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Microstructural investigation of Selective Laser Melting 316L stainless steel parts exposed to laser re-melting

机译:选择性激光熔化暴露于激光重熔的316L不锈钢零件的显微组织研究

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摘要

Although Selective Laser Melting (SLM) provides many advantages compared to conventional machining, limited surface quality is one of the major drawbacks encountered in the process. Secondly, little residual porosity (1-2%) in SLM parts may be problematic for some applications where high strength and fatigue resistance are necessary. As a remedy, laser re-melting is employed during or after the SLM process. Laser re-melting means that after scanning a layer and melting the powder, the same slice is re-scanned before putting a new layer of powder. If done for each layer, it results in substantially longer production times. It can also be applied to only the last layer or the outer skin of the part if the aim is to reduce the roughness or to enhance the surface properties. In this study, laser re-melting is applied using a continuous wave laser during SLM of AISI 316L stainless steel parts mainly to study the microstructural changes by applying different process parameters.
机译:尽管与传统的机加工相比,选择性激光熔化(SLM)具有许多优势,但是有限的表面质量是该过程中遇到的主要缺点之一。其次,对于某些需要高强度和抗疲劳性的应用,SLM零件中的残留孔隙率极低(1-2%)可能会成为问题。作为补救措施,在SLM工艺过程中或之后采用激光重熔。激光重熔是指在扫描一层并熔化粉末之后,在放置新的粉末层之前,先对同一片进行重新扫描。如果对每一层都进行,将导致生产时间大大延长。如果目的是减少粗糙度或增强表面性能,则也可以仅将其应用于零件的最后一层或外表层。在这项研究中,在AISI 316L不锈钢零件的SLM过程中使用连续波激光器进行激光重熔,主要是通过应用不同的工艺参数来研究显微组织的变化。

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