基于声弹性导波的板状结构双轴应力反演

Chunyu Zhao, Xin Chen, Jian Li, Yang Liu
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引用次数: 0

摘要

利用导波通过声弹性效应进行应力无损评估对结构的安全具有重要意义。本文采用半解析有限元方法,建立了导波在任意截面板状结构中传播的声弹性理论。基于轴向力引起材料的各向异性,提出了一种多角度色散变化的双轴应力原位检测方法。分别用SAFE法和扫频有限元建模(SFFEM)法的数据对反演算法进行了验证。主要研究了该方法下的S0模式反演结果,该方法可以实现对类板结构的精确应力原位检测,均方根误差(RMS)可达1%以下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biaxial Stress Inversion in Plate-Like Structures Based on Acoustoelastic Guided Waves
The nondestructive evaluation of stress using guided waves through the acoustoelastic effect has significant importance for the safety of the structure. In this paper, a Semi-Analytical Finite Element (SAFE) method is used to develop the acoustoelastic theory of guided waves propagating in plate-like structures with arbitrarily shaped cross-sections. Based on the anisotropy of the material induced by the axial force, a method for in-situ detection of biaxial stress through multi-angle dispersion change was developed. The inversion algorithm was validated by data of the SAFE method and the Sweeping Frequency Finite Element Modeling (SFFEM) method, respectively. The inversion results of S0 mode under this method are mainly studied, which can achieve accurate stress in-situ detection of the plate-like structure, and the Root Mean Square Error (RMS) can reach below 1%.
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