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Bimodal eutectic titanium alloys: Microstructure evolution, mechanical behavior and strengthening mechanism (EI收录)
Kang, L.M.[1]; Yang, C.[1]; Zhao, Y.J.[1]; Li, X.X.[1]; Qu, S.G.[2]; Zhang, W.W.[2]; Long, Y.[3]; Xiao, Z.Y.[3]
刊名Materials Science and Engineering A
2017
卷号700
关键词Alloys Crystal structure Eutectics Glass Iron alloys Lamellar structures Microstructure Milling (machining) Niobium Powders Sintering Spark plasma sintering Titanium Yield stress
URL标识查看原文
内容类型期刊论文
URI标识http://www.corc.org.cn/handle/1471x/2183457
专题华南理工大学
作者单位1.[1]National Engineering Research Center of Near-net-shape Forming for Metallic Materials, South China University of Technology, Guangzhou, 510640, China
2.[2]Key Laboratory of High-efficiency Near-net-shape Forming Technology and Equipments for Metallic Materials, Ministry of Education, Guangzhou, 510640, China
3.[3]Guangdong key laboratory for advanced metallic materials processing, South China University of Technology, Guangzhou, 510640, China
推荐引用方式
GB/T 7714
Kang, L.M.[1],Yang, C.[1],Zhao, Y.J.[1],等. Bimodal eutectic titanium alloys: Microstructure evolution, mechanical behavior and strengthening mechanism (EI收录)[J]. Materials Science and Engineering A,2017,700.
APA Kang, L.M.[1].,Yang, C.[1].,Zhao, Y.J.[1].,Li, X.X.[1].,Qu, S.G.[2].,...&Xiao, Z.Y.[3].(2017).Bimodal eutectic titanium alloys: Microstructure evolution, mechanical behavior and strengthening mechanism (EI收录).Materials Science and Engineering A,700.
MLA Kang, L.M.[1],et al."Bimodal eutectic titanium alloys: Microstructure evolution, mechanical behavior and strengthening mechanism (EI收录)".Materials Science and Engineering A 700(2017).
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