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A state space augmented generalised RKPM for three-dimensional analysis of thick and laminated composite plates

机译:状态空间增强广义RKPM用于厚板和叠层复合板的三维分析

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In this paper, a hybrid numerical method which combines the states space approach with the generalised Reproducing Kernel Particle Method (RKPM) is proposed for the three-dimensional analysis of thick and laminated composite plates. Employing the state space approach in the thickness direction, the governing partial differential equation is transformed into a state equation. The meshless RKPM is utilised to present the in-plane distribution of the displacement and stress components while their variation in the transverse direction of the plate and lamina is captured by adopting the state space method. This results in the formation of an algebraic system of equations where the number of unknowns is independent of the number of material layers of the laminate. Moreover, the solution provides a continuous transverse stress and displacement field which is not generally achievable using conventional numerical methods. Because the method is based on a mixed variational principle, and a meshless method is incorporated as the numerical tool, enforcement of the essential boundary conditions requires special treatment and a detailed description is given of the mixed method developed for the enforcement of the essential boundary conditions. A series of numerical examples is performed to illustrate the application of the proposed method and the results obtained are compared with known analytical and numerical solutions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种混合数值方法,该方法将状态空间方法与广义再现核粒子方法(RKPM)结合起来,用于厚板和叠层复合板的三维分析。利用沿厚度方向的状态空间方法,将控制的偏微分方程转换为状态方程。利用状态空间法,利用无网格RKPM表现出位移和应力分量的面内分布,同时记录了它们在板和薄板横向上的变化。这导致方程式的代数系统的形成,其中未知数的数量与层压材料的材料层的数量无关。此外,该解决方案提供了连续的横向应力和位移场,这是使用常规数值方法通常无法实现的。由于该方法基于混合变分原理,并且无网格方法被用作数值工具,因此对基本边界条件的实施需要特殊处理,并且针对为实施基本边界条件而开发的混合方法进行了详细说明。 。进行了一系列数值算例以说明所提出方法的应用,并将获得的结果与已知的解析和数值解进行了比较。 (C)2015 Elsevier Ltd.保留所有权利。

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