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A unified formulation to assess multilayered theories for piezoelectric plates

机译:评估压电板多层理论的统一公式

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This paper proposes a unified formulation for the electro-mechanical analysis of multilayered plates embedding piezo-layers. Both equivalent single layer (ESL) and layer-wise (LW) models have been considered. Zig-zag effects have been described by employing the Murakami zig-zag function (MZZF). Linear up to fourth-order expansions are used for displacement variables. Electric potential has been restricted to LW descriptions. Governing equations have been derived in terms of a few 'fundamental nuclei' with only nine terms each. These equations have been presented in a manner which is 'formally' not affected by the assumptions that have been introduced for displacement and electrical variables. Closed-form solutions and related numerical verifications show that the unified formulation could lead to a quasi-three-dimensional description of global and local characteristic of static and dynamic response of pieloelectric plates. The convenience of implementing the MZZF has been underlined. Quite different accuracy has been obtained by different theories with respect to mechanical and electrical loadings respectively. Layer-wise analyses could be required in thick plate geometries. Furthermore, an accurate description of the electro-mechanical coupling demands a layer-wise description of the displacement or at least the separated modeling of the piezoelectric and the structural layers, even though thin plates are considered.
机译:本文为嵌入压电层的多层板的机电分析提出了统一的公式。已经考虑了等效单层(ESL)模型和逐层(LW)模型。通过采用村上之字形功能(MZZF)已经描述了之字形效果。线性高至四阶展开用于位移变量。电位仅限于LW描述。控制方程是根据几个“基本核”推导的,每个“基本核”只有9个。这些方程式以“形式上”不受“关于位移和电变量引入的假设”影响的方式给出。封闭形式的解和相关的数值验证表明,统一的公式可以导致压电板的静态和动态响应的整体和局部特征的准三维描述。强调了实施MZZF的便利性。通过不同的理论分别针对机械和电气负载获得了完全不同的精度。在厚板几何形状中可能需要进行逐层分析。此外,对机电耦合的精确描述需要对位移进行分层描述,或者至少考虑压电板和结构层的分离建模,即使考虑使用薄板。

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