제품 설명
Factory Provide Professional Customized Steering Hydraulic Cylinder for Mining Dump Truck
Product 명세서:
| Item | 명세서 |
| Bore diameter | 60mm~250mm |
| Bod diameter | 40mm~130mm |
| Stroke | 40mm~500mm |
| Woorking Pressure | 17-45Mpa,Customizable |
| Surface treatment of piston rod | HaHard Chrome Plating,Electroplated Milky White Chromium+Hard Chromium,Nickel Plating+Hard Chromium Plating,High-Velocity Oxygen-Fuel CrC NiC,Ceramic Coating,Nitriding,Laser Cladding |
| Material | High tensile cold drawn tube, precision honed for extended seal life |
| Mounting | Earring,Flange,Clevis.Foot,Trunnion,Customizable |
| Seal Type | Parker,NOK, Hallite GAPI or as customer’s requirement |
| Warrenty | 18 months |
| MOQ | 1pcs |
| Production Time | Based on order quantity.normally 30-40 days. |
| Certification | ISO9001,CE, SGS |
| 색상 | Gery,Yellow,Red,Black,Customizable |
| Packaging | metal case,plywood case,carton or as requirement |
| 서비스 | OEM & ODM |
| Price Advantage | Competitive factory price with guaranteed quality |
| Business Type | Manufacturer |
Product Display:
Mounting Method:
Appliactions: Mining Machinery,Small Mining Dump Truck.
Other Related Products:
Our Factory:
Inspection Process:
| Inspection Type | Inspection Standard |
| Raw Material Inspection | Before storage, QC takes the measurement of the raw materials. |
| Process Material Inspection | During the production, QCs conduct a random inspection. Before the hydraulic cylinder parts transferred to the next process, QCs takes inspection. |
| Final Function Testing | All the hydraulic cylinders take hydraulic function test |
Inspection of Mechanical Properties of Raw Materials
Process Inspection
Final Testing
Packing & Delivery:
About US:
Our Certificate
Our Customers
ZheJiang Tianjian Hydraulic Technology Co.,Ltd is specializing in the production of various types of hydraulic cylinders as well as cylinder barrel, piston cylinder and other cylinder accessories.
As a highly specialized manufacturer of hydraulic cylinders, tianjian provides design optimization solutions and reliable products to many customers at home and abroad. No matter in construction machinery, railway bridge machinery, port ship machinery, metallurgy and mining machinery, oil and light industry machinery, special vehicles and other industries, tianjian can provide various standard and non-standard hydraulic cylinder design optimization schemes and products according to users’ requirements, and provide integrated services for perfection and quality.
If possible, when contact with us, please apply information as below
Bore | Rod | Stroke | Work Pressure | Mounting | Work environment |
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Or you can offer us your sketch diagram or photos so that we could understand you exactly meaning, help us avoid mistakes.
And if you have samples, we can manufacture according to your samples after sending to us.
Welcome to our factory if you have any time.
Your satisfaction is our biggest motivation.
Now, you can contact with us for any question or inquiry.
FAQ:
1, What does your company do?
A: we are a supplier of high quality hydraulic products including Hydraulic Cylinder, Hydraulic Motor, Hydraulic Power Pack, Hydraulic station and other Hydraulic components.
2, Are you a manufacture or a trading company?
A: We are a manufacturer.
3, What certificate do you have?
A: All our factories are ISO certificated. And our main suppliers of materials and parts are with CE, RoHS, CSA and UL certificates.
4, How long is your delivery time?
A: The delivery time depends on different products and quantity. The cylinder usually need about 45-60 days and the Motor need about 30-50 days.
5, Can you make parts as customer’s requirement or drawing?
A: Yes, we can OEM for you as your drawings. Our engineer also can give you professional support for technical suggestions.
6, What kind of payment terms do you accept?
A: We prefer T/T through bank. 30% when order is confirmed and 70% before shipment. L/C is also acceptable for amount over 20,000USD.
7, What is your warranty policy?
