On the Microstructural Strengthening and Toughening of Heat-Affected Zone in a Low-Carbon High-Strength Cu-Bearing Steel

被引:0
|
作者
Xiaohui Xi
Jinliang Wang
Liqing Chen
Zhaodong Wang
机构
[1] Northeastern University,State Key Laboratory of Rolling and Automation
关键词
Low-carbon high-strength steel; Heat-affected zone; Cu addition; Toughness; Precipitation strengthening;
D O I
暂无
中图分类号
学科分类号
摘要
In this article, the influence of simulated thermal cycles for the heat-affected zone (HAZ) on the microstructural evolution and mechanical properties in a low-carbon high-strength Cu-bearing steel was investigated by microstructural characterization and mechanical tests. The results showed that the microstructure of the coarse-grained heat-affected zone (CGHAZ) and the fine-grained heat-affected zone (FGHAZ) was mainly comprised of lath martensite, and a mixed microstructure consisting of intercritical ferrite, tempered martensite and retained austenite occurred in the intercritically heat-affected zone (ICHAZ) and the subcritically heat-affected zone (SCHAZ). Also, 8–11% retained austenite and more or less Cu precipitates were observed in the simulated HAZs except for CGHAZ. Charpy impact test indicated that the optimum toughness was obtained in FGHAZ, which was not only associated with grain refinement, but also correlated with deformation-induced transformation of the retained austenite, variant configuration as interleaved type and a relatively weak variant selection. The toughness of ICHAZ and SCHAZ exhibited a slight downtrend due to the presence of Cu precipitates. The CGHAZ has the lowest toughness in the simulated HAZs, which was attributed to grain coarsening and heavy variant selection. In addition, the contribution of Cu precipitates to yield strength in simulated HAZs was estimated based on Russell–Brown model. It demonstrated an inverse variation trend to toughness.
引用
收藏
页码:617 / 627
页数:10
相关论文
共 50 条
  • [31] Mechanisms and modeling of cleavage fracture in simulated heat-affected zone microstructures of a high-strength low alloy steel
    Lambert-Perlade, A
    Gourgues, AF
    Besson, J
    Sturel, T
    Pineau, A
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2004, 35A (3A): : 1039 - 1053
  • [32] Mechanisms and modeling of cleavage fracture in simulated heat-affected zone microstructures of a high-strength low alloy steel
    Lambert-Perlade A.
    Gourgues A.F.
    Besson J.
    Sturel T.
    Pineau A.
    Metallurgical and Materials Transactions A, 2004, 35 (13) : 1039 - 1053
  • [33] Characterization of microstructural strengthening in the heat-affected zone of a blast-resistant naval steel
    Yu, Xinghua
    Caron, Jeremy L.
    Babu, S. S.
    Lippold, John C.
    Isheim, Dieter
    Seidman, David N.
    ACTA MATERIALIA, 2010, 58 (17) : 5596 - 5609
  • [34] Microstructural evolution and hydrogen embrittlement in simulated reheated coarse-grained heat-affected zone of a high-strength naval steel
    Hai, Chao
    Du, Cuiwei
    Li, Xiaogang
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 88 : 1034 - 1047
  • [35] IMPROVEMENT OF WELDABILITY AND EVALUATION CRITERIA FOR HIGH-STRENGTH PIPE STEEL HEAT-AFFECTED ZONE RELIABILITY
    Permyakov, I. L.
    Frantov, I. I.
    Bortsov, A. N.
    Mentyukov, K. Yu.
    METALLURGIST, 2012, 55 (11-12) : 925 - 934
  • [36] Improvement of weldability and evaluation criteria for high-strength pipe steel heat-affected zone reliability
    I. L. Permyakov
    I. I. Frantov
    A. N. Bortsov
    K. Yu. Mentyukov
    Metallurgist, 2012, 55 : 925 - 934
  • [37] Aspects of Changing the Structure and Hardness of Metal of Heat-Affected Zone During Welding of Low-Carbon High-Strength Steels for Pipes with Increased Deformability
    L. A. Efimenko
    O. E. Kapustin
    A. A. Ramus’
    R. O. Ramus’
    Metallurgist, 2022, 66 : 805 - 814
  • [38] Aspects of Changing the Structure and Hardness of Metal of Heat-Affected Zone During Welding of Low-Carbon High-Strength Steels for Pipes with Increased Deformability
    Efimenko, L. A.
    Kapustin, O. E.
    Ramus', A. A.
    Ramus', R. O.
    METALLURGIST, 2022, 66 (7-8) : 805 - 814
  • [39] HEAT-AFFECTED ZONE TOUGHNESS OF LOW-CARBON MICROALLOYED STEELS.
    Thaulow, C.
    Paauw, A.J.
    Guttormsen, K.
    Welding Journal (Miami, Fla), 1987, 66 (09):
  • [40] Aging behavior of a copper-bearing high-strength low-carbon steel
    Shahriari, Babak
    Vafaei, Reza
    Sharifi, Ehsan Mohammad
    Farmanesh, Khosro
    INTERNATIONAL JOURNAL OF MINERALS METALLURGY AND MATERIALS, 2018, 25 (04) : 429 - 438