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Analysis Of Laminated and Sandwich Composites by A Zig-Zag Plate Element with Variable Kinematics and Fixed Degrees Of Freedom

机译:运动和固定自由度的曲折曲折板单元分析叠层和三明治复合材料

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A C° layerwise plate element with standard nodal d.o.f. and serendipity interpolation functions is applied to the analysis of laminates and sandwiches giving rise to strong layerwise effects. The element is obtained using an energy updating technique and symbolic calculus starting from a physically-based zig-zag model with variable kinematics and fixed d.o.f. able to a priori satisfy to displacement and stress continuity at the material interfaces. Non classical feature, a high-order piecewise zig-zag variation of the transverse displacement is assumed as it helps keeping equilibrium. Crushing of core is studied carrying apart a detailed 3D modelling of the honeycomb structure discretizing the cell walls with plate elements, with the aim of obtaining apparent elastic moduli at each load level. Using such apparent moduli, a 2D homogenized analysis is carried out simulating sandwiches as multi-layered structures Applications are presented to plates undergoing impulsive loading incorporating plies with spatially variable stiffness properties. It is shown that accurate predictions are always obtained in in the numerical applications with a very low computational effort. Compared to kinematically based zig-zag models, present physically based one is proven to more accurate, being always in a good agreement with exact 3D solutions.
机译:具有标准节点d.o.f的C°分层板单元。偶然性插值函数可用于层压板和三明治的分析,从而产生强大的分层效果。该元素是使用能量更新技术和符号演算从具有可变运动学和固定d.f.f的基于物理的之字形模型开始的。能够预先满足材料界面处的位移和应力连续性。非经典特征是,假设横向位移的高阶分段曲折变化有助于保持平衡。研究了压碎型芯的过程,对蜂窝状结构进行了详细的3D建模,使蜂窝状壁与板状元件离散化,目的是在每个载荷水平下获得表观弹性模量。使用这种表观模量,进行了2D均质分析,模拟了多层结构的三明治结构。提出了承受脉冲载荷的板的应用,这些板结合了具有空间可变刚度特性的板层。结果表明,在数值应用程序中总是可以以非常低的计算量获得准确的预测。与基于运动的之字形模型相比,目前基于物理的模型已被证明更为精确,并且始终与精确的3D解决方案保持良好的一致性。

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