Gorsse Stéphane, Hutchinson Christopher, Gouné Mohamed, Banerjee Rajarshi
CNRS, ICMCB, Univ. Bordeaux, Pessac, France.
ENSCBP, Bordeaux INP, Pessac, France.
Sci Technol Adv Mater. 2017 Aug 25;18(1):584-610. doi: 10.1080/14686996.2017.1361305. eCollection 2017.
We present a brief review of the microstructures and mechanical properties of selected metallic alloys processed by additive manufacturing (AM). Three different alloys, covering a large range of technology readiness levels, are selected to illustrate particular microstructural features developed by AM and clarify the engineering paradigm relating process-microstructure-property. With Ti-6Al-4V the emphasis is placed on the formation of metallurgical defects and microstructures induced by AM and their role on mechanical properties. The effects of the large in-built dislocation density, surface roughness and build atmosphere on mechanical and damage properties are discussed using steels. The impact of rapid solidification inherent to AM on phase selection is highlighted for high-entropy alloys. Using property maps, published mechanical properties of additive manufactured alloys are graphically summarized and compared to conventionally processed counterparts.
我们简要回顾了通过增材制造(AM)加工的特定金属合金的微观结构和力学性能。选择了三种不同的合金,涵盖了广泛的技术就绪水平,以说明增材制造所产生的特定微观结构特征,并阐明与工艺-微观结构-性能相关的工程范式。对于Ti-6Al-4V合金,重点在于增材制造引起的冶金缺陷和微观结构的形成及其对力学性能的作用。使用钢来讨论大量内置位错密度、表面粗糙度和成型气氛对力学和损伤性能的影响。对于高熵合金,强调了增材制造固有的快速凝固对相选择的影响。使用性能图,以图形方式总结了增材制造合金已发表的力学性能,并与传统加工的对应材料进行了比较。