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Design and performance characteristic analysis of servo valve-type water hydraulic poppet valve

机译:伺服阀式水力提升阀的设计及性能特点分析

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摘要

For water hydraulic system control, the flow or pressure control using high-speed solenoid valve controlled by PWM control method could be a good solution for prevention of internal leakage. However, since the PWM control of on-off valves cause extensive flow and pressure fluctuation, it is difficult to control the water hydraulic actuators precisely. In this study, the servo valve-type water hydraulic valve using proportional poppet as the main valve is designed and the performance characteristics of the servo valve-type water hydraulic valve are analyzed. Furthermore, it is demonstrated through experiments that a decline in control chamber pressure that follows the change of pilot flow is caused by the occurrence of cavitation around the proportional poppet, and that fundamental characteristics of the developed valve remain unaffected by the occurrence of cavitation.
机译:对于水液压系统控制,使用通过PWM控制方法控制的高速电磁阀进行流量或压力控制可能是防止内部泄漏的良好解决方案。但是,由于开闭阀的PWM控制引起大的流量和压力波动,因此难以精确地控制水压致动器。本研究设计了一种以比例提升阀为主阀的伺服阀式水压阀,并分析了伺服阀式水压阀的性能特点。此外,通过实验证明,随着先导流量的变化,控制室压力的下降是由比例提升阀芯周围的气穴现象引起的,并且发达的阀门的基本特性不受气穴现象的影响。

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