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首页> 外文期刊>Acta Mechanica >Hamiltonian partial mixed finite element-state space symplectic semi-analytical approach for the piezoelectric smart composites and FGM analysis
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Hamiltonian partial mixed finite element-state space symplectic semi-analytical approach for the piezoelectric smart composites and FGM analysis

机译:压电智能复合材料的哈密顿偏混合有限元-状态空间辛半解析方法及FGM分析

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摘要

Apartialmixed finite element (FE)-state space method (SSM) semi-analytical approach is presented for the static analysis of piezoelectric smart laminate composite and functionally graded material (FGM) plates. Hence, using the Hamiltonian formalism, the three-dimensional piezoelectricity equations are first worked so that a partial mixed variational formulation, which retains the translational displacements, electric potential, transverse stresses, and transverse electric displacement as primary variables, is obtained; this allows, in particular, straightforward fulfillment of the electromechanical continuity constraints at the laminate interfaces. After an in-plane FE discretization only, the problem is first reduced, for a single layer, to a Hamiltonian eigenvalue problem that is solved using the symplectic approach; then, the multilayer solution is reached via the SSM propagator matrix. The proposed methodology is finally applied to the static analysis of piezoelectric- cross-ply hybrid laminated composite and FGM plates. In a comparison with open literature, available tabulated results show good agreements, thus validating the proposed approach.
机译:提出了一种混合混合有限元(FE)-状态空间法(SSM)的半解析方法,用于压电智能层压板复合材料和功能梯度材料(FGM)板的静态分析。因此,利用汉密尔顿形式论,首先对三维压电方程进行了求解,从而得到了部分混合变分公式,该公式保留了平移位移,电势,横向应力和横向电位移作为主要变量。这尤其允许直接实现层压体界面处的机电连续性约束。仅在平面内有限元离散化之后,对于单层,首先将问题简化为使用辛方法求解的哈密顿特征值问题。然后,通过SSM传播矩阵获得多层溶液。所提出的方法最终被应用于压电-交叉-混杂混合层压复合材料和FGM板的静态分析。与开放文献进行比较后,可用列表结果显示出良好的一致性,从而验证了所提出的方法。

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