Produktbeskrivning
Single acting telescopic hydraulic oil cylinder for dump truck
Produktbeskrivning
Hyva & CHINAMFG & Custom hoist & Xihu (West Lake) Dis.r type hydraulic telescopic Cylinders are used for Dump Truck, Tipper Truck, 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.Each stage electroplate hard chrome;
2.lighter and easier to maintenance hydraulic telescopic cylinder;
3.High quality alloy seamless steel pipe have better mechanical properties;
4.The world famous brands of seals, such as HALLITE, PARKER,etc;
5.World-class processing technology ensures stable and reliable quality.
| NO | ITEM | DATA OF dump truck hydraulic cylinder |
| 1 | Material | 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 | Parker,custom hoist, hyco,HYVA, Meiller SAT,DAT |
| 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 telescopic hydraulic cylinder |
| 10 | Temperature range | -50°C to +100°C |
Detailed Photos
Företagsprofil
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-Telescopic hydraulic cylinder for dump truck.
-Hydraulic Cylinders Certification ISO9001 TS16949, etc;
-Telescopic jack Hydraulic Cylinder Export to North America, South America, Australia, South Korea, Southeast Asia, South Africa, Europe, Middle East, etc;
-ODM&OEM Single acting Hydraulic Telescopic Cylinder according to client’s requirements;
-Professional manufacturer& supplier of Hydraulic Cylinders over 30 years;
-The Hydraulic telescopic Cylinders 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-Telescopic hydraulic cylinder for dump truck
-7*24 service.
-Competitive price.
-Professional technical team.
-Perfect after-sales service system.
-ODM&OEM according to customer needs.
-Strong 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
<Telescopic Hydraulic jack Buffer Test
<Hydraulic Telescopic Cylinder Reliability Test
<Dump truck Hydraulic Cylinder Full Stroke Test
<Dump trailer Hydraulic Cylinder Trial Operation Test
<Tipper truck Cylinder Pressure Tight Test
<Dump truck telescopic Hydraulic Cylinder Load Efficiency Test
<Dump trailer telescopic Hydraulic Cylinder Start-up Pressure Test
<Long stroke single acting hydraulic telescopic cylinder Testing the Effect of Limit
SALES AND SERVICE
ONE WORLD ONE LOVE
| Certification: | CE, ISO/Ts16949 |
|---|---|
| Pressure: | Medium Pressure |
| Work Temperature: | Normal Temperature |
| Acting Way: | Single Acting |
| Working Method: | Straight Trip |
| Adjusted Form: | Regulated Type |
| Samples: | US$ 1000/Piece 1 Piece(Min.Order) | |
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| Customization: | Available |
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Hur står sig hydraulcylindrar i jämförelse med andra metoder för kraftgenerering, som elmotorer?
Hydraulcylindrar och elmotorer är två olika metoder för kraftgenerering med distinkta egenskaper och tillämpningar. Även om både hydraulcylindrar och elmotorer kan generera kraft, skiljer de sig åt vad gäller deras arbetsprinciper, prestandaegenskaper och lämplighet för specifika tillämpningar. Här är en detaljerad jämförelse av hydraulcylindrar och elmotorer:
1. Arbetsprincip:
– Hydraulcylindrar: Hydraulcylindrar genererar kraft genom att omvandla vätsketryck till linjär rörelse. De består av en cylindercylinder, kolv, kolvstång och hydraulvätska. När trycksatt hydraulvätska kommer in i cylindern trycker den mot kolven, vilket får kolvstången att förlängas eller dras tillbaka, vilket genererar en linjär kraft.
– Elmotorer: Elmotorer genererar kraft genom att omvandla elektrisk energi till rotationsrörelse. De består av en stator, rotor och ett elektromagnetiskt fält. När en elektrisk ström appliceras på motorns lindningar skapas ett magnetfält som interagerar med rotorn, vilket får den att rotera och generera vridmoment.
