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Finish machining-induced surface roughness, microhardness and XRD analysis of selective laser melted Inconel 718 alloy

机译:精加工诱导的表面粗糙度,微硬度和XRD分析的选择性激光熔化的Inconel 718合金

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Selective laser melting (SLM) is one of the most commonly used additive manufacturing (AM) techniques to manufacture metal components; however, during building process partially melted powders and/or pores on the outer surface of metallic parts results in very high surface roughness and eventually poor surface quality of components manufactured by selective laser melting. Thus, post-processing is needed to improve surface quality and also control subsurface characteristics. Hence, this study presents the effects of finish machining process on surface integrity characteristics including surface roughness, microhardness and XRD analysis of selective laser melted (SLMed) Inconel 718 alloy. In machining process of SLMed Inconel 718 alloy, the effect feed rate on measured outputs was also examined. Besides, the role of cold air on surface integrity characteristics was also presented in this study. This study reveals that arithmetic average surface roughness of as-built SLMed Inconel 718 can be lowered more than 90% with finish machining post processing operation. Increased feed rate results in work hardening on the surface and subsurface and eventually microhardness of surface and subsurface increases notably as compared to as-built SLMed Inconel. Finish machining process deeply influences XRD patterns of SLMed Inconel 718 alloy.
机译:选择性激光熔化(SLM)是制造金属部件最常用的添加剂制造(AM)技术之一;然而,在建造过程中,金属部件的部分熔化的粉末和/或孔隙上的金属部件的外表面导致非常高的表面粗糙度,最终通过选择性激光熔化制造的部件的表面质量差。因此,需要后处理来改善表面质量,并且还需要控制地下特性。因此,本研究介绍了精加工加工过程对表面完整性特性的影响,包括选择性激光熔化(SLMED)Inconel 718合金的表面粗糙度,微硬度和XRD分析。在SLMED INCOLEL 718合金的加工过程中,还检查了测量输出的效果进料速率。此外,本研究还提出了冷空气对表面完整性特征的作用。本研究表明,通过精加工加工后处理操作,可以降低竣工SLMED 718的算术平均表面粗糙度。增加的饲料速率导致表面和地下的工作硬化,并且最终的表面和地下的微硬度显着增加与嵌造的SLMED INCOLEL相比。完成加工过程深入影响SLMED INCOLEL 718合金的XRD图案。

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