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首页> 外文期刊>Journal of Elastomers & Plastics >Effect of surface treatment of natural reinforcement on thermal and mechanical properties of vinyl ester/polyurethane interpenetrating polymer network-based biocomposites
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Effect of surface treatment of natural reinforcement on thermal and mechanical properties of vinyl ester/polyurethane interpenetrating polymer network-based biocomposites

机译:天然增强对乙烯基酯/聚氨酯互穿基于聚合物网络生物复合材料的热和力学性能的影响

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摘要

Kenaf fibre-reinforced vinyl ester (VE)/polyurethane (PU) interpenetrating polymer network (IPN)-based composites were made by hand lay-up technique. The kenaf bast fibre was chemically treated with 3, 6 and 9% vinyl silane. Treated fibres were characterized in terms of crystallinity, mechanical strength, density, thermal property and morphology. In comparison with the untreated fibre, 6% silane-treated fibres showed 25.4% higher % crystallinity, 66.9% increase in modulus elasticity and 604.2% increase in tenacity. Comparison of the pure VE with VE/PU IPN showed that the IPN had 3.3% lower modulus but 26.4% higher toughness than the former. Composites based on pure VE matrix and VE/PU IPN matrix were manufactured with the variation of untreated and treated fibre loading as 15, 20, 25, 30, 35 and 40 wt%. Novelty of this work lies in the modification of both the fibre surface and the matrix system simultaneously with the aim of increasing the adhesion between the fibre surface and matrix material of the composite. Composites with untreated fibres showed poor strength compared to that with modified fibres having corresponding compositions. IPN-based composites, with 35 wt% silane-treated fibre, showed improvement in tensile modulus by 16.61% and flexural modulus by 6.35% than pure VE-based composites with corresponding fibre loading.
机译:通过手叠层技术制造keNaf纤维增强乙烯基酯(Ve)/聚氨酯(PU)互通聚合物网络(IPN)基复合材料。用3,6和9%乙烯基硅烷化学处理Kenaf Bast纤维。在结晶度,机械强度,密度,热性和形态方面表征了处理的纤维。与未处理的纤维相比,6%硅烷处理的纤维显示出25.4%的结晶度,模量弹性增加66.9%,韧性增加604.2%。纯ve与VE / PU IPN的比较显示,IPN的模量低3.3%,比前者更高的韧性较高26.4%。基于纯VE基质和VE / PU IPN基质的复合材料是由未处理和处理的纤维负载的变化作为15,20,25,30,35和40wt%的变化。该作品的新颖性在于同时改变纤维表面和矩阵系统,其目的是增加复合材料的纤维表面和基质材料之间的粘附性。与具有相应组合物的改性纤维相比,具有未处理纤维的复合材料表现出较差的强度。基于IPN的复合材料,具有35wt%的硅烷处理的纤维,在拉伸模量增加16.61%,弯曲模量比具有相应纤维载荷的纯Ve基复合材料的弯曲模量和弯曲模量增加了6.35%。

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