Li Zheng, Li Hao, Yin Jie, Li Yan, Nie Zhenguo, Li Xiangyou, You Deyong, Guan Kai, Duan Wei, Cao Longchao, Wang Dengzhi, Ke Linda, Liu Yang, Zhao Ping, Wang Lin, Zhu Kunpeng, Zhang Zhengwen, Gao Liang, Hao Liang
Gemological Institute, China University of Geosciences, Wuhan 430074, China.
Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China.
Micromachines (Basel). 2022 Aug 22;13(8):1366. doi: 10.3390/mi13081366.
Spatter is an inherent, unpreventable, and undesired phenomenon in laser powder bed fusion (L-PBF) additive manufacturing. Spatter behavior has an intrinsic correlation with the forming quality in L-PBF because it leads to metallurgical defects and the degradation of mechanical properties. This impact becomes more severe in the fabrication of large-sized parts during the multi-laser L-PBF process. Therefore, investigations of spatter generation and countermeasures have become more urgent. Although much research has provided insights into the melt pool, microstructure, and mechanical property, reviews of spatter in L-PBF are still limited. This work reviews the literature on the in situ detection, generation, effects, and countermeasures of spatter in L-PBF. It is expected to pave the way towards a novel generation of highly efficient and intelligent L-PBF systems.
飞溅是激光粉末床熔融(L-PBF)增材制造中一种固有的、不可避免的且不受欢迎的现象。飞溅行为与L-PBF中的成型质量具有内在关联,因为它会导致冶金缺陷和机械性能下降。在多激光L-PBF工艺制造大型零件的过程中,这种影响会变得更加严重。因此,对飞溅产生及对策的研究变得更加迫切。尽管许多研究已经对熔池、微观结构和机械性能有了深入了解,但关于L-PBF中飞溅的综述仍然有限。这项工作综述了关于L-PBF中飞溅的原位检测、产生、影响及对策的文献。期望为新一代高效智能的L-PBF系统铺平道路。