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Collaborative Optimization of Density and Surface Roughness of 316L Stainless Steel in Selective Laser Melting

机译:选择性激光熔炼中316L不锈钢的密度和表面粗糙度的协同优化

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摘要

Although the concept of additive manufacturing has been proposed for several decades, momentum in the area of selective laser melting (SLM) is finally starting to build. In SLM, density and surface roughness, as the important quality indexes of SLMed parts, are dependent on the processing parameters. However, there are few studies on their collaborative optimization during SLM to obtain high relative density and low surface roughness simultaneously in the literature. In this work, the response surface method was adopted to study the influences of different processing parameters (laser power, scanning speed and hatch space) on density and surface roughness of 316L stainless steel parts fabricated by SLM. A statistical relationship model between processing parameters and manufacturing quality is established. A multi-objective collaborative optimization strategy considering both density and surface roughness is proposed. The experimental results show that the main effects of processing parameters on the density and surface roughness are similar. We observed that the laser power and scanning speed significantly affected the above objective quality, but the influence of the hatch spacing was comparatively low. Based on the above optimization, 316L stainless steel parts with excellent surface roughness and relative density can be obtained by SLM with optimized processing parameters.
机译:尽管增材制造的概念已经提出了几十年,但选择性激光熔化(SLM)领域的势头终于开始建立。在SLM中,密度和表面粗糙度作为SLM零件的重要质量指标,取决于加工参数。然而,文献中很少有关于在SLM期间同时进行优化以同时获得高相对密度和低表面粗糙度的协同优化研究。在这项工作中,采用响应面方法研究了不同加工参数(激光功率,扫描速度和舱口空间)对由SLM制造的316L不锈钢零件的密度和表面粗糙度的影响。建立了加工参数与制造质量之间的统计关系模型。提出了一种兼顾密度和表面粗糙度的多目标协同优化策略。实验结果表明,加工参数对密度和表面粗糙度的主要影响是相似的。我们观察到激光功率和扫描速度显着影响了上述目标质量,但是阴影线间距的影响相对较小。基于以上优化,可以通过优化工艺参数的SLM获得具有出色的表面粗糙度和相对密度的316L不锈钢零件。

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