首页> 外文期刊>Journal of Materials Processing Technology >Selective laser sintering/melting (SLS/SLM) of pure Al, Al-Mg, and Al-Si powders: Effect of processing conditions and powder properties
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Selective laser sintering/melting (SLS/SLM) of pure Al, Al-Mg, and Al-Si powders: Effect of processing conditions and powder properties

机译:纯Al,Al-Mg和Al-Si粉末的选择性激光烧结/熔融(SLS / SLM):加工条件和粉末性能的影响

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Selective laser sintering/melting (SLS/SLM) processing difficulties of aluminium powders had been attributed to issues associated with laser-materials interaction only while neglecting the role of powder properties. This study provides a wholistic understanding of factors that influence the development of SLS/SLM processing window, densification, and microstructure of pure Al, Al-Mg, and Al-Si powders, fabricated in single and multiple layer parts by exploring the roles of processing and material parameters. It was demonstrated that similarities existing in the SLS/SLM processing maps of the powders could be attributed to similarities in their packing densities with the alloying addition of magnesium and silicon having no predominant effect on their processing maps' boundaries. Rather, alloying addition has significant effect on the nature of the evolved surface morphology of SLS/SLM processed aluminium powders in their processing windows. In addition, the flow and solidification behaviour of the melt pool of the powders during single layer scan was strongly influenced by the particle morphology and oxygen content of the powders as well as applied energy density. The energy density in the range of 12-16J/mm~2 was found to be the threshold below which SLS was predominant and above which SLM occurred for the investigated powders. Moreover, successful oxide disruption phenomena which is necessary for interparticulate coalescence in multi-layered SLS/SLM processed aluminium powders are found to be mainly controlled by the amount of oxide in the as-received powder, the degree of the uniformity of the distribution of the surface oxide film covering the aluminium particles, the nature of thermal mismatch existing between the oxide film and the parent aluminium particle which was dependent on the phase present in the oxide film. Al-12 wt% Si powder is hereby affirmed as a suitable candidate material for SLS/SLM process due to its low thermal expansion and uniform distribution of its surface oxide films as well as the mullite phase in its oxide film.
机译:铝粉的选择性激光烧结/熔化(SLS / SLM)处理困难仅归因于与激光-材料相互作用相关的问题,而忽略了粉末特性的作用。这项研究通过探索加工的作用,提供了对影响SLS / SLM加工窗口发展,致密化以及纯Al,Al-Mg和Al-Si粉末(在单层和多层部件中制造)的微结构的影响因素的全面了解和材料参数。事实证明,粉末的SLS / SLM加工图中存在相似之处,可以归因于其堆积密度的相似性,而镁和硅的合金化添加对加工图边界没有主要影响。相反,合金化添加对SLS / SLM处理的铝粉在其加工窗口中所形成的表面形态的性质具有重大影响。另外,粉末的熔池在单层扫描过程中的流动和凝固行为受粉末的颗粒形态和氧含量以及所施加的能量密度的强烈影响。发现在12-16J / mm〜2范围内的能量密度是阈值,低于该阈值,对于所研究的粉末而言,SLS占优势,高于该阈值时,出现SLM。此外,发现在多层SLS / SLM处理的铝粉中进行颗粒间聚结所必需的成功的氧化物破坏现象主要受所接收粉末中氧化物的含量,粉末分布的均匀程度控制。在覆盖铝颗粒的表面氧化膜上,氧化膜与母体铝颗粒之间存在热失配的性质,这取决于氧化膜中存在的相。由于其低的热膨胀和其表面氧化物膜以及莫来石相在其氧化物膜中的低热膨胀性,特此确定Al-12wt%Si粉末是用于SLS / SLM工艺的合适的候选材料。

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