Additive manufacturing of magnesium and its alloys: process-formabilitymicrostructure-performance relationship and underlying mechanism
作者机构:School of Materials Science and EngineeringXi’an University of TechnologyXi’anShaanxi 710048People’s Republic of China Xi’an Shechtman Nobel Prize New Materials InstituteXi’an 710048People’s Republic of China Xi’an Key Laboratory of Advanced Magnesium Alloy Additive Manufacturing and Precision FormingXi’anShaanxi 710048People’s Republic of China School of Materials Science and EngineeringLiaocheng UniversityLiaochengShandong 252059People’s Republic of China Department of Materials Science and EngineeringTechnion-Israel Institute of TechnologyHaifa 32000Israel Center for Nanoscience&NanotechnologyHebrew University of JerusalemEdmond J.Safra CampusJerusalem 91904Israel Israel Institute of MetalsTechnion CityHaifa 3200003Israel Institute for Machine ElementsEngineering Design and ManufacturingFreiberg 09599Germany Geelong Waurn Ponds CampusDeakin UniversityPigdons RoadGeelongVic 3216Australia
出 版 物:《International Journal of Extreme Manufacturing》 (极端制造(英文))
年 卷 期:2023年第5卷第4期
页 面:247-290页
核心收录:
学科分类:08[工学] 080502[工学-材料学] 0805[工学-材料科学与工程(可授工学、理学学位)]
基 金:supported by Scientific Research Program Funded by Shaanxi Provincial Education Department(Program No.22JK0479) Research Start-up Project of Xi’an University of Technology(Grant No.101-256082204) International Science and Technology Cooperation Program of Shaanxi Province(No.2023-GHZD-50) Project of Science and Technology Shaanxi Province(No.2023-JC-YB-412) Project of Science and Technology Shaanxi Province(No.2023-JC-QN-0573) Projects of Major Innovation Platforms for Scientific and Technological and Local Transformation of Scientific and Technological Achievements of Xi’an(No.20GXSF0003) Projects of Major Scientific and Technological Achievements Local Transformation of Xi’an(No.2022JHZDZH-0039) Higher Education Institution Discipline Innovation and Intelligence Base of Shaanxi Provincial(No.S2021-ZC-GXYZ-0011)
主 题:additive manufacturing magnesium alloys underlying mechanisms forming quality microstructure characteristics and properties
摘 要:Magnesium and its alloys,as a promising class of materials,is popular in lightweight application and biomedical implants due to their low density and good *** manufacturing(AM)of Mg and its alloys is of growing interest in academia and *** domain-by-domain localized forming characteristics of AM leads to unique microstructures and performances of AM-process Mg and its alloys,which are different from those of traditionally manufactured ***,the intrinsic mechanisms still remain unclear and need to be in-depth ***,this work aims to discuss and analyze the possible underlying mechanisms regarding defect appearance and elimination,microstructure formation and evolution,and performance improvement,based on presenting a comprehensive and systematic review on the relationship between process parameters,forming quality,microstructure characteristics and resultant ***,some key perspectives requiring focus for further progression are highlighted to promote development of AM-processed Mg and its alloys and accelerate their industrialization.