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Interlaminar fracture toughness of flax-epoxy composites

机译:亚麻环氧复合材料的层间骨折韧性

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摘要

The purpose of this study was to determine the influence of fibre architectures on the interlaminar fracture toughness and tensile toughness of flax fibre epoxy composites. The fracture toughness was investigated for both Mode I (G(IC)) and Mode II (G(IIC)) for seven flax-epoxy architectures: one plain weave, two twill 2x2 weaves, a quasi-unidirectional and a unidirectional architecture, the UD's being tested in both [0,90] and [90,0] composite lay-ups. The results of the Mode I and Mode II showed promising results of the flax-epoxy composite performance. The addition of flax fibre increases the G(IC) and G(IIC) of the composites over that of the unreinforced brittle polymer by at least two to three times. Further improvements are made with the use of woven textiles. The tensile toughness was found to be a good indicator of the capacity of a material to sustain perforation or non-perforation impact.
机译:本研究的目的是确定纤维架构对亚麻纤维环氧复合材料的岩石骨折和拉伸韧性的影响。 针对七种亚麻 - 环氧结构的模式I(G(IC))和模式II(G(IIC))研究了裂缝韧性:一个普通编织,两个斜纹织物,两个斜纹和单向架构, UD在[0,90]和[90,0]复合位置进行了测试。 模式I和模式II的结果显示出亚麻环氧复合性能的有希望的结果。 亚麻纤维的添加将复合材料的G(IC)和G(IIC)增加到未原始的脆性聚合物的G(IC)和G(IIC)至少两至三次。 通过使用编织纺织品进行进一步的改进。 发现拉伸韧性是一种良好的指标,其材料能够维持穿孔或非穿孔撞击。

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