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Two-dimensional exact analysis for piezoelectric curved actuators

机译:压电弯曲执行器的二维精确分析

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In this paper, both piezoelectric curved multi-layered actuators and functionally gradient curved actuators made of functionally gradient materials (FGM) are investigated. The exact solutions of mechanical and electrical fields of the above two types of curved actuators are obtained on the basis of the theory of elasticity. Comparisons indicate that deflections of gradient curved actuators are slightly smaller than those of curved multi-layered actuators; however, the internal normal stresses of former ones are significantly smaller. Moreover, as the number of layers increases and the depth of layers decreases, the limitation of the results of a multi-layered actuator asymptotically approaches the results of gradient actuators. It is also found that, in general., non-zero stresses exist in the gradient piezoelectric curved actuator when the actuator is subject to an external voltage. This phenomenon is quite different from the results obtained for the gradient piezoelectric flat actuator. Finally, comparisons with the FGM results are performed and good agreements are shown.
机译:本文研究了由功能梯度材料(FGM)制成的压电弯曲多层致动器和功能梯度弯曲致动器。在弹性理论的基础上,获得了上述两种类型的弯曲致动器的机械和电场的精确解。比较表明,梯度弯曲致动器的挠度比弯曲多层致动器的挠度略小。但是,以前的内部正应力要小得多。而且,随着层数的增加和层深度的减小,多层致动器的结果的极限渐近地接近梯度致动器的结果。还发现,通常,当梯度压电弯曲致动器受到外部电压时,非零应力存在于梯度压电弯曲致动器中。这种现象与梯度压电平面致动器的结果完全不同。最后,与女性生殖器切割结果进行比较,并显示出良好的一致性。

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