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Effect of Selective Laser Melting Process Parameters on Microstructure and Properties of Co-Cr Alloy

机译:选择性激光熔炼工艺参数对钴铬合金组织和性能的影响

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摘要

Due to the rapid melting and solidification mechanisms involved in selective laser melting (SLM), CoCrMo alloys fabricated by SLM differ from the cast form of the same alloy. In this study, the relationship between process parameters and the morphology and macromechanical properties of cobalt-chromium alloy micro-melting pools is discussed. By measuring the width and depth of the molten pool, a theoretical model of the molten pool is established, and the relationship between the laser power, the scanning speed, the scanning line spacing, and the morphology of the molten pool is determined. At the same time, this study discusses the relationship between laser energy and molding rate. Based on the above research, the optimal process for the laser melting of cobalt-chromium alloy in the selected area is obtained. These results will contribute to the development of biomedical CoCr alloys manufactured by SLM.
机译:由于选择性激光熔化(SLM)涉及的快速熔化和凝固机制,由SLM制造的CoCrMo合金不同于同一合金的铸造形式。本研究探讨了钴铬合金微熔池的工艺参数与形貌和宏观力学性能之间的关系。通过测量熔池的宽度和深度,建立了熔池的理论模型,并确定了激光功率,扫描速度,扫描线间距和熔池形态之间的关系。同时,本研究讨论了激光能量与成型速率之间的关系。在以上研究的基础上,获得了选定区域内钴铬合金激光熔炼的最佳工艺。这些结果将有助于SLM制造的生物医学CoCr合金的开发。

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