Mô tả sản phẩm

China Manufacturer Mining Dump Truck Spare Parts Front Rear Ride Oil Suspension Nitrogen Hydraulic Cylinder Made in China

Product Description:

Widely used in equipment for Coal&mine,Engineering.

Special structural design, high-strength material use, and special heat treatment and welding processes ensure that the oil cylinder has extremely high fatigue durability under high pressure and heavy load.

The front and rear suspension cylinders can be analyzed and calculated based on the parameters provided by customers, and the stiffness and damping curves required by customers can be designed.

The surface of the piston rod adopts special surface treatment to ensure excellent wear and corrosion resistance of the piston rod.

Select heavy-duty sealing rings to meet the harsh working conditions of the mining area, ensuring excellent dustproof and sealing performance of the oil cylinder.

Select a wide series and high bearing capacity integrated guide ring, with strong lateral force resistance.

The interior of the lifting cylinder can be designed with a buffer structure to avoid excessive impact during lifting and lowering processes.

The steering cylinder can be equipped with a built-in displacement sensor to monitor the cylinder stroke in real-time.

The piston accumulator adopts a dual piston design, with high and low pressure chambers to meet various road conditions.

The reliable sealing structure design of the piston accumulator ensures the separation of oil and gas.

Trưng bày sản phẩm:

Front suspension cylinder for mining dump truck

Rear suspension cylinder for mining dump truck

Specifications:

MụcThông số kỹ thuật
Bore Diameter150mm-450mm,Customized
Rod Diameter120mm-400mm,Customized
Đột quỵ200-500mm,Customized
Working Pressure7-45Mpa,Customized
Xử lý bề mặt thanh pistonMạ crom cứng, Mạ crom trắng sữa + crom cứng, Mạ niken + mạ crom cứng, Mạ crom-nic-crom tốc độ cao bằng nhiên liệu oxy, Lớp phủ gốm, Nitriding, Mạ laser.
Tube&BarrelỐng kéo nguội có độ bền kéo cao, được mài chính xác để kéo dài tuổi thọ của gioăng.
Loại niêm phongParker,NOK, Hallite GAPI or as customer’s requirement
CertificateISO9001,CE,SGS.
Màu sắc Yellow,Red,Black,Pink,Customized
Bao bìmetal case;plywood case;carton or as requirement 
Số lượng đặt hàng tối thiểu1pcs,According to products
Brandtianjian or customer’s logo
Dịch vụOEM & ODM
Thời gian sản xuấtBased on order quantity.  normally 30-45days.
Lợi thế về giáGiá xuất xưởng cạnh tranh với chất lượng đảm bảo.
Loại hình doanh nghiệpNhà sản xuất 

Phương pháp lắp đặt:

Appliactions:Mining Dump Truck

Nhà máy của chúng tôi:

Quy trình kiểm tra:

       Loại kiểm tra                       Tiêu chuẩn kiểm tra
Kiểm tra nguyên liệu thôTrước khi lưu trữ, bộ phận kiểm soát chất lượng (QC) tiến hành đo đạc nguyên liệu thô.
Kiểm tra vật liệu quy trìnhTrong quá trình sản xuất, bộ phận kiểm soát chất lượng tiến hành kiểm tra ngẫu nhiên.
Trước khi các bộ phận xi lanh thủy lực được chuyển sang công đoạn tiếp theo, bộ phận kiểm soát chất lượng (QC) sẽ tiến hành kiểm tra.
Kiểm thử chức năng cuối cùngTất cả các xi lanh thủy lực đều trải qua kiểm tra chức năng thủy lực.

Đóng gói & Giao hàng:

 

About US:Certificates

ZheJiang Tianjian Hydraulic Technology Co.,Ltd is Chuyên sản xuất các loại xi lanh thủy lực, cũng như thân xi lanh, xi lanh piston và các phụ kiện xi lanh khác.

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.

Our Customers

Nếu có thể, khi liên hệ với chúng tôi, vui lòng cung cấp thông tin như bên dưới. 

Khoan

Rod

Đột quỵ

Áp lực công việc

Lắp đặt

Môi trường làm việc

 

 

 

 

 

 

Hoặc bạn có thể cung cấp cho chúng tôi sơ đồ phác thảo hoặc hình ảnh để chúng tôi có thể hiểu chính xác ý bạn muốn nói, giúp chúng tôi tránh sai sót.

Và nếu quý khách có mẫu, chúng tôi có thể sản xuất theo mẫu của quý khách sau khi nhận được mẫu.