2. Kraft och makt:
– Hydraulcylindrar: Hydraulcylindrar är kända för sin höga kraftkapacitet. De kan generera betydande linjära krafter, vilket gör dem lämpliga för tunga applikationer som kräver lyft, skjutning eller dragning av stora laster. Hydraulsystem kan ge hög kraftuttag även vid låga hastigheter, vilket möjliggör exakt kontroll över krafttillämpningen. Hydraulsystem arbetar dock vanligtvis vid lägre hastigheter jämfört med elmotorer.
– Elmotorer: Elmotorer utmärker sig genom att ge höga rotationshastigheter och används ofta för applikationer som kräver snabb rörelse. Även om elmotorer kan generera betydande vridmoment tenderar de att ha lägre kraftuttag jämfört med hydraulcylindrar. Elmotorer är lämpliga för applikationer som involverar kontinuerlig rotationsrörelse, såsom att driva transportband, roterande maskiner eller driva fordon.
3. Kontroll och precision:
– Hydraulcylindrar: Hydraulsystem erbjuder utmärkt kontroll över kraft, hastighet och positionering. Genom att reglera flödet av hydraulvätska kan kraften och hastigheten hos hydraulcylindrarna styras exakt. Hydraulsystem kan ge gradvis acceleration och retardation, vilket möjliggör smidiga och precisa rörelser. Denna kontrollnivå gör hydraulcylindrar väl lämpade för applikationer som kräver exakt positionering, till exempel inom industriell automation eller byggutrustning.
– Elmotorer: Elmotorer erbjuder också exakt kontroll över hastighet och positionering. Genom motorstyrningstekniker som varierande spänning, frekvens eller pulsbreddsmodulering (PWM) kan rotationshastigheten och positionen för elmotorer styras noggrant. Elmotorer används ofta i applikationer som kräver exakt hastighetsreglering, såsom robotteknik, CNC-maskiner eller servosystem.
4. Effektivitet och energiförbrukning:
– Hydraulcylindrar: Hydraulsystem kan vara mycket effektiva, särskilt när de är rätt dimensionerade och utformade. Hydraulsystem har dock vanligtvis högre energiförluster på grund av faktorer som vätskeläckage, friktion och värmeutveckling. Den totala effektiviteten hos ett hydraulsystem beror på design, komponentval och underhållspraxis. Hydraulsystem kräver en hydraulisk kraftenhet för att trycksätta hydraulvätskan, vilket förbrukar ytterligare energi.
– Elmotorer: Elmotorer kan ha hög verkningsgrad, särskilt när de används under optimala driftsförhållanden. Elmotorer har lägre energiförluster jämfört med hydrauliska system, främst på grund av avsaknaden av vätskeläckage och lägre friktionsförluster. Den totala verkningsgraden hos en elmotor beror på faktorer som motordesign, belastningsförhållanden och styrtekniker. Elmotorer kräver en elektrisk strömkälla, och deras energiförbrukning beror på motorns nominella effekt och drifttiden.
5. Miljöhänsyn:
– Hydraulcylindrar: Hydraulsystem använder vanligtvis hydraulvätskor som kan orsaka miljöproblem om de läcker eller inte kasseras på rätt sätt. Valet av hydraulvätska kan påverka faktorer som biologisk nedbrytbarhet, toxicitet och potentiella miljörisker. Korrekt underhåll och läckageförebyggande åtgärder är avgörande för att minimera miljöpåverkan från hydraulsystem.
– Elmotorer: Elmotorer anses generellt vara mer miljövänliga eftersom de inte kräver hydraulvätskor. Miljöpåverkan från elmotorer beror dock på vilken elkälla som används för att driva dem. När de drivs av förnybara energikällor, såsom sol eller vind, kan elmotorer erbjuda en grönare lösning jämfört med hydrauliska system.
6. Lämplighet för tillämpning:
– Hydraulcylindrar: Hydraulcylindrar används ofta i applikationer som kräver hög kraftuttag, exakt kontroll och hållbarhet. De används ofta inom industrier som bygg, tillverkning, gruvdrift och flygindustrin. Hydraulsystem är väl lämpade för tunga applikationer, såsom att lyfta tunga föremål, använda tunga maskiner eller styra storskaliga rörelser.
