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Advanced models for smart multilayered plates based on Reissner Mixed Variational Theorem

机译:基于Reissner混合变分定理的智能多层板的高级模型

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摘要

In the present work, families of equivalent singe layer and layer-wise models for the static and free vibrations analysis of magneto-electro-elastic multilayered plates are developed. The models are defined in the framework of a unified formulation, which offers a systematic approach for generating refined plate theories through suitable expansions of the through-the-thickness components of the relevant fields, considering the expansion order as a free parameter. The key features of the developed formulation are: a) the condensation of the electric and magnetic description into the mechanical representation, based on the quasi-static electric-magnetic approximation, which allows to reduce the computation of the analysis for both layer-wise and equivalent single layer models; b) the employment of the Reissner Mixed Variational Theorem, in which the displacements and transverse stress components are used as primary variables, thus allowing the explicit fulfilment of the transverse stress interface equilibrium. The proposed methodology is assessed by generating different layer-wise and equivalent single layer models for the analysis of thick magneto-electro-elastic plates and comparing their solution against available three-dimensional analytic results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在当前的工作中,开发了等效的单层和多层模型,用于电磁电弹性多层板的静态和自由振动分析。这些模型是在统一公式化的框架内定义的,该公式化提供了一种系统的方法,可以通过适当扩展相关领域的厚度范围组件(将扩展顺序作为自由参数)来生成精炼的板理论。所开发公式的主要特征是:a)基于准静态电磁近似,将电磁描述浓缩为机械表示,这可以减少层和层的分析计算等效的单层模型; b)使用Reissner混合变分定理,其中位移和横向应力分量用作主要变量,因此可以明确实现横向应力界面平衡。通过生成不同的分层模型和等效的单层模型来分析厚的磁电弹性板,并将它们的解决方案与可用的三维分析结果进行比较,来评估所提出的方法。 (C)2017 Elsevier Ltd.保留所有权利。

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