Nếu có thời gian, xin mời quý khách ghé thăm nhà máy của chúng tôi.

Sự hài lòng của quý khách là động lực lớn nhất của chúng tôi.

Giờ đây, bạn có thể liên hệ với chúng tôi nếu có bất kỳ câu hỏi hoặc thắc mắc nào.

Câu hỏi thường gặp:

1. Công ty của bạn kinh doanh lĩnh vực gì?
A: Chúng tôi là nhà cung cấp các sản phẩm thủy lực chất lượng cao, bao gồm xi lanh thủy lực, động cơ thủy lực, bộ nguồn thủy lực, trạm thủy lực và các linh kiện thủy lực khác.
 
2. Bạn là nhà sản xuất hay công ty thương mại?
A: Chúng tôi là nhà sản xuất.
 
3. Bạn có chứng chỉ gì?
A: Tất cả các nhà máy của chúng tôi đều đạt chứng nhận ISO. Và các nhà cung cấp vật liệu và linh kiện chính của chúng tôi đều có chứng nhận CE, RoHS, CSA và UL.
 
4. Thời gian giao hàng của bạn là bao lâu?
A: The delivery time depends on different products and quantity. The cylinder usually need about 45-60 days and the Motor need about 30-50days.
 
5. Anh/chị có thể sản xuất các bộ phận theo yêu cầu hoặc bản vẽ của khách hàng không?
A: Vâng, chúng tôi có thể sản xuất theo bản vẽ của bạn. Kỹ sư của chúng tôi cũng có thể cung cấp hỗ trợ chuyên nghiệp về các vấn đề kỹ thuật.
 
6. Quý công ty chấp nhận những hình thức thanh toán nào?
A: Chúng tôi ưu tiên thanh toán bằng chuyển khoản ngân hàng (T/T). 30% khi xác nhận đơn hàng và 70% trước khi giao hàng. Thư tín dụng (L/C) cũng được chấp nhận đối với số tiền trên 20.000 USD.
 
7. Chính sách bảo hành của quý công ty là gì?
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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Certification:GS, RoHS, CE, ISO9001
Pressure:Medium Pressure
Work Temperature:High Temperature
Acting Way:Double Acting
Working Method:Straight Trip
Adjusted Form:Regulated Type
Samples:
US$ 3000/Piece
1 Piece(Min.Order)

|

Customization:
Available

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xi lanh thủy lực

How do hydraulic cylinders handle the challenges of minimizing friction and wear?

Hydraulic cylinders employ several mechanisms and techniques to effectively minimize friction and wear, ensuring optimal performance and longevity. Minimizing friction and wear is crucial for hydraulic cylinders as it helps to maintain efficiency, reduce energy consumption, and prevent premature failure. Here’s a detailed explanation of how hydraulic cylinders handle the challenges of minimizing friction and wear:

1. Lubrication:

– Proper lubrication is essential for minimizing friction and wear in hydraulic cylinders. Lubricating fluids, such as hydraulic oils, are used to create a thin film between moving surfaces, reducing direct metal-to-metal contact. This lubricating film acts as a protective barrier, reducing friction and preventing wear. Regular maintenance practices include monitoring and maintaining the appropriate lubricant levels to ensure optimal lubrication and minimize frictional losses.

2. Surface Finishes:

– The surface finishes of components in hydraulic cylinders play a crucial role in minimizing friction and wear. Smoother surface finishes, achieved through precision machining, grinding, or the application of specialized coatings, reduce surface roughness and frictional resistance. By minimizing surface irregularities, the risk of wear and friction-induced damage is significantly reduced, resulting in improved efficiency and extended component life.

3. High-Quality Sealing Systems:

– Well-designed and high-quality sealing systems are crucial for minimizing friction and wear in hydraulic cylinders. Seals prevent fluid leakage and contamination while maintaining proper lubrication. Advanced sealing materials, such as polyurethane or composite materials, offer excellent wear resistance and low friction characteristics. Optimal seal design and proper installation ensure effective sealing, minimizing friction and wear between the piston and cylinder bore.

4. Proper Alignment and Clearances:

– Hydraulic cylinders must be properly aligned and have appropriate clearances to minimize friction and wear. Misalignment or excessive clearances can result in increased friction and uneven wear, leading to premature failure. Proper installation, alignment, and maintenance practices, including regular inspection and adjustment of clearances, help ensure smooth and even movement of the piston within the cylinder, reducing friction and wear.