– Elmotorer: Elmotorer används ofta inom olika industrier och tillämpningar som kräver rotationsrörelse, hastighetsreglering och exakt positionering. De finns ofta inom apparater, transport, robotteknik, VVS-system och automation. Elmotorer är lämpliga för tillämpningar som involverar kontinuerlig rotationsrörelse, såsom att driva transportband, roterande maskiner eller driva fordon. Sammanfattningsvis har hydraulcylindrar och elmotorer olika arbetsprinciper, kraftkapacitet, styregenskaper, effektivitetsnivåer och tillämpningslämplighet. Hydraulcylindrar utmärker sig genom att ge hög kraftuttag, exakt styrning och hållbarhet, vilket gör dem idealiska för tunga tillämpningar. Elmotorer, å andra sidan, erbjuder höga rotationshastigheter, exakt hastighetsreglering och används ofta för tillämpningar som involverar kontinuerlig rotationsrörelse. Valet mellan hydraulcylindrar och elmotorer beror på tillämpningens specifika krav, inklusive typ av rörelse, kraftuttag, styrprecision och miljöhänsyn.

How do hydraulic cylinders contribute to the efficiency of agricultural tasks like plowing?
Hydraulic cylinders play a crucial role in improving the efficiency of agricultural tasks, including plowing. These cylinders provide several benefits that enhance the performance and productivity of agricultural machinery. Let’s explore how hydraulic cylinders contribute to the efficiency of plowing and other agricultural tasks:
- Powerful Force Generation: Hydraulic cylinders are capable of generating high forces, which is essential for tasks like plowing. The hydraulic system supplies pressurized fluid to the cylinders, converting hydraulic energy into mechanical force. This force is then utilized to drive plow blades through the soil, overcoming resistance and facilitating efficient soil penetration. The power generated by hydraulic cylinders ensures effective plowing, even in tough or compacted soil conditions.
- Adjustable Working Depth: Hydraulic cylinders allow for easy and precise adjustment of the plow’s working depth. By controlling the extension or retraction of the hydraulic cylinder, farmers can adjust the depth of the plow blades according to soil conditions, crop requirements, or their specific preferences. This adjustability enhances efficiency by ensuring optimal soil tillage and minimizing unnecessary energy expenditure. Farmers can adapt the plowing depth to different field areas, optimizing the use of resources and promoting uniform crop growth.
- Responsive Control: Hydraulic systems offer highly responsive control, enabling farmers to make quick adjustments during plowing operations. Hydraulic cylinders respond rapidly to changes in hydraulic pressure and valve settings, allowing for immediate modifications in the plow’s position, depth, or angle. This responsiveness enhances efficiency by facilitating on-the-go adjustments based on soil variations, obstacles, or changing field conditions. Farmers can maintain precise control over the plow’s performance, ensuring effective soil tillage and minimizing the risk of crop damage.
- Implement Versatility: Hydraulic cylinders enable the attachment of various implements to agricultural machinery, expanding their functionality and versatility. In the context of plowing, hydraulic cylinders allow for the attachment and detachment of plow blades or other tillage implements. This versatility enables farmers to adapt their equipment to different soil types, field sizes, or specific plowing requirements. By using hydraulic cylinders, farmers can easily switch between different implements, optimizing their equipment for specific tasks and maximizing efficiency.
- Efficient Time Management: Hydraulic cylinders contribute to time efficiency in agricultural tasks like plowing. With hydraulic systems, farmers can operate plows at higher speeds while maintaining control and precision. The responsive nature of hydraulic cylinders allows for efficient turning, maneuvering, and repositioning of plows, minimizing downtime and optimizing field coverage. This time efficiency translates into increased productivity and reduced overall operational costs. Farmers can accomplish plowing tasks more quickly, allowing them to cover larger field areas in less time.
In summary, hydraulic cylinders significantly contribute to the efficiency of agricultural tasks like plowing. Through powerful force generation, adjustable working depth, responsive control, implement versatility, and efficient time management, hydraulic systems equipped with cylinders enhance the performance and productivity of agricultural machinery. These contributions allow farmers to accomplish plowing tasks more effectively, optimize field operations, and achieve improved overall efficiency in their agricultural practices.

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 2023-10-25