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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Identification of elastic, dielectric, and piezoelectric constants in piezoceramic disks
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Identification of elastic, dielectric, and piezoelectric constants in piezoceramic disks

机译:识别压电陶瓷盘中的弹性,介电和压电常数

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摘要

Three-dimensional modeling of piezoelectric devices requires a precise knowledge of piezoelectric material parameters. The commonly used piezoelectric materials belong to the 6mm symmetry class, which have ten independent constants. In this work, a methodology to obtain precise material constants over a wide frequency band through finite element analysis of a piezoceramic disk is presented. Given an experimental electrical impedance curve and a first estimate for the piezoelectric material properties, the objective is to find the material properties that minimize the difference between the electrical impedance calculated by the finite element method and that obtained experimentally by an electrical impedance analyzer. The methodology consists of four basic steps: experimental measurement, identification of vibration modes and their sensitivity to material constants, a preliminary identification algorithm, and final refinement of the material constants using an optimization algorithm. The application of the methodology is exemplified using a hard lead zirconate titanate piezoceramic. The same methodology is applied to a soft piezoceramic. The errors in the identification of each parameter are statistically estimated in both cases, and are less than 0.6% for elastic constants, and less than 6.3% for dielectric and piezoelectric constants.
机译:压电设备的三维建模需要压电材料参数的精确知识。常用的压电材料属于6mm对称类别,具有10个独立常数。在这项工作中,提出了一种通过压电陶瓷盘的有限元分析获得宽频带上精确材料常数的方法。给定实验电阻抗曲线和压电材料特性的第一估算,目的是找到能使通过有限元法计算出的电阻抗与通过电阻抗分析仪通过实验获得的电阻之间的差异最小的材料特性。该方法包括四个基本步骤:实验测量,振动模式及其对材料常数的敏感性的识别,初步识别算法以及使用优化算法对材料常数的最终精炼。该方法的应用以硬质锆钛酸钛压电陶瓷为例。相同的方法适用于软压电陶瓷。在两种情况下,均会通过统计方法估算出每个参数识别的误差,对于弹性常数,误差小于0.6%,对于介电常数和压电常数,误差小于6.3%。

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