Constitutive model for time-dependent ratchetting of ss304 stainless steel: Simulation and its finite element analysis

被引:0
|
作者
Konstytutywny model zależnego od czasu zjawiska ratchetingu dla stali SS304-symulacja i analiza metodą elementów skończonych
机构
[1] Jiang, Xiangjun
[2] Zhu, Yongsheng
[3] Hong, Jun
[4] Zhang, Youyun
[5] Kan, Qianhua
来源
Jiang, X. (jxj97011311@yahoo.com.cn) | 1600年 / Polish Society of Theoretical and Allied Mechanics卷 / 51期
关键词
Hardening;
D O I
暂无
中图分类号
学科分类号
摘要
Time-dependent ratchetting behaviour of SS304 stainless steel was experimentally conducted at room temperature and 973K. The material shows distinct time-dependent deformation. However, under cyclic stressing with a certain peak/valley stress hold and at 973 K, more significant time-dependent inelastic behaviour was observed. Based on the Abdel-Karim-Ohno nonlinear kinematic hardening rule with the static recovery term, a time-dependent hardening rule incorporating an internal variable in the dynamic recovery term of the back stress is proposed to reasonably describe the evolution behaviour of time-dependent ratchetting with a certain peak/valley stress hold and at high temperature. Simultaneously, the proposed model is implemented into the ANSYS finite element package by User Programmable Features (UPFs). It is shown that the customized ANSYS model exhibits better performance than the reference model, especially under cyclic stressing with the certain peak/valley stress hold and at high temperature.
引用
收藏
相关论文
共 50 条
  • [31] Sensitivity analysis of a finite element model for the simulation of stainless steel tube extrusion
    Hansson, S.
    Jansson, T.
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2010, 210 (10) : 1386 - 1396
  • [32] Prediction of thermal and residual stress distributions in SS304 materials for nuclear application using finite element analysis
    Vemanaboina, Harinadh
    Akella, Suresh
    Buddu, Ramesh Kumar
    Yelamasetti, Balram
    Matam, Mohan Babu
    Salem, Karrar Hazim
    Saxena, Kuldeep K.
    Prakash, Chander
    Buddhi, Dharam
    INTERNATIONAL JOURNAL OF INTERACTIVE DESIGN AND MANUFACTURING - IJIDEM, 2024, 18 (09): : 6423 - 6430
  • [33] Finite element simulation of mesoscale inhomogeneous deformation in 304 stainless steel foil tensile
    Fan, Wanwan
    Ren, Zhongkai
    Hou, Jie
    Wang, Tao
    MATERIALS RESEARCH EXPRESS, 2019, 6 (09):
  • [34] Fracture Criterion Calibration and Finite Element Simulation in SUS304 Stainless Steel
    Xing, Menglong
    Liu, Yangchao
    Lu, Jianwei
    Huang, Xiaomin
    Wang, Xinge
    Xue, Jianqi
    Zhang, Fuming
    Du, Fengshan
    MATERIALS, 2024, 17 (23)
  • [35] Comparative study of finite element analysis in tube hydroforming of stainless steel 304
    Thanakijkasem, P.
    Pattarangkun, A.
    Mahabunphachai, S.
    Uthaisangsuk, V.
    Chutima, S.
    INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 2015, 16 (04) : 611 - 617
  • [36] Comparative study of finite element analysis in tube hydroforming of stainless steel 304
    P. Thanakijkasem
    A. Pattarangkun
    S. Mahabunphachai
    V. Uthaisangsuk
    S. Chutima
    International Journal of Automotive Technology, 2015, 16 : 611 - 617
  • [37] CORRELATION OF SUBSTRUCTURE WITH TIME-DEPENDENT FATIGUE PROPERTIES OF AISI 304 STAINLESS STEEL.
    ERMI, A.M.
    MOTEFF, JOHN
    1982, 13 (N 9): : 1577 - 1588
  • [38] Time-dependent crack growth in stainless steel 304 in the plasticity-dominant field
    Han, C
    Kim, KS
    ENGINEERING FRACTURE MECHANICS, 2001, 68 (01) : 39 - 52
  • [39] FINITE-ELEMENT ANALYSIS OF TIME-DEPENDENT PHENOMENA
    FRIED, I
    AIAA JOURNAL, 1969, 7 (06) : 1170 - &
  • [40] Finite element simulation and regression modeling of machining attributes on turning AISI 304 stainless steel
    Mathivanan, A.
    Sudeshkumar, M. P.
    Ramadoss, R.
    Ezilarasan, Chakaravarthy
    Raju, Ganesamoorthy
    Jayaseelan, V.
    MANUFACTURING REVIEW, 2021, 8