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MECHANICAL PROPERTIES OF SELECTIVE LASER MELTED AlSi10Mg: NANO, MICRO, AND MACRO PROPERTIES

机译:选择性激光熔化的AlSi10Mg的力学性能:纳米,微和宏观性能

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The selective laser melting (SLM) of aluminium alloys is of great current interest at both the industrial and research levels. Aluminium poses a challenge to SLM compared with other candidate materials, such as titanium alloys, stainless steels, and nickel-based alloys, because of its high thermal diffusivity and low infrared absorptivity and tendency to result in relatively porous parts. However, recent studies have reported the successful production of dense AlSi10Mg parts using SLM. In this study, we report on the nano, micro, and macroscopic mechanical properties of dense AlSi10Mg samples fabricated by SLM. Nanoindentation revealed the hardness profile across individual melt pools building up the parts to be uniform. This is due to the fine microstructure and uniform chemical elements distribution developed during the process due to rapid solidification. Micro-hardness testing showed anisotropy in properties according to the build orientation driven by the texture produced during solidification. Lastly, the tensile and compressive behaviours of the parts were examined showing high strength under both loading conditions as well as adequate amounts of strain. These superior mechanical properties compared to those achieved via conventional manufacturing promote SLM as promising for several applications.
机译:铝合金的选择性激光熔化(SLM)在工业和研究层面都引起了广泛的关注。与其他候选材料(例如钛合金,不锈钢和镍基合金)相比,铝对SLM构成了挑战,因为铝具有很高的热扩散率和较低的红外吸收率,并且倾向于形成相对多孔的零件。但是,最近的研究报道了使用SLM成功生产出致密的AlSi10Mg零件。在这项研究中,我们报告了由SLM制造的致密AlSi10Mg样品的纳米,微观和宏观力学性能。纳米压痕显示出各个熔池之间的硬度分布,从而使部件均匀。这是由于在快速凝固过程中形成了良好的微观结构和均匀的化学元素分布。显微硬度测试表明,根据凝固过程中生成的织构驱动的构造方向,性能具有各向异性。最后,检查了零件的拉伸和压缩行为,显示了在两种载荷条件下的高强度以及足够的应变。与通过常规制造获得的机械性能相比,这些优越的机械性能使SLM有望用于多种应用。

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