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Surface Formation Mechanisms in Selective Laser Melting of Cobalt-Chromium-Molybdenum Powder

机译:钴 - 铬 - 钼粉选择性激光熔化中的表面形成机制

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Selective laser melting (SLM) is a manufacturing technology of metal parts of any shapes with target mechanical properties by means of laser melting. This paper discusses the effect of SLM parameters: laser output power, laser movement velocity, scanning pitch and preheating temperature of a powdered material on surface formation mechanism, namely, its physical configuration when melting cobalt-chromium-molybdenum powdered material Co28Cr3Mo. The study points at structural differences of melted surfaces even under identical process parameters. Several types of surface formation are identified, e.g. homogenous melt, coagulated particles, and shapeless particles. Vapor pressure, Marangoni effect, and heat effect of a melted powder are stated to be key reasons for rough surface. This research is of high importance for understanding the effect of SLM parameters on formation of a target quality surface, positive stability and repeatable accuracy of the process.
机译:选择性激光熔化(SLM)是通过激光熔化具有目标机械性能的任何形状的金属部件的制造技术。本文讨论了SLM参数的影响:激光输出功率,激光运动速度,激光运动速度,粉末材料的扫描间距和预热温度在表面形成机制上,即熔化钴铬 - 钼粉末材料CO28CR3MO时的物理构造。即使在相同的过程参数下,熔化表面的结构差异的研究点也是如此。鉴定了几种类型的表面形成,例如,均匀熔体,凝固颗粒和无形颗粒。熔化粉末的蒸气压,Marangoni效应和热效应是粗糙表面的主要原因。本研究高度重视,了解SLM参数对目标质量表面的形成,正稳定性和过程的可重复精度的影响。

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