Effect of multiple laser shock processing on nano-scale microstructure of an aluminum alloy

Simge GencalpIrizalp, N. Saklakoğlu
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Abstract

In this study, nano-scale microstructural evolution in 6061-T6 alloy after laser shock processing (LSP) was studied. 6061-T6 alloy plate was subjected to multiple LSP. The LSP treated area was characterized by X-ray diffraction and the microstructure of the samples was analyzed by transmission electron microscopy. Focused Ion Beam (FIB) tools were used to prepare TEM samples in precise areas. It was found that even though aluminum had high stacking fault energy, LSP yielded to formation of ultrafine grains and deformation faults such as dislocation cells, stacking faults. The stacking fault probability (PSF) was obtained in LSP-treated alloy using X-Ray diffraction. Deformation induced stacking faults lead to the peak position shifts, broadening and asymmetry of diffraction. XRD analysis and TEM observations revealed significant densities of stacking faults in LSP-treated 6061-T6 alloy. And mechanical properties of LSP-treated alloy were also determined to understand the hardening behavior with high concentration of structural defects.
多次激光冲击加工对铝合金纳米显微组织的影响
本文研究了6061-T6合金在激光冲击处理(LSP)后纳米尺度的微观组织演变。6061-T6合金板材经受多次LSP。用x射线衍射对LSP处理区域进行了表征,并用透射电镜对试样的微观结构进行了分析。聚焦离子束(FIB)工具用于在精确区域制备TEM样品。研究发现,尽管铝具有较高的层错能,但LSP还是屈服于超细晶粒的形成以及位错胞、层错等变形缺陷。利用x射线衍射得到了lsp处理合金的层错概率(PSF)。变形引起的层错导致衍射峰位置移位、衍射峰展宽和衍射峰不对称。XRD分析和TEM观察表明,经过lsp处理的6061-T6合金存在明显的层错密度。同时对lsp处理合金的力学性能进行了测定,以了解高浓度组织缺陷下合金的硬化行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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