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Geometrically nonlinear vibration analysis of multiferroic composite plates and shells

机译:多铁复合板壳的几何非线性振动分析

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In this article, a layerwise shear deformation theory is incorporated for geometrically nonlinear vibration (GNV) analysis of multiferroic composite plates and doubly curved shells. The coupled constitutive equations involving ferroelastic, ferroelectric and ferromagnetic properties of multiferroic composite materials along with the total potential energy principle are utilized to derive the finite element formulation for the multiferroic or magneto-electro-elastic (MEE) plates/shells. The electric and the magnetic potentials are assumed to vary linearly in the transverse direction. The electric and magnetic potential distribution in the plate/shell is computed by using the Maxwell's electromagnetic relations. The significance of geometric nonlinearity has been considered using the von Karman nonlinear strain-displacement relations. Importance of curvature aspect ratio, curvature ratio and the thickness aspect ratio on the nonlinear frequency ratios of the multiferroic/MEE doubly curved shells has been investigated. The backbone curves for multiferroic plates and shells have been studied by considering various aspect ratios. Impact of layer stacking sequence, boundary conditions and coupled fields on the central deflection and nonlinear frequency ratio of the multiferroic plates and shells have been investigated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文将分层剪切变形理论用于多铁性复合板和双曲壳的几何非线性振动(GNV)分析。利用包含多铁复合材料的铁弹性,铁电和铁磁特性的耦合本构方程以及总势能原理,得出了多铁或磁电弹性(MEE)板/壳的有限元公式。假定电势和磁势在横向方向上线性变化。板/壳中的电势和磁势分布是通过使用麦克斯韦的电磁关系来计算的。使用von Karman非线性应变-位移关系已经考虑了几何非线性的重要性。研究了曲率长宽比,曲率长宽比和厚度长宽比对多铁性/ MEE双曲壳非线性频率比的重要性。通过考虑各种纵横比,研究了多铁性板和壳的主干曲线。研究了层堆叠顺序,边界条件和耦合场对多铁性板和壳的中心挠度和非线性频率比的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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