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Antiplane shear waves from a piezoelectric strip actuator: exact versus eiiective boundary condition solutions

机译:压电条致动器的反平面剪切波:精确边界与有效边界条件解

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摘要

A piezoelectric strip of finite width and thickness is placed on top of an isotropic elastic half-space. It operates in actuator mode and a time harmonic voltage is thus applied across it. The piezoelectric material is of type 6mm oriented so that a 2D antiplane (scalar) problem results. By Fourier series expansions the problem is solved exactly and this result is compared to the case when the piezoelectric strip is replaced by an effective boundary condition, which is derived by series expansions in the thickness coordinate in the piezoelectric strip. At low frequencies the results agree very well and this corresponds to the situation usually met in practice. In general, the effective boundary condition should be easier to apply and it is in particular noted that this is the case when using a FEM program where the option of a piezoelectric material is usually not available.
机译:将宽度和厚度有限的压电条放置在各向同性弹性半空间的顶部。它以执行器模式运行,因此在其上施加了时间谐波电压。压电材料的取向为6mm,因此会产生2D反平面(标量)问题。通过傅立叶级数展开可以精确地解决该问题,并将该结果与用有效边界条件代替压电条的情况进行比较,有效边界条件是由压电条中厚度坐标的级数展开得出的。在低频下,结果非常吻合,这与实际中通常遇到的情况相对应。通常,有效边界条件应该更易于应用,尤其要注意的是,在使用FEM程序时,通常是无法使用压电材料的情况。

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