製品説明

FE/FC/FEE/FSE Telescopic Hydraulic Cylinder For Dump Truck/Trailer 

アイテムDump Truck Telescopic Hydraulic Cylinder 
TypeFC/FE/FEE/FSE/Pin to Pin Mounting/Pin to Trunnion Mounting 
HS Code8412210090
Each Stage Diameter(mm)221/196/172/150/129/110/91/75/60;
214/191/169/149/129/110/91/75/60;
202/179/157/137/118/99/80/63;
Max.Stroke(mm)12000mm
Raw Materials27SiMn,16Mn,45#,20# seamless steel pipe with quenched&tempered
Seal Kits Kaden,Hallite,Merkel,Guarnitec etc
Max.Pressure25MPa/250Bar
Chrome Plating Hard chrome plated
Chrome Thickness 0.015-0.571mm
Color According to your needs,you can choose your favorite color (Black/Blue/Red/Yellow/Gray/White etc)
Quality CheckAll the parts and the finished hydraulic cylinders will be tested before delivery
Warranty 14 Months 
Lead Time30-35 working days after deposit payment
PackagePlywood pallet or steel box suitable for export 
CustomersUSA,Canada,Mexico,Russia,Australia,New Zealand,Netherlands,Poland,Italy,South Korea, South America,South Africa etc 
OEM/ODMはい 

FE Telescopic Hydraulic Cylinder List 
Hydraulic Cylinder Production Process

Hydraulic Cylinder Test 
Each hydraulic cylinder is strictly tested before delivery.

Hydraulic Cylinder Application

Other Hot Selling Hydraulic Cylinders

Package&Shipping 

Our Overseas Customers

FAQ

A. Compared with CHINAMFG cylinder, what are your cylinder advantages?
     1. Rod are chrome plated.
     2. Tubes are quenched and tempered.
     3.Tube inner hole goes through deep hole boring machine processing. Surface roughness is 0.4Ra 
        and circular degree is 0.571.
     4. Good quality yet lower price.
 
B: Are you a manufacture or a trade company?
     Manufacture, we are the leader manufacturer of hydraulic industry in China with 14 years’ experience and technology accumulation.
With strong technical team we could solve any annoyance of you.

 
C: How can I get a booklet and buy a cylinder from you?
     Just leave me a message or email or call me directly, let me know you are interesting in our products. I will talk with you for the details soon!

    1. Please advice the drawing with technical requirement.
    2. Please advice the model No. after you check our booklet.
    3. Please advice the tipping capacity, number of stages, closed length, mounting type and size.
    4. Please also help advice the quantities, this is very important.
 
D: Do your products come with a warranty?
    Yes, we have 14 months warranty. In this year, if the quality problem we will free repair for you.
 
 
E: What about the quality feedback of your products?
    We have never received even once quality complaint for many years of international business. 
 
F: Can you help me to install or recommend what kind of hydraulic cylinder or power pack should I use for specific machine?
    Yes, we have 6 experienced engineers who are always ready to help you. If you do not know what kind of hydraulic cylinders should be used in your machine, please just contact us, our engineers will design the exact products match your need.
 
G: What is the delivery time?
     Within 15 days for samples.
     25-30 days for bulk production, which is depend on quality, production process and so on.
 
H: What is your main payment term?
     T/T, L/C, either is available.
 

認証:CE, ISO9001
プレッシャー:High Pressure
動作温度:Normal Temperature
行動様式:Single Acting
作業方法:Straight Trip
調整済みフォーム:Regulated Type
Samples:
US$ 280/Piece
1 Piece(Min.Order)

|

カスタマイズ:
利用可能

|

油圧シリンダー

What advancements in hydraulic cylinder technology have improved energy efficiency?

Advancements in hydraulic cylinder technology have led to significant improvements in energy efficiency, allowing hydraulic systems to operate more efficiently and reduce energy consumption. These advancements aim to minimize energy losses, optimize system performance, and enhance overall efficiency. Here’s a detailed explanation of some key advancements in hydraulic cylinder technology that have improved energy efficiency:

1. Efficient Hydraulic Circuit Design:

– The design of hydraulic circuits has evolved to improve energy efficiency. Advancements in circuit design techniques, such as load-sensing, pressure-compensated systems, or variable displacement pumps, help match the hydraulic power output to the actual load requirements. These designs reduce unnecessary energy consumption by adjusting the flow and pressure levels according to the system demands, rather than operating at a fixed high pressure.

2. High-Efficiency Hydraulic Fluids:

– The development of high-efficiency hydraulic fluids, such as low-viscosity or synthetic fluids, has contributed to improved energy efficiency. These fluids offer lower internal friction and reduced resistance to flow, resulting in decreased energy losses within the system. Additionally, advanced fluid additives and formulations enhance lubrication properties, reducing friction and optimizing the overall efficiency of hydraulic cylinders.

3. Advanced Sealing Technologies:

– Seal technology has advanced significantly, leading to improved energy efficiency in hydraulic cylinders. High-performance seals, such as low-friction or low-leakage seals, minimize internal leakage and friction losses. Reduced internal leakage helps maintain system pressure more effectively, resulting in less energy waste. Additionally, innovative sealing materials and designs enhance durability and extend seal life, reducing the need for frequent maintenance and replacement.

4. Electro-Hydraulic Control Systems:

– The integration of advanced electro-hydraulic control systems has greatly contributed to energy efficiency improvements. By combining electronic control with hydraulic power, these systems enable precise control over cylinder operation, optimizing energy usage. Proportional or servo valves, along with position or force feedback sensors, allow for accurate and responsive control, ensuring that hydraulic cylinders operate at the required level of performance while minimizing energy waste.

