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The hydraulic station assembly is the core component of the hydraulic system, mainly composed of hydraulic pumps, motors, fuel tanks, oil pipelines, hydraulic valves, instruments and control devices. The function of the hydraulic station assembly is to provide the required hydraulic energy to the hydraulic system, and to regulate and control the hydraulic system through the control device.
Hydraulic pump: The hydraulic pump is the core component of the hydraulic station assembly, usually using plunger pumps, gear pumps, vane pumps and other types. The function of the hydraulic pump is to convert mechanical energy into hydraulic energy and provide power to the hydraulic system by sucking in low-pressure liquid and generating high-pressure liquid.
Electric motor: The electric motor is the driving device of the hydraulic pump. It drives the hydraulic pump to operate by converting electrical energy into mechanical energy. The motor usually uses an AC motor or a DC motor, and the appropriate motor power and speed are selected according to actual needs.
Oil tank: The oil tank is the oil reservoir of the hydraulic station assembly. It is used to store hydraulic oil and deliver the hydraulic oil to the hydraulic system through the oil pump. The oil tank usually has accessories such as oil level indicators, oil temperature sensors and filters to monitor and maintain the quality and temperature of the hydraulic oil.
Oil pipeline: The oil pipeline is used to transport hydraulic oil from the tank to the hydraulic pump, hydraulic valve, actuator and other components. Oil pipelines are usually made of materials such as high-strength steel pipes or rubber hoses, which have good pressure resistance and corrosion resistance.
Hydraulic valve: Hydraulic valve is used to control the working status of the hydraulic system, including flow control, pressure control, direction control and proportional control, etc. Common hydraulic valves include check valves, relief valves, solenoid valves, proportional valves, etc. Hydraulic valves regulate the transmission and flow of hydraulic energy in the hydraulic system by opening or closing corresponding valves.
Instruments and control devices: The hydraulic station assembly is usually equipped with instruments and control devices to monitor and adjust the working status of the hydraulic system. Common instruments include pressure gauges, temperature gauges, flow meters, etc., which are used to monitor the parameters of the hydraulic system in real time. The control device can adjust the working status of the hydraulic system according to the set requirements and realize automatic control.
The design and selection of the hydraulic station assembly should be based on actual application requirements, including the working pressure, flow requirements, working environment and other factors of the hydraulic system. Reasonable design and selection of hydraulic station assembly can ensure the stability, reliability and efficiency of the hydraulic system.
Please feel free to contactus Parts Sea engineers or sales for help if you have no parts No.
tse@partssea.com | sales@partssea.com
The hydraulic station assembly is the core component of the hydraulic system, mainly composed of hydraulic pumps, motors, fuel tanks, oil pipelines, hydraulic valves, instruments and control devices. The function of the hydraulic station assembly is to provide the required hydraulic energy to the hydraulic system, and to regulate and control the hydraulic system through the control device.
Hydraulic pump: The hydraulic pump is the core component of the hydraulic station assembly, usually using plunger pumps, gear pumps, vane pumps and other types. The function of the hydraulic pump is to convert mechanical energy into hydraulic energy and provide power to the hydraulic system by sucking in low-pressure liquid and generating high-pressure liquid.
Electric motor: The electric motor is the driving device of the hydraulic pump. It drives the hydraulic pump to operate by converting electrical energy into mechanical energy. The motor usually uses an AC motor or a DC motor, and the appropriate motor power and speed are selected according to actual needs.
Oil tank: The oil tank is the oil reservoir of the hydraulic station assembly. It is used to store hydraulic oil and deliver the hydraulic oil to the hydraulic system through the oil pump. The oil tank usually has accessories such as oil level indicators, oil temperature sensors and filters to monitor and maintain the quality and temperature of the hydraulic oil.
Oil pipeline: The oil pipeline is used to transport hydraulic oil from the tank to the hydraulic pump, hydraulic valve, actuator and other components. Oil pipelines are usually made of materials such as high-strength steel pipes or rubber hoses, which have good pressure resistance and corrosion resistance.
Hydraulic valve: Hydraulic valve is used to control the working status of the hydraulic system, including flow control, pressure control, direction control and proportional control, etc. Common hydraulic valves include check valves, relief valves, solenoid valves, proportional valves, etc. Hydraulic valves regulate the transmission and flow of hydraulic energy in the hydraulic system by opening or closing corresponding valves.
Instruments and control devices: The hydraulic station assembly is usually equipped with instruments and control devices to monitor and adjust the working status of the hydraulic system. Common instruments include pressure gauges, temperature gauges, flow meters, etc., which are used to monitor the parameters of the hydraulic system in real time. The control device can adjust the working status of the hydraulic system according to the set requirements and realize automatic control.
The design and selection of the hydraulic station assembly should be based on actual application requirements, including the working pressure, flow requirements, working environment and other factors of the hydraulic system. Reasonable design and selection of hydraulic station assembly can ensure the stability, reliability and efficiency of the hydraulic system.