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Numerical and experimental study on crack identification based on the piezoelectric ceramic lead zirconate titanate impedance technology

机译:基于压电陶瓷锆钛酸铅阻抗技术的裂纹识别数值与实验研究

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摘要

The structural health monitoring system with electromechanical impedance technique is studied numerically and experimentally in this article. A three-dimensional numerical model is developed to account for the electromechanical coupling effect between the structures and the piezoelectric ceramic lead zirconate titanate transducers, and it is verified by the experimental results. The proposed numerical model and experimental method are employed to analyze piezoelectric ceramic lead zirconate titanate impedance signature of the plate with transverse crack. The modal superposition is employed to determine the harmonic response analysis frequency range. The influences of the mesh density, the dielectric constants of piezoelectric ceramic lead zirconate titanates, and the positions of piezoelectric ceramic lead zirconate titanates are considered. The effects of the length of crack and the structural damping on the piezoelectric ceramic lead zirconate titanate impedance signatures are discussed. Based on this model, electromechanical impedance signatures can be used to identify cracks in a plate specimen. The value of the harmonic response peaks is seriously affected by the material parameters of piezoelectric ceramic lead zirconate titanate and the constant damping ratio. The resonant frequency is greatly influenced by the mesh sizes and the length of cracks.
机译:本文对采用机电阻抗技术的结构健康监测系统进行了数值和实验研究。建立了三维数值模型,以说明结构与压电陶瓷锆钛酸铅钛酸盐传感器之间的机电耦合效应,并通过实验结果进行了验证。提出的数值模型和实验方法被用来分析具有横向裂纹的板的压电陶瓷锆钛酸铅钛酸酯的阻抗特征。模态叠加用于确定谐波响应分析频率范围。考虑网格密度,压电陶瓷锆钛酸铅钛酸盐的介电常数以及压电陶瓷锆钛酸铅钛酸盐的位置的影响。讨论了裂纹长度和结构阻尼对压电陶瓷锆钛酸铅钛酸酯阻抗谱的影响。基于此模型,可以使用机电阻抗签名来识别板试样中的裂纹。谐波响应峰的值受压电陶瓷钛酸锆钛酸铅的材料参数和恒定阻尼比的影响。共振频率受网孔尺寸和裂纹长度的很大影响。

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