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Modeling of a novel 3-way rotary type electro-hydraulic valve

机译:新型三通旋转式电动液压阀的建模

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Hydraulic actuation is characterized by fast dynamics, high power density, high stiffness, large output force/torque, and in recent years it has become an increasing attractive form of robot actuation. Hydraulic control valves that not only provide the interface between hydraulic power element and actuators, but also receive feedback signal and adjust the system output accordingly, are key components of hydraulic actuation systems. This paper presents a novel 3-way rotary type electro-hydraulic valve which is driven by a DC motor. The valve is mainly composed of a rotary spool, a bush and a body. The operating principle is presented in details and a mathematical model is developed. In particular, the drag torque that majorly affects the valve performance is analyzed based on the theory of fluid mechanics.
机译:液压致动具有快速动态,高功率密度,高刚度,大输出力/扭矩的特点,近年来,它已成为一种越来越有吸引力的机器人致动形式。液压控制阀不仅是液压动力元件与执行器之间的接口,而且还接收反馈信号并相应地调节系统输出,是液压执行系统的关键组成部分。本文提出了一种新型的三通旋转式电动液压阀,该阀由直流电动机驱动。该阀主要由旋转阀芯,衬套和阀体组成。详细介绍了工作原理,并建立了数学模型。特别地,基于流体力学理论分析了主要影响阀性能的阻力转矩。

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