5. Energy Recovery Systems:

– Energy recovery systems, such as hydraulic accumulators, have been increasingly utilized to improve energy efficiency in hydraulic cylinder applications. Accumulators store excess energy during low-demand periods and release it when there is a peak demand, reducing the need for the hydraulic pump to provide the full power continuously. By utilizing stored energy, these systems can significantly reduce energy consumption and improve overall system efficiency.

6. Smart Monitoring and Control:

– Advancements in smart monitoring and control technologies have enabled real-time monitoring of hydraulic systems, allowing for optimized energy usage. Integrated sensors, data analytics, and control algorithms provide insights into system performance and energy consumption, enabling operators to make informed decisions and adjustments. By identifying inefficiencies or suboptimal operating conditions, energy consumption can be minimized, leading to improved energy efficiency.

7. System Integration and Optimization:

– The integration and optimization of hydraulic systems as a whole have played a significant role in improving energy efficiency. By considering the entire system layout, component sizing, and interaction between different elements, engineers can design hydraulic systems that operate in the most energy-efficient manner. Proper sizing of components, minimizing pressure drops, and reducing unnecessary piping or valve restrictions all contribute to improved energy efficiency of hydraulic cylinders.

8. Research and Development:

– Ongoing research and development efforts in the field of hydraulic cylinder technology continue to drive energy efficiency advancements. Innovations in materials, component design, system modeling, and simulation techniques help identify areas for improvement and optimize energy usage. Additionally, collaboration between industry stakeholders, research institutions, and regulatory bodies fosters the development of energy-efficient hydraulic cylinder technologies.

In summary, advancements in hydraulic cylinder technology have resulted in notable improvements in energy efficiency. Efficient hydraulic circuit designs, high-efficiency hydraulic fluids, advanced sealing technologies, electro-hydraulic control systems, energy recovery systems, smart monitoring and control, system integration and optimization, as well as ongoing research and development efforts, all contribute to reducing energy consumption and enhancing the overall energy efficiency of hydraulic cylinders. These advancements not only benefit the environment but also offer cost savings and improved performance in various hydraulic applications.

油圧シリンダー

油圧シリンダーにおける様々な流体粘度の課題への対処

油圧シリンダーは、流体の粘度の違いに伴う課題に対応できるように設計されています。作動油の粘度は、温度、使用する作動油の種類、その他の要因によって変化します。油圧システムは、最適な性能と効率を確保するために、これらの変化に対応する必要があります。油圧シリンダーが流体の粘度の違いによる課題にどのように対処しているかを見ていきましょう。

  1. 流体の選択: 油圧シリンダーは、それぞれ固有の粘度特性を持つ様々な作動油に対応するように設計されています。最適な性能を確保するためには、適切な粘度の作動油を選択することが不可欠です。メーカーは、特定の油圧システムおよびシリンダーに対して推奨される粘度範囲に関するガイドラインを提供しています。適切な作動油を選択することで、油圧シリンダーは様々な粘度の作動油がもたらす課題に効果的に対応できます。
  2. 粘度補正: 油圧システムには、流体粘度の変動を補正するための機能が組み込まれていることがよくあります。例えば、一部の油圧システムでは、流体の粘度に基づいて流量を調整する圧力補償弁が使用されています。この補正により、さまざまな運転条件や流体粘度においても一貫した性能が確保されます。油圧シリンダは、これらの補正機構と連携して動作し、流体粘度に関わらず、精度と制御性を維持します。
  3. 温度制御: 流体の粘度は温度に大きく依存します。油圧シリンダーは、温度変化による粘度変化という課題に対処するため、様々な温度制御機構を採用しています。熱交換器、冷却器、サーモスタットバルブなどは、システム内の作動油の温度を調整するために一般的に使用されます。作動油の温度を制御することで、油圧シリンダーは所望の粘度範囲を維持し、信頼性と効率性の高い動作を確保できます。
  4. 効率的なろ過: 作動油中の不純物は、粘度や全体的な性能に影響を与える可能性があります。油圧システムには、作動油から粒子や不純物を除去するための効率的なろ過システムが組み込まれています。適切な粘度の清浄な作動油は、油圧シリンダーの最適な動作を保証します。作動油の粘度を維持し、作動油の汚染に関連する問題を防止するためには、定期的なメンテナンスとフィルターの交換が不可欠です。
  5. 適切な潤滑: 油圧シリンダー内の潤滑特性は、流体の粘度によって影響を受ける可能性があります。潤滑は、可動部品間の摩擦と摩耗を最小限に抑えるために不可欠です。油圧システムでは、想定される流体粘度範囲に合わせて特別に配合された潤滑剤が使用されます。適切な潤滑は、流体粘度が変化する場合でも、油圧シリンダーのスムーズな動作と寿命の延長を保証します。

要約すると、油圧シリンダは、流体粘度の違いに伴う課題に対処するために、さまざまな戦略を採用しています。適切な流体の選択、粘度補正機構の組み込み、温度制御、効率的なろ過の実施、適切な潤滑の確保などにより、油圧シリンダは流体粘度の変動に対応できます。これらの対策により、油圧システムは、さまざまな流体粘度範囲において、一貫した性能、精密な制御、および効率的な動作を実現できます。

油圧シリンダー

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 wholesaler Single Acting Front End Hydraulic Cylinder for Rear Tippers   vacuum pump belt	China wholesaler Single Acting Front End Hydraulic Cylinder for Rear Tippers   vacuum pump belt
editor by CX 2023-10-17

jaJapanese