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Laser Polishing of Additive Manufactured 316L Stainless Steel Synthesized by Selective Laser Melting

机译:通过选择性激光熔融合成的增材制造的316L不锈钢的激光抛光

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One of the established limitations of metal additive manufacturing (AM) methods, such as selective laser melting (SLM), is the resulting rough surface finish. Laser polishing is one method that can be used to achieve an improved surface finish on AM printed parts. This study is focused on the laser surface polishing of AM parts using CO 2 laser beam irradiation. Despite the fact that several researchers have investigated the traditional abrasive polishing method, there is still a lack of information reporting on the laser surface polishing of metal parts. In this study, AM 316L stainless steel cylindrical samples were polished using CO 2 laser beam irradiation in continuous wave (CW) working mode. Two design of experiment models were developed for the optimization of the input processing parameters by statistical analysis of their effect on the resulting roughness. The processing parameters investigated were the laser beam power, the rotational speed of the sample, the number of laser scan passes, the laser beam focal position, and the percentage overlap of the laser tracks between consecutive passes. The characterization of the measured roughness and the modified layer microstructure was carried out using 3D optical and scanning electron microscopy (SEM). A maximum reduction of the roughness from 10.4 to 2.7 μm was achieved and no significant change in the microstructure phase type and micro-hardness was observed.
机译:金属增材制造(AM)方法(例如选择性激光熔化(SLM))的既定局限性之一是所产生的粗糙表面光洁度。激光抛光是一种可用于在AM印刷部件上实现改善的表面光洁度的方法。这项研究的重点是使用CO 2激光束照射对AM零件进行激光表面抛光。尽管有几位研究人员研究了传统的磨料抛光方法,但仍然缺乏有关金属零件激光表面抛光的信息报道。在这项研究中,使用CO 2激光束在连续波(CW)工作模式下对AM 316L不锈钢圆柱样品进行了抛光。开发了两种设计的实验模型,用于通过统计分析其对所得粗糙度的影响来优化输入加工参数。研究的处理参数是激光束功率,样品的转速,激光扫描通过的次数,激光束焦点位置以及连续两次通过之间的激光轨迹重叠百分比。使用3D光学和扫描电子显微镜(SEM)对测得的粗糙度和改性层的微观结构进行表征。粗糙度从10.4微米最大降低到2.7微米,并且没有观察到微观结构相类型和显微硬度的显着变化。

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