The effect of rescanning strategy on residual stress and deformation of laser-based powder bed fusion of 316L stainless steel thin-walled parts

残余应力 材料科学 退火(玻璃) 激光器 有限元法 融合 复合材料 变形(气象学) 激光功率缩放 残余物 模拟退火 冶金 结构工程 光学 计算机科学 工程类 语言学 哲学 物理 算法
作者
Minting Wang,Renjie Cao,HuiChao Chang,Liang Dong
出处
期刊:Rapid Prototyping Journal [Emerald Publishing Limited]
卷期号:29 (5): 1044-1060 被引量:4
标识
DOI:10.1108/rpj-04-2022-0131
摘要

Purpose Laser-based powder bed fusion (LPBF) is a new method for forming thin-walled parts, but large cooling rates and temperature gradients can lead to large residual stresses and deformations in the part. This study aims to reduce the residual stress and deformation of thin-walled parts by a specific laser rescanning strategy. Design/methodology/approach A three-dimensional transient finite element model is established to numerically simulate the LPBF forming process of multilayer and multitrack thin-walled parts. By changing the defocus amount, the laser in situ annealing process is designed, and the optimal rescanning parameters are obtained, which are verified by experiments. Findings The results show that the annealing effect is related to the average surface temperature and scan time. When the laser power is 30 W and the scanning speed is 20 mm/s, the overall residual stress and deformation of the thin-walled parts are the smallest, and the in situ annealing effect is the best. When the annealing frequency is reduced to once every three layers, the total annealing time can be reduced by more than 60%. Originality/value The research results can help better understand the influence mechanism of laser in situ annealing process on residual stress and deformation in LPBF and provide guidance for reducing residual stress and deformation of LPBF thin-walled parts.
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