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首页> 外文期刊>Materials Science and Engineering >Deformation microstructures of austenitic stainless steel 2Cr13Mn9Ni4 under ultrafast strain rate by laser shock processing
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Deformation microstructures of austenitic stainless steel 2Cr13Mn9Ni4 under ultrafast strain rate by laser shock processing

机译:奥氏体不锈钢2Cr13Mn9Ni4超快应变速率下的激光冲击变形组织

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摘要

The microstructure of the austenitic stainless steel 2Cr13Mn9Ni4 by laser shock processing was investigated mainly using a transmission electron microscope. Results show that the micro-hardness of the laser shocked area of the austenitic stainless steel is strongly increased by the refined grains and the reconstruction of microstructures. The typical deformation microstructure is the mix of high-density dislocations and deformation twin grains. The amorphous structures, surrounding the refined broken crystals, were also observed in parts of the laser shock processing area. The stress concentration in the twin grain regions is further released by the formation of stair-like structures. The repeated LSP will result in the increase of the surface roughness and the amount of slip bands, deformation twin grains and stacking faults but decrease the width of the stacking faults.
机译:主要使用透射电子显微镜研究了通过激光冲击处理的奥氏体不锈钢2Cr13Mn9Ni4的显微组织。结果表明,奥氏体不锈钢的激光冲击区的显微硬度通过细化晶粒和微观组织的重建而大大提高。典型的形变微观结构是高密度位错和形变孪晶的混合。在激光冲击处理区域的一部分中,还观察到围绕精制破碎晶体的非晶结构。通过形成阶梯状结构,可进一步释放双晶粒区域中的应力集中。重复的LSP会导致表面粗糙度和滑带数量的增加,变形双晶粒和堆垛层错,但会减小堆垛层错的宽度。

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