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首页> 外文期刊>International Journal of Solids and Structures >Some links between recent gradient thermo-elasto-plasticity theories and the thermomechanics of generalized continua
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Some links between recent gradient thermo-elasto-plasticity theories and the thermomechanics of generalized continua

机译:最近的梯度热弹塑性理论与广义连续体的热力学之间的某些联系

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This work elaborates upon two robust models of gradient elasticity and gradient plasticity, and one gradient model of heat transfer, as originally advocated by the second author in the 1980's. The objective is, after recalling the links between these models and existing generalized continuum theories as developed in the 1960's and subsequently, to apply the same methodology to the case of diffusion with a view to establishing generalized transport equations. Aifantis double diffusivity and conductivity theory that provides generalized mass or heat transfer equations is compared to micromorphic-type hyper-temperature and micro-entropy proposals. The double temperature and the micromorphic thermal models are shown to lead to equations more general that Cattaneo's. The sign of the coefficient of the second time-derivative of temperature is found to differ according to both approaches. The double temperature model contains a fourth space derivative term not present in the micromorphic models. Such generalized equations can be useful, for example, in the interpretation of recent femtosecond laser experiments on metals.
机译:这项工作阐述了两个稳健的梯度弹性和梯度可塑性模型,以及一个热传递梯度模型,这是第二作者在1980年代最初提出的。目的是在回顾这些模型与1960年代发展的现有广义连续理论之间的联系之后,随后将相同的方法应用于扩散情况,以建立广义的运输方程。将提供广义质量或热传递方程的Aifantis双扩散率和电导率理论与微晶型高温和微熵提案进行了比较。双重温度和微晶热模型显示出比Cattaneo方程更通用的方程。发现根据两种方法,温度的第二时间导数的系数的符号不同。双温度模型包含微形态模型中不存在的第四空间导数项。这样的广义方程式在例如最近对金属的飞秒激光实验的解释中可能是有用的。

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