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Hierarchical Microstructure of Laser Powder Bed Fusion Produced Face-Centered-Cubic-Structured Equiatomic CrFeNiMn Multicomponent Alloy

机译:激光粉末融合的分层微观结构产生的面向中心立式阶段Crfenimn多组分合金

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摘要

A cobalt-free equiatomic CrFeNiMn multicomponent alloy was fabricated from gas-atomized powder using laser powder bed fusion (L-PBF), also known as selective laser melting (SLM). The as-built specimens had a single face-centered cubic (FCC) structure, relative density of 98%, and hardness up to 248 HV0.5 for both the scanning speeds applied. In this work, we report the hierarchical microstructural features observed in the as-built specimens. These are comprised of melt pools, grains, cell structures including dendritic cells, elongated cells, equiaxed cells (~500 nm), and sub-cells (150–300 nm). The cell and sub-cell walls are composed of a notably high density of dislocations. In addition, segregation of Mn and Ni was detected at the cell walls, but only occasionally at the sub-cell walls. SLM exhibits the capability to produce FCC-structured equiatomic CrFeNiMn multicomponent alloy with the refined and hierarchical microstructure.
机译:使用激光粉床融合(L-PBF)制成无钴阶段CRFENIMN多组分合金,也称为选择性激光熔化(SLM)。由于施加的扫描速度,所构建的样本具有单一的朝向立方(FCC)结构,相对密度为98%,高达248 HV0.5的硬度。在这项工作中,我们报告了在竣工标本中观察到的分层微观结构特征。这些由熔融池,晶粒,细胞结构包括树突细胞,细胞细胞,等轴细胞(〜500nm)和子细胞(150-300nm)组成。细胞和子细胞壁由显着高密度的脱位组成。另外,在细胞壁处检测Mn和Ni的偏析,但仅偶尔在子细胞壁处。 SLM具有生产FCC结构阶段CRFENIMN多组分合金的能力,具有精制和分级微结构。

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