首页> 外文会议>ASME/BATH Symposium on Fluid Power and Motion Control >A NOVEL PIEZOELECTRIC DOUBLE-FLAPPER SERVOVALVE PILOT STAGE: OPERATING PRINCIPLE AND PERFORMANCE PREDICTION
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A NOVEL PIEZOELECTRIC DOUBLE-FLAPPER SERVOVALVE PILOT STAGE: OPERATING PRINCIPLE AND PERFORMANCE PREDICTION

机译:一种新型压电双挡板伺服术试验台:操作原理和性能预测

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This paper proposes a novel architecture for the pilot stage of electro-hydraulic two-stage servovalves that does not need a quiescent flow and a torque motor as well as a flexure tube to operate. The architecture consists of two small piezoelectric valves, coupled with two fixed orifices, which allow variation of the differential pressure at the main stage spool extremities in order to move it with high response speed and accuracy. Each piezoelectric valve is actuated by a piezoelectric ring bender, which exhibits much greater displacement than a stack actuator of the same mass, and greater force than a rectangular bender. The concept is intended to reduce the influence of piezoelectric hysteresis. In order to assess the validity of the proposed configuration and its controller in terms of spool positioning accuracy and dynamic response, detailed simulations are performed by using the software Simscape Fluids. At 50% amplitude the -90° bandwidth is about 150Hz.
机译:本文提出了一种用于电液两级伺服阀的试验台的新架构,其不需要静态流量和扭矩马达以及弯曲管操作。该结构由两个小型压电阀组成,与两个固定孔板连接,其允许主级阀芯四肢处的差压变化,以便以高响应速度和精度移动。每个压电阀由压电环弯曲器致动,这呈现比相同质量相同质量的堆叠致动器更大的位移,而大于矩形弯曲。该概念旨在减少压电滞后的影响。为了评估所提出的配置及其控制器的有效性,根据卷轴定位精度和动态响应,通过使用软件Simscape流体来执行详细的模拟。在50%幅度下,-90°带宽约为150Hz。

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