Chen Yitao, Zhang Xinchang, Parvez Mohammad Masud, Liou Frank
Department of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, Rolla, MO 65401, USA.
Materials (Basel). 2020 Aug 12;13(16):3562. doi: 10.3390/ma13163562.
The laser powder directed energy deposition process is a metal additive manufacturing technique, which can fabricate metal parts with high geometric and material flexibility. The unique feature of in-situ powder feeding makes it possible to customize the elemental composition using elemental powder mixture during the fabrication process. Thus, it can be potentially applied to synthesize industrial alloys with low cost, modify alloys with different powder mixtures, and design novel alloys with location-dependent properties using elemental powder blends as feedstocks. This paper provides an overview of using a laser powder directed energy deposition method to fabricate various types of alloys by feeding elemental powder blends. At first, the advantage of laser powder directed energy deposition in manufacturing metal alloys is described in detail. Then, the state-of-the-art research and development in alloys fabricated by laser powder directed energy deposition through a mix of elemental powders in multiple categories is reviewed. Finally, critical technical challenges, mainly in composition control are discussed for future development.
激光粉末定向能量沉积工艺是一种金属增材制造技术,它能够制造具有高几何形状和材料灵活性的金属部件。原位送粉的独特特性使得在制造过程中使用元素粉末混合物定制元素组成成为可能。因此,它有可能应用于低成本合成工业合金、用不同粉末混合物改性合金以及使用元素粉末混合物作为原料设计具有位置依赖特性的新型合金。本文概述了通过送入元素粉末混合物,利用激光粉末定向能量沉积方法制造各类合金的情况。首先,详细描述了激光粉末定向能量沉积在制造金属合金方面的优势。然后,综述了通过混合多种元素粉末利用激光粉末定向能量沉积制造合金的最新研究与开发情况。最后,讨论了未来发展面临的关键技术挑战,主要是成分控制方面的挑战。