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Porosity Inducing Process Parameters in Selective Laser Melted AlSi10Mg Aluminium Alloy

机译:选择性激光熔化Alsi10mg铝合金的孔隙率诱导工艺参数

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摘要

Additive manufacturing techniques are known for the unrivalled geometric freedom they offer to designers. It is one of the mainstays of "metal 3D-printing", compared to casting, which, in contrast, implies more restrictions because some shapes do not cool evenly or may need moulds or forms. Despite the possible presence of defects inside additive manufactured components, such as oxide films, pores or unmelted powder, they can be strongly reduced or controlled by process parameters optimization. That seems not true for a casting component, in which defects can vary a lot from zone to zone according to the solidification conditions. Porosity inducing process parameters in selective laser melted AlSi10Mg aluminium alloy are carefully analysed with the aim to find optimal conditions that guarantee the maximum material density and the best mechanical properties. Finally, a model is proposed that correlates the amount of pores with the alloy ultimate tensile strength.
机译:添加剂制造技术是为了设计人员提供的无与伦比的几何自由。 与铸件相比,它是“金属3D印刷”的主干之一,相比,相比之下意味着更多的限制,因为某些形状均匀地冷却或可能需要模具或形式。 尽管存在在氧化物膜,孔或未络合粉末的添加剂内部缺陷的存在,但它们可以通过工艺参数优化强烈减少或控制它们。 对于铸造部件来说,似乎不正确,其中缺陷根据凝固条件,缺陷可以从区域到区域变化很大。 选择性激光熔化的孔隙率诱导工艺参数仔细分析了Alsi10mg铝合金,旨在找到最佳条件,以保证最大的材料密度和最佳机械性能。 最后,提出了一种模型,以与合金终极拉伸强度相关的孔的量。

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