Influence of heat treatment on microstructure, mechanical and corrosion behavior of WE43 alloy fabricated by laser-beam powder bed fusion

被引:0
|
作者
Chenrong Ling [1 ]
Qiang Li [2 ]
Zhe Zhang [1 ]
Youwen Yang [1 ]
Wenhao Zhou [3 ]
Wenlong Chen [4 ]
Zhi Dong [5 ]
Chunrong Pan [1 ]
Cijun Shuai [1 ,6 ,7 ]
机构
[1] College of Mechanical and Electrical Engineering, Jiangxi University of Science and Technology
[2] School of Mechanical and Electronic Engineering, Suzhou University
[3] Shaanxi Key Laboratory of Biomedical Metal Materials, Northwest Institute for Non-ferrous Metal Research
[4] Department of Orthopedics, First Affiliated Hospital of Gannan Medical College
[5] School of Mechanical and Automotive Engineering, South China university of technology
[6] State Key Laboratory of High-Performance Complex Manufacturing, Central South University
[7] Double Medical Technology Inc.
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TG146.22 []; TG156 [热处理工艺];
学科分类号
080201 ; 080502 ; 080503 ;
摘要
Magnesium (Mg) alloys are considered to be a new generation of revolutionary medical metals.Laser-beam powder bed fusion (PBF-LB) is suitable for fabricating metal implants withpersonalized and complicated structures.However,the as-built part usually exhibits undesirable microstructure and unsatisfactory performance.In this work,WE43 parts were firstly fabricated by PBF-LB and then subjected to heat treatment.Although a high densification rate of 99.91%was achieved using suitable processes,the as-built parts exhibited anisotropic and layeredmicrostructure with heterogeneously precipitated Nd-rich intermetallic.After heat treatment,fine and nano-scaled Mg24Y5particles were precipitated.Meanwhile,the α-Mg grainsunderwent recrystallization and turned coarsened slightly,which effectively weakened thetexture intensity and reduced the anisotropy.As a consequence,the yield strength and ultimate tensile strength were significantly improved to (250.2±3.5) MPa and (312±3.7) MPa,respectively,while the elongation was still maintained at a high level of 15.2%.Furthermore,the homogenized microstructure reduced the tendency of localized corrosion and favoredthe development of uniform passivation film.Thus,the degradation rate of WE43 parts was decreased by an order of magnitude.Besides,in-vitro cell experiments proved their favorable biocompatibility.
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收藏
页码:264 / 281
页数:18
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