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Effect of Layer Thickness in Selective Laser Melting on Microstructure of Al/5 wt.Fe2O3 Powder Consolidated Parts

机译:选择性激光熔炼层厚度对Al / 5 wt。%Fe2O3粉末固结零件微观结构的影响

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摘要

In situ reaction was activated in the powder mixture of Al/5 wt.%Fe2O3 by using selective laser melting (SLM) to directly fabricate aluminium metal matrix composite parts. The microstructural characteristics of these in situ consolidated parts through SLM were investigated under the influence of thick powder bed, 75 μm layer thickness, and 50 μm layer thickness in various laser powers and scanning speeds. It was found that the layer thickness has a strong influence on microstructural outcome, mainly attributed to its impact on oxygen content of the matrix. Various microstructural features (such as granular, coralline-like, and particulate appearance) were observed depending on the layer thickness, laser power, and scanning speed. This was associated with various material combinations such as pure Al, Al-Fe intermetallics, and Al(-Fe) oxide phases formed after in situ reaction and laser rapid solidification. Uniformly distributed very fine particles could be consolidated in net-shape Al composite parts by using lower layer thickness, higher laser power, and lower scanning speed. The findings contribute to the new development of advanced net-shape manufacture of Al composites by combining SLM and in situ reaction process.
机译:通过使用选择性激光熔化(SLM)直接制造铝金属基复合材料零件,在Al / 5wt。%Fe2O3的粉末混合物中激活原位反应。在不同的激光功率和扫描速度下,在厚粉末床,75μm层厚度和50μm层厚度的影响下,通过SLM对这些原位固结零件的微观结构特性进行了研究。发现层的厚度对微观结构的结果有很大的影响,这主要归因于它对基质中氧含量的影响。根据层的厚度,激光功率和扫描速度,观察到各种微观结构特征(例如颗粒状,珊瑚状和颗粒状外观)。这与各种材料组合有关,例如在原位反应和激光快速固化后形成的纯Al,Al-Fe金属间化合物和Al(-Fe)氧化物相。通过使用较低的层厚度,较高的激光功率和较低的扫描速度,可以将均匀分布的极细颗粒固结为网状的Al复合部件。这些发现通过结合SLM和原位反应工艺,为先进的网状铝复合材料制造的新发展做出了贡献。

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  • 期刊名称 other
  • 作者

    Sasan Dadbakhsh; Liang Hao;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 106129
  • 总页数 10
  • 原文格式 PDF
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