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Simulations on Monitoring and Evaluation of Plasticity-Driven Material Damage Based on Second Harmonic of S0 Mode Lamb Waves in Metallic Plates

机译:基于S0模兰姆波二次谐波的金属板塑性驱动材料损伤监测与评估仿真

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摘要

In this study, a numerical approach—the discontinuous Meshless Local Petrov-Galerkin-Eshelby Method (MLPGEM)—was adopted to simulate and measure material plasticity in an Al 7075-T651 plate. The plate was modeled in two dimensions by assemblies of small particles that interact with each other through bonding stiffness. The material plasticity of the model loaded to produce different levels of strain is evaluated with the Lamb waves of S0 mode. A tone burst at the center frequency of 200 kHz was used as excitation. Second-order nonlinear wave was extracted from the spectrogram of a signal receiving point. Tensile-driven plastic deformation and cumulative second harmonic generation of S0 mode were observed in the simulation. Simulated measurement of the acoustic nonlinearity increased monotonically with the level of tensile-driven plastic strain captured by MLPGEM, whereas achieving this state by other numerical methods is comparatively more difficult. This result indicates that the second harmonics of S0 mode can be employed to monitor and evaluate the material or structural early-stage damage induced by plasticity.
机译:在这项研究中,采用了一种数值方法-不连续的局部无网格Petrov-Galerkin-Eshelby方法(MLPGEM)-模拟和测量Al 7075-T651板的材料可塑性。该板是通过小颗粒的组装在二维上建模的,这些小颗粒通过粘结刚度彼此相互作用。使用S0模的Lamb波来评估加载以产生不同水平应变的模型的材料可塑性。使用中心频率为200 kHz的音频脉冲作为激励。从信号接收点的频谱图中提取了二阶非线性波。在模拟中观察到拉伸驱动的塑性变形和S0模式的累积二次谐波生成。声学非线性的模拟测量随MLPGEM捕获的拉伸驱动塑性应变的水平单调增加,而通过其他数值方法实现此状态则相对更加困难。该结果表明,S0模式的二次谐波可用于监测和评估可塑性引起的材料或结构早期损伤。

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