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Investigations of fiber twist on the mechanical properties of sisal fiber yarns and their composites

机译:纤维捻度对剑麻纤维纱及其复合材料力学性能的影响

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The effect of fiber twist on the tensile properties of single sisal fibers was investigated by single fiber tensile test. Four kinds of sisal yarns with four different levels of twist were made and the mechanical properties were investigated on both unimpregnated and resin-impregnated sisal yarns. A critical fiber twist level for unimpregnated sisal yarns was found beyond which the tensile properties started to decrease with the increasing of the level of fiber twist. However, for resin-impregnated sisal yarns, both tensile strength and modulus decreased with the increasing of the fiber twist level. In addition, the effect of fiber twist on both the tensile and flexural properties of unidirectional sisal yarn reinforced composites was studied. It was shown that lower twist level led to higher mechanical properties of its reinforced composites. Compared with the experimental results, Rao's model proved to accurately calculate the Young's modulus of fiber yarns with different levels of twist. Thus, the Young's modulus of sisal yarn reinforced composites could be predicted by the rule of mixtures hereafter.
机译:通过单纤维拉伸试验研究了纤维捻度对剑麻纤维拉伸性能的影响。制备了四种具有四种不同捻度的剑麻纱线,并研究了未浸渍和树脂浸渍的剑麻纱线的力学性能。发现未浸渍的剑麻纱线的临界纤维捻度水平,超过该水平时,拉伸性能随纤维捻度水平的增加而开始下降。然而,对于树脂浸渍的剑麻纱线,拉伸强度和模量都随着纤维捻度的增加而降低。此外,研究了纤维捻对单向剑麻纱线增强复合材料拉伸和弯曲性能的影响。结果表明,较低的扭曲度导致其增强复合材料的较高机械性能。与实验结果相比,Rao模型证明可以精确计算出不同捻度的纤维纱的杨氏模量。因此,剑麻纱线增强复合材料的杨氏模量可以通过以下的混合规则来预测。

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