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Dynamics of piezoelectric structures with geometric nonlinearities: A non-intrusive reduced order modelling strategy

机译:几何非线性压电结构动态:非侵入性降低秩序建模策略

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A reduced-order modelling to predictively simulate the dynamics of piezoelectric structures with geometric nonlinearities is proposed in this paper. A formulation of three-dimensional finite element models with global electric variables per piezoelectric patch, and suitable with any commercial finite element code equipped with geometrically nonlinear and piezoelectric capabilities, is proposed. A modal expansion leads to a reduced model where both nonlinear and electromechanical coupling effects are governed by modal coefficients, identified thanks to a non-intrusive procedure relying on the static application of prescribed displacements. Numerical simulations can be efficiently performed on the reduced modal model, thus defining a convenient procedure to study accurately the nonlinear dynamics of any piezoelectric structure. A particular focus is made on the parametric effect resulting from the combination of geometric nonlinearities and piezoelectricity. Reference results are provided in terms of coefficients of the reduced-order model as well as of dynamic responses, computed for different test cases including realistic structures. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文提出了一种降低的阶阶模型,以预测模拟压电结构的电压结构动态。提出了一种具有每个压电贴片的全局电变量的三维有限元模型,并适用于配备有几何非线性和压电能力的任何商业有限元代码。模态扩展导致缩小模型,其中非线性和机电耦合效应由模数系统受到模态系数的管辖,因此由于依赖于规定位移的静态应用而识别的非侵入性过程。可以在减少的模型模型上有效地执行数值模拟,从而定义方便的过程来精确地研究任何压电结构的非线性动力学。由几何非线性和压电的组合产生的参数效应来进行特定的重点。参考结果以减少阶模型的系数以及动态响应而提供的,用于不同的测试用例,包括现实结构。 (c)2021 elestvier有限公司保留所有权利。

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