首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Selective laser melting additive manufacturing of Inconel 718 superalloy parts: Densification, microstructure and properties
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Selective laser melting additive manufacturing of Inconel 718 superalloy parts: Densification, microstructure and properties

机译:选择性激光熔化添加剂的Inconel 718超合金零件:致密化,微观结构和性能

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摘要

This paper presented a comprehensive study of densification behavior, microstructural features, microh-ardness, wear performance and high-temperature oxidation properties of Inconel 718 parts fabricated by selective laser melting (SLM), a typical additive manufacturing process. The relationship of processing conditions, microstructures and material properties was established. The occurrence of balling phenom enon at a lower laser energy density input reduced the relative density of the formed parts. A reasonable increase in laser energy density yielded a near-full densification. The typical microstructures of SLM-pro-cessed Inconel 718 parts experienced successive morphological changes on increasing the applied laser energy density: coarsened columnar dendrites - clustered dendrites - slender and uniformly distributed columnar dendrites. The optimally prepared fully dense Inconel 718 parts had a uniform microhardness distribution with a mean value of 395.8 HV_(0.2), a considerably low friction coefficient of 0.36 and a reduced wear rate of 4.64 × 10~(-4) mm~3/N m in sliding wear tests. The formation of an adherent tribolayer on the worn surface contributed to the improvement of wear performance. The high-temperature oxida tion resistance was enhanced as the applied laser energy density increased and the elevated high-temperature oxidation property was primarily attributed to the formation of refined microstructural architectures of SLM-processed parts.
机译:本文介绍了通过选择性激光熔化(SLM),典型的添加剂制造方法制造的致密化行为,微观结构特征,微观,磨损性能和高温氧化性能和高温氧化性能。建立了加工条件,微观结构和材料性能的关系。在较低的激光能量密度输入处发生球形现象Enon的发生降低了所形成部件的相对密度。激光能量密度的合理增加产生了近乎完全的致密化。 SLM-Pro-Cessed Inconel 718份的典型微结构在增加施加的激光能量密度的情况下经历了连续的形态学变化:粗柱树突 - 簇状树枝状鳞片 - 细长和均匀分布的柱状树枝状。最佳制备的完全致密的418份具有均匀的微硬度分布,平均值为395.8 HV_(0.2),具有0.36的相当低的摩擦系数,磨损率降低为4.64×10〜(-4)mm〜3 / n M在滑动磨损试验中。在磨损表面上形成粘附的零枝有助于提高磨损性能。随着施加的激光能量密度增加,高温氧化性的高温氧化耐力耐高采烈地增强了升高的高温氧化性能,主要归因于组成的SLM加工部件的精细组织架构。

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