GAS TUNGSTEN ARC WELDABILITY OF HIGH Mn AUSTENITIC STAINLESS STEEL.

被引:0
|
作者
Patterson, R.A.
机构
来源
| 1978年 / 57卷 / 12期
关键词
D O I
暂无
中图分类号
学科分类号
摘要
GTA weldability studies have been performed on a high Mn austenitic stainless steel (HMSS) with alloy aditions of Mo, V and Ti. Titanium improves the weld area/width (average depth/width) of poor welding heats of HMSS. A hypothesis is tested which assumes that a synergistic effect between aluminum and nitrogen is responsible for the poor weldability of some HMSS chemistries. The titanium is assumed to perturb the synergistic effect by interactions with the available nitrogen within the weld fusion zone.
引用
收藏
相关论文
共 50 条
  • [21] Improved Erosion Resistance of Austenitic Stainless Steel in Corrosive Environment with Gas Tungsten Arc Melt Injection
    Aiguo Liu
    Mianhuan Guo
    Yinan Ma
    Hailong Hu
    Journal of Materials Engineering and Performance, 2013, 22 : 1655 - 1659
  • [22] Improved Erosion Resistance of Austenitic Stainless Steel in Corrosive Environment with Gas Tungsten Arc Melt Injection
    Liu, Aiguo
    Guo, Mianhuan
    Ma, Yinan
    Hu, Hailong
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2013, 22 (06) : 1655 - 1659
  • [23] Stress corrosion cracking behaviour of gas tungsten arc welded super austenitic stainless steel joints
    Kumar, M. Vinoth
    Balasubramanian, V.
    Rajakumar, S.
    Albert, Shaju K.
    DEFENCE TECHNOLOGY, 2015, 11 (03): : 282 - 291
  • [24] Stress corrosion cracking behaviour of gas tungsten arc welded super austenitic stainless steel joints
    M.VINOTH KUMAR
    V.BALASUBRAMANIAN
    S.RAJAKUMAR
    SHAJU K.ALBERT
    Defence Technology, 2015, 11 (03) : 282 - 291
  • [25] A critical review on dissimilar welding of ferritic-martensitic steel and austenitic stainless steel using gas tungsten arc welding process: Weldability issues, processing, and performance characteristics of joints
    Sonar, Tushar
    Ivanov, Mikhail
    Trofimov, Evgeny
    Liu, Kun
    Shcherbakov, Igor
    Shaburova, Nataliya
    Samoilovskikh, Pavel
    JOURNAL OF MANUFACTURING PROCESSES, 2025, 133 : 811 - 864
  • [26] EFFECT OF HYDROGEN ON CREEP IN AUSTENITIC STAINLESS STEEL.
    Chu, Wuyang
    Ding, Wei
    Xiao, Jimei
    Jinshu Xuebao/Acta Metallurgica Sinica, 1986, 22 (02):
  • [27] MECHANISM OF HYDROGEN DAMAGE IN AUSTENITIC STAINLESS STEEL.
    Nomura, Shigeo
    Hasegawa, Masayoshi
    Tetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan, 1978, 64 (08): : 1171 - 1178
  • [28] Jumps into the Creep Rate of Austenitic Stainless Steel.
    Da Silveira, Tito Luiz
    Monteiro, Sergio Neves
    Metalurgia ABM, 1979, 35 (261): : 533 - 536
  • [29] DEFORMATION IN TYPE 304 AUSTENITIC STAINLESS STEEL.
    Anon
    1600,
  • [30] HOT CRACKING SUSCEPTIBILITY OF AUSTENITIC STAINLESS STEEL.
    Ogawa, T.
    Tsunetomi, E.
    1600, (61):