Description du produit
small piston double acting hydraulic lift ram cylinder
Description du produit
Eaton, parker, hercules, prince, cross type double acting hydraulic cylinder are used for Trailer, Agricultural Machinery, Garbage Truck, Landing Platform etc.
Tsingshi hydraulic Customers, MAN, JAC, VOLVO, SHACMAN, DAF, JMC, HUNO, CIMC, SINOTRUK, TATRA,BENS,XIHU (WEST LAKE) DIS.FENG, FOTON,etc.
1.Piston rod electroplate hard chrome;
2.lighter and easier to maintenance double acting hydraulic cylinder;
3.High quality alloy seamless steel pipe have better mechanical properties;
4.The world famous brands of seals, such as Parker, Merkel, Hallite, Kaden, etc;
5.World-class processing technology ensures stable and reliable quality.
| NO | ITEM | double acting hydraulic cylinder DATA |
| 1 | Matériel | Carbon Steel, Alloy Steel, 27SiMn,45#,20#,etc |
| 2 | Honed tube | 40-300mm, Heat treatment, honing, rolling |
| 3 | Honed tube | 30-280mm, plated nickel or hard Chrome or ceramic |
| 4 | Seal kit | Parker, Merkel, Hallite, Kaden, etc |
| 5 | Coating | Sandblasting, primer paint, middle paint, finish paint, Color can paint according to customer demands. |
| 6 | Technology | Cylindre hydraulique à double effet |
| 7 | Mounting type | Pin-eye , flange, trunnion mount,ball mount, screw thread. FC, FE, FEE, FSE,TPIN |
| 8 | Working medium | Hydraulic Oil |
| 9 | Working pressure | 16-20Mpa hydraulic lift cylinder |
| 10 | Temperature range | -50°C to +100°C |
Detailed Photos
Company Profile
Tsingshi hydraulic is a hydraulic telescopic cylinder for dump tipper truck company which takes up with hydraulic design, R&D, manufacturer, sell and service hydraulic products-small piston double acting hydraulic lift ram oil cylinder.
-double acting hydraulic cylinder Certification ISO9001 TS16949, etc;
-mini double acting hydraulic cylinder Export to North America, South America, Australia, South Korea, Southeast Asia, South Africa, Europe, Middle East, etc;
-ODM&OEM small double acting hydraulic cylinder according to client’s requirements;
-Professional manufacturer& supplier of Hydraulic Cylinders over 30 years;
-The micro double acting hydraulic cylinder can be used for Dump Truck, Tipper Truck, Trailer, Agricultural Machinery, Garbage Truck,Landing Platform etc; We can produce the follow brand hydraulic cylinder. HYVA, BINOTTO, EDBRO, PENTA, MAILHOT, CUSTOM HOIST, MUNCIE, METARIS, HYDRAULEX GLOBAL, HYCO, PARKER, COMMERCIAL HYDRAULICS, MEILLER. WTJX, XT, JX, HCIC, ZX, SZ, SJ.
CUSTOMERS PHOTOS
QUALITY GUARANTEE
HIGH QUALITITY GUARANTEE-double acting hydraulic cylinder
-7*24 service.
-Competitive price.
-Professional technical team.
-Perfect after-sales service system.
-ODM&OEM Hydraulic Cylinder according to customer needs.
-Strong Hydraulic Cylinder production capacity to ensure fast delivery.
-Guarantee Quality. Every process must be inspected, all products need be tested before leaving the factory.
<hydraulic cylinder Leak Test
<piston hydraulic cylinder Buffer Test
<hydraulic lift cylinder Reliability Test
<hydraulic ram cylinder Full Stroke Test
<hydraulic cylinder double acting Operation Test
<micro double acting hydraulic cylinder Pressure Tight Test
<small double acting hydraulic cylinder Load Efficiency Test
<double action hydraulic cylinder Start-up Pressure Test
<double acting hydraulic cylinder Testing the Effect of Limit
SALES AND SERVICE
PRODUCTS SERIES
ONE WORLD ONE LOVE
| Certification: | CE, ISO/Ts16949 |
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| Pressure: | Medium Pressure |
| Work Temperature: | Normal Temperature |
| Acting Way: | Double Acting |
| Working Method: | Straight Trip |
| Adjusted Form: | Regulated Type |
| Samples: | US$ 100/Piece 1 Piece(Min.Order) | |
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| Customization: | Available |
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What advancements in hydraulic cylinder technology have improved sealing and reliability?
