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The effect of fibre dispersion on initial failure strain and cluster development in unidirectional carbon/glass hybrid composites

机译:纤维分散对单向碳/玻璃杂化复合材料初始破坏应变和团簇形成的影响

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摘要

By adding glass fibres to carbon fibre composites, the apparent failure strain of the carbon fibres can be increased. A strength model for unidirectional hybrid composites was developed under very local load sharing assumptions to study this hybrid effect. Firstly, it was shown that adding more glass fibres leads to higher hybrid effects. The hybrid effect was up to 32% for a hybrid composite with a 10/90 ratio of carbon/glass fibres. The development of clusters of broken fibres helped to explain differences in the performance of these hybrid composites. For 50/50 carbon/glass hybrids, a fine bundle-by-bundle dispersion led to a slightly smaller hybrid effect than for randomly dispersed hybrids. The highest hybrid effect for a 50/50 ratio, however, was 16% and was achieved in a composite with alternating single fibre layers. The results demonstrate that thin ply hybrids may have more potential for improved mechanical properties than comingled hybrids.
机译:通过将玻璃纤维添加到碳纤维复合物中,可以增加碳纤维的表观破坏应变。在非常局部的负载分担假设下,开发了单向混合复合材料的强度模型,以研究这种混合效应。首先,表明添加更多的玻璃纤维会导致更高的混合效果。对于碳/玻璃纤维比率为10/90的杂化复合材料,杂化效果高达32%。断裂纤维簇的发展有助于解释这些杂化复合材料性能的差异。对于50/50碳/玻璃混合动力车,细细的逐束分散导致的混合效应要比随机分散的混合动力略小。但是,以50/50的比例获得的最高混合效果为16%,是在具有交替单纤维层的复合材料中实现的。结果表明,薄层杂种可能比骆驼杂种具有更多的改善机械性能的潜力。

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