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Hydraulic square-wave pressure generator with a specific rotating valve

机译:带有特定旋转阀的液压方波压力发生器

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摘要

This study presents a novel hydraulic square-wave pressure generator whit a specific rotating valve that generates periodic square-wave pressure at low frequency to enable the frequency response method to be applied to dynamic calibration. The most important concern is how to expand the bandwidth of generated square-wave pressure using a specific rotating valve. In addition to functioning as damped vibration, the pressure transient of the generated pressure has a major role in increasing bandwidth. Furthermore, the rotating valve effectively hinders interference from the pressure source and decreases the rise time of the pressure transient. Experimental results indicate that the pressure transient of the generated pressures rapidly converges toward the steady state such that the waveform of generated pressure approaches a square waveform, when the generator operates between 10 and 30 Hz. The bandwidth of the generated pressures is analyzed at 1 kHz. Therefore, the hydraulic square-wave pressure generator generates signals and is appropriate as a function generator to evaluate the dynamic performance of hydraulic components with low frequency resonance.
机译:这项研究提出了一种新颖的液压方波压力发生器,其带有特定的旋转阀,该阀可以在低频下产生周期性的方波压力,从而使频率响应方法可以应用于动态校准。最重要的问题是如何使用特定的旋转阀来扩展产生的方波压力的带宽。除了起到阻尼振动的作用外,所产生压力的压力瞬变在增加带宽方面也起着重要作用。此外,旋转阀有效地阻止了来自压力源的干扰,并减少了压力瞬变的上升时间。实验结果表明,当发电机在10至30 Hz之间运行时,所产生压力的压力瞬变迅速收敛至稳态,从而所产生压力的波形接近方波。所产生压力的带宽在1 kHz下进行分析。因此,液压方波压力发生器会产生信号,并且适合作为函数发生器来评估具有低频共振的液压组件的动态性能。

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