A unified generalized thermoelasticity solution for the transient thermal shock problem

被引:0
|
作者
Ying-Ze Wang
Xiao-Bing Zhang
Xin-Nan Song
机构
[1] Jiangsu University,Energy and Power Engineering Department
[2] Nanjing University of Science and Technology,Energy and Power Engineering Department
来源
Acta Mechanica | 2012年 / 223卷
关键词
Boundary Element Method; Generalize Thermoelasticity; Couple Thermoelasticity; Thermoelasticity Theory; Copper Material;
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学科分类号
摘要
A unified generalized thermoelasticity solution for the transient thermal shock problem in the context of three different generalized theories of the coupled thermoelasticity, namely: the extended thermoelasticity, the temperature-rate-dependent thermoelasticity and the thermoelasticity without energy dissipation is proposed in this paper. First, a unified form of the governing equations is presented by introducing the unifier parameters. Second, the unified equations are derived for the thermoelastic problem of the isotropic and homogeneous materials subjected to a transient thermal shock. The Laplace transform and inverse transform are used to solve these equations, and the unified analytical solutions in the transform domain and the short-time approximated solutions in the time domain of displacement, temperature and stresses are obtained. Finally, the numerical results for copper material are displayed in graphical forms to compare the characteristic features of the above three generalized theories for dealing with the transient thermal shock problem.
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页码:735 / 743
页数:8
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