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首页|期刊导航|中国铸造|Tensile behavior of Ti-6Al-4V alloy fabricated by selective laser melting: effects of microstructures and as-built surface quality

Tensile behavior of Ti-6Al-4V alloy fabricated by selective laser melting: effects of microstructures and as-built surface quality

Pan Tao Huai-xue Li Bai-ying Huang Quan-dong Hu Shui-li Gong Qing-yan Xu

中国铸造2018,Vol.15Issue(4):243-252,10.
中国铸造2018,Vol.15Issue(4):243-252,10.

Tensile behavior of Ti-6Al-4V alloy fabricated by selective laser melting: effects of microstructures and as-built surface quality

Tensile behavior of Ti-6Al-4V alloy fabricated by selective laser melting: effects of microstructures and as-built surface quality

Pan Tao 1Huai-xue Li 2Bai-ying Huang 3Quan-dong Hu 2Shui-li Gong 3Qing-yan Xu2

作者信息

  • 1. Key Laboratory for Advanced Materials Processing Technology(MOE), School of Materials Science and Engineering, Tsinghua University,Beijing 100084, China
  • 2. Science and Technology on Power Beam Processes Laboratory, AVIC Manufacturing Technology Institute, Beijing 100024, China
  • 3. Key Laboratory of Aeronautical Technology on additive manufacturing, AVIC Manufacturing Technology Institute, Beijing 100024, China
  • 折叠

摘要

关键词

selective laser melting/Ti-6Al-4V/microstructure/mechanical properties/fracture/surface quality

Key words

selective laser melting/Ti-6Al-4V/microstructure/mechanical properties/fracture/surface quality

分类

矿业与冶金

引用本文复制引用

Pan Tao,Huai-xue Li,Bai-ying Huang,Quan-dong Hu,Shui-li Gong,Qing-yan Xu..Tensile behavior of Ti-6Al-4V alloy fabricated by selective laser melting: effects of microstructures and as-built surface quality[J].中国铸造,2018,15(4):243-252,10.

基金项目

This work was financially supported by the National Program on Key Basic Research Project of China (973 Program) under Grant (No.613281),the National Natural Science Foundation of China (No.51505451),and the Natural Science Foundation of Beijing (No.3172042).This work has also been supported by EMUSIC which is part of an EU-China collaboration and has received funding from the European Union's Horizon 2020 research and innovation programme under Grant Agreement No.690725 and from MIIT under the programme number MJ-2015-H-G-104. (973 Program)

中国铸造

OASCI

1672-6421

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