Microstructure evolution and mechanical properties of linear friction welded Ti2AlNb alloy

被引:59
|
作者
Chen, X. [1 ]
Xie, F. Q. [1 ]
Ma, T. J. [2 ]
Li, W. Y. [2 ]
Wu, X. Q. [1 ]
机构
[1] Northwestern Polytech Univ, Sch Aeronaut, Xian 710072, Peoples R China
[2] Northwestern Polytech Univ, Sch Mat Sci & Engn, Shaanxi Key Lab Frict Welding Technol, State Key Lab Solidificat Proc, Xian 710072, Peoples R China
关键词
Linear friction welding; Ti2AlNb alloy; Microstructure; Mechanical property; BCC ORTHORHOMBIC ALLOYS; INTERMETALLIC ALLOYS; TITANIUM ALUMINIDES; TENSILE BEHAVIOR; DEFORMATION; NICKEL; PHASE; JOINT; TI-6AL-4V; EXTRUSION;
D O I
10.1016/j.jallcom.2015.05.198
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A Ti2AlNb-based alloy was welded by linear friction welding (LFW). The microstructure and mechanical properties of the LFWed joint were investigated. The results indicate that a defect-free joint can be obtained using LFW. The weld zone of the welded joint is composed of B2 phase and a few residual O and alpha(2) phases, and it features primarily low angle grain boundaries. In thermo-mechanically affected zone, most O phase has gradually turned into B2 phase and the alpha(2) phase has changed into a small spherical microstructure. With increasing the distance from the weld zone to the base metal, more coarse and needle-shaped O phase could be found while alpha(2) phase almost remain unchanged. The microhardness presents a total decrease by about 80HV from the base metal to the weld interface. The average tensile strength of the joint at room temperature is 1136 MPa, which is basically comparable to that of the base metal. And the tensile elongation of the joint achieves 76% of the base metal. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:490 / 496
页数:7
相关论文
共 50 条
  • [21] Effect of Mo Addition on Microstructures and Mechanical Properties of Ti2AlNb Alloy
    Chen, Yuyong
    Du, Zhaoxin
    Kong, Fantao
    Xiao, Shulong
    Zhang, Zhenxing
    ADVANCED DESIGN TECHNOLOGY, PTS 1-3, 2011, 308-310 : 142 - 145
  • [22] Effect of heat treatment on microstructure and hardness of Ti2AlNb linear friction welding joint
    He J.
    Zhang T.
    Li J.
    Hanjie Xuebao/Transactions of the China Welding Institution, 2019, 40 (04): : 119 - 124
  • [23] Effect of welding temperature on microstructure and mechanical properties of TiAl/Ti2AlNb spark plasma diffusion welded joint
    Mingqian Ma
    Chunhuan Chen
    Lu Chai
    Yanlong Lv
    Jinbao Hou
    Boxian Zhang
    Welding in the World, 2022, 66 : 985 - 994
  • [24] Mechanical Properties of the Ti2AlNb Intermetallic: A Review
    Goyal, Kushagra
    Sardana, Neha
    TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS, 2021, 74 (08) : 1839 - 1853
  • [25] Effect of Heat Treatment on Microstructure and Mechanical Properties of Near-β Forged Ti2AlNb Based Alloy
    He Yongsheng
    Hu Rui
    Luo Wenzhong
    He Tao
    Lai Yunjin
    Du Yujun
    Liu Xianghong
    Yang Jieren
    RARE METAL MATERIALS AND ENGINEERING, 2018, 47 (11) : 3460 - 3467
  • [26] Effect of Heat Treatment on Microstructure and Mechanical Properties of Near-β Forged Ti2AlNb Based Alloy
    热处理对近β锻造的多元Ti2AlNb基合金组织和性能的影响
    He, Yongsheng (heysh1210@126.com), 2018, Science Press (47):
  • [27] Effect of welding temperature on microstructure and mechanical properties of TiAl/Ti2AlNb spark plasma diffusion welded joint
    Ma, Mingqian
    Chen, Chunhuan
    Chai, Lu
    Lv, Yanlong
    Hou, Jinbao
    Zhang, Boxian
    WELDING IN THE WORLD, 2022, 66 (05) : 985 - 994
  • [28] Mechanical Properties of the Ti2AlNb Intermetallic: A Review
    Kushagra Goyal
    Neha Sardana
    Transactions of the Indian Institute of Metals, 2021, 74 : 1839 - 1853
  • [29] Elemental Composition, Phase Diagram, Microstructure, Fabrication Processes, and Mechanical Properties of Ti2AlNb Alloy: A Review
    Fu, Yanqi
    Su, Zimu
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2024, 33 (23) : 12819 - 12846
  • [30] Microstructure and Properties of the Near-β Isothermally Forged Ti2AlNb Based Alloy
    Zhang Jianwei
    Liang Xiaobo
    Cheng Yunjun
    Zeng Weidong
    Xue Qiang
    RARE METAL MATERIALS AND ENGINEERING, 2014, 43 (05) : 1157 - 1160