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Free-edge stress evaluation of general laminated composites using a novel multifield variational beam formulation

机译:一种使用新型多粒变分光束配方的一般层叠复合材料的自由边缘应力评估

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摘要

Free-edge interlaminar stresses in general laminated composites are evaluated using a multifield (stress and displacement) finite element (FE) beam sectional formulation based on the Hellinger-Reissner principle considering three-dimensional (3D) material constitutive model. Both 3D stress and warping displacement fields are modeled as the primary variables while the interlaminar stress continuity and free-edge traction-free conditions of the laminates are ensured without introducing any peculiar assumptions. Nodal stresses are therefore computed directly at each constituent lamina using a domainwise approach while preserving the desired continuity (or discontinuity) at the interfaces through a global equilibrium constraint. The predicted free-edge stresses are validated for laminated composites with various layups subjected to extension and bending loads. Good correlation is shown against other state-of-the-art analytical methods and detailed 3D FE analysis. The proposed approach leads to a quick convergence of interlaminar stresses using fewer FEs with the benefit of assured continuity at the lamina interfaces. The boundary layer regions due to the free-edge are also identified for angle-ply and cross-ply laminates under different mechanical loading cases. The free-edge interlaminar stresses vanish slowly for the cross-ply layups, indicating dominant effect over a maximum of 60% of the laminate width, than the angle-ply ones.
机译:考虑到三维(3D)材料本构模型,使用多次(应力和位移)有限元(Fe)光束截面配方评估一般层叠复合材料中的自由边际层压。 3D应力和翘曲位移场都被建模为主要变量,而在不引入任何特殊的假设的情况下确保了层压板的层间应力连续性和自由边缘条件。因此,使用域通过域的方法直接在每个组成椎板上直接计算在每个组成的薄片上,同时通过全局平衡约束在接口处保留所需的连续性(或不连续性)。预测的自由边缘应力被验证用于层叠复合材料,其各种叠层经受延伸和弯曲载荷。对其他最先进的分析方法和详细的3D FE分析显示了良好的相关性。所提出的方法导致使用较少的FES在薄层界面的确保连续性的较少的FES的跨域压力的快速收敛性。在不同的机械装载情况下也识别由于自由边缘引起的边界层区域和交叉层层压板。自由边际层压应力慢慢消失,用于交叉层叠层,表明最多60%的层压板宽度的显性效果比角度帘布层。

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