Numerical Modeling of Energy Dissipation during Fatigue Crack Propagation in Metals

被引:0
|
作者
Kostina, A. [1 ]
Izuimova, A. [1 ]
Plekhov, O. [1 ]
机构
[1] Russian Acad Sci, Inst Continuous Media Mech, Ural Branch, Ac Koroleva St 1, Perm 614013, Russia
基金
俄罗斯科学基金会;
关键词
Energy dissipation; plastic work; fatigue; DEFORMATION;
D O I
10.1016/j.prostr.2022.12.054
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
It is well-known that mechanical work spent on inelastic deformation of metal converts into the heat. However, experimental studies have shown that process of plastic deformation is accompanied not only by extensive heat dissipation but also by energy storage. Therefore, precise calculation of the dissipated energy value should take into account the portion of energy which is accumulated in the material. In this work, we applied thermodynamic constitutive theory based on multiple dissipation potentials to obtain constitutive equations for structural parameter responsible for the stored energy and plastic strain causing plastic dissipation. Evolution equation for structural parameter is derived from phenomenological form of free energy function. Combined hardening model is used for plastic strain calculation. Value of the dissipated energy is calculated as difference between plastic work and stored energy. We have applied this model to calculate dependence of dissipated energy per cycle on crack length for two titanium alloys (Ti-5Al-2V and Grade-2). Simulation was carried out in finite-element package Comsol Multiphysics in plane stress formulation. A stationary crack approach was used for energy balance calculation at the crack tip. Results of the simulation were compared with experimental data on heat dissipation obtained by original heat flux sensor. (c) 2022 The Authors. Published by Elsevier B.V.
引用
收藏
页码:425 / 432
页数:8
相关论文
共 50 条
  • [1] A model of energy dissipation at fatigue crack tip in metals
    Plekhov, Oleg
    Vshivkov, Aleksei
    Iziumova, Anastasia
    Venkatraman, Balasubramaniam
    FRATTURA ED INTEGRITA STRUTTURALE, 2019, 13 (48): : 451 - 458
  • [2] Peculiarities of Energy Dissipation at a Fatigue Crack Tip in Metals
    Iziumova, A.
    Vshivkov, A.
    Prokhorov, A.
    Kostina, A.
    Plekhov, O.
    MECHANICS, RESOURCE AND DIAGNOSTICS OF MATERIALS AND STRUCTURES (MRDMS-2016), 2016, 1785
  • [3] The experimental study of energy dissipation during fatigue crack propagation under biaxial loading
    Plekhov, Oleg
    Vshivkov, Aleksei
    Iziumova, Anastasia
    Zakharov, Aleksandr
    Shlyannikov, Valery
    FRATTURA ED INTEGRITA STRUTTURALE, 2019, 13 (48): : 50 - 57
  • [4] Experimental study of heat dissipation at the crack tip during fatigue crack propagation
    Vshivkov, A.
    Iziumova, A.
    Plekhov, O.
    Baer, J.
    FRATTURA ED INTEGRITA STRUTTURALE, 2016, (35): : 57 - 63
  • [5] FAST CRACKING DURING FATIGUE CRACK PROPAGATION IN METALS
    PEARSON, S
    NATURE, 1968, 219 (5150) : 150 - &
  • [6] FATIGUE CRACK PROPAGATION IN METALS
    FROST, NE
    DIXON, JR
    NATURE, 1966, 212 (5070) : 1569 - &
  • [7] FATIGUE CRACK PROPAGATION IN METALS
    MANSFIELD, EH
    NATURE, 1967, 213 (5073) : 277 - +
  • [8] FATIGUE CRACK PROPAGATION IN METALS
    PEARSON, S
    NATURE, 1966, 211 (5053) : 1077 - &
  • [9] An energy approach to predict fatigue crack propagation in metals and alloys
    Yao, Yao
    Fine, Morris E.
    Keer, Leon M.
    INTERNATIONAL JOURNAL OF FRACTURE, 2007, 146 (03) : 149 - 158
  • [10] An energy approach to predict fatigue crack propagation in metals and alloys
    Yao Yao
    Morris E. Fine
    Leon M. Keer
    International Journal of Fracture, 2007, 146 : 149 - 158