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Performance Consistency of AlSi10Mg Alloy Manufactured by Simulating Multi Laser Beam Selective Laser Melting (SLM): Microstructures and Mechanical Properties

机译:通过模拟多激光束选择性激光熔化(SLM)制造的AlSi10Mg合金的性能一致性:微观组织和力学性能

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摘要

Multi-laser beam selective laser melting (SLM) technology based on a powder bed has been used to manufacture AlSi10Mg samples. The AlSi10Mg alloy was used as research material to systematically study the performance consistency of both the laser overlap areas and the isolated areas of the multi-laser beam SLM manufactured parts. The microstructures and mechanical properties of all isolated and overlap processing areas were compared under optimized process parameters. It was discovered that there is a raised platform at the junction of the overlap areas and the isolated areas of the multi-laser SLM samples. The roughness is significantly reduced after two scans. However, the surface roughness of the samples is highest after four scans. As the number of laser scans increases, the relative density of the overlap areas of the samples improves, and there is no significant change in hardness. The tensile properties of the tensile samples are poor when the overlap area width is 0, 0.1, or 0.2 mm. When the widths of the overlap areas are equal to or greater than 0.3 mm, there is no significant difference in the tensile strength between the overlap and the isolated areas.
机译:基于粉末床的多激光束选择性激光熔融(SLM)技术已用于制造AlSi10Mg样品。 AlSi10Mg合金用作研究材料,系统地研究了多激光束SLM制造的零件的激光重叠区域和孤立区域的性能一致性。在优化的工艺参数下,比较了所有隔离和重叠加工区域的微观结构和力学性能。发现在多激光SLM样品的重叠区域和孤立区域的交界处有一个凸起的平台。两次扫描后,粗糙度明显降低。但是,在四次扫描后,样品的表面粗糙度最高。随着激光扫描次数的增加,样品重叠区域的相对密度提高,硬度没有明显变化。当重叠区域宽度为0、0.1或0.2 mm时,拉伸样品的拉伸性能很差。当重叠区域的宽度等于或大于0.3mm时,重叠区域和隔离区域之间的拉伸强度没有显着差异。

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