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Multilayered triangular and quadrilateral flat shell elements based on the Refined Zigzag Theory

机译:基于精制之曲面理论的多层三角形和四边形平壳元素

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The paper presents a class of C-0-continuous, flat shell elements based on the Refined Zigzag Theory (RZT) for the analysis of multilayered and curved composite and sandwich structures. The use of the interdependent interpolation strategy allows eliminating the shear-locking phenomenon and introducing the drilling rotation necessary to complete the set of classical nodal degrees of freedom (three displacements and three rotations). Additional kinematic variables are present in RZT, the zigzag rotations around the in-plane axes that measure the normal distortion typical of multilayered structures. An additional "drilling" zigzag rotation is therefore included among the nodal degrees of freedom in order to properly model curved and built-up structures. A stabilization procedure is adopted to suppress spurious zero-energy modes. A three-node triangular and a four-node quadrilateral flat shell element are formulated with 9 degrees of freedom per node. Example problems involving flat and curved multilayered structures are presented and discussed in order to assess the accuracy and convergence properties of the presented elements. Both static response predictions and free vibrations analyses are considered and the comparison is made with analytic RZT solutions, high-fidelity 3D finite element models and FSDT-based flat shell elements.
机译:本文介绍了基于精致的锯齿形理论(RZT)的一类C-0连续,扁平壳元素,用于分析多层和弯曲复合材料和夹层结构。相互依存的插值策略的使用允许消除剪切锁定现象并引入完成整个古典节点自由度(三个位移和三个旋转)所需的钻孔旋转。在RZT中存在额外的运动变量,在面内轴周围的锯齿形旋转测量多层结构的典型变形。因此,额外的“钻孔”之字形旋转包括在节点的自由度之中,以便适当地模拟弯曲和建筑结构。采用稳定程序来抑制杂散的零能量模式。三节点三角形和四节点四边形扁平壳元件被配制,每个节点具有9个自由度。介绍和讨论了涉及扁平和弯曲多层结构的示例问题,以评估所提出的元素的精度和收敛性。考虑静态响应预测和自由振动分析,并使用分析RZT解决方案,高保真3D有限元模型和基于FSDT的平壳元件进行比较。

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