Product Description

 

Product Description

 

Product Description

 
The structural design of the fluid pressurized control cabinet are compact. According to the special requirement of customers, the air driven fluid booster pumps, valves, control switches and other precision accessories are assembled in the frame or closed cabinet.

The test machine is equipped with 1 pressure recorder, which can record all the testing pressure data, which are quite helpful for customers to save the pressure testing data.

The pump will stop working automatically when the output pressure reaches the preset value. The pump will start automatically when the outlet pressure drops slightly or the air drive pressure increases.
Booster pump have a variety of pressure ratios. These series of pumps are ideal choice for various hydraulic power operations. The maximum operating pressure up to 640 Mpa.

This hydraulic unit can be used for all kinds of pressure testing and test tools for research and test institutes or for other functions requiring a determined pressure.

TEREK pump adopt aluminum alloy and stainless steel materials. We offer the most complete range of models in the industry measured, such as: capability of ultimate pressure, flow or output pressure. Compatibility with a broad variety of liquids, such as oil, water, corrosive liquid and chemical liquid applications. High quality seals, long service life available.

Product parameters:     

 

Basically the principle of operation is similar to a reciprocating amplifier where control of the piston at the end position is reciprocating , The automatic reciprocating motion of the piston is controlled by a built-in four-way valve. CHINAMFG pumps are air driven at a drive air pressure of 3 to 8 bar (29 to 116 psi) by the normal air compressor.

 

Refer to model technical parameters.

Refer to model technical parameters.

Product name

neumatic liquid booster pump hydrostatic test bench with chart recorder.

Model

LU-LKD-100-RC

Pressure ratio

100:1

Drive air source pressure

3-8 bar.

Medium Hydraulic oil or water

Maximum outlet pressure

800bar 

When the driven air pressure is 5.0bar

High pressure outlet pressure is 200bar./7250psi

When the driven air pressure is 6.0bar

High pressure outlet pressure is 240bar./8990psi

Min gas inlet pressure

15 bar

Max gas inlet pressure

320 bar

Outlet pressure Control unit

Drive air regulator valve

Power source

TEREK liquid booster pump

Pressure control accuracy

less than 1%F.S;

Pressure measurement accuracy

0.4 pressure gauge

Valves and piping

High pressure needle valve and stainless steel piping

Weight

52 KG

Export wooden case Weight

62 KG

Equipment Dimension

660*520*630 mm

Packing size:

720*590*650 mm

Packing Specifications

Standard export wooden case

Connection size(inch) Gas inlet

NPT1/4

Connection size(inch) Gas Outlet

NPT1/4

Production time

12-15 working days.

 

 

Detailed Images

Product advantages

 

1. All pipes and fittings are made of stainless steel to ensure a long life

2. The pump will stop working automatically when the output pressure reaches the preset value,

3. Maintain long working hours with no energy expenditure

4.No dissipated heat during the pressure holding phase

5.No risk for explosion and spark in oil and gas field

6. The pump will start automatically when the outlet pressure drops slightly or the air drive pressure increases.

7. The working pressure can be adjusted by adjusting the pressure of the driven air. 8.Easy to install, move, use and maintain

Application Fields

1.Pressure test with gas

2.Gas transfer and filling(Argon/Helium/Hydrogen/Oxygen/Nitrogen/CO2/NO2/CH4/LNG/LPG/CNG/FM200 etc.)

3.Charging of gas cylinder and accumulator with nitrogen

4.Supply for isolating gas systems

5. High pressure gas injection system for various industries

6.Transfer of oxygen cylinders

7.Charging of breathing air bottles

8.Leak test

9.Hydrostatic Testing for valves, tanks, pressure vessels, pressure switches, hoses, pipes and tubing, pressure gauges, cylinders, transducers, well casings, gas bottles and air craft components

Packaging & Shipping

 

Company Profile

 

 

Our Services

1. We’d like to provide our professional advice regarding machines, materials, packing and market for this product.

2. We’d like to customize special machine according to customer’s request.

3. We’d like to help our customers for booking ship as customer request.

5. Operation manual will be provided after shipment.

6. We provide 2 year warranty.

7. Free wearing parts will be sent together with the machine .

8. Working video of the machine will be sent to you accordingly to your need.

All equipment and accessories are guaranteed for 1 year. Our sales staff and technical department provide permanent technical advice and operation guidance. If you have any questions about the operation of the equipment, please turn off the air source and equipment, check the instructions in time or contact the sales and service personnel. Thanks.

