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Laser shock microforming of Aluminum foil with fs laser

机译:FS激光对铝箔进行激光冲击微成型

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Laser shock microforming of Aluminum(Al) foil through fs laser has been researched in this paper. The influences of confining layer, clamping method and impact times on induced dent depths were investigated experimentally. Microstructure of fs laser shock forming Al foil was observed through Transmission electron microscopy(TEM). Under the condition of tightly clamping, the dent depths increase with impact times and finally tend to saturating. Another new confining layer, the main component of which is polypropylene, was applied and the confining effect of it is better because of its higher impedance. TEM results show that dislocation is one of the main deformation mechanisms of fs laser shock forming Al foil. Specially, most of dislocations exist in the form of short and discrete dislocation lines. Parallel straight dislocation slip line also were observed. We analyzed that these unique dislocation arrangements are due to fs laser-induced ultra high strain rate.
机译:本文研究了通过fs激光对铝箔进行激光冲击微成型。实验研究了约束层,夹持方式和冲击时间对凹痕深度的影响。通过透射电子显微镜(TEM)观察了形成fs激光冲击的铝箔的微观结构。在紧密夹紧的情况下,凹痕深度随冲击时间而增加,并最终趋于饱和。使用了另一个新的限制层,其主要成分是聚丙烯,由于其较高的阻抗,其限制效果更好。 TEM结果表明,位错是fs激光冲击形成铝箔的主要变形机制之一。特别地,大多数位错以短而离散的位错线的形式存在。还观察到平行的直线错位滑移线。我们分析了这些独特的位错排列是由于fs激光诱导的超高应变速率。

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