A: All our products are warranted for 1 full year from date of delivery against defects in materials and workmanship. This warranty does not cover parts that are worn out through the course of normal operation or are damaged through negligence. We serious remind that unclean hydraulic oil will definitely cause damage to your Hydraulic components. And this damage is not included in the warranty range. So we strongly suggest you to use new clean oil or make sure the system oil are clean when using our parts
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Can hydraulic cylinders be integrated with modern telematics and remote monitoring?
Yes, hydraulic cylinders can indeed be integrated with modern telematics and remote monitoring systems. The integration of hydraulic cylinders with telematics and remote monitoring technology offers numerous benefits, including enhanced operational efficiency, improved maintenance practices, and increased overall productivity. Here’s a detailed explanation of how hydraulic cylinders can be integrated with modern telematics and remote monitoring:
1. Sensor Integration:
– Hydraulic cylinders can be equipped with various sensors to gather real-time data about their performance and operating conditions. Sensors such as pressure transducers, temperature sensors, position sensors, and load sensors can be integrated directly into the cylinder or its associated components. These sensors provide valuable information about parameters such as pressure, temperature, position, and load, enabling remote monitoring and analysis of the cylinder’s behavior.
2. Data Transmission:
– The data collected from the sensors in hydraulic cylinders can be transmitted wirelessly or through wired connections to a central monitoring system. Wireless communication technologies such as Bluetooth, Wi-Fi, or cellular networks can be employed to transmit data in real-time. Alternatively, wired connections such as Ethernet or CAN bus can be utilized for data transmission. The choice of communication method depends on the specific requirements of the application and the available infrastructure.
3. Remote Monitoring Systems:
– Remote monitoring systems receive and process the data transmitted from hydraulic cylinders. These systems can be cloud-based or hosted on local servers, depending on the implementation. Remote monitoring systems collect and analyze the data to provide insights into the cylinder’s performance, health, and usage patterns. Operators and maintenance personnel can access the monitoring system through web-based interfaces or dedicated software applications to view real-time data, receive alerts, and generate reports.
4. Condition Monitoring and Predictive Maintenance:
– Integration with telematics and remote monitoring enables condition monitoring and predictive maintenance of hydraulic cylinders. By analyzing the collected data, patterns and trends can be identified, allowing for the detection of potential issues or anomalies before they escalate into major problems. Predictive maintenance algorithms can be applied to the data to generate maintenance schedules, recommend component replacements, and optimize maintenance activities. This proactive approach helps prevent unexpected downtime, reduces maintenance costs, and maximizes the lifespan of hydraulic cylinders.
5. Performance Optimization:
– The data collected from hydraulic cylinders can also be utilized to optimize their performance. By analyzing parameters such as pressure, temperature, and load, operators can identify opportunities for improving operational efficiency. Insights gained from the remote monitoring system can guide adjustments in system settings, load management, or operational practices to optimize the performance of hydraulic cylinders and the overall hydraulic system. This optimization can result in energy savings, improved productivity, and reduced wear and tear.
6. Integration with Equipment Management Systems:
– Telematics and remote monitoring systems can be integrated with broader equipment management systems. This integration allows hydraulic cylinder data to be correlated with data from other components or related machinery, providing a comprehensive view of the overall system’s performance. This holistic approach enables operators to identify potential interdependencies, optimize system-wide performance, and make informed decisions regarding maintenance, repairs, or upgrades.
7. Enhanced Safety and Fault Diagnosis:
– Telematics and remote monitoring can contribute to enhanced safety and fault diagnosis in hydraulic systems. Real-time data from hydraulic cylinders can be used to detect abnormal conditions, such as excessive pressure or temperature, which may indicate potential safety risks. Fault diagnosis algorithms can analyze the data to identify specific issues or malfunctions, enabling prompt intervention and reducing the risk of catastrophic failures or accidents.
In summary, hydraulic cylinders can be effectively integrated with modern telematics and remote monitoring systems. This integration enables the collection of real-time data, remote monitoring of performance, condition monitoring, predictive maintenance, performance optimization, integration with equipment management systems, and enhanced safety. By harnessing the power of telematics and remote monitoring, hydraulic cylinder users can achieve improved efficiency, reduced downtime, optimized maintenance practices, and enhanced overall productivity in various applications and industries.

