BAO Shu-juan. Research Development on Electron Beam Cold Hearth Melting of TC4 Alloy[J]. Development and Application of Materials, 2012, 27(5): 87-90. DOI: 10.19515/j.cnki.1003-1545.2012.05.022
Citation: BAO Shu-juan. Research Development on Electron Beam Cold Hearth Melting of TC4 Alloy[J]. Development and Application of Materials, 2012, 27(5): 87-90. DOI: 10.19515/j.cnki.1003-1545.2012.05.022

Research Development on Electron Beam Cold Hearth Melting of TC4 Alloy

More Information
  • Received Date: April 04, 2012
  • Available Online: March 24, 2024
  • The electron beam cold hearth melting process has emerged as a new melting technology.It is used to produce premium quality titanium alloys for critical parts of the aero-engine and to recycle the titanium scraps successfully.The development of electron beam cold hearth melting for TC4 alloy is reviewed in the paper.
  • Related Articles

    [1]WANG Houqin, GAN Shuhe, WANG Yifan, SONG Qingjun, ZHANG Binggang. Study on Microstructures and Mechanical Properties of 60 mm Thick TC4 ELI Titanium Alloy Welded Joints by Electron Beam Welding[J]. Development and Application of Materials, 2024, 39(6): 35-43,52.
    [2]LI Junjie, TU Yuchun, ZHANG Bingye, YUAN Yanyan, HE Yue, LIU Xuan. Influence of Layer Thickness on Structural and Mechanical Properties of TiN/ZrON Multilayer Films[J]. Development and Application of Materials, 2024, 39(5): 86-93.
    [3]LI Bobo, PEI Teng, ZHANG Qiang, LIU Yinqi, ZHU Junjie, JIANG Linfan. Research on TC4 Residual Titanium Recycling Technology with the Electron Beam Cold Hearth Melting with the Power of 3 600 kW[J]. Development and Application of Materials, 2020, 35(6): 48-52,59.
    [4]LIU Rubin, BAO Shujuan, WANG Fei, LIU Yinqi, ZHU Junjie, PEI Teng. Optimal Selection of Process Route for Electron Beam Cold Hearth Melting TC4 Alloy[J]. Development and Application of Materials, 2018, 33(2): 68-72. DOI: 10.19515/j.cnki.1003-1545.2018.02.011
    [5]CHEN Yan-juan, LU Yong-hong, XU Hai-bo. Synthesis of Rutile TiO2 Through Gas-solid Phase Reaction Using TiN Nanopowders at Low Tempareture[J]. Development and Application of Materials, 2014, 29(3): 43-47. DOI: 10.19515/j.cnki.1003-1545.2014.03.009
    [6]LIU Jian, ZHU Bingkun, PENG Jixiang. Review of the Effects of Inclusion on Acicular Ferrite Formation in Welds[J]. Development and Application of Materials, 2013, 28(1): 76-81. DOI: 10.19515/j.cnki.1003-1545.2013.01.017
    [7]DING Yuan-zhu, LIANG Gang. Microstructure and Formation Mechanism of In-situ TiB2-TiN in Titanium Alloy Surface by Argon Arc Cladding[J]. Development and Application of Materials, 2012, 27(4): 69-72. DOI: 10.19515/j.cnki.1003-1545.2012.04.016
    [8]ZOU Dong-li, YAN Dian-ran, HE Ji-ning, DONG Yan-chun. Reactive Plasma Spraying TiN Coatings[J]. Development and Application of Materials, 2006, 21(5): 11-13. DOI: 10.19515/j.cnki.1003-1545.2006.05.004
    [9]Wang Junshi, Liu Xianghuai, Huang Nan, Sun Hong, Wang Lianghui. An Investigation on the TiN Film Prepared by Means of PIII-IBAD[J]. Development and Application of Materials, 2003, 18(5): 17-20. DOI: 10.19515/j.cnki.1003-1545.2003.05.005
    [10]Wang Hongwei, Sun Min, Wei Yongqian. Design of Ti6Al4V-TiN Gradient Materials[J]. Development and Application of Materials, 2000, 15(1): 1-4. DOI: 10.19515/j.cnki.1003-1545.2000.01.001

Catalog

    Article Metrics

    Article views (27) PDF downloads (2) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return