PROPOSAL OF DUCTILE DAMAGE MODEL BASED ON UNIT CELL ANALYSIS FOR PREDICTION OF DUCTILE CRACK GROWTH RESISTANCE OF CRACKED COMPONENT

被引:0
|
作者
Yamada, Takehisa [1 ]
Ohata, Mitsuru [2 ]
机构
[1] IHI Corp, Yokohama, Kanagawa, Japan
[2] Osaka Univ, Suita, Osaka, Japan
关键词
Ductile fracture; Void growth; Unit cell; Damage model; Crack initiation; Crack growth; R-curve; FRACTURE;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The aim of this study is to propose the damage model on the basis of the mechanism for ductile fracture related to void growth and applicable to ductile fracture assessment for steels. In order to determine damage evolution law, void growth behavior in the material was investigated by elasto-plastic finite element analyses using unit cell model with an initial void. From the results of the unit cell analyses, it was evident that a void in unit cell grew nonlinearly with increasing applied macroscopic strain. Moreover, the relationships between normalized void volume fraction and normalized strain by each critical value corresponding to crack initiation were independent of stress-strain relationship of material and stress triaxiality state. Based on this characteristic associated with void growth, damage evolution law representing nonlinear damage accumulation was derived. Then, using the damage evolution law, ductile damage model reflecting void growth behavior and ductility of material was proposed. For validation and application of the proposed damage model, ductile crack growth tests using bend specimens with a machined notch or a fatigue pre-crack were conducted for low carbon steel. The proposed damage model was implemented in finite element analyses and ductile crack growth simulations were performed for each bending test. Then, it was shown that the proposed model could accurately predict ductile crack growth resistance from machined notch root and fatigue precrack tip (R-curves) and the validity and applicability of proposed damage model to cracked components could be confirmed.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Ductile fracture prediction of additively manufactured Ti-6Al-4 V alloy based on void growth and coalescence of a unit-cell model
    Gao, Baisen
    Huang, Wei
    Wang, Shengnan
    Liu, Zhigang
    Chen, Xianmin
    Su, Shaopu
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2024, 131
  • [42] Ductile fracture prediction of HPDC aluminum alloy based on a shear-modified GTN damage model
    Zhang, Yongfa
    Zheng, Jiang
    Shen, Fuhui
    Li, Dongsong
    Muenstermann, Sebastian
    Han, Weijian
    Huang, Shiyao
    Li, Tianjiao
    ENGINEERING FRACTURE MECHANICS, 2023, 291
  • [43] AN ASSESSMENT OF VARIOUS CRACK TIP DISPLACEMENT BASED ELASTIC-PLASTIC FRACTURE PARAMETERS TO CHARACTERIZE DUCTILE CRACK-GROWTH RESISTANCE
    GIBSON, GP
    DRUCE, SG
    INTERNATIONAL JOURNAL OF FRACTURE, 1987, 35 (02) : 139 - 151
  • [44] Simulation model to correlate micro-structural characteristics of two-phase steel with ductile crack growth resistance
    Shoji, Hiroto
    Ohata, Mitsuru
    Minami, Fumiyoshi
    20TH EUROPEAN CONFERENCE ON FRACTURE, 2014, 3 : 1573 - 1578
  • [45] An elastoplastic-damage model based on nonlocal peridynamic theory for ductile damage analysis under cyclic loading
    Raiesi, Armin
    Kharazi, Mahsa
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2025,
  • [46] Ductile failure analysis of high strength steel in hot forming based on micromechanical damage model
    Ying, Liang
    Liu, Wenquan
    Wang, Dantong
    Hu, Ping
    NUMIFORM 2016: THE 12TH INTERNATIONAL CONFERENCE ON NUMERICAL METHODS IN INDUSTRIAL FORMING PROCESSES, 2016, 80
  • [47] Failure prediction on steel sheet under different loading paths based on fully coupled ductile damage model
    Yue, Z.
    Cao, K.
    Badreddine, H.
    Saanouni, K.
    Gao, J.
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2019, 153 : 1 - 9
  • [48] Ductile fracture prediction in aluminium alloy 5A06 sheet forming based on GTN damage model
    Teng, Bugang
    Wang, Weinian
    Xu, Yongchao
    ENGINEERING FRACTURE MECHANICS, 2017, 186 : 242 - 254
  • [49] Prediction of crack growth resistance for ductile fracture of neutron-irradiated reactor pressure-vessel steels. Part 1
    Margolin, B.Z.
    Kostylev, V.I.
    Problemy Prochnosti, 2001, (04): : 25 - 34
  • [50] Prediction of crack growth resistance for ductile fracture for neutron-irradiated reactor pressure-vessel steels. Part 2
    Margolin, B.Z.
    Kostylev, V.I.
    Problemy Prochnosti, 2001, (05): : 5 - 18