Equipment inventory and workshop

Company Information:

TEREK Company focus on high pressure fluid transfer all the time and supply perfect high pressure fluid transfer solution and service, Supplying high-quality product and service is the CHINAMFG aim of TEREK.
As the experienced manufacturer of industrial booster pump. The technology of air driven booster pump and pressurization system reach to a good level. Can pressurize almost any liquid, Such as oil,water ,corrosive liquid and chemical liquid applications. High quality seals, long service life available.
Based on the high quality of our products, reasonable prices and excellent after-sales service, we have gained a high reputation in this field of fluid pressure control equipment.

Our main products including Pneumatic Gas/Liquid Booster Pumps. Refrigerant booster pump and Air Amplifier. Fluid pressurized hydrostatic hydraulic pressure test equipment or high pressure Chemical fluid injection equipment. High pressure oxygen, hydrogen ,nitrogen, argon, Helium ,N2O,CO2 or other gas pressurized transfer refilling equipment or gas injection equipment. Pneumatic pump Glycerin Oil pressurized injection equipment. LPG / Propane and butane Pressurized transfer filling station equipment. Pipe/tube/valve/cylinder/Brake pipe, automobile pipe, aircraft hydraulic pipe ,pressure vessels Hydraulic Pressure Test Machine(Computer control or manual control or Intelligent digital display instrument) MCU Intelligent digital display instrument Pneumatic gas booster pump system leak test bench. Computer control /Intelligent instrument control Safety relief valve PSV test bench,Portable Safety valve test clamping table and test equipment. Online safety valve test instrument equipment.

 

FAQ

1.Q : Are you manufacturer ?

A: Yes, We are the manufacturer with continuous and improved R&D. Production, Quality Check and service supply.

2.Q : Can I get your price list ?

A: Yes, Sure. In order to send you our available offered price. Please choose the products and let us know the product model and requirement in detail.

3.Q : Do you have stock for all items?

A:In general, we have some stock, while if you need a bulk order, we still need time to produce it. Of course, we will inform all details you before your payment.

4.Q : What is payment terms ?

A: Sample order : 100% full payment before start to production;

Large order : 30% deposit first, 70% pay after see the BL copy ;

5.Q: Can give free sample ?

A : Free : if small spare parts and the cost not too much is ok ;

Not Free : the cost expensive and all the machine can not be free ;

6.Q : How long can be finished the goods ?

Delivery date: 10-15 working days after deposit paid

Two years warranty, when the products reach to destination.

After-sales Service: Technical Support and Services
Warranty: 24 Months
Max Diameter of Workpiece: <500mm
Customization:
Available

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Payment Method:







 

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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

hydraulic cylinder

How do hydraulic cylinders compare to other methods of force generation like electric motors?

Hydraulic cylinders and electric motors are two different methods of force generation with distinct characteristics and applications. While both hydraulic cylinders and electric motors can generate force, they differ in terms of their working principles, performance attributes, and suitability for specific applications. Here’s a detailed comparison of hydraulic cylinders and electric motors:

1. Working Principle:

– Hydraulic Cylinders: Hydraulic cylinders generate force through the conversion of fluid pressure into linear motion. They consist of a cylinder barrel, piston, piston rod, and hydraulic fluid. When pressurized hydraulic fluid enters the cylinder, it pushes against the piston, causing the piston rod to extend or retract, thereby generating linear force.

– Electric Motors: Electric motors generate force through the conversion of electrical energy into rotational motion. They consist of a stator, rotor, and electromagnetic field. When an electrical current is applied to the motor’s windings, it creates a magnetic field that interacts with the rotor, causing it to rotate and generate torque.

2. Force and Power:

– Hydraulic Cylinders: Hydraulic cylinders are known for their high force capabilities. They can generate substantial linear forces, making them suitable for heavy-duty applications that require lifting, pushing, or pulling large loads. Hydraulic systems can provide high force output even at low speeds, allowing for precise control over force application. However, hydraulic systems typically operate at lower speeds compared to electric motors.

