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Control of elastic displacement in piezoelectric- based intelligent plate subjected to thermal load

机译:热载荷下压电智能板的弹性位移控制

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摘要

The present paper discusses an intelligent solid-state actuator which can control a distribution of the elastic displacement at the submicron order, in the case where temperature changes in the surrounding medium induces elastic deformation in the actuator. The intelligent actuator consists of an isotropic structural plate to which a piezoelectric ceramic plate is perfectly bonded. First, by analyzing an inverse problem of piezothermoelasticity, the temperature change of the surrounding medium is inferred from the electric potential on the piezoelectric ceramic plate. Next, analysis of a direct piezoelastic problem leads to an appropriate electric potential applied to the piezoelectric ceramic plate which suppresses the induced normal elastic displacement on the free surface of the isotropic plate. Finally, numerical results are illustrated graphically.
机译:本文讨论了一种智能固态致动器,在周围介质中的温度变化导致致动器发生弹性变形的情况下,该致动器可以控制亚微米级的弹性位移分布。智能执行器由各向同性的结构板组成,压电陶瓷板完美地粘结在该结构板上。首先,通过分析压电弹性的逆问题,从压电陶瓷板上的电势推断周围介质的温度变化。接下来,对直接压电弹性问题的分析导致向压电陶瓷板施加适当的电势,从而抑制了各向同性板的自由表面上感应的法向弹性位移。最后,以图形方式说明了数值结果。

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