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A hybrid stress approach for laminated composite plates within the First-order Shear Deformation Theory

机译:一阶剪切变形理论中层合复合板的混合应力方法

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This paper presents a hybrid stress approach for the analysis of laminated composite plates. The plate mechanical model is based on the so called First-order Shear Deformation Theory, rationally deduced from the parent three-dimensional theory. Within this framework, a new quadrilateral four-node finite element is developed from a hybrid stress formulation involving, as primary variables, compatible displacements and elementwise equilibrated stress resultants. The element is designed to be simple, stable and locking-free. The displacement interpolation is enhanced by linking the transverse displacement to the nodal rotations and a suitable approximation for stress resultants is selected, ruled by the minimum number of parameters. The transverse stresses through the laminate thickness are reconstructed a posteriori by simply using three-dimensional equilibrium. To improve the results, the stress resultants entering the reconstruction process are first recovered using a superconvergent patch-based procedure called Recovery by Compatibility in Patches, that is properly extended here for laminated plates. This preliminary recovery is very efficient from the computational point of view and generally useful either to accurately evaluate the stress resultants or to estimate the discretization error. Indeed, in the present context, it plays also a key role in effectively predicting the shear stress profiles, since it guarantees the global converaence of the whole reconstruction strategy, that does not need any correction to accommodate equilibrium defects. Actually, this strategy can be adopted together with any plate finite element. Numerical testing demonstrates the excellent performance of both the finite element and the reconstruction strategy. (c) 2007 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于复合材料层合板分析的混合应力方法。板的力学模型基于所谓的一阶剪切变形理论,是从母体三维理论合理推导的。在此框架内,从混合应力公式中开发了一种新的四边形四节点有限元,该公式包含相容位移和单元平衡应力结果作为主要变量。该元件设计为简单,稳定且无锁定。通过将横向位移与节点旋转联系起来,可以提高位移插值,并根据最小数量的参数来选择合适的应力合成近似值。只需使用三维平衡,即可通过层压板的厚度重建横向应力。为了改善结果,进入重建过程的应力结果首先使用基于超收敛补丁的程序(称为“通过补丁中的兼容性恢复”)进行恢复,在此将其适当地扩展为层压板。从计算的角度来看,这种初步的恢复非常有效,并且通常可用于准确评估应力结果或估计离散误差。实际上,在当前情况下,它在有效预测剪切应力分布方面也起着关键作用,因为它保证了整个重建策略的全局收敛性,不需要进行任何校正即可适应平衡缺陷。实际上,该策略可以与任何板有限元一起采用。数值测试表明有限元和重构策略均具有出色的性能。 (c)2007 Elsevier Ltd.保留所有权利。

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