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Characteristics of Response of Piezoelectric Actuators in Electron Flux Excitation

机译:压电激励器在电子通量激励中的响应特性

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In this paper the working parameters of non-contact strain control for piezoelectric ceramics are evaluated. The piezoelectric material functions as an actuator that transforms electrical into mechanical energy, and the electrical input is carried out by electron flux on the positive surface. The sample is exposed to some quasi-static inputs, and its responses are recorded using strain gages. The data shows faster and more stable response in the positive regime, but significantly slower response with drift in the negative regime. An electron collector is introduced on the positive surface to enhance the response in the negative regime. Theoretical analyses of energy transfer and electron movements is discussed, and a string of working conditions for controlling the surface strain of piezoelectric material are given as conclusions.
机译:本文评估了压电陶瓷非接触应变控制的工作参数。压电材料用作将电能转换为机械能的致动器,并且电输入由正表面上的电子通量进行。样品暴露于一些准静态输入下,并使用应变计记录其响应。数据显示,在阳性方案中反应更快,更稳定,但在阴性方案中有漂移时反应明显慢。在正表面上引入电子收集器以增强负状态下的响应。讨论了能量转移和电子运动的理论分析,并给出了控制压电材料表面应变的一系列工作条件。

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