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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Electromechanical Impedance Analysis on Piezoelectric Smart Beam with a Crack Based on Spectral Element Method
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Electromechanical Impedance Analysis on Piezoelectric Smart Beam with a Crack Based on Spectral Element Method

机译:基于谱元法的带裂纹压电智能梁的机电阻抗分析

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An electromechanical impedance (EMI) analysis of a piezoelectric smart beam with a crack is implemented in this paper. Spectral element method (SEM) is used to analyze the EMI response of the piezoelectric smart beam. In this analysis, the spectral element stiffness matrices of different beam segments are derived in this paper. The crack is simulated using spring models, and the EMI signatures of piezoelectric smart beam with and without crack are calculated using SEM, respectively. From the analysis results, it is found that the peak position and amplitude of the EMI signatures have significant changes with the change in crack depth, especially in higher frequency ranges. Different vibration modes of the piezoelectric smart beam are analyzed, and the effect of thickness of the adhesive layer on the admittance is also researched. An experimental study is also implemented to verify the validity of the analysis results using SEM.
机译:本文对带有裂纹的压电智能梁进行了机电阻抗(EMI)分析。频谱元素法(SEM)用于分析压电智能梁的EMI响应。在此分析中,得出了不同梁段的光谱单元刚度矩阵。使用弹簧模型模拟裂纹,并分别使用SEM计算具有和不具有裂纹的压电智能梁的EMI特征。从分析结果发现,EMI信号的峰值位置和幅度会随着裂纹深度的变化而发生显着变化,尤其是在较高频率范围内。分析了压电智能梁的不同振动模式,研究了胶粘剂层厚度对导纳的影响。还进行了一项实验研究,以使用SEM验证分析结果的有效性。

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