Handling the Challenges of Minimizing Fluid Leaks and Contamination in Hydraulic Cylinders
Hydraulic cylinders face challenges when it comes to minimizing fluid leaks and contamination, as these issues can impact the performance, reliability, and lifespan of the system. However, there are several measures and design considerations that help address these challenges effectively. Let’s explore how hydraulic cylinders handle the challenges of minimizing fluid leaks and contamination:
- Sealing Systems: Hydraulic cylinders employ advanced sealing systems to prevent fluid leaks. These systems typically include various types of seals, such as piston seals, rod seals, and wiper seals. The seals are designed to create a tight and reliable barrier between the moving components of the cylinder and the external environment, minimizing the risk of fluid leakage.
- Seal Material Selection: The choice of seal materials is crucial in minimizing fluid leaks and contamination. Hydraulic cylinder manufacturers carefully select seal materials that are compatible with the hydraulic fluid used and resistant to wear, abrasion, and chemical degradation. This ensures the longevity and effectiveness of the seals, reducing the likelihood of leaks or premature seal failure.
- Proper Installation and Maintenance: Ensuring proper installation and regular maintenance of hydraulic cylinders is essential for minimizing fluid leaks and contamination. During installation, attention should be given to proper alignment, torqueing of bolts, and adherence to recommended procedures. Regular maintenance includes inspecting seals, replacing worn-out components, and addressing any signs of leakage promptly. Proper maintenance practices help identify and rectify issues before they escalate and cause significant problems.
- Contamination Control: Hydraulic cylinders incorporate measures to control contamination and maintain fluid cleanliness. This includes the use of filtration systems, such as in-line filters, to remove particles and contaminants from the hydraulic fluid. Additionally, hydraulic reservoirs often have breathers and desiccant filters to prevent moisture and airborne contaminants from entering the system. By controlling contamination, hydraulic cylinders minimize the risk of damage to internal components and maintain optimal system performance.
- Environmental Protection: Hydraulic cylinders may be equipped with protective features to safeguard against external contaminants. For example, bellows or protective boots can be installed to shield the rod and seals from debris, dirt, or moisture present in the operating environment. These protective measures help extend the life of the seals and enhance the overall reliability of the hydraulic cylinder.
In summary, hydraulic cylinders employ sealing systems, appropriate seal materials, proper installation and maintenance practices, contamination control measures, and environmental protection features to handle the challenges of minimizing fluid leaks and contamination. By implementing these measures, manufacturers can ensure reliable and long-lasting hydraulic cylinder performance, minimize the risk of fluid leakage, and maintain the cleanliness of the hydraulic system.

유압 실린더는 스트로크 길이 및 힘 요구량의 변화에 어떻게 대응합니까?
유압 실린더는 스트로크 길이와 필요한 힘의 변화에 맞춰 설계되어 다양한 용도에 유연성과 적응성을 제공합니다. 피스톤 직경, 로드 직경, 유압, 실린더 설계 등의 요소를 고려하여 특정 요구 사항에 맞게 맞춤 제작할 수 있습니다. 다음은 유압 실린더가 스트로크 길이와 필요한 힘의 변화에 어떻게 대응하는지에 대한 자세한 설명입니다.
1. 실린더 크기 및 설계:
유압 실린더는 다양한 스트로크 길이와 힘 요구 사항에 맞춰 여러 가지 크기와 설계로 제공됩니다. 실린더 직경, 피스톤 면적, 커넥팅 로드 직경은 힘 출력을 결정하는 주요 요소입니다. 실린더 직경과 피스톤 면적이 클수록 더 큰 힘을 생성할 수 있으며, 직경이 작을수록 낮은 힘이 필요한 용도에 적합합니다. 적절한 실린더 크기와 설계를 선택함으로써 스트로크 길이와 힘 요구 사항을 효과적으로 충족할 수 있습니다.
