首页> 外文期刊>Journal of the Korean Physical Society >Acoustic Nonlinearity of Narrowband Laser-generated Surface Waves in the Bending Fatigue of A16061 Alloy
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Acoustic Nonlinearity of Narrowband Laser-generated Surface Waves in the Bending Fatigue of A16061 Alloy

机译:A16061合金弯曲疲劳中窄带激光产生的表面波的声非线性

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摘要

The present study describes the acoustic nonlinearity phenomenon of a narrowband lasergenerated surface wave for the characterization of an aluminum alloy subjected to bending fatigue. The surface wave is very attractive for field applications because it does not require both sides of the test materials to access the transducers and has strong acoustic nonlinear effects on the surface. The intrinsic higher-order harmonic components generated by a line-arrayed laser beam have been analyzed theoretically, and a relative acoustic nonlinear parameter has been successfully measured on the surface of a fatigue-damaged aluminum 6061 alloy. The results show that the acoustic nonlinear parameter increased after fatigue damage with respect to dislocation evolution. Consequently, this study suggests that the new acoustic nonlinearity technique of a laser-generated surface wave can be potentially used to characterize surface damage resulting from bending fatigue prior to the formation of fatigue cracks.
机译:本研究描述了窄带激光产生的表面波的声学非线性现象,用于表征遭受弯曲疲劳的铝合金。表面波对于现场应用非常有吸引力,因为它不需要测试材料的两侧都可以进入换能器,并且在表面上具有很强的声学非线性效应。从理论上分析了线阵激光束产生的固有高次谐波分量,并已成功测量了疲劳破坏铝6061合金表面的相对声学非线性参数。结果表明,疲劳损伤后,声非线性参数随位错演化而增加。因此,这项研究表明,激光产生的表面波的新的声学非线性技术可以潜在地用于表征在形成疲劳裂纹之前由弯曲疲劳引起的表面损伤。

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