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The potential of harakeke fibre as reinforcement in polymer matrix composites including modelling of long harakeke fibre composite strength

机译:harakeke纤维作为聚合物基复合材料增强材料的潜力,包括长harakeke纤维复合材料强度的建模

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摘要

Mechanical properties of aligned long harakeke fibre reinforced epoxy with different fibre contents were evaluated. Addition of fibre was found to enhance tensile properties of epoxy; tensile strength and Young's modulus increased with increasing content of harakeke fibre up to 223 MPa at a fibre content of 55 wt% and 17 GPa at a fibre content of 63 wt%, respectively. The flexural strength and flexural modulus increased to a maximum of 223 MPa and 14 GPa, respectively, as the fibre content increased up to 49 wt% with no further increase with increased fibre content. The Rule of Mixtures based model for estimating tensile strength of aligned long fibre composites was also developed assuming composite failure occurred as a consequence of the fracture of the lowest failure strain fibres taking account porosity of composites. The model was shown to have good accuracy for predicting the strength of aligned long natural fibre composites.
机译:评价了不同纤维含量的取向长哈拉克纤维增强环氧树脂的力学性能。发现添加纤维可增强环氧树脂的拉伸性能;拉伸强度和杨氏模量随着harakeke纤维含量在55 wt%和17 GPa在63 wt%的纤维含量的增加而分别增加至223 MPa。弯曲强度和弯曲模量分别增加到最大223 MPa和14 GPa,这是因为纤维含量增加到49 wt%,而随纤维含量的增加没有进一步增加。还建立了基于混合规则的模型,用于估计排列的长纤维复合材料的拉伸强度,并假设复合材料的破坏是由于最低破坏应变纤维的断裂(考虑到复合材料的孔隙率)而发生的。该模型显示出良好的精度,可预测排列的长天然纤维复合材料的强度。

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