Combined finite element and phase field method for simulation of austenite grain growth in the heat-affected zone of a martensitic steel weld

被引:4
|
作者
Shi, L. [1 ]
Alexandratos, S. A. [1 ]
O'Dowd, N. P. [1 ]
机构
[1] Univ Limerick, Bernal Inst, Sch Engn, Limerick V94 T9PX, Ireland
基金
爱尔兰科学基金会;
关键词
Phase field method; finite element method; heat-affected zone; austenite grain growth; P91 tempered martensitic steel; welding thermal process; MONTE-CARLO-SIMULATION; NUMERICAL-SIMULATION; MECHANICAL RESPONSE; TEMPERATURE; SOLIDIFICATION; EVOLUTION; MODEL; SIZE;
D O I
10.1177/1464420717750999
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Engineering components operating at high temperature often fail due to the initiation and growth of cracks in the heat-affected zone adjacent to a weld. Understanding the effects of microstructural evolution in the heat-affected zone is important in order to predict and control the final properties of welded joints. This study presents a combined finite element method and phase field method for simulation of austenite grain growth in the heat-affected zone of a tempered martensite (P91) steel weld. The finite element method is used to determine the thermal history of the heat-affected zone during gas tungsten arc welding of a P91 steel plate. Then, the calculated thermal history is included in a phase field model to simulate grain growth at various positions in the heat-affected zone. The predicted mean grain size and grain distribution match well with experimental data for simulated welds from the literature. The work lays the foundation for optimising the process parameters in welding of P91 and other ferritic/martensitic steels in order to control the final heat-affected zone microstructure.
引用
收藏
页码:13 / 27
页数:15
相关论文
共 50 条
  • [41] Intercritical Austenite Formation and Decomposition in the Coarse Grain Heat-Affected Zone of an X80 Line Pipe Steel
    Zhang, Tianbi
    Roy, Sabyasachi
    Patra, Sudipta
    Poole, Warren J.
    Militzer, Matthias
    [J]. METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2022, 53 (09): : 3239 - 3244
  • [42] Direct Observation of Austenite and Pearlite Formation in Thermally Simulated Coarse Grain Heat-Affected Zone of Pearlite Railway Steel
    Khan, Adnan Raza
    Shengfu, Yu
    Zubair, Muhammad
    [J]. JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2021, 30 (01) : 497 - 509
  • [43] Eliminating the soft zone for grade 91 steel weldment via enhancing prior austenite grain size of the intercritical heat-affected zone
    Gu, Zhengman
    Zhong, Ming
    Wang, Cong
    [J]. MATERIALS CHARACTERIZATION, 2024, 216
  • [44] TRANSFORMATION OF AUSTENITE IN THE MELTED REGION OF THE HEAT-AFFECTED ZONE IN 30KHGSNA STEEL
    MALEVSKII, YB
    VASILEV, VG
    SARZHEVSKII, VA
    [J]. AUTOMATIC WELDING USSR, 1982, 35 (05): : 3 - 6
  • [45] Modelling the ferrite-austenite transformation in the heat-affected zone of stainless steel welds
    Vitek, JM
    David, SA
    [J]. MATHEMATICAL MODELLING OF WELD PHENOMENA 4, 1998, : 321 - 331
  • [46] MICROSTRUCTURE AND FRACTURE-TOUGHNESS STUDIES IN WELD HEAT-AFFECTED ZONE OF MARTENSITIC PRECIPITATION-HARDENED STAINLESS-STEEL
    WRIGHT, JM
    JORDAN, MF
    [J]. METALS TECHNOLOGY, 1980, 7 (DEC): : 473 - 482
  • [47] Phase field simulation of austenite grain growth in the HAZ of microalloyed linepipe steel
    Toloui, Morteza
    Militzer, Matthias
    [J]. INTERNATIONAL JOURNAL OF MATERIALS RESEARCH, 2010, 101 (04) : 542 - 548
  • [48] Physical simulation and metallurgical evaluation of heat-affected zone during laser welding of ultrafine grain steel
    Wang, QF
    Shang, CJ
    Fu, RD
    Yang, YN
    Chen, W
    [J]. PRICM 5: THE FIFTH PACIFIC RIM INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS AND PROCESSING, PTS 1-5, 2005, 475-479 : 2717 - 2720
  • [49] Improving the intergranular corrosion resistance of the weld heat-affected zone by grain boundary engineering in 304 austenitic stainless steel
    Institute of Materials, Shanghai University, Shanghai
    200072, China
    不详
    200444, China
    [J]. Jinshu Xuebao, 3 (333-340):
  • [50] (Ti, Nb) (C, N) comples particle coarsening in weld coarse grain heat-affected zone for microalloyed steel
    Zhang, Ying-Qiao
    Zhang, Han-Qian
    Liu, Wei-Ming
    [J]. Cailiao Kexue yu Gongyi/Material Science and Technology, 2008, 16 (SUPPL. 1): : 33 - 37