5. Filtration and Contamination Control:

– Effective filtration and contamination control are essential for minimizing friction and wear in hydraulic cylinders. Contaminants, such as particles or moisture, can act as abrasive agents, accelerating wear and increasing friction. By implementing robust filtration systems and proper maintenance practices, hydraulic systems can prevent the ingress of contaminants, ensuring clean and properly lubricated components. Clean hydraulic fluids help minimize wear and friction, contributing to improved performance and longevity.

6. Material Selection:

– The selection of appropriate materials for hydraulic cylinder components is crucial in minimizing friction and wear. Components subject to high frictional forces, such as pistons and cylinder bores, can be made from materials with excellent wear resistance, such as hardened steel or composite materials. Additionally, selecting materials with low coefficients of friction helps reduce frictional losses. Proper material selection ensures durability and minimized wear in critical components of hydraulic cylinders.

7. Maintenance and Regular Inspection:

– Regular maintenance and inspection practices are vital for identifying and addressing potential issues that could lead to increased friction and wear in hydraulic cylinders. Scheduled maintenance includes lubrication checks, seal inspections, and monitoring of clearances. By promptly detecting and rectifying any signs of wear or misalignment, hydraulic cylinders can be kept in optimal condition, minimizing friction and wear throughout their operational lifespan.

In summary, hydraulic cylinders employ various strategies to handle the challenges of minimizing friction and wear. These include proper lubrication, employing suitable surface finishes, utilizing high-quality sealing systems, ensuring proper alignment and clearances, implementing effective filtration and contamination control measures, selecting appropriate materials, and conducting regular maintenance and inspections. By implementing these practices, hydraulic cylinders can minimize friction and wear, ensuring smooth and efficient operation while extending the overall lifespan of the system.

xi lanh thủy lực

Integration of Hydraulic Cylinders with Equipment Requiring Rapid and Dynamic Movements

Hydraulic cylinders can indeed be integrated with equipment that requires rapid and dynamic movements. While hydraulic systems are generally known for their ability to provide high force and precise control, they can also be designed and optimized for applications that demand fast and dynamic motion. Let’s explore how hydraulic cylinders can be integrated with such equipment:

  1. High-Speed Hydraulic Systems: Hydraulic cylinders can be part of high-speed hydraulic systems designed specifically for rapid and dynamic movements. These systems incorporate features such as high-flow valves, optimized hydraulic circuitry, and responsive control systems. By carefully engineering the system components and hydraulic parameters, it is possible to achieve the desired speed and responsiveness, enabling the equipment to perform rapid movements.
  2. Valve Control: The control of hydraulic cylinders plays a crucial role in achieving rapid and dynamic movements. Proportional or servo valves can be used to precisely control the flow of hydraulic fluid into and out of the cylinder. These valves offer fast response times and precise flow control, allowing for rapid acceleration and deceleration of the cylinder’s piston. By adjusting the valve settings and optimizing the control algorithms, equipment can be designed to execute dynamic movements with high speed and accuracy.
  3. Optimized Cylinder Design: The design of hydraulic cylinders can be optimized to facilitate rapid and dynamic movements. Lightweight materials, such as aluminum alloys or composite materials, can be used to reduce the moving mass of the cylinder, enabling faster acceleration and deceleration. Additionally, the cylinder’s internal components, such as the piston and seals, can be designed for low friction to minimize energy losses and enhance responsiveness. These design optimizations contribute to the overall speed and dynamic performance of the equipment.
  4. Accumulator Integration: Hydraulic accumulators can be integrated into the system to enhance the dynamic capabilities of hydraulic cylinders. Accumulators store pressurized hydraulic fluid, which can be rapidly released to supplement the flow from the pump during high-demand situations. This stored energy can provide an extra boost of power, allowing for faster and more dynamic movements. By strategically sizing and configuring the accumulator, the system can be optimized for the specific rapid and dynamic requirements of the equipment.
  5. System Feedback and Control: To achieve precise and dynamic movements, hydraulic systems can incorporate feedback sensors and advanced control algorithms. Position sensors, such as linear potentiometers or magnetostrictive sensors, provide real-time position feedback of the hydraulic cylinder. This information can be used in closed-loop control systems to maintain precise positioning and execute rapid movements. Advanced control algorithms can optimize the control signals sent to the valves, ensuring smooth and dynamic motion while minimizing overshooting or oscillations.

