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Determining the minimum, critical and maximum fibre content for twisted yarn reinforced plant fibre composites

机译:确定加捻纱增强植物纤维复合材料的最小,临界和最大纤维含量

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The effect of fibre volume fraction on the physical and tensile properties of aligned plant fibre composites (PFCs) produced via vacuum infusion has been investigated. There is no clear correlation between fibre volume fraction and porosity. However, low fibre content PFCs are prone to intra-yarn voids, while high fibre content PFCs are prone to inter-yarn voids. This is due to changing resin flow dynamics with increasing fibre content. The tensile behaviour of PFCs with increasing fibre content is similar to that of conventional fibre reinforced plastics (FRPs). Interestingly, the non-linear stress-strain response of plant fibres has been transferred to the composites. Fibre content and tensile properties are found to be linearly related, as per the rule of mixtures. A void content of up to 4% is found to have minimal effect on the tensile properties of PFCs. The minimum and critical (v_(f,crit)) fibre volume fractions for aligned flax and jute-polyester composites are found to be substantially higher than conventional aligned FRPs; v_(f,crit) for jute-polyester and carbon-polyester is 8.1% and 2.4%, respectively. A simple model has also been developed to approximate the theoretical maximum obtainable fibre volume fraction of PFCs reinforced with staple fibre yarns. The absolute theoretical maximum fibre content is found to be 58.9%, which agrees with experimental values in literature. A high v_(f,crit) (~10%) and low v_(f,crit) (~45%) implies that the range of useful fibre volume fractions for PFCs containing staple fibre twisted yarns is only 35%.
机译:研究了纤维体积分数对通过真空灌注生产的对齐植物纤维复合材料(PFC)的物理和拉伸性能的影响。纤维体积分数和孔隙率之间没有明确的相关性。但是,低纤维含量的PFC容易出现纱内空隙,而高纤维含量的PFC容易出现纱内空隙。这是由于纤维含量增加而改变了树脂流动动力学。纤维含量增加的PFC的拉伸行为与常规纤维增强塑料(FRP)相似。有趣的是,植物纤维的非线性应力应变响应已转移到复合材料中。根据混合物的规则,发现纤维含量和拉伸性能线性相关。发现高达4%的空隙含量对PFC的拉伸性能影响最小。发现对齐的亚麻和黄麻-聚酯复合材料的最小和临界(v_(f,crit))纤维体积分数明显高于常规对齐的FRP。黄麻聚酯和碳聚酯的v_(f,crit)分别为8.1%和2.4%。还开发了一个简单的模型来估算短纤维纱增强的PFC的理论最大可获得纤维体积分数。发现纤维的绝对理论最大含量为58.9%,与文献中的实验值一致。较高的v_(f,crit)(〜10%)和较低的v_(f,crit)(〜45%)意味着含短纤加捻纱的PFC的有用纤维体积分数范围仅为35%。

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