Advancements in hydraulic cylinder technology have continuously contributed to improving sealing and reliability in hydraulic systems. These advancements aim to address common challenges such as leakage, wear, and failure of seals, ensuring optimal performance and longevity. Here are several key advancements that have significantly improved sealing and reliability in hydraulic cylinders:
1. High-Performance Sealing Materials:
– The development of advanced sealing materials has greatly improved the sealing capabilities of hydraulic cylinders. Traditional sealing materials like rubber have been replaced or enhanced with high-performance materials such as polyurethane, PTFE (polytetrafluoroethylene), and various composite materials. These materials offer superior resistance to wear, temperature, and chemical degradation, resulting in improved sealing performance and extended seal life.
2. Enhanced Seal Designs:
– Advancements in seal designs have focused on improving sealing efficiency and reliability. Innovative seal profiles, such as lip seals, wipers, and scrapers, have been developed to optimize fluid retention and prevent contamination. These designs provide better sealing performance, minimizing the risk of fluid leakage and maintaining system integrity. Additionally, improved seal geometries and manufacturing techniques ensure tighter tolerances, reducing the potential for seal failure due to misalignment or extrusion.
3. Integrated Seal and Bearing Systems:
– Hydraulic cylinders now incorporate integrated seal and bearing systems, where the sealing elements also serve as bearing surfaces. This design approach reduces the number of components and potential failure points, improving overall reliability. By integrating seals and bearings, the risk of seal damage or displacement due to excessive loads or misalignment is minimized, resulting in enhanced sealing performance and increased reliability.
4. Advanced Coatings and Surface Treatments:
– The application of advanced coatings and surface treatments to hydraulic cylinder components has significantly improved sealing and reliability. Coatings such as chrome plating or ceramic coatings enhance surface hardness, wear resistance, and corrosion resistance. These surface treatments provide a smoother and more durable surface for seals to operate against, reducing friction and improving sealing performance. Moreover, specialized coatings can also provide self-lubricating properties, reducing the need for additional lubrication and enhancing reliability.
5. Sealing System Monitoring and Diagnostic Technologies:
– The integration of monitoring and diagnostic technologies in hydraulic systems has revolutionized seal performance and reliability. Sensors and monitoring systems can detect and alert operators to potential seal failures or leaks before they escalate. Real-time monitoring of pressure, temperature, and seal performance parameters allows for proactive maintenance and early intervention, preventing costly downtime and ensuring optimal sealing and reliability.
6. Computational Modeling and Simulation:
– Computational modeling and simulation techniques have played a significant role in advancing hydraulic cylinder sealing and reliability. These tools enable engineers to analyze and optimize seal designs, fluid flow dynamics, and contact stresses. By simulating various operating conditions, potential issues such as seal extrusion, wear, or leakage can be identified and mitigated early in the design phase, resulting in improved sealing performance and enhanced reliability.
7. Systematic Maintenance Practices:
– Advances in hydraulic cylinder technology have also emphasized the importance of systematic maintenance practices to ensure sealing and overall system reliability. Regular inspection, lubrication, and replacement of seals, as well as routine system flushing and filtration, help prevent premature seal failure and optimize sealing performance. Implementing preventive maintenance schedules and adhering to recommended service intervals contribute to extended seal life and enhanced reliability.
In summary, advancements in hydraulic cylinder technology have led to significant improvements in sealing and reliability. High-performance sealing materials, enhanced seal designs, integrated seal and bearing systems, advanced coatings and surface treatments, sealing system monitoring and diagnostics, computational modeling and simulation, and systematic maintenance practices have all played key roles in achieving optimal sealing performance and increased reliability. These advancements have resulted in more efficient and dependable hydraulic systems, minimizing leakage, wear, and failure of seals, and ultimately improving the overall performance and longevity of hydraulic cylinders in diverse applications.

