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Theoretical and numerical analysis of acoustic emission guided waves released during crack propagation

机译:裂纹传播期间释放声发射引导波的理论与数值分析

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This article presents a theoretical and numerical analysis of guided wave released during an acoustic emission event using excitation potentials. Theoretical formulation showed that guided wave generated using excitation potentials follows the Rayleigh-Lamb equation. The numerical studies predict the out-of-plane displacement of acoustic emission guided wave on the plate surface at some distance away from the source. Parameter studies were performed to evaluate the effect of (1) pressure and shear potentials acting alone and in combination, (2) plate thickness, (3) source depth, (4) rise time, and (5) propagating distance away from the source. Numerical results showed that peak amplitude of S0 signal increases with increasing plate thickness, whereas the peak amplitude of A0 signal initially decreases and then increases with increasing plate thickness. Regarding the source depth, it was found that peak amplitude of S0 signal decreases and A0 signal increases with increasing source depth. Peak time showed a notable contribution to the low-frequency component of A0 signal. There were large losses in S0 and A0 peak signal amplitude over the propagation distance from 100 to 500 mm.
机译:本文介绍了使用激励电位在声发射事件期间释放的导波的理论和数值分析。理论制剂表明,使用激励电位产生的引导波遵循瑞利兰斯方程。数值研究预测远离源极距离的板表面上的声发射引导波的平面外位移。进行参数研究以评估单独的(1)压力和剪切电位的影响,(2)板厚度,(3)源深度,(4)上升时间,(5)远离源的距离。数值结果表明,S0信号的峰值幅度随着板厚的增加而增加,而A0信号的峰值幅度最初降低,然后随着板厚的增加而增加。关于源深度,发现S0信号的峰值幅度降低,并且A0信号随着源极深度的增加而增加。峰值时间向A0信号的低频分量表示显着贡献。 S0和A0峰值信号幅度在传播距离100至500mm的传播距离中存在大的损失。

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