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首页> 外文期刊>Applied composite materials >A Global/Local Finite Element Approach for Predicting Interlaminar and Intralaminar Damage Evolution in Composite Stiffened Panels Under Compressive Load
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A Global/Local Finite Element Approach for Predicting Interlaminar and Intralaminar Damage Evolution in Composite Stiffened Panels Under Compressive Load

机译:预测压缩载荷作用下复合加筋板层间和椎内损伤演化的全局/局部有限元方法

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摘要

This paper addresses the prediction of intralaminar and interlaminar damage onset and evolution in composite structures through the use of a finite element based procedure. This procedure joins methodologies whose credibility has been already assessed in literature such as the Virtual Crack Closure Technique (for delamination) and the ply discount approach (for matrix/fiber failures). In order to establish the reliability of the procedure developed, comparisons with literature experimental results on a stiffened panel with an embedded delamination are illustrated. The methodology proposed, implemented in AN SYS ? as post-processing routines, is combined with a finite element model of the panel, built by adopting both shell and solid elements within the frame of an embedded global/local approach to connect differently modelled substructures.
机译:本文通过使用基于有限元的方法,对复合结构中层内和层间损伤的发生和演变进行了预测。该程序加入了已经在文献中评估过信誉的方法,例如虚拟裂纹闭合技术(用于分层)和层折法(用于矩阵/纤维故障)。为了确定所开发程序的可靠性,说明了与带有嵌入式分层的加劲板上的文献实验结果的比较。提出的方法论,在AN SYS中实施?作为后处理例程,它与面板的有限元模型结合在一起,该模型是通过在嵌入式全局/局部方法的框架内同时采用壳和实体元素来建立的,以连接不同模型的子结构。

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