材料科学技术(英文版)2021,Vol.61Issue(2) :221-233.

Microstructural homogeneity and mechanical behavior of a selective laser melted Ti-35Nb alloy produced from an elemental powder mixture

Jincheng Wang Yujing Liu Chirag Dhirajlal Rabadia Shun-Xing Liang Timothy Barry Sercombe Lai-Chang Zhang
材料科学技术(英文版)2021,Vol.61Issue(2) :221-233.

Microstructural homogeneity and mechanical behavior of a selective laser melted Ti-35Nb alloy produced from an elemental powder mixture

Jincheng Wang 1Yujing Liu 2Chirag Dhirajlal Rabadia 3Shun-Xing Liang 3Timothy Barry Sercombe 2Lai-Chang Zhang3
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作者信息

  • 1. School of Engineering,Edith Cowan University,270Joondalup Drive,Joondalup,Perth,WA 6027,Australia;School of Engineering,M050,The University of Western Australia,35 Stirling Highway,Crawley,Perth,WA 6009,Australia
  • 2. School of Engineering,M050,The University of Western Australia,35 Stirling Highway,Crawley,Perth,WA 6009,Australia
  • 3. School of Engineering,Edith Cowan University,270Joondalup Drive,Joondalup,Perth,WA 6027,Australia
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Abstract

Although using elemental powder mixtures may provide broad alloy selection at low cost for selective laser melting(SLM),there is still a concern on the resultant microstructural and chemical homogeneity of the produced parts.Hence,this work investigates the microstructure and mechanical properties of a SLM-produced Ti-35Nb composite(in wt%)using elemental powder.The microstructural characteris-tics including β phase,undissolved Nb particles and chemical homogeneity were detailed investigated.Nanoindentation revealed the presence of relatively soft undissolved Nb particles and weak interface bonding around Nb-rich regions in as-SLMed samples.Solid-solution treatment can not only improve chemical homogeneity but also enhance bonding through grain boundary strengthening,resulting in~43% increase in tensile elongation for the heat-treated Ti-35Nb compared to the as-SLMed counter-part.The analyses of tensile fractures and shear bands further confirmed the correlation between the different phases and the ductility of Ti-35Nb.In particular,the weak bonding between undissolved Nb and the matrix in the as-SLMed sample reduces its ductility while the β grains in solid-solution treated Ti-Nb alloy can induce a relatively stable plastic flow therefore better ductility.This work sheds insight into the understanding of homogenization of microstructure and phases of SLM-produced alloys from an elemental powder mixture.

Key words

Titanium-niobium/Selective laser melting/Microstructure/Nanoindentation/Mechanical behavior

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基金项目

出版年

2021
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
被引量2
参考文献量80
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