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Composite delamination modelling using a multi-layered solid element

机译:使用多层实体元素的复合材料分层建模

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This paper focuses on the latest development of a solid hexahedron element for composite delamination analysis. The 8-node solid is derived from a 20-node hexahedron. It is transformed into two physical independent 4-node shell elements according to the propagation of delamination process within the element.rnA global-local finite element approach coupled with the traditional VCCT method allows to calculate the energy release rates and to control the propagation of cracking in the element. According to the position of the crack in the element, one parameter defines the degradation of the transverse properties at the Gauss point as well as the transfer of the volume element towards the bi-plate formulation. Classical experimental tests are carried out on composite structures such DCB (mode I), ELS and ENF (mode 11), ADCB (combined mode) and modelled using the developed element. The numerical simulation properly correlates with the experimental results.
机译:本文重点介绍了用于复合材料分层分析的固体六面体单元的最新进展。 8节点实体源自20节点六面体。根据分层过程在单元内的传播,将其转换为两个物理上独立的4节点壳单元。全局局部有限元方法与传统VCCT方法相结合,可以计算能量释放率并控制裂纹的扩展在元素中。根据裂纹在单元中的位置,一个参数定义了高斯点处的横向性能的下降以及体积单元向双板配方的转移。经典的实验测试是对复合结构进行的,例如DCB(模式I),ELS和ENF(模式11),ADCB(组合模式),并使用已开发的元素进行建模。数值模拟与实验结果正确相关。

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