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Postbuckling analysis of laminated composite plates subjected to the combination of in-plane shear, compression and lateral loading

机译:面内剪切,压缩和侧向载荷共同作用下的层压复合材料板的屈曲后分析

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This study deals with postbuckling behavior of laminated composite plates under the combination of in-plane shear, compression and lateral loading using an Element-based Lagrangian formulation. Natural co-ordinate-based strains, stresses and constitutive equations are used in the present shell element. The Element-based Lagrangian formulation described in this paper, in comparison with the traditional approaches, is more attractive not only because it uses only single mapping but also it converges faster. In addition, the finite element (FE) formulation based on the assumed natural strain method for composite structures shows excellence from the standpoints of computational efficiency as well as its ability to avoid both membrane and shear locking behavior. The numerical results obtained are in good agreement with those reported by other investigators. In particular, new results reported in this paper show the influence of various types of loading, materials and number of layers on postbuckling behavior. (c) 2005 Elsevier Ltd. All rights reserved.
机译:这项研究使用了基于元素的拉格朗日公式,研究了在平面内剪切,压缩和侧向载荷共同作用下层压复合板的屈曲后行为。在本壳单元中使用基于自然坐标的应变,应力和本构方程。与传统方法相比,本文描述的基于元素的拉格朗日公式更具吸引力,不仅因为它仅使用单个映射,而且收敛速度更快。此外,基于假定的自然应变方法的复合材料结构有限元(FE)公式,从计算效率以及避免膜和剪切锁定行为的能力的角度出发,显示出卓越的性能。获得的数值结果与其他研究者报告的结果吻合良好。特别是,本文报道的新结果显示了各种类型的载荷,材料和层数对屈曲后行为的影响。 (c)2005 Elsevier Ltd.保留所有权利。

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