Alfieri Vittorio, Argenio Paolo, Caiazzo Fabrizia, Sergi Vincenzo
Department of Industrial Engineering, University of Salerno, 84084 Fisciano, Italy.
Materials (Basel). 2016 Dec 31;10(1):30. doi: 10.3390/ma10010030.
Optimization of processing parameters and exposure strategies is usually performed in additive manufacturing to set up the process; nevertheless, standards for roughness may not be evenly matched on a single complex part, since surface features depend on the building direction of the part. This paper aims to evaluate post processing treating via laser surface modification by means of scanning optics and beam wobbling to process metal parts resulting from selective laser melting of stainless steel in order to improve surface topography. The results are discussed in terms of roughness, geometry of the fusion zone in the cross-section, microstructural modification, and microhardness so as to assess the effects of laser post processing. The benefits of beam wobbling over linear scanning processing are shown, as heat effects in the base metal are proven to be lower.
在增材制造中,通常会对加工参数和曝光策略进行优化以建立工艺;然而,由于表面特征取决于零件的构建方向,粗糙度标准可能无法在单个复杂零件上均匀匹配。本文旨在评估通过扫描光学和光束摆动进行激光表面改性的后处理方法,以加工不锈钢选择性激光熔化制成的金属零件,从而改善表面形貌。从粗糙度、横截面熔合区几何形状、微观结构改性和显微硬度等方面对结果进行了讨论,以评估激光后处理的效果。结果表明,与线性扫描加工相比,光束摆动具有优势,因为已证明基体金属中的热效应更低。