– Electric Motors: Electric motors excel in providing high rotational speeds and are commonly used for applications that require rapid motion. While electric motors can generate significant torque, they tend to have lower force output compared to hydraulic cylinders. Electric motors are suitable for applications that involve continuous rotary motion, such as driving conveyor belts, rotating machinery, or powering vehicles.

3. Control and Precision:

– Hydraulic Cylinders: Hydraulic systems offer excellent control over force, speed, and positioning. By regulating the flow of hydraulic fluid, the force and speed of hydraulic cylinders can be precisely controlled. Hydraulic systems can provide gradual acceleration and deceleration, allowing for smooth and precise movements. This level of control makes hydraulic cylinders well-suited for applications that require precise positioning, such as in industrial automation or construction equipment.

– Electric Motors: Electric motors also offer precise control over speed and positioning. Through motor control techniques such as varying voltage, frequency, or pulse width modulation (PWM), the rotational speed and position of electric motors can be accurately controlled. Electric motors are commonly used in applications that require precise speed control, such as robotics, CNC machines, or servo systems.

4. Efficiency and Energy Consumption:

– Hydraulic Cylinders: Hydraulic systems can be highly efficient, especially when properly sized and designed. However, hydraulic systems typically have higher energy losses due to factors such as fluid leakage, friction, and heat generation. The overall efficiency of a hydraulic system depends on the design, component selection, and maintenance practices. Hydraulic systems require a hydraulic power unit to pressurize the hydraulic fluid, which consumes additional energy.

– Electric Motors: Electric motors can have high efficiency, especially when operated at their optimal operating conditions. Electric motors have lower energy losses compared to hydraulic systems, primarily due to the absence of fluid leakage and lower friction losses. The overall efficiency of an electric motor depends on factors such as motor design, load conditions, and control techniques. Electric motors require an electrical power source, and their energy consumption depends on the motor’s power rating and the duration of operation.

5. Environmental Considerations:

– Hydraulic Cylinders: Hydraulic systems typically use hydraulic fluids that can pose environmental concerns if they leak or are not properly disposed of. The choice of hydraulic fluid can impact factors such as biodegradability, toxicity, and potential environmental hazards. Proper maintenance and leak prevention practices are essential to minimize the environmental impact of hydraulic systems.

– Electric Motors: Electric motors are generally considered more environmentally friendly since they do not require hydraulic fluids. However, the environmental impact of electric motors depends on the source of electricity used to power them. When powered by renewable energy sources, such as solar or wind, electric motors can offer a greener solution compared to hydraulic systems.

6. Application Suitability:

– Hydraulic Cylinders: Hydraulic cylinders are commonly used in applications that require high force output, precise control, and durability. They are widely employed in industries such as construction, manufacturing, mining, and aerospace. Hydraulic systems are well-suited for heavy-duty applications, such as lifting heavy objects, operating heavy machinery, or controlling large-scale movements.

– Electric Motors: Electric motors are widely used in various industries and applications that require rotational motion, speed control, and precise positioning. They are commonly found in appliances, transportation, robotics, HVAC systems, and automation. Electric motorsare suitable for applications that involve continuous rotary motion, such as driving conveyor belts, rotating machinery, or powering vehicles.In summary, hydraulic cylinders and electric motors have different working principles, force capabilities, control characteristics, efficiency levels, and application suitability. Hydraulic cylinders excel in providing high force output, precise control, and durability, making them ideal for heavy-duty applications. Electric motors, on the other hand, offer high rotational speeds, precise speed control, and are commonly used for applications that involve continuous rotary motion. The choice between hydraulic cylinders and electric motors depends on the specific requirements of the application, including the type of motion, force output, control precision, and environmental considerations.

hydraulic cylinder

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:

  1. 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.
  2. 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.
  3. 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.
  4. 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.
  5. 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.

hydraulic cylinder

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.

China wholesaler Air Driven Pneumatic Tester Hydrostatic Cylinder with Chart Recorder   with Good quality China wholesaler Air Driven Pneumatic Tester Hydrostatic Cylinder with Chart Recorder   with Good quality
editor by CX 2023-11-22