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Strength prediction of partially aligned discontinuous fiber-reinforced composites

机译:部分排列的不连续纤维增强复合材料的强度预测

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摘要

An experimental and theoretical approach has been described for the determination of the strength of partially aligned discontinuous fiber-reinforced composites. The fiber alignment information was obtained as a Gaussian or normal distribution function by using an x-ray -diffraction technique. The distribution function was then used in the composite strength equation to calculate the theoretical strength. This approach was applied to a composite of vapor grown carbon fiber (VGCF) in a polypropylene matrix, and the experimental and theoretical results were compared. As expected, the composite strength increased with increase in fiber volume fraction and the degree of fiber alignment. It was also observed that the composite strength was sensitive to variation in fiber length when the average fiber length was less than the critical fiber length. At higher fiber volume fractions the composite strength was much lower than predicted by theory. This is most likely due to incomplete wetting and infiltration of the VGCF.
机译:已经描述了确定部分排列的不连续纤维增强复合材料强度的实验和理论方法。通过使用X射线衍射技术,将纤维取向信息获得为高斯或正态分布函数。然后在复合强度方程中使用分布函数来计算理论强度。将该方法应用于聚丙烯基体中气相生长碳纤维(VGCF)的复合材料,并对实验和理论结果进行了比较。如预期的那样,复合强度随纤维体积分数和纤维排列度的增加而增加。还观察到,当平均纤维长度小于临界纤维长度时,复合强度对纤维长度的变化敏感。在较高的纤维体积分数下,复合强度远低于理论预测的强度。这很可能是由于VGCF的润湿和渗透不完全所致。

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