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Characterization of nesting effects on compression processes for plain woven fabrics in composites manufacturing

机译:复合材料制造中普通织物压缩工艺嵌套效应的特征

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Nesting and compression processes of plain woven fabrics are the most important features in the composites manufacture of fiber-reinforced composite components, while their relationships are still not reported. Here, in this work, we clearly reveal nesting and compression characteristics of typical fabrics through systematical compression experiments. We present the theoretical expression of the nesting effects on the initial thickness h and experimentally demonstrate its effectiveness. We find that nesting decreases the h and the minimum h appears in the maximum nesting condition. Meanwhile, we experimentally demonstrate that for plain woven fabrics, nesting has relationships with the thickness in compression t, while it has no effects on the thickness deformation Δ in the whole compression processes. Thus, we reveal the relationships between the nesting and h, t, Δ in the compression processes. Moreover, the applicability of these results for other types of fiber is also illustrated by comprehensive analysis. These obtained results provide the references for thickness evolution rules, volume fraction, and molding process of the fiber-reinforced composite components.
机译:嵌套和压缩工艺的纤维织物是复合材料制造的最重要的特征,仍未报告其关系。在此,在这项工作中,我们通过系统压缩实验清楚地揭示了典型织物的嵌套和压缩特性。我们展示了嵌套效应对初始厚度的理论表达<斜视> H 并通过实验证明其有效性。我们发现嵌套减少<斜体> h ,最小<斜视> h 出现在最大嵌套条件下。同时,我们通过实验证明,对于普通织物,嵌套具有压缩厚度<斜体> T 的关系,而在整个压缩过程中对厚度变形<斜体>Δ没有影响。 。因此,我们揭示了压缩过程中嵌套和<斜视> h ,<斜体> t ,<斜体>Δ之间的关系。此外,还通过综合分析说明了这些结果对其他类型的纤维的适用性。这些得到的结果提供了纤维增强复合材料组分的厚度演化规则,体积分数和模塑过程的参考。

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