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A Co-Rotational 8-Node Resultant Shell Element for Progressive Nonlinear Dynamic Failure Analysis of Laminated Composite Structures

机译:用于层状复合结构渐进非线性动态破坏分析的等比例8节点结果壳单元

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摘要

A nonlinear resultant shell element is developed for the solution of problems of composite plates and shells undergoing nonlinear static and nonlinear dynamic behavior with progressive layer failure. The formulation of the tangent stiffness is defined on the mid-surface and is efficient for analyzing thick laminated plates and shells by incorporating bending moments and transverse shear resultant forces in the geometric stiffness. The composite element is free of both membrane and shear locking behavior by using the assumed natural strain method, such that the element also performs very well as thin laminate shells. An equilibrium approach is used to derive the improved transverse shear stiffness, instead of using a shear correction factor. The proposed formulation is computationally efficient and the test results show good agreement with references. The composite shell element is extended to determine ply failures in laminated composite structures undergoing nonlinear static or dynamic behavior. The failure analysis is done by first, computing for the inter-laminar stresses at each gauss point in an element. Having obtained the stresses in each layer, checking for failure is performed based on a chosen failure criterion. Four failure criteria are available to enable the user to adopt the appropriate criterion for the type of problem parameters present.
机译:开发了一种非线性合成壳单元,用于解决复合板和壳经受非线性静力学和非线性动力学行为以及渐进层破坏的问题。切线刚度的公式定义在中表面上,通过将弯矩和横向剪切合力纳入几何刚度中,可以有效地分析厚的层压板和壳体。通过使用假定的自然应变方法,该复合元件既没有膜也没有剪切锁定行为,因此该元件也表现为非常薄的层压壳。平衡方法用于获得改进的横向剪切刚度,而不是使用剪切校正因子。所提出的公式计算效率高,测试结果与参考文献吻合良好。扩展了复合壳单元,以确定经受非线性静态或动态行为的层压复合结构中的板层破坏。首先要进行失效分析,计算出单元中每个高斯点的层间应力。在获得了每一层的应力后,将根据所选的失效准则执行失效检查。共有四个故障准则,使用户能够针对存在的问题参数的类型采用适当的准则。

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