Описание продукта
Описание продукта
| Capacity | Stroke | Model | Min Height | Outside Diameter | Effective Area | Oil Capacity | Plunger Diameter | Weight | |||
| (Ton) | (mm) | (mm) | (mm) | (cm²) | (cm³) | (mm) | (Kg) | ||||
| Push | Pull | Push | Pull | Push | Pull | ||||||
| 10 | 4. 1 | 254 | CLRG1571 | 409 | 76 | 14.5 | 5.9 | 368 | 149 | 33 | 12 |
| 10 | 4. 1 | 305 | CLRG1012 | 457 | 76 | 14.5 | 5.9 | 442 | 180 | 33 | 14 |
| 50 | 22.6 | 150 | CLRG506 | 325 | 127 | 70.8 | 32.3 | 1062 | 484 | 70 | 30 |
| 50 | 22.6 | 300 | CLRG5012 | 475 | 127 | 70.8 | 32.3 | 2124 | 969 | 70 | 52 |
| 100 | 44 | 50 | CLRG 1002 | 182 | 188 | 132. 7 | 61.9 | 664 | 310 | 95 | 27 |
| 100 | 44 | 100 | CLRG 1004 | 232 | 188 | 132.7 | 61.9 | 1327 | 619 | 95 | 33 |
| 100 | 44 | 150 | CLRG 1006 | 282 | 188 | 132.7 | 61.9 | 1991 | 929 | 95 | 37 |
| 100 | 44 | 200 | CLRG 1008 | 332 | 188 | 132.7 | 61.9 | 2654 | 1238 | 95 | 44 |
| 100 | 44 | 250 | CLRG1571 | 382 | 188 | 132.7 | 61.9 | 3318 | 1548 | 95 | 50 |
| 100 | 44 | 300 | CLRG10012 | 432 | 188 | 132.7 | 61.9 | 3981 | 1857 | 95 | 57 |
| 150 | 67.9 | 50 | CLRG 1502 | 196 | 216 | 201 | 97 | 1005 | 485 | 115 | 47 |
| 150 | 67.9 | 100 | CLRG 1504 | 246 | 216 | 201 | 97 | 2571 | 970 | 115 | 57 |
| 150 | 67.9 | 150 | CLRG1506 | 296 | 216 | 201 | 97 | 3015 | 1455 | 115 | 67 |
| 150 | 67.9 | 200 | CLRG 1508 | 346 | 216 | 201 | 97 | 4571 | 1940 | 115 | 77 |
| 150 | 67.9 | 250 | CLRG15571 | 396 | 216 | 201 | 97 | 5571 | 2425 | 115 | 87 |
| 150 | 67.9 | 300 | CLRG15012 | 446 | 216 | 201 | 97 | 6030 | 2910 | 115 | 97 |
| 200 | 93 | 50 | CLRG2002 | 235 | 242 | 265.9 | 133. 1 | 1329 | 665 | 130 | 67 |
| 200 | 93 | 150 | CLRG2006 | 335 | 242 | 265.9 | 133. 1 | 3988 | 1996 | 130 | 92 |
| 200 | 93 | 250 | CLRG2571 | 435 | 242 | 265.9 | 133. 1 | 6647 | 3327 | 130 | 117 |
| 250 | 107 | 50 | CLRG2502 | 236 | 288 | 366.4 | 152.6 | 1832 | 763 | 165 | 105 |
| 250 | 107 | 150 | CLRG2506 | 336 | 288 | 366.4 | 152. 6 | 5496 | 2289 | 165 | 141 |
| 250 | 107 | 250 | CLRG25571 | 436 | 288 | 366.4 | 152. 6 | 9160 | 3815 | 165 | 176 |
| 300 | 121 | 50 | CLRG3002 | 350 | 325 | 456.2 | 172. 6 | 2281 | 863 | 190 | 204 |
| 300 | 121 | 150 | CLRG3006 | 412 | 325 | 456.2 | 172. 6 | 6843 | 2589 | 190 | 252 |
| 300 | 121 | 250 | CLRG3571 | 512 | 325 | 456.2 | 172. 6 | 11405 | 4315 | 190 | 299 |
| 400 | 138 | 50 | CLRG4002 | 370 | 367 | 559.9 | 196.8 | 2799 | 984 | 215 | 281 |
| 400 | 138 | 150 | CLRG4006 | 470 | 367 | 559.9 | 196.8 | 8399 | 2952 | 215 | 342 |
| 400 | 138 | 250 | CLRG4571 | 570 | 367 | 559.9 | 196.8 | 13998 | 4920 | 215 | 405 |
| 500 | 168 | 50 | CLRG5002 | 400 | 405 | 730. 6 | 239. 7 | 3653 | 1198 | 250 | 411 |
| 500 | 168 | 150 | CLRG5006 | 500 | 405 | 730. 6 | 239. 7 | 10959 | 3595 | 250 | 493 |
| 500 | 168 | 250 | CLRG5571 | 600 | 405 | 730. 6 | 239. 7 | 18265 | 5992 | 250 | 575 |
| 600 | 207 | 50 | CLRG6002 | 445 | 450 | 855.3 | 295.4 | 4277 | 1477 | 267 | 494 |
| 600 | 207 | 150 | CLRG6006 | 545 | 450 | 855.3 | 295.4 | 12830 | 4431 | 267 | 586 |
| 600 | 207 | 250 | CLRG6571 | 645 | 450 | 855.3 | 295.4 | 21383 | 7385 | 267 | 678 |
