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The distribution regularity of residual stress on a metal surface after laser shock marking

机译:激光冲击标记后金属表面残余应力的分布规律

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摘要

A metal material surface marking method was developed based on the theory that a larger thickness of the absorption layer can attenuate a laser-induced shock wave. The introduction of surface residual compressive stress is the main feature of this new marking method, which is different from the traditional mechanical processing marking method and is also the key factor leading to the good service performance of the metal material surface. After the laser shock marking (ISM) treatment, the residual stress at different positions on the metal surface was measured, and the change in distribution trend of residual stress and microstructure in the laser shock-treated region was discussed. The results show that for two different marking patterns, the expected deformation areas have a remarkable residual compressive stress distribution, and the relatively large full width at half maximum (FWHM) of the X-ray diffraction peak of the expected deformation areas characterizes significant microstructure changes. The microstructure of the edge region of the formed mark shows a sudden change, while the residual stress changes gradually. This change indicates that the surface's severe plastic deformation is directly related to microstructure changes and indirectly related to residual stress changes.
机译:基于较大厚度的吸收层可以衰减激光诱导的冲击波,开发了金属材料表面标记方法。表面残留压缩应力的引入是这种新标记方法的主要特点,这与传统的机械加工标记方法不同,也是导致金属材料表面良好服务性能的关键因素。在激光冲击标记(ISM)处理之后,测量了金属表面上不同位置的残余应力,并讨论了激光休克处理区域中残余应力的分布趋势和微观结构的变化。结果表明,对于两种不同的标记图案,预期变形区域具有显着的残余压缩应力分布,并且预期变形区域的X射线衍射峰的半最大(FWHM)的相对大的全宽度表征了显着的微观结构变化。所形成标记的边缘区域的微观结构显示出突然变化,而残余应力逐渐变化。这种变化表明,表面的严重塑性变形与微观结构变化直接相关,与残余应力变化间接相关。

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