever.
2. Enlarged the diameter of T/Bolt improved its durability.
3. Switched box housing to bending desigh for more durability.
4. Redesigned chisel pin has improved durability.
5. Enlarged chisel’s diameter improved more powerful impact.
6. High energy and impact frequency(high performance).
7. High-performance optimized hydraulic unit.
8. Low maintenance, less down, long using life.
Advantages:
1.Suitable for all models of excavator,skid steer loader and backhoe loader.
2.We will make or design hydraulic breakers as customer requests.
3.Because we are a manufacture and trading company ,the highest quality, competitive price and a perfect after-sales service should be provided to our customers.
4 High Strength and wear resistance steel plate adopted.
5. First-class quality: Korean technology used to guarantee the quality.
FAQ
Q: Are you a manufacturer?
A: Yes,our factory was established in 2571.
Q: Are you sure your product will fit my excavator?
A: Our equipments are suitable for most excavators. Show us your excavator model, we’ll confirm the solution.
Q: Can you produce according to customers’ design?
A: Sure, OEM/ODM service available. We are professional manufacturer in HangZhou.
Q: What’s the MOQ and payment terms?
A: MOQ is 1set. Payment via T/T,L/C, Western Union accepted, other terms can be negotiated.
Q: How about delivery time?
A: 5-25 work days after the payment.
Q: How about the package?
A: Our equipments wrapped by stretch film, packed by pallet or polywood case; or as requested.
Q: Which country have you exported?
A: Saudi Arabia, America, Thailand, Cyprus, India, Canada, Australia, Peru, Egypt, Brazil, Mexico, Iran, South Africa, etc.
HangZhou Zhongye Machinery Manufacture Co., Ltd. located in Mazhuang industrial area, HangZhou city, ZheJiang province. Close to ZheJiang –HangZhou railway, HangZhou–HangZhou high speed way and HangZhou airport. There is superior terrain, beautiful environment and convernient transportation. Our company specialized in manufacturing all kinds of the hydraulic breaker and spare parts, such as hydraulic breaker chisels, Back &front head, Thrust & Outer bushings, Outer-shell and so on.
We have perfect production equipments and test devices. Our products are conformed to the intemational standards and adopt advanced intemational technology. In order to ensure high-quality, high-intensity. Our products are characterized by its esquisite selection of materials, and adopting the unique heat treatment technology (sub-type of heat treatment), special alloy materials and process; and the quality reaches the intemational advanced level.
Our company is committed to development of the products,production,sales and related technical services,We have cooperated with many famous corporations at home and abroad for long years.Export to the Middle East,Europe,America and other countries and regions.We have many distribution agents in our domestic market.And we provide our Products for other famous breaker factories for long years.
Our company insist on “do strong, do big, do best, doing long” as the goal, with the “coagulation hearts meet force, to create first-class, customer first “spirit of enterprise, in line with the” product quality, management efficiency, customer first, obey them about “the quality policy, we will, as always, wholeheartedly for the new and old customers to provide quality and cheap products and satisfactory service!
| After-sales Service: | Online |
|---|---|
| Warranty: | 6month |
| Certification: | CE, ISO 9001:2008 |
| Standard: | GB |
| Surface Treatment: | Polishing |
| Manufacturing Process: | Forging |
| Customization: | Available |
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How do hydraulic cylinders handle variations in temperature and harsh operating environments?
Hydraulic cylinders are designed to handle variations in temperature and harsh operating environments by incorporating specific features and materials that ensure their durability, reliability, and performance. The ability of hydraulic cylinders to withstand extreme temperatures, corrosive environments, and other harsh conditions is crucial for their successful operation in a wide range of applications. Here’s a detailed explanation of how hydraulic cylinders handle variations in temperature and harsh operating environments:
1. Temperature Range:
– Hydraulic cylinders are designed to operate within a specified temperature range. The materials used in their construction, such as cylinder barrels, pistons, seals, and lubricants, are selected to withstand the anticipated temperature variations. Specialized seals and O-rings made from materials like nitrile, Viton, or polyurethane are used to maintain their sealing properties over a wide temperature range. Heat-resistant coatings or thermal insulation may be applied to certain components to protect them from high temperatures.
2. Thermal Expansion:
– Hydraulic cylinders are designed to accommodate thermal expansion and contraction that occurs with temperature changes. The materials used in their construction have different coefficients of thermal expansion, allowing the cylinder components to expand or contract at a similar rate. This design consideration prevents excessive stress, binding, or leakage that could result from thermal expansion or contraction.
