Preparation of low-oxygen-containing Ti–48Al–2Cr–2Nb alloy powder by direct reduction of oxides

被引:0
|
作者
GUO, Xue-yi [1 ]
DONG, Zhao-wang [1 ]
XIA, Yang [1 ]
LIU, Pei-dong [1 ]
LIU, Han-ning [1 ]
TIAN, Qing-hua [1 ]
机构
[1] School of Metallurgy and Environment, Central South University, Changsha,410083, China
基金
中国国家自然科学基金;
关键词
Oxygen - Titanium dioxide - Alumina - Titanium alloys - Niobium oxide - Particle size;
D O I
暂无
中图分类号
学科分类号
摘要
A high-purity Ti–48Al–2Nb–2Cr alloy powder with an oxygen content as low as 0.0572 wt.% and a particle size of 2, Al2O3, Nb2O5, and Cr2O3 powders through reduction with magnesium and deoxidation with calcium. The phase and composition of the products were analyzed. The final product mainly included γ-TiAl and minor α2-Ti3Al phases, and Ti, Al, Cr, and Nb were homogenously distributed in the powder with a mole ratio of 49.73:43.51:2.05:1.98. The reduction and deoxidation mechanisms were investigated by thermodynamic modeling using the HSC Chemistry software and Pandat software based on the Ti alloy database. © 2022 The Nonferrous Metals Society of China
引用
收藏
页码:1351 / 1361
相关论文
共 50 条
  • [1] Preparation of low-oxygen-containing Ti-48Al-2Cr-2Nb alloy powder by direct reduction of oxides
    Guo, Xue-yi
    Dong, Zhao-wang
    Xia, Yang
    Liu, Pei-dong
    Liu, Han-ning
    Tian, Qing-hua
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2022, 32 (04) : 1351 - 1361
  • [2] Effect of Copper on the Oxidation Behavior of Ti–48Al–2Cr–2Nb
    B. Dang
    J. W. Fergus
    W. F. Gale
    T. Zhou
    Oxidation of Metals, 2001, 56 : 15 - 32
  • [3] The use of cast Ti−48Al−2Cr−2Nb in jet engines
    P. Bartolotta
    J. Barrett
    T. Kelly
    R. Smashey
    JOM, 1997, 49 : 48 - 50
  • [4] Ti—48Al—2Cr—2Nb合金的低温锻造性能
    郝红卫
    钛工业进展, 2000, (05) : 35 - 35
  • [5] Friction Welding of Electron Beam Melted γ-TiAl Alloy Ti–48Al–2Cr–2Nb
    G. S. Sankar
    G. M. Karthik
    Ashfaq Mohammad
    Ravi Kumar
    G. D. Janaki Ram
    Transactions of the Indian Institute of Metals, 2019, 72 : 35 - 46
  • [6] Dynamic recrystallization behavior of the Ti–48Al–2Cr–2Nb alloy during isothermal hot deformation
    Xiaofei Chen
    Bin Tang
    Yan Liu
    Xiangyi Xue
    Lei Li
    Hongchao Kou
    Jinshan Li
    Progress in Natural Science:Materials International, 2019, 29 (05) : 587 - 594
  • [7] Simulation of Cooling Rate Effects on Ti–48Al–2Cr–2Nb Crack Formation in Direct Laser Deposition
    Lei Yan
    Wei Li
    Xueyang Chen
    Yunlu Zhang
    Joe Newkirk
    Frank Liou
    David Dietrich
    JOM, 2017, 69 : 586 - 591
  • [8] Understanding Crack Formation Mechanisms of Ti–48Al–2Cr–2Nb Single Tracks During Laser Powder Bed Fusion
    Seulbi Lee
    Jaewoong Kim
    Jungho Choe
    Seong-Woong Kim
    Jae-Keun Hong
    Yoon Suk Choi
    Metals and Materials International, 2021, 27 : 78 - 91
  • [9] In vitro evaluation of human osteoblast adhesion to a thermally oxidized γ-TiAl intermetallic alloy of composition Ti–48Al–2Cr–2Nb (at.%)
    Samir A. Bello
    Idaris de Jesús-Maldonado
    Esteban Rosim-Fachini
    Paul A. Sundaram
    Nanette Diffoot-Carlo
    Journal of Materials Science: Materials in Medicine, 2010, 21 : 1739 - 1750
  • [10] Bone tissue reaction to Ti–48Al–2Cr–2Nb (at.%) in a rodent model: a preliminary SEM study
    Diego F. Castañeda-Muñoz
    Paul Antony Sundaram
    Norman Ramírez
    Journal of Materials Science: Materials in Medicine, 2007, 18 : 1433 - 1438