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Behaviors of Stitched Multi-axial Warp Knit Fabric Composites

机译:缝合多轴翘曲针织织物复合材料的行为

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The purposes of stitching multi-axial warp knitted fabric preform prior to the fabrication of the composite materials by resin-transfer molding technique are to improve the resistance to delamination and to increase the out-of-plane properties of the composite materials for structural integrity. The influence of the through-the-thickness stitching on the elastic properties and behaviors of the multi-axial warp knit fabric composites is studied. An analytical model based on the representative volume is proposed to predict the elastic properties of the stitched multi-axial warp knit fabric composite materials. The fiber volume ratios determined by geometric parameters set by the representative volume and elastic behaviors of the in-situ constituent materials are used for the predictions. The crucial step in the analysis is to correlate the averaged stress states in the constituents by adopting bridging matrix. The predicted results are compared with the experimental results. It is found that the predicted results are in reasonably good agreement with the experimental results.
机译:通过树脂转印成型技术在制造复合材料之前缝合多轴经编织织物预制件的目的是改善对分层的抗性,并增加复合材料的平面性能,用于结构完整性。研究了通过 - 厚度缝合对多轴经编织物复合材料的弹性性能和行为的影响。提出了一种基于代表体积的分析模型,以预测缝合多轴翘曲针织织物复合材料的弹性性能。由由原位成分材料的代表体积和弹性行为设定的几何参数确定的纤维体积比用于预测。分析中的关键步骤是通过采用桥接基质将平均应力状态相关联。将预测结果与实验结果进行比较。结果发现预测结果与实验结果合理良好。

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