A non-equilibrium thermodynamic model for the crack propagation rate

被引:2
|
作者
Haslach, Henry W., Jr. [1 ]
机构
[1] Univ Maryland, Dept Mech Engn, College Pk, MD 20742 USA
关键词
Nonsteady crack propagation; Non-equilibrium thermodynamics; Crack tip temperature; Viscoplasticity; MAXIMUM DISSIPATION; TEMPERATURE RISE; DYNAMIC FRACTURE; TIP; VELOCITY; GROWTH;
D O I
10.1007/s11043-009-9094-9
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
A non-equilibrium thermodynamics-based evolution model describes the nonsteady, crack propagation rate for both brittle fracture and for viscoplastic behavior at the crack tip. This model for dynamic crack propagation under dynamic or quasi-static loading is developed from an energy functions viewpoint and extends a non-equilibrium thermodynamics construction based on a instantaneous maximum dissipation criterion and a thermodynamic relaxation modulus that permits multi-scale modeling. The evolution equations describing the non-equilibrium fracture process are generated from a generalized energy function whose zero gradient manifold gives the assumed quasi-static crack propagation equations. The class of models produced includes the classical Freund model and a modification that is consistent with the experimental maximum crack velocity. In unstable propagation, the non-equilibrium process is repelled from the quasi-static manifold. If the initial state is stable, then the crack growth process approaches the quasi-static manifold and eventually the crack is arrested. An application of the construction gives the craze growth in PMMA. A simple viscoplastic model for metals predicts the change in temperature at the crack tip as the crack grows.
引用
收藏
页码:91 / 110
页数:20
相关论文
共 50 条
  • [1] A non-equilibrium thermodynamic model for the crack propagation rate
    Henry W. Haslach
    Mechanics of Time-Dependent Materials, 2010, 14 : 91 - 110
  • [2] A non-equilibrium thermodynamic model of industrial development: analogy or homology?
    Baldwin, JS
    Murray, R
    Winder, B
    Ridgway, K
    JOURNAL OF CLEANER PRODUCTION, 2004, 12 (8-10) : 841 - 853
  • [3] Non-equilibrium Thermodynamic Model of a Highly Permeable Forward Osmosis Membrane
    Amamiya, Seiichi
    Ohashi, Hidenori
    Yamaguchi, Takeo
    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2017, 50 (08) : 618 - 631
  • [4] Non-equilibrium Thermodynamic Model for the Estimation of the Soret Coefficient in Dilute Polymer Solutions
    Morteza Eslamian
    M. Ziad Saghir
    International Journal of Thermophysics, 2011, 32 : 652 - 664
  • [5] Non-equilibrium Thermodynamic Model for the Estimation of the Soret Coefficient in Dilute Polymer Solutions
    Eslamian, Morteza
    Saghir, M. Ziad
    INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2011, 32 (03) : 652 - 664
  • [6] Thermodynamic coupling and interfacial non-equilibrium in a finite-diffusion model of microsegregation
    Hareland, Christopher A.
    Voorhees, Peter W.
    CALPHAD-COMPUTER COUPLING OF PHASE DIAGRAMS AND THERMOCHEMISTRY, 2024, 87
  • [7] Non-Equilibrium Thermodynamic Explanation of Domain Occurrences in Ferroics
    Ai, Shu-Tao
    Zhang, Shao-Yin
    Ning, Xue-Feng
    Wang, Yong-Long
    Xu, Chang-Tan
    FERROELECTRICS LETTERS SECTION, 2010, 37 (02) : 30 - 34
  • [8] Non-equilibrium Thermodynamic Theory of Ferroelectric Phase Transitions
    Ai, Shu-Tao
    Bo, Hui-Ping
    Zhang, Shao-Yin
    Cai, Yuan-Zhen
    FERROELECTRICS, 2015, 481 (01) : 166 - 188
  • [9] Non-equilibrium thermodynamic potential and flux fluctuation theorem
    Criado-Sancho, M.
    Casas-Vazquez, J.
    Jou, D.
    PHYSICS LETTERS A, 2009, 373 (37) : 3301 - 3303
  • [10] Non-equilibrium thermodynamic approach to the change in political systems
    Byeon, JH
    SYSTEMS RESEARCH AND BEHAVIORAL SCIENCE, 1999, 16 (03) : 283 - 291