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Progressive failure predictions for rib-stiffened panels based on multicontinuum technology

机译:基于多连续谱技术的肋骨加筋板渐进破坏预测

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摘要

An ongoing challenge within the structural analysis community is to accurately predict damage and progressive failure in large-scale structural components composed of composite materials. Multicontinuum technology (MCT) provides a means to produce constituent (fiber and matrix) level stress and strain information within the framework of commercial finite element analysis. Constituent level stress/strain information forms the basis for a progressive failure algorithm that has successfully been used to predict coupon failure in a wide range of composite materials and laminate configurations. In this paper, MCT is used to analyze the failure of rib-stiffened panels associated with advanced composite grid-stiffened structure (AGS) designs. More specifically, MCT is used to predict and analyze the separation of the rib to skin interface for comparison with tee pulloff and tee bend test data. Predictions for the initial and final separation of the rib to skin interfaces are shown to be in good agreement with experimental test data. The results also lend insight into design and manufacturing consid-erations that are key to the strength and performance of the rib to panel interface.
机译:结构分析界的一个持续挑战是准确预测由复合材料组成的大型结构部件的损坏和渐进式破坏。多连续谱技术(MCT)提供了一种在商业有限元分析框架内生成组成(纤维和基质)级应力和应变信息的方法。成分级应力/应变信息构成了渐进式失效算法的基础,该算法已成功用于预测各种复合材料和层压板配置中的试片失效。在本文中,MCT用于分析与先进的复合网格加劲结构(AGS)设计相关的肋加劲板的破坏。更具体地说,MCT用于预测和分析肋骨与皮肤界面的距离,以与三通拉拔和三通弯曲测试数据进行比较。肋骨与皮肤界面的初始和最终分离的预测与实验测试数据非常吻合。结果还有助于深入了解设计和制造方面的考虑因素,这些因素对于肋与面板之间的强度和性能至关重要。

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