| 800 | 252 | 50 | CLRG8002 | 695 | 515 | 1164 | 360 | 5820 | 1800 | 320 | 759 |
| 800 | 252 | 150 | CLRG8006 | 595 | 515 | 1164 | 360 | 17460 | 5400 | 320 | 885 |
| 800 | 252 | 250 | CLRG8571 | 695 | 515 | 1164 | 360 | 29100 | 9000 | 320 | 1019 |
| 1000 | 380 | 50 | CLRG 10002 | 535 | 580 | 1465. 7 | 541.7 | 7328 | 2708 | 342 | 1012 |
| 1000 | 380 | 150 | CLRG 10006 | 635 | 580 | 1465. 7 | 541.7 | 21985 | 8125 | 342 | 1168 |
| 1000 | 380 | 250 | CLRG10571 | 735 | 580 | 1465. 7 | 541.7 | 36418 | 13543 | 342 | 1325 |
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Q: How to order?
A: Inquire with us→ sample customization→ use scenario inform→ receive our product design recommendation→ negotiate details→ confirm the sample→ CHINAMFG the contract/deposit→mass production→ the goods are ready→ balance/delivery→ further cooperation.
Q: How about the sample order?
A: We can provide the sample price, please contact us for details.
Q: Which shipping method is available?
A: By sea, by air, or by express (DHL, UPS, FedEx). Other shipping methods are also available, please contact us for details.
Q: How long is the delivery [production] and shipment?
A: The delivery time depends on the quantity you ordered. Shipped from the factory, within 3 days for standard parts and within 10 days for non-standard parts.
Q: My package is missing some products, what can I do?
A: Please contact our support team, we will confirm the contents of your order with the packaging, and compensate for the shipment. We apologize for the inconvenience.
Q: How to confirm the payment?
A: We accept T/T payment method. The first type is 30% deposit order confirmed, and the remaining 70% is paid before shipment, and the second type is 100% paid before shipment. Other payment methods are also acceptable, please contact us before you pay by other payment methods.
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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.

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:
- Мощное генерирование силы: 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.

Как гидравлические цилиндры адаптируются к изменениям длины хода и требуемой силы?
Гидравлические цилиндры разработаны с учетом изменений длины хода и требуемого усилия, обеспечивая гибкость и адаптивность для различных применений. Их можно настроить под конкретные нужды, учитывая такие факторы, как диаметр поршня, диаметр штока, гидравлическое давление и конструкция цилиндра. Вот подробное объяснение того, как гидравлические цилиндры адаптируются к изменениям длины хода и требуемого усилия:
1. Размеры и конструкция цилиндра:
– Гидравлические цилиндры выпускаются различных размеров и конструкций для обеспечения разной длины хода и требуемой силы. Диаметр цилиндра, площадь поршня и диаметр штока являются ключевыми факторами, определяющими выходную силу. Большие диаметры цилиндров и площади поршня позволяют создавать большую силу, в то время как меньшие диаметры подходят для применений, требующих меньшей силы. Выбирая соответствующий размер и конструкцию цилиндра, можно эффективно обеспечить необходимую длину хода и требуемую силу.
