首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Effect of initial surface topography on the surface status of LY2 aluminum alloy treated by laser shock processing
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Effect of initial surface topography on the surface status of LY2 aluminum alloy treated by laser shock processing

机译:初始表面形貌对激光冲击处理LY2铝合金表面状态的影响

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摘要

Samples manufactured by LY2 aluminum (Al) alloy with different initial surface topography were treated by laser shock processing (LSP), and then the surface topographies before and after LSP were carefully investigated with a non-contact optical profiler (NCOP). Moreover, the residual stress and microhardness were also examined. Results showed the following three aspects: (a) Initial surface topography will influence the surface roughness of LY2 when treated by LSP. The values of surface roughness of all the tested samples would tend to be stable after one LSP impact, and there was an ultimate value for the surface roughness after multiple LSP impacts, which was about 0.58 μm. (b) With the increase of initial surface roughness, the compressive residual stress decreased when subjected to one LSP impact. The surface residual stress of all the samples tended to be saturated after three LSP impacts, and the saturated value was nearly equal. (c) With the increase of initial surface roughness, the microhardness of all the samples increased when subjected to one LSP impact.
机译:用激光冲击处理(LSP)处理由具有不同初始表面形貌的LY2铝(Al)合金制造的样品,然后使用非接触式光学轮廓仪(NCOP)仔细研究LSP前后的表面形貌。此外,还检查了残余应力和显微硬度。结果显示以下三个方面:(a)初始表面形貌将在用LSP处理时影响LY2的表面粗糙度。在一次LSP冲击后,所有测试样品的表面粗糙度值趋于稳定,并且在多次LSP冲击后,表面粗糙度的极限值为约0.58μm。 (b)随着初始表面粗糙度的增加,受到一次LSP冲击时压缩残余应力降低。在三个LSP冲击下,所有样品的表面残余应力趋于饱和,饱和值几乎相等。 (c)随着初始表面粗糙度的增加,所有样品的显微硬度在受到一次LSP冲击时均增加。

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