Critical hydrogen concentration for crack propagation in a CrMo steel: Targeted experiments for accurate numerical modelling

被引:8
|
作者
Borja Peral, Luis [1 ]
Fernandez-Pariente, Ines [2 ]
Colombo, Chiara [3 ]
机构
[1] Univ Burgos, Higher Polytech Sch, Dept Civil Engn, Struct Integr Res Grp, Ave Cantabria S-N, Burgos 09006, Spain
[2] Univ Oviedo, Campus Gijon,East Bldg, Gijon 33203, Spain
[3] Politecn Milan, Dept Mech Engn, Via La Masa 1, I-20156 Milan, Italy
关键词
Hydrogen embrittlement; Hydrogen diffusion; CrMo steel; Crack tip; Cohesive Zone Modelling; TENSILE PROPERTIES; GASEOUS-HYDROGEN; EMBRITTLEMENT; TRANSPORT; FRACTURE; PLASTICITY; DIFFUSION; BEHAVIOR; GROWTH; GRADES;
D O I
10.1016/j.engfracmech.2022.108764
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
This study focuses on CrMo steel experiencing decohesion mechanism in presence of hydrogen. A tailored experimental characterization is performed with tensile, permeation and toughness experimental tests to obtain all the inputs for the numerical simulations of a propagating crack in a C(T) specimen. The used finite element framework is based on the cohesive zone modelling. The aim of the numerical model and of the work is the identification of a critical hydrogen concen-tration inducing crack tip propagation. Given the tailored inputs, these models accurately esti -mate the hydrogen concentrations in the lattice and the reversible traps, and follow their redistribution along the ligament during the time. From the obtained results, we could quantify that a decrease of two orders of magnitude in the test speed reduces the critical hydrogen con-centration at the crack tip, necessary to activate the failure of the first cohesive element and therefore the propagation, from 0.994 to 0.784 wppm, that is-21%.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] Fatigue crack propagation experiment and numerical simulation of 42CrMo steel
    Dong, Jianwei
    Pei, Weichi
    Ji, Hongchao
    Long, Haiyang
    Fu, Xiaobin
    Duan, Hailong
    Ji, Hongchao (jihongchao@ncst.edu.cn); Ji, Hongchao (jihongchao@ncst.edu.cn), 1600, SAGE Publications Ltd (234): : 2852 - 2862
  • [2] Fatigue crack propagation experiment and numerical simulation of 42CrMo steel
    Dong, Jianwei
    Pei, Weichi
    Ji, Hongchao
    Long, Haiyang
    Fu, Xiaobin
    Duan, Hailong
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2020, 234 (14) : 2852 - 2862
  • [3] A METHOD TO EVALUATE THE CRITICAL HYDROGEN CONCENTRATION FOR HYDROGEN-INDUCED CRACK-PROPAGATION
    MAIER, HJ
    POPP, W
    KAESCHE, H
    ACTA METALLURGICA, 1987, 35 (04): : 875 - 880
  • [4] Multi-scale fatigue crack propagation in 304 stainless steel: experiments and modelling
    Ye, S.
    Zhang, X. -C.
    Gong, J. -G.
    Tu, S. -T.
    Zhang, C. -C.
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2017, 40 (11) : 1928 - 1941
  • [5] Fatigue crack initiation and growth in a CrMo steel under hydrogen pressure
    Briottet, L.
    Moro, I.
    Escot, M.
    Furtado, J.
    Bortot, P.
    Tamponi, G. M.
    Solin, J.
    Odemer, G.
    Blanc, C.
    Andrieu, E.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2015, 40 (47) : 17021 - 17030
  • [6] NUMERICAL EVALUATION BY FEM OF CRACK-PROPAGATION EXPERIMENTS
    BRICKSTAD, B
    NILSSON, F
    INTERNATIONAL JOURNAL OF FRACTURE, 1980, 16 (01) : 71 - 84
  • [7] Effects of Hydrogen Concentration, Specimen Thickness and Loading Frequency on the Hydrogen Enhanced Crack Propagation of Low Alloy Steel
    Kondo, Y.
    Mizobe, K.
    Kubota, M.
    MATERIALS STRUCTURE & MICROMECHANICS OF FRACTURE, 2011, 465 : 519 - 522
  • [8] Modelling crack propagation in structures: Comparison of numerical methods
    Yang, Xin-She
    Lees, Janet M.
    Morley, Chris T.
    COMMUNICATIONS IN NUMERICAL METHODS IN ENGINEERING, 2008, 24 (11): : 1373 - 1392
  • [9] Structural steel crack propagation experimental and numerical analysis
    Comlekci, Tugrul
    Perez, Jonatan Marin
    Milne, Lewis
    Gorash, Yevgen
    Mackenzie, Donald
    23 EUROPEAN CONFERENCE ON FRACTURE, ECF23, 2022, 42 : 694 - 701
  • [10] Numerical simulation of crack propagation of high strength steel
    He, Minghua
    Xin, Kegui
    Cui, Dingyu
    ARCHITECTURE AND CIVIL ENGINEERING, 2010, 2 : 72 - 75