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Theoretical analysis of dynamic property for piezoelectric cantilever triple-layer benders with large piezoelectric and electromechanical coupling coefficients

机译:大压电和机电耦合系数压电悬臂三层弯道动态特性的理论分析

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摘要

Ferroelectric single crystals, such as PZN-PT, provide novel prospects in piezoelectric bending devices such as actuators, sensors or energy harvesters because of their extraordinarily large piezoelectric coefficients. However, large errors may occur in some analyses on electromechanical behaviors using the conventional models. We find the bending rigidity of piezoelectric composited bender is affected not only by thickness, width and the modulus of elasticity of the different layers but also electromechanical coupling coefficients (EMCCs) of the piezoelectric material and the larger EMCCs mean more marked effect. This paper focuses on the derivation of the applied input excitation and output response characteristics in the circular frequency domain for piezoelectric cantilever triple-layer benders (PCTBs), taking into account the secondary piezoelectric effect. Analytic dynamic descriptions of such actuators and transducers are obtained. Based on the presented models dynamic features of PCTB composed of PZN-8%PT are calculated, and numerical results coincide with simulations using the finite element method (FEM).
机译:铁电单晶如PZN-PT,为压电弯曲装置提供了新的前景,例如致动器,传感器或能量收割机,因为它们非常大的压电系数。然而,在一些使用传统模型的机电行为的某些分析中可能发生大错误。我们发现压电复合弯曲的弯曲刚度不仅受到不同层的厚度,宽度和弹性模量而且还影响了压电材料的机电耦合系数(EMCC),并且较大的EMCC效果更具标记。本文重点研究了压电悬臂三层弯管(PCTBS)圆频域中应用的输入激励和输出响应特性的推导,考虑到次级压电效应。获得了这种致动器和换能器的分析动态描述。基于所呈现的模型,计算PCTB的动态特征,由PTN-8%PT组成,使用有限元方法(FEM)与模拟重合数值结果。

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