2. 피스톤 및 커넥팅 로드 구성:
유압 실린더는 스트로크 길이의 변화에 맞춰 다양한 피스톤 및 로드 구성으로 설계할 수 있습니다. 단동 실린더는 피스톤이 하나만 있어 한 방향으로만 스트로크를 제공합니다. 복동 실린더는 양쪽에 피스톤이 있어 양방향으로 스트로크를 제공합니다. 텔레스코픽 실린더는 여러 단계로 구성되어 늘어나고 줄어들 수 있으므로 표준 실린더보다 긴 스트로크 길이를 제공합니다. 적절한 피스톤 및 로드 구성을 선택함으로써 원하는 스트로크 길이를 얻을 수 있습니다.
3. 유압 및 유량:
실린더에 공급되는 유압과 유량은 다양한 힘 요구량에 대응하는 데 중요한 역할을 합니다. 유압을 높이면 실린더의 힘 출력이 증가하여 더 높은 힘을 처리할 수 있습니다. 유압 밸브와 펌프를 통해 압력과 유량을 조절함으로써 힘 출력을 제어하고 특정 용도에 맞는 수준으로 맞출 수 있습니다.
4. 맞춤 제작 및 개별 조정:
유압 실린더는 특정 스트로크 길이 및 힘 요구 사항에 맞춰 맞춤 제작할 수 있습니다. 제조업체는 다양한 크기, 스트로크 길이 및 힘 용량의 실린더를 제공합니다. 또한, 특정 스트로크 길이 및 힘 요구 사항을 가진 특수 용도에 맞게 맞춤 설계된 실린더를 제작할 수 있습니다. 유압 실린더 제조업체와 긴밀히 협력하면 필요한 스트로크 길이 및 힘 요구 사항에 정확히 부합하는 실린더를 얻을 수 있습니다.
5. 다중 실린더 및 동기화:
높은 힘이나 긴 스트로크 길이가 요구되는 응용 분야에서는 여러 개의 유압 실린더를 조합하여 사용할 수 있습니다. 유압 시스템을 통해 여러 실린더의 움직임을 동기화함으로써 스트로크 길이와 힘 출력을 효과적으로 증가시킬 수 있습니다. 동기화는 기계식 연결 장치, 전자 제어 장치 또는 유압 회로를 사용하여 구현할 수 있으며, 이를 통해 실린더 전체에 걸쳐 조화로운 움직임과 힘 분배가 보장됩니다.
6. 부하 감지 및 압력 제어:
유압 시스템은 다양한 힘 요구량에 대응하기 위해 부하 감지 및 압력 제어 메커니즘을 통합할 수 있습니다. 부하 감지 시스템은 부하 요구량을 모니터링하고 그에 따라 유압 압력을 조정하여 실린더가 과도한 힘을 발생시키지 않고 필요한 힘을 전달하도록 합니다. 압력 제어 밸브는 유압 시스템 내부의 압력을 조절하여 적용 분야의 요구 사항에 따라 힘 출력을 정밀하게 제어하고 조정할 수 있도록 합니다.
7. 안전 고려 사항:
스트로크 길이 및 필요한 힘의 변화에 대응할 때는 안전 요소를 고려하는 것이 필수적입니다. 유압 실린더는 예상치 못한 하중이나 작동 조건의 변화에 대처할 수 있도록 적절한 안전 여유를 두고 설계 및 선정해야 합니다. 과부하 보호 밸브 및 압력 방출 밸브와 같은 안전 장치를 통합하여 힘의 한계를 초과하는 상황에서 손상이나 고장을 방지할 수 있습니다.
실린더 크기 및 설계, 피스톤 및 로드 구성, 유압 압력 및 유량, 맞춤 제작 옵션, 동기화, 부하 감지, 압력 제어 및 안전 고려 사항과 같은 요소를 고려하여 유압 실린더는 스트로크 길이 및 힘 요구 사항의 변화에 효과적으로 대응할 수 있습니다. 이러한 유연성을 통해 유압 실린더는 광범위한 응용 분야의 특정 요구 사항에 맞게 맞춤 제작되어 최적의 성능과 효율성을 보장합니다.


editor by Dream 2024-11-27