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The Effect of Selective Laser Melting Process Parameters on the Microstructure and Mechanical Properties of Al6061 and AlSi10Mg Alloys

机译:选择性激光熔化过程参数对Al6061和Alsi10mg合金微观结构和力学性能的影响

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摘要

Additive manufacturing (AM) offers customization of the microstructures and mechanical properties of fabricated components according to the material selected and process parameters applied. Selective laser melting (SLM) is a commonly-used technique for processing high strength aluminum alloys. The selection of SLM process parameters could control the microstructure of parts and their mechanical properties. However, the process parameters limit and defects obtained inside the as-built parts present obstacles to customized part production. This study investigates the influence of SLM process parameters on the quality of as-built Al6061 and AlSi10Mg parts according to the mutual connection between the microstructure characteristics and mechanical properties. The microstructure of both materials was characterized for different parts processed over a wide range of SLM process parameters. The optimized SLM parameters were investigated to eliminate internal microstructure defects. The behavior of the mechanical properties of parts was presented through regression models generated from the design of experiment (DOE) analysis for the results of hardness, ultimate tensile strength, and yield strength. A comparison between the results obtained and those reported in the literature is presented to illustrate the influence of process parameters, build environment, and powder characteristics on the quality of parts produced. The results obtained from this study could help to customize the part’s quality by satisfying their design requirements in addition to reducing as-built defects which, in turn, would reduce the amount of the post-processing needed.
机译:添加剂制造(AM)提供根据所选择的材料和工艺参数的制造部件的微观结构和机械性能的定制。选择性激光熔化(SLM)是一种用于加工高强度铝合金的常用技术。选择SLM工艺参数可以控制零件的微观结构及其机械性能。然而,在竣工零件内获得的过程参数限制和缺陷将存在定制部件生产的障碍物。本研究调查了根据微结构特性和机械性能之间的相互连接,调查了SLM工艺参数对竣工AL6061和ALSI10MG部件的质量。两种材料的微观结构的特征在于在各种SLM工艺参数上处理的不同部件。研究了优化的SLM参数以消除内部微观结构缺陷。通过从实验(DOE)分析设计的回归模型来提出零件的力学性能的行为,用于硬度,最终拉伸强度和屈服强度的结果。所获得的结果与文献中报告的结果进行了比较,以说明工艺参数,构建环境和粉末特性对所产生的零件质量的影响。从本研究中获得的结果可以通过满足其设计要求来帮助定制部分的质量,除了减少构建的缺陷,反过来会减少所需后处理的量。

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