A Review on the Basic Process and the Influences of Process Parameters on Wire-Arc Additive Manufacturing Technology of Magnesium Alloys
LING Zihan1, WANG Liqing1,*, ZHANG Zhen1, ZHAO Zhanyong1, BAI Peikang1,2
1 School of Materials Science and Engineering, North University of China, Taiyuan 030051, China 2 School of Materials Science and Engineering, Taiyuan University of Science and Technology, Taiyuan 030024, China
Abstract: Lightweight structural components are the eternal pursuit in the field of public aerospace and transportation. The lightweight of structural components is mainly realized by structural design and material selection. Therefore, the WAAM (wire-arc additive manufacturing) technology with the characteristics of free forming large scale and complex shape components has received continuous attention. The density of magnesium alloy is about 1.8 g/cm3, which is one of the lightest metal structural materials in practical engineering applications. These two points have led to a focus on the production research of arc additive magnesium alloy large complex components. However, WAAM involves complex physical changes such as electromagnetic, heat transfer and fluid. Meanwhile, magnesium alloys are prone to oxidation and volatilization, which poses a severe test for the process control of WAAM. Herein, this paper summarizes the basic process categories of the WAAM technology for magnesium alloys, analyzes the influence law and deep mechanism of main process parameters on the forming quality, microstructure and mechanical pro-perties of magnesium alloy manufactured by WAAM, points out the existing problems of the WAAM technology for magnesium alloys, and finally puts forward some suggestions and prospects for the future research direction of the WAAM technology for magnesium alloys.
凌子涵, 王利卿, 张震, 赵占勇, 白培康. 镁合金电弧增材技术基本工艺及工艺因素影响综述[J]. 材料导报, 2024, 38(7): 22090013-9.
LING Zihan, WANG Liqing, ZHANG Zhen, ZHAO Zhanyong, BAI Peikang. A Review on the Basic Process and the Influences of Process Parameters on Wire-Arc Additive Manufacturing Technology of Magnesium Alloys. Materials Reports, 2024, 38(7): 22090013-9.
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