3. Heat Dissipation:
– In applications where hydraulic cylinders are subjected to high temperatures, heat dissipation mechanisms are employed to prevent overheating. Cooling fins or heat sinks may be incorporated into the cylinder design to increase the surface area for heat transfer. In some cases, external cooling methods such as air or liquid cooling systems can be used to maintain optimal operating temperatures.
4. Corrosion Resistance:
– Hydraulic cylinders used in harsh operating environments are constructed from materials that exhibit excellent corrosion resistance. Stainless steel, chrome-plated steel, or other corrosion-resistant alloys are commonly used for cylinder components exposed to corrosive substances or environments. Additionally, surface treatments such as coatings, plating, or specialized paints can provide an extra layer of protection against corrosion.
5. Sealing Systems:
– Hydraulic cylinders employ sealing systems that are specifically designed to withstand harsh operating environments. The seals used in hydraulic cylinders are selected based on their resistance to temperature extremes, chemicals, abrasion, and other environmental factors. Specialized seal designs, such as wiper seals, rod seals, or high-temperature seals, are utilized to maintain effective sealing and prevent contamination of the hydraulic fluid.
6. Lubrication:
– Proper lubrication is essential for the smooth operation and longevity of hydraulic cylinders, particularly in harsh operating environments. Lubricants are selected based on their ability to withstand high temperatures, resist oxidation, and provide effective lubrication under extreme conditions. Regular maintenance and lubrication practices ensure that the cylinder components continue to operate smoothly and reduce the effects of wear and friction.
7. Robust Construction:
– Hydraulic cylinders designed for harsh operating environments are built with robust construction techniques to withstand the rigors of such conditions. The cylinder barrels, rods, and other components are manufactured to meet strict quality and durability standards. Welded or bolted construction methods are employed to ensure the structural integrity of the cylinders. Reinforcements, such as flanges or tie rods, may be added to enhance the cylinder’s strength and resistance to external forces.
8. Environmental Protection:
– Hydraulic cylinders can be equipped with additional protective features to shield them from harsh operating environments. Protective covers, boots, or bellows can be used to prevent contaminants, debris, or moisture from entering the cylinder and compromising its performance. These protective measures help extend the service life of hydraulic cylinders in demanding conditions.
9. Compliance with Standards:
– Hydraulic cylinders manufactured for specific industries or applications often comply with industry standards or regulations related to operating temperature ranges, environmental conditions, or safety requirements. Compliance with these standards ensures that hydraulic cylinders are designed and tested to meet the specific demands of their intended operating environments.
In summary, hydraulic cylinders are designed to handle variations in temperature and harsh operating environments by incorporating suitable materials, thermal expansion considerations, heat dissipation mechanisms, corrosion-resistant components, specialized sealing systems, proper lubrication, robust construction techniques, protective features, and compliance with industry standards. These design considerations and features enable hydraulic cylinders to operate reliably and effectively in a wide range of demanding applications and environmental conditions.

Utilizing Hydraulic Cylinders in Conjunction with Alternative Energy Sources
Hydraulic cylinders can indeed be used in conjunction with alternative energy sources. The versatile nature of hydraulic systems allows them to be integrated with various alternative energy technologies to enhance efficiency, control, and power generation. Let’s explore some examples of how hydraulic cylinders can be utilized alongside alternative energy sources:
- Hydraulic Energy Storage: Hydraulic cylinders can be employed in energy storage systems that utilize alternative energy sources such as renewable sources (e.g., solar or wind) or waste energy recovery. These systems convert excess energy into hydraulic potential energy by pumping fluid into a high-pressure accumulator. When the energy is needed, the pressurized fluid is released, driving the hydraulic cylinder and generating mechanical power.
- Wave and Tidal Energy Conversion: Hydraulic cylinders can be utilized in wave and tidal energy conversion systems. These systems harness the power of ocean waves or tidal currents and convert it into usable energy. Hydraulic cylinders, along with associated pumps and valves, can be used to capture and control the energy from the waves or tides, driving the cylinders and generating mechanical power or producing electricity.
- Hydroelectric Power Generation: Hydraulic cylinders play a crucial role in traditional hydroelectric power generation. However, alternative approaches such as small-scale or micro-hydropower systems can also benefit from hydraulic cylinders. These systems utilize natural or man-made water flows to drive turbines connected to hydraulic cylinders, which then convert the hydraulic energy into mechanical power or electricity.
- Hydraulic Actuation in Wind Turbines: Hydraulic cylinders can be employed in wind turbines to enhance performance and control. For example, hydraulic pitch control systems use hydraulic cylinders to adjust the pitch angle of wind turbine blades, optimizing their aerodynamic performance based on wind conditions. This allows for efficient power generation and protection against excessive wind loads.
