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首页> 外文期刊>International Journal of Solids and Structures >Exact three-dimensional interface stress and electrode-effect analysis of multilayer piezoelectric transducers under torsion
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Exact three-dimensional interface stress and electrode-effect analysis of multilayer piezoelectric transducers under torsion

机译:多层压电换能器在扭转下的精确三维界面应力和电极效应分析

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摘要

In this paper, exact three-dimensional analysis for torsion of multilayer piezoelectric transducers is presented to highlight the remarkable effects of electrode and size effects on interface stresses and deformation. A generalized formulation is introduced for torsion of an arbitrarily layered cross section. In order to reach an advanced and better device, multilayer piezoelectric materials with different properties are formulated while axis of torsion and the polarization axes of each layer make different orientations with respect to each other. An exact formulation for n-layer piezoelectric device with rectangular cross section is presented to compensate considerable deviation of previous studies' results from exact solution due to the assumption of linear distribution for the electric potential. In order to improve the performance of the transducers, being utilized in industry, several case studies are presented in order to investigate the influence of different parameters, e.g. thickness and material properties of electrodes over shear and peel stresses. Besides, a correction factor is introduced to completely compensate the effect of ignoring electrodes.
机译:在本文中,对多层压电换能器的扭转进行了精确的三维分析,以突出电极的显着影响以及尺寸对界面应力和变形的影响。为扭转任意分层的横截面引入了通用的公式。为了达到先进和更好的装置,配制具有不同性能的多层压电材料,同时扭转轴和每一层的极化轴相对于彼此具有不同的取向。提出了具有矩形横截面的n层压电器件的精确公式,以补偿由于电位线性分布的假设而导致的先前研究结果与精确解的显着偏差。为了提高在工业中使用的换能器的性能,提出了几个案例研究,以研究不同参数的影响,例如,传感器。剪切应力和剥离应力对电极厚度和材料性能的影响。此外,引入校正因子以完全补偿忽略电极的影响。

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