2. Конфигурации поршня и шатуна:
– Гидравлические цилиндры могут быть спроектированы с различными конфигурациями поршня и штока для компенсации изменения длины хода. Цилиндры одностороннего действия имеют один поршень и обеспечивают ход в одном направлении. Цилиндры двустороннего действия имеют поршень с обеих сторон, что позволяет осуществлять ход в обоих направлениях. Телескопические цилиндры состоят из нескольких ступеней, которые могут выдвигаться и втягиваться, обеспечивая большую длину хода по сравнению со стандартными цилиндрами. Выбирая соответствующую конфигурацию поршня и штока, можно достичь желаемой длины хода.
3. Гидравлическое давление и расход:
– Гидравлическое давление и расход, подаваемые в цилиндр, играют решающую роль в компенсации изменений требуемой силы. Увеличение гидравлического давления повышает выходную силу цилиндра, позволяя ему справляться с более высокими нагрузками. Регулируя давление и расход с помощью гидравлических клапанов и насосов, можно контролировать выходную силу и подбирать ее в соответствии с конкретными требованиями применения.
4. Индивидуальный заказ и персонализация:
– Гидравлические цилиндры могут быть изготовлены на заказ и адаптированы под конкретные требования к длине хода и усилию. Производители предлагают широкий выбор размеров цилиндров, длин хода и усилий. Кроме того, могут быть изготовлены цилиндры по индивидуальному заказу для уникальных применений с заданными длиной хода и усилием. Тесное сотрудничество с производителями гидравлических цилиндров позволяет получить цилиндры, точно соответствующие требуемой длине хода и усилию.
5. Многоцилиндровый двигатель и синхронизация:
– В тех случаях, когда требуется большая сила или больший ход поршня, можно использовать несколько гидравлических цилиндров в комбинации. Синхронизация движения нескольких цилиндров через гидравлическую систему позволяет эффективно увеличить длину хода и выходную силу. Синхронизация может быть достигнута с помощью механических соединений, электронного управления или гидравлической схемы, обеспечивая скоординированное движение и распределение силы между цилиндрами.
6. Датчик нагрузки и регулирование давления:
– Гидравлические системы могут включать в себя механизмы измерения нагрузки и регулирования давления для компенсации изменений требуемой силы. Системы измерения нагрузки отслеживают требуемую нагрузку и соответствующим образом регулируют гидравлическое давление, обеспечивая подачу необходимой силы цилиндром без чрезмерного усилия. Клапаны регулирования давления регулируют давление в гидравлической системе, обеспечивая точное управление и регулировку выходной силы в зависимости от потребностей применения.
7. Вопросы безопасности:
– При учете изменений длины хода и требуемой силы необходимо принимать во внимание факторы безопасности. Гидравлические цилиндры следует выбирать и проектировать с соответствующим запасом прочности для работы с непредвиденными нагрузками или изменениями условий эксплуатации. Для предотвращения повреждений или отказов в ситуациях превышения предельных значений силы могут быть предусмотрены механизмы безопасности, такие как клапаны защиты от перегрузки и предохранительные клапаны.
Учитывая такие факторы, как размер и конструкция цилиндра, конфигурация поршня и штока, гидравлическое давление и расход, возможности индивидуальной настройки, синхронизация, датчик нагрузки, регулирование давления и соображения безопасности, гидравлические цилиндры могут эффективно адаптироваться к изменениям длины хода и требуемого усилия. Такая гибкость позволяет адаптировать гидравлические цилиндры к конкретным требованиям широкого спектра применений, обеспечивая оптимальную производительность и эффективность.
<img src="https://img.jiansujichilun.com/img/hydrauliccylinders/hydrauliccylinders-l1.webp" alt="China supplier WREN Hydraulic Cylinder Series CLRG1502 Double-Acting High Tonnage Cylinder (150 ton factory price$1000) manufacturer “><img src="https://img.jiansujichilun.com/img/hydrauliccylinders/hydrauliccylinders-l2.webp" alt="China supplier WREN Hydraulic Cylinder Series CLRG1502 Double-Acting High Tonnage Cylinder (150 ton factory price$1000) manufacturer “>
editor by Dream 2024-10-10