Theoretical approach to influence of nitrogen on solidification cracking susceptibility of austenitic stainless steels: computer simulation of hot cracking by solidification/segregation models

被引:4
|
作者
Ogura T. [1 ]
Ichikawa S. [1 ]
Saida K. [1 ]
机构
[1] Graduate School of Engineering, Osaka University
关键词
Austenitic stainless steel; computer simulation; microstructure; nitrogen; solidification cracking; solidification segregation; Varestraint test; δ-ferrite;
D O I
10.1080/09507116.2017.1346861
中图分类号
学科分类号
摘要
The effect of nitrogen on the solidification cracking susceptibility of austenitic stainless steels (SUS316L and SUS310S) was quantitatively evaluated by transverse-Varestraint test. The amount of nitrogen in Ar shielding gas during GTA melt-run welding was varied in order to vary the nitrogen content in the weld metals. The solidification brittle temperature range of SUS316L was enlarged with an increase in the nitrogen content in the weld metal, while that of SUS310S was very slightly increased with an increase in the nitrogen content. Numerical analysis of solidification segregation during welding revealed that the solid–liquid coexistence temperature range of SUS316L was enlarged with an increase in the nitrogen content in the weld metal, whereas that of SUS310S was almost constant regardless of the nitrogen content. A nitrogen itself essentially had a negligible effect on the solidification cracking susceptibility of fully austenitic stainless steels because a nitrogen neither solidification-segregated in the weld metal nor reduced the solidified temperature during welding. However, the nitrogen increased the solidification cracking susceptibility of austenitic stainless steels with two-phase solidification because the solidification segregation of P and S was promoted by reducing the amount of δ-ferrite in the weld metal. © 2018, © 2018 Informa UK Limited, trading as Taylor & Francis Group.
引用
收藏
页码:436 / 444
页数:8
相关论文
共 50 条
  • [22] Influence of Local Weld Deformation on the Solidification Cracking Susceptibility of a Fully Austenitic Stainless Steel
    Kromm, A.
    Kannengiesser, Th.
    HOT CRACKING PHENOMENA IN WELDS II, 2008, : 127 - 145
  • [23] Solidification cracking in austenitic stainless steel welds
    V. Shankar
    T. P. S. Gill
    S. L. Mannan
    S. Sundaresan
    Sadhana, 2003, 28 : 359 - 382
  • [24] Solidification cracking in austenitic stainless steel welds
    Shankar, V
    Gill, TPS
    Mannan, SL
    Sundaresan, S
    SADHANA-ACADEMY PROCEEDINGS IN ENGINEERING SCIENCES, 2003, 28 (3-4): : 359 - 382
  • [25] SOLIDIFICATION AND HOT-CRACKING IN NITROGEN-STRENGTHENED AUSTENITIC STAINLESS-STEEL WELDS
    RITTER, AM
    SAVAGE, WF
    JOURNAL OF METALS, 1982, 35 (12): : A63 - A63
  • [26] Predicting solidification cracking susceptibility of stainless steels using machine learning
    Feng, S.
    Dong, H. B.
    INTERNATIONAL CONFERENCE ON MODELLING OF CASTING, WELDING AND ADVANCED SOLIDIFICATION PROCESSES (MCWASP XV), 2020, 861
  • [27] Towards a map of solidification cracking risk in laser welding of austenitic stainless steels
    Bermejo, Maria-Asuncion Valiente
    DebRoy, Tarasankar
    Hurtig, Kjell
    Karlsson, Leif
    Svensson, Lars-Erik
    15TH NORDIC LASER MATERIALS PROCESSING CONFERENCE, NOLAMP 15, 2015, 78 : 230 - 239
  • [28] A comprehensive study on solidification (hot) cracking in austenitic stainless steel welds from a microstructural approach
    Ramon, Jasper
    Basu, Ritwik
    Vander Voort, George
    Bolar, Gururaj
    INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING, 2021, 194
  • [29] MICROSTRUCTURAL DEVELOPMENT AND SOLIDIFICATION CRACKING SUSCEPTIBILITY OF AUSTENITIC STAINLESS-STEEL WELDS
    BROOKS, JA
    THOMPSON, AW
    INTERNATIONAL MATERIALS REVIEWS, 1991, 36 (01) : 16 - 44
  • [30] FORMATION OF HOT CRACKS IN AUSTENITIC STAINLESS-STEEL WELDS - SOLIDIFICATION CRACKING
    KUJANPAA, VP
    DAVID, SA
    WHITE, CL
    WELDING JOURNAL, 1986, 65 (08) : S203 - S212