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Sub-Surface Crack Detection by Using Laser Induced Transient Stress Wave Propagation

机译:利用激光诱导的瞬态应力波传播检测亚表面裂纹

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摘要

In this study we attempt to investigate the possibility of detecting sub-surface crack and the understanding of the propagating phenomena of transient stress waves due to impact in thick aluminum plate by the simultaneous measurement of longitudinal and shear creeping and Rayleigh wave resulted from the mode conversion of laser induced transient stress wave impact. The propagation of the transient stress wave generated by laser irradiation is affected by the sub-surface crack and the result is analyzed. It was observed that the longitudinal and shear creeping wave velocities are varied depending on the depth of sub-surface crack. In addition, the variation of amplitude ratio generated by propagating the stress wave is investigated. The longitudinal creeping wave velocity in the presence of the sub-surface crack is somewhat faster than in case of non-crack. And the shear creeping wave velocities represent large variations which are shown nearly 2nd order quadratic curve shape as the sub-surface crack depth increase under the same experimental condition. The results of this study are very useful for the nondestructive evaluation of the surface layer in thick structures by non-contact method and the opposing and the structures difficult to access.
机译:在这项研究中,我们试图通过同时测量纵向和剪切蠕变以及模式转换产生的瑞利波,来研究检测亚表面裂缝的可能性以及对由于厚铝板撞击而产生的瞬态应力波传播现象的理解。激光引起的瞬态应力波冲击。由激光辐照产生的瞬态应力波的传播受表面下裂纹的影响,并对结果进行分析。可以看出,纵向和剪切蠕变速度随地下裂缝的深度而变化。另外,研究了由于传播应力波而产生的振幅比的变化。存在表面下裂纹的情况下的纵向蠕变波速度要比没有裂纹的情况下要快一些。并且在相同的实验条件下,随着地下裂纹深度的增加,剪切蠕变波的速度呈现出较大的变化,表现出接近二阶的二次曲线形状。这项研究的结果对于通过非接触方法对厚壁结构中的表面层以及相对和难以接近的结构进行无损评估非常有用。

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