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High-order effects of thermal lagging in deformable conductors

机译:可变形导体中热滞后的高阶效应

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The purpose of the present paper is to investigate about the well-posedness question for a thermoelastic model describing the intrinsic coupling between the high-order lagging behavior and the ultrafast deformation. The main motivation behind this study is that the interaction among multiple energy carriers progressively gains significance as the observation scales reduce and has, as a direct consequence, the involvement of high-order terms in the dual-phase-lag constitutive equation for the heat flux. Moreover, the ultrafast deformation can occur in times comparable to the characteristic times in phonon-electron interactions that are due to hot-electron blast and thermal expansion of the lattices. Considering an inhomogeneous and anisotropic linear thermoelastic medium, we are able to prove the uniqueness and continuous dependence results through the use of appropriate integral operators entering into the constitutive equations and Lagrange identities and the time weighted function method, provided very mild assumptions are supposed upon the thermoelastic characteristics. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文的目的是研究关于热弹性模型的适定性问题,该模型描述了高阶滞后行为与超快速变形之间的固有耦合。这项研究的主要动机是,随着观测尺度的减小,多个能量载体之间的相互作用逐渐变得重要,并且直接的结果是,高阶项参与了热通量的双相滞后本构方程。 。此外,由于热电子爆炸和晶格的热膨胀,超快形变的发生时间可与声子-电子相互作用的特征时间相比。考虑到非均质各向异性的线性热弹性介质,我们可以通过使用适当的积分算子进入本构方程和Lagrange恒等式以及时间加权函数方法来证明唯一性和连续依赖性结果,但前提是要假设非常温和的假设。热弹性特征。 (C)2018 Elsevier Ltd.保留所有权利。

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