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Nano-hardness and microstructure of selective laser melted AlSi10Mg scan tracks

机译:纳米硬度和选择性激光微观结构熔化Alsi10mg扫描轨道

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Selective laser melting (SLM) of aluminium alloys faces more challenges than other ongoing alloys such as stainless steels and titanium alloys because of the material's properties. It is important to study single scan tracks if high density large parts are to be made since they are the primary building blocks. In this study, the geometrical features of AlSi10Mg tracks indicated keyhole mode melting domination. Chemical composition mapping and nanoindentation showed enhanced nano-hardness in SLM material over conventional material with no spatial variation. This is due to a homogeneous elemental distribution and fine microstructure developed by fast solidification.
机译:铝合金的选择性激光熔化(SLM)面向比其他持续合金(如不锈钢和钛合金)的更多挑战,因为材料的性质。如果要使高密度大的部分是主要的构建块,因此研究单扫描轨道非常重要。在这项研究中,Alsi10mg轨道的几何特征表示钥匙孔模式熔化统治。化学成分映射和纳米indentation在没有空间变化的常规材料上显示了SLM材料中的增强的纳米硬度。这是由于均匀的元素分布和通过快速凝固开发的细微结构。

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