In summary, hydraulic cylinders can be integrated with equipment that requires rapid and dynamic movements by utilizing high-speed hydraulic systems, employing responsive valve control, optimizing cylinder design, integrating accumulators, and incorporating feedback sensors and advanced control algorithms. These measures enable hydraulic systems to deliver the speed, responsiveness, and precision necessary for equipment operating in dynamic environments. By leveraging the capabilities of hydraulic cylinders, manufacturers can design and integrate systems that meet the requirements of applications demanding rapid and dynamic movements.

xi lanh thủy lực

What factors should be considered when selecting the right hydraulic cylinder for an application?

When selecting the right hydraulic cylinder for an application, several important factors need to be considered. These factors help ensure that the chosen hydraulic cylinder is suitable for the specific requirements of the application and will perform reliably. Here are the key factors to consider:

1. Load Requirements:

– One of the crucial factors to consider is the load requirement of the application. Determine the maximum load that the hydraulic cylinder needs to handle. Consider both the static load (when the cylinder is stationary) and the dynamic load (when the cylinder is in motion). The load requirement will impact the cylinder’s bore size, rod diameter, and overall strength. Choose a hydraulic cylinder with a load capacity that exceeds the application’s maximum load to ensure safety and longevity.

2. Stroke Length:

– The stroke length refers to the distance the hydraulic cylinder needs to extend and retract to perform the desired motion. Measure the required stroke length based on the application’s operational requirements. It is essential to choose a hydraulic cylinder with a stroke length that matches or exceeds the required distance. Consider any potential variations or adjustments in the stroke length that may be needed in the future.

3. Operating Pressure:

– Consider the operating pressure required for the application. The hydraulic cylinder must be capable of withstanding the maximum pressure within the hydraulic system. Ensure that the selected cylinder has a pressure rating that exceeds the application’s maximum operating pressure. This ensures safety and prevents premature failure.

4. Speed Requirements:

– Determine the required speed of the hydraulic cylinder’s movement for the application. Consider both the extension and retraction speeds. Select a cylinder that can achieve the desired speed while maintaining precise control and stability. It is important to choose a cylinder that can handle the required speed without compromising performance or safety.

5. Mounting:

– Evaluate the available space and mounting requirements for the hydraulic cylinder. Consider the mounting type (such as flange, foot, trunnion, or clevis), the available mounting points, and any specific mounting constraints. Ensure that the selected cylinder can be easily and securely mounted in the desired location.

6. Environmental Factors:

– Assess the environmental conditions in which the hydraulic cylinder will operate. Consider factors such as temperature extremes, humidity, exposure to chemicals, dust, or corrosive substances. Choose a cylinder that is designed to withstand the specific environmental conditions of the application. This may involve selecting appropriate materials, coatings, or seals to ensure the longevity and performance of the cylinder.

7. Cylinder Configuration:

– Determine the appropriate cylinder configuration based on the application’s requirements. Consider factors such as single-acting or double-acting cylinders, telescopic cylinders for limited space, or custom configurations for unique applications. Evaluate the specific needs of the application to select the most suitable cylinder configuration.

8. Maintenance and Serviceability:

– Consider the maintenance and service requirements of the hydraulic cylinder. Evaluate factors such as ease of access for maintenance, availability of spare parts, and the reputation of the manufacturer or supplier in terms of customer support and after-sales service. Choosing a reliable and reputable brand can ensure ongoing support and availability of spare parts when needed.

9. Compliance and Standards:

– Depending on the industry and application, certain compliance standards may need to be met. Consider any industry-specific regulations, safety standards, or certifications that the hydraulic cylinder should comply with. Ensure that the selected cylinder meets the required standards and certifications for the application.

10. Cost and Budget:

– Finally, consider the cost and budget for the hydraulic cylinder. While it is important to select a cylinder that meets the application’s requirements, it is also necessary to consider the overall cost-effectiveness. Evaluate the initial purchase cost, long-term maintenance costs, and the expected lifespan of the cylinder. Balancing the cost and quality will help in selecting a hydraulic cylinder that provides the best value for the application.

By considering these factors in the selection process, it becomes possible to choose the right hydraulic cylinder that meets the specific requirements of the application in terms of load capacity, stroke length, operating pressure, speed, mounting, environmental conditions, maintenance needs, compliance, and cost-effectiveness. Proper selection ensures optimal performance, reliability, and longevity of the hydraulic cylinder in the intended application.

China wholesaler China Tianjian by Plywood Case Hydraulic Oil Cylinder with RoHS   vacuum pump adapter	China wholesaler China Tianjian by Plywood Case Hydraulic Oil Cylinder with RoHS   vacuum pump adapter
editor by CX 2024-02-06

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