- Geothermal Energy Extraction: Geothermal energy extraction involves utilizing the natural heat from the Earth’s interior to generate power. Hydraulic cylinders can be utilized in geothermal systems to control and regulate fluid flow, allowing for efficient extraction and utilization of geothermal energy. They can also be used in geothermal heat pumps for heating and cooling applications.
In summary, hydraulic cylinders can be effectively utilized in conjunction with alternative energy sources to enhance energy storage, power generation, and control. Whether it’s through hydraulic energy storage systems, wave and tidal energy conversion, hydroelectric power generation, hydraulic actuation in wind turbines, or geothermal energy extraction, hydraulic cylinders offer versatile and efficient solutions for harnessing and utilizing alternative energy sources.

How do hydraulic cylinders handle variations in load, pressure, and speed?
Hydraulic cylinders are designed to handle variations in load, pressure, and speed effectively. They incorporate features and components that allow them to adapt to changing operating conditions and maintain optimal performance. Here’s a detailed explanation of how hydraulic cylinders handle variations in load, pressure, and speed:
Variations in Load:
– Hydraulic cylinders are capable of handling variations in load by adjusting the force they exert. The force output of a hydraulic cylinder is determined by the hydraulic pressure and the surface area of the piston. When the load increases, the pressure in the hydraulic system can be adjusted to generate a higher force. This adjustment can be achieved by regulating the flow of hydraulic fluid into the cylinder using control valves. By controlling the pressure and flow, hydraulic cylinders can adapt to different load requirements, ensuring that the force applied is sufficient to handle the load while preventing excessive force that could cause damage.
Variations in Pressure:
– Hydraulic cylinders are designed to handle variations in pressure within the hydraulic system. They are equipped with seals and other components that can withstand high-pressure conditions. When the pressure within the hydraulic system fluctuates, the hydraulic cylinder adjusts accordingly to maintain its performance. The seals prevent fluid leakage and ensure that the hydraulic pressure is effectively transmitted to the piston, allowing the cylinder to generate the required force. Additionally, hydraulic systems often incorporate pressure relief valves and other safety mechanisms to protect the cylinder and the entire system from overpressure conditions.
Variations in Speed:
– Hydraulic cylinders can handle variations in speed through the control of hydraulic fluid flow. The speed of a hydraulic cylinder’s extension or retraction is determined by the rate at which hydraulic fluid enters or exits the cylinder. By adjusting the flow rate using flow control valves, the speed of the cylinder’s movement can be regulated. This allows for precise control over the speed, enabling operators to adapt to varying speed requirements based on the specific task or load. Furthermore, hydraulic systems can incorporate flow control valves with adjustable orifice sizes to fine-tune the speed of the cylinder’s movement.
Load-Sensing Technology:
– Advanced hydraulic systems may incorporate load-sensing technology to further enhance the ability of hydraulic cylinders to handle variations in load, pressure, and speed. Load-sensing systems monitor the load demand and adjust the hydraulic pressure and flow accordingly to meet that demand. This technology ensures that the hydraulic cylinder provides the necessary force while optimizing energy efficiency. Load-sensing systems are particularly beneficial in applications where the load requirements can vary significantly, allowing hydraulic cylinders to adapt in real-time and maintain precise control over force and speed.
Accumulators:
– Hydraulic systems can also utilize accumulators to assist in handling variations in load, pressure, and speed. Accumulators store hydraulic fluid under pressure, which can be released when needed to supplement the flow and pressure in the system. When there are sudden increases in load or pressure demands, accumulators can provide additional fluid to the hydraulic cylinder, ensuring smooth operation and preventing pressure drops. Similarly, accumulators can assist in maintaining consistent speed by compensating for fluctuations in flow rate. They act as a supplemental energy source, helping hydraulic cylinders respond effectively to variations in operating conditions.
In summary, hydraulic cylinders handle variations in load, pressure, and speed through various mechanisms and components. They can adjust the force output to accommodate different load requirements by regulating hydraulic pressure. The seals and components within hydraulic cylinders allow them to withstand variations in pressure within the hydraulic system. By controlling the flow of hydraulic fluid, hydraulic cylinders can regulate the speed of their movement. Advanced technologies such as load-sensing systems and the use of accumulators further enhance the adaptability of hydraulic cylinders to changing operating conditions. These features and mechanisms enable hydraulic cylinders to maintain optimal performance and provide reliable force and motion control in a wide range of applications.


editor by CX 2023-11-20