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  • 2025-11-11

    What is the working principle of the hydraulic servo system? What are its advantages and disadvantages?
    In order to improve the control accuracy of the hydraulic system, the traditional electro-hydraulic servo control method has been replaced with a numerical control hydraulic servo control method. By fully leveraging advanced computer technology and using PLC to control the stepper motor, not only can the rapidity and reliability requirements of the numerical control hydraulic system be met, but also the cost is significantly reduced.
  • 2025-11-11

    What Should Be Done If The Custom Hydraulic System Operates Slowly Or at A Reduced Speed?
    What should be done if the custom hydraulic system operates slowly or at a reduced speed?1.The adverse effects of insufficient speed of the hydraulic pump 2. Causes of under-speed failure 3. Methods for eliminati 2. Causes of under-speed failure ng under-speed conditions
  • 2025-11-04

    What Are The Hazards of Oil Contamination To The Hydraulic Station System?
    Various contaminants in the oil cause various forms of damage to the components. Solid particles enter the clearance of the moving parts, resulting in surface cutting damage or fatigue wear of the parts. Erosion wear is caused by the impact of solid particles in the high-speed liquid flow on the surface of the components. The moisture in the oil and the oxidation and deterioration products of the oil have corrosive effects on the components. In addition, air in the oil of the system can cause cavitation, which leads to erosion and damage to the surface of the components.
  • 2025-11-04

    What Are The Characteristics of The Open System of The Hydraulic Station?
    The Characteristics of The Open System of The Hydraulic Station
  • 2025-11-04

    Five Solutions for Hydraulic Station Malfunctions
    Five Solutions for Hydraulic Station Malfunctions
  • 2025-11-04

    How Does The Hydraulic Station Technology Address The Demands under High-pressure And High-temperature Conditions?
    In order to meet the demands of high-pressure and high-temperature working conditions, the hydraulic station technology needs to make adequate preparations in terms of design, heat dissipation, sealing and maintenance. Only in this way can the hydraulic system operate safely, stably and reliably in high-pressure and high-temperature environments, meeting the actual engineering requirements. The continuous development and improvement of the hydraulic station technology will further enhance the performance and reliability of the hydraulic system in high-pressure and high-temperature working conditions, providing more stable and efficient hydraulic transmission technology for engineering and production.
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