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Mapping of Stress Distribution in Woven-Fabric Composites

机译:机织织物复合材料的应力分布图

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摘要

Mapping of the stress distribution in composite materials, both at the fiber/matrix interface and in the composite constituents, is important to understand the material mechanical response. Stress mapping can help predict composite behavior under certain stresses especially failure or delamination. In this work, two analytical models were proposed to map the stress distribution at fiber, matrix and fiber/matrix interface utilizing the concept of stress superposition. The first model dealt with the fiber In the longitudinal direction considering axisymmetric conditions. The second model addressed the fiber stress distribution in the transverse direction. Experimental data from four-point flexural tests of woven fabric composites was processed using the Graphical Integrated Numerical Analysis (pcGINA) to obtain the maximum stress in the target laminate and this value was used as the input for the two analytical models. The value for the maximum interfacial shear stress was calculated using the models and results were compared to pull-out fiber test values obtained from literature. Good agreement was observed between the model calculations and the literature data.
机译:复合材料中纤维/基体界面以及复合材料成分中应力分布的映射对于了解材料的机械响应非常重要。应力映射可以帮助预测某些应力下的复合行为,尤其是破坏或分层。在这项工作中,提出了两个分析模型,利用应力叠加的概念来绘制纤维,基质和纤维/基质界面的应力分布图。第一个模型在考虑轴对称条件的情况下处理纵向纤维。第二个模型解决了横向纤维应力分布问题。使用图形集成数值分析(pcGINA)处理来自机织物复合材料的四点弯曲试验的实验数据,以获得目标层压板的最大应力,并将该值用作两个分析模型的输入。使用模型计算最大界面剪切应力的值,并将结果与​​从文献中获得的拉拔纤维测试值进行比较。在模型计算和文献数据之间观察到良好的一致性。

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