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A generalized theory of elastodynamic homogenization for periodic media

机译:周期介质弹性力学均化的广义理论

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For periodically inhomogeneous media, a generalized theory of elastodynamic homogenization is proposed so that even the long-wavelength and low-frequency asymptotic expansions of the resulting effective (or macroscopic) motion equation can, approximately but simultaneously, capture all the acoustic and some of the optical branches of the microscopic dispersion curve. The key to constructing the generalized theory resides in incorporating new kinematical degrees of freedom in conjunction with rapidly oscillating body forces as microscopic and macroscopic loadings while satisfying an energetical consistency constraint reminiscent of Hill-Mandel lemma. By this constraint, an effective displacement field is naturally defined as the projection of a microscopic one onto the dual to the space of body forces. To illustrate these results, a two-phase string is studied in detail. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于周期性的非均质介质,提出了一种弹性力学均质化的广义理论,这样,即使所得的有效(或宏观)运动方程的长波和低频渐近展开,也可以近似但同时捕获所有的声学和部分光学分支的微观色散曲线。构造广义理论的关键在于将新的运动学自由度与快速振荡的体力结合为微观和宏观载荷,同时满足令人想起Hill-Mandel引理的能量一致性约束。通过这种约束,有效的位移场自然地定义为微观力在体力空间的对偶上的投影。为了说明这些结果,详细研究了两相串。 (C)2016 Elsevier Ltd.保留所有权利。

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