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On the Selective Laser Melting (SLM) of the AlSi10Mg Alloy: Process Microstructure and Mechanical Properties

机译:关于AlSi10Mg合金的选择性激光熔化(SLM):工艺显微组织和力学性能

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摘要

The aim of this review is to analyze and to summarize the state of the art of the processing of aluminum alloys, and in particular of the AlSi10Mg alloy, obtained by means of the Additive Manufacturing (AM) technique known as Selective Laser Melting (SLM). This process is gaining interest worldwide, thanks to the possibility of obtaining a freeform fabrication coupled with high mechanical properties related to a very fine microstructure. However, SLM is very complex, from a physical point of view, due to the interaction between a concentrated laser source and metallic powders, and to the extremely rapid melting and the subsequent fast solidification. The effects of the main process variables on the properties of the final parts are analyzed in this review: from the starting powder properties, such as shape and powder size distribution, to the main process parameters, such as laser power and speed, layer thickness, and scanning strategy. Furthermore, a detailed overview on the microstructure of the AlSi10Mg material, with the related tensile and fatigue properties of the final SLM parts, in some cases after different heat treatments, is presented.
机译:这篇综述的目的是分析和总结铝合金(特别是AlSi10Mg合金)的加工技术,该技术是通过称为选择性激光熔化(SLM)的增材制造(AM)技术获得的。由于有可能获得自由形式的制造以及与非常精细的微结构有关的高机械性能,这种工艺在全世界引起了人们的兴趣。但是,从物理的角度来看,SLM非常复杂,这归因于浓缩激光源和金属粉末之间的相互作用以及极快的熔化和随后的快速凝固。在这篇评论中,分析了主要工艺变量对最终零件性能的影响:从起始粉末的性能(例如形状和粉末尺寸分布)到主要的工艺参数(例如激光功率和速度,层厚,和扫描策略。此外,还提供了有关AlSi10Mg材料的微观结构的详细概述,以及在某些情况下经过不同热处理后,最终SLM零件的相关拉伸和疲劳性能。

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