Progrès dans la technologie des vérins hydrauliques améliorant la résistance à la corrosion
Les progrès réalisés dans la technologie des vérins hydrauliques ont permis d'améliorer considérablement leur résistance à la corrosion. La corrosion représente un problème majeur pour les systèmes hydrauliques, notamment dans les environnements où les vérins sont exposés à l'humidité, aux produits chimiques ou aux agents corrosifs. Ces avancées visent à accroître la durabilité et la durée de vie des vérins hydrauliques. Examinons quelques-unes des principales avancées technologiques qui ont permis d'améliorer la résistance à la corrosion des vérins hydrauliques :
- Matériaux résistants à la corrosion : L'utilisation de matériaux résistants à la corrosion représente une avancée majeure dans la technologie des vérins hydrauliques. L'acier inoxydable, par exemple, offre une excellente résistance à la corrosion, ce qui en fait un matériau de choix pour les applications marines, offshore et autres environnements corrosifs. De plus, les progrès de la métallurgie ont permis le développement d'alliages et de revêtements spécifiques offrant une résistance accrue à la corrosion et prolongeant ainsi la durée de vie des vérins hydrauliques.
- Traitements et revêtements de surface : Divers traitements de surface et revêtements ont été mis au point pour protéger les vérins hydrauliques contre la corrosion. Ces traitements comprennent la galvanoplastie, le revêtement en poudre, ainsi que des revêtements anticorrosion spécifiques. Ces revêtements créent une barrière entre la surface du vérin et les agents corrosifs, empêchant tout contact direct et inhibant l'amorçage de la corrosion. Le choix du revêtement approprié dépend de l'application spécifique et des conditions environnementales.
- Technologie d'étanchéité : Des systèmes d'étanchéité efficaces sont essentiels pour empêcher l'eau, l'humidité et les contaminants de pénétrer dans le cylindre et de provoquer de la corrosion. Les progrès réalisés dans le domaine de l'étanchéité ont permis de développer des joints de haute qualité et des conceptions avancées offrant une résistance supérieure à la corrosion. Ces joints sont généralement fabriqués à partir de matériaux spécialement conçus pour résister aux environnements corrosifs, garantissant ainsi une étanchéité durable et minimisant les risques de problèmes liés à la corrosion.
- Finitions de surface améliorées : L'état de surface des vérins hydrauliques influe sur leur résistance à la corrosion. Les progrès réalisés dans les techniques d'usinage et de polissage permettent d'obtenir des états de surface plus lisses et plus uniformes. Des surfaces plus lisses réduisent le risque d'amorçage de la corrosion et facilitent le nettoyage et l'entretien des vérins hydrauliques. De plus, des traitements spéciaux, tels que la passivation ou les traitements chimiques, peuvent être appliqués pour renforcer davantage la résistance à la corrosion.
- Caractéristiques de protection de l'environnement : Les vérins hydrauliques peuvent être équipés de dispositifs supplémentaires pour les protéger de la corrosion. Il peut s'agir de soufflets, de protections ou d'écrans qui préservent les zones sensibles des agents corrosifs. Grâce à ces éléments de protection intégrés à leur conception, les vérins hydrauliques résistent aux environnements difficiles et minimisent les risques de dommages liés à la corrosion.
En résumé, les progrès réalisés dans le domaine des vérins hydrauliques ont considérablement amélioré leur résistance à la corrosion. L'utilisation de matériaux résistants à la corrosion, de traitements et de revêtements de surface avancés, de technologies d'étanchéité innovantes, de finitions de surface améliorées et l'intégration de dispositifs de protection environnementale ont tous contribué à accroître la durabilité et la longévité des vérins hydrauliques en milieux corrosifs. Ces avancées garantissent un fonctionnement fiable et réduisent les coûts de maintenance et de remplacement liés à la corrosion.

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.


editor by CX 2023-11-06