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ENVIRONMENTAL DURABILITY OF NATURAL FIBER REINFORCED UNSATURATED POLYESTER COMPOSITE

机译:天然纤维增强不饱和聚酯复合材料的环境耐久性

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With an industrial increasing interest in sustainable, eco-efficient and green material's application, natural fiber in polymer composite is guided to develop rapidly, especially kenaf nonwovens in making automotive interior trim parts with its comparative excellent strength and renewability. The objectives of this research are to investigate the environmental degradation behavior on the physical and mechanical properties of kenaf/unsaturated polyester nonwoven composites (KUNC) with special reference to the influence of different geographic natural climate ageing conditions. KUNC was prepared with needle-punched kenaf's impregnation into unsaturated polyester resin assisted with vacuum oven following by hand lay-up molding. Natural environmental degradation was performed on KUNC by exposing the specimens to Kyoto(Japan), Shanghai(China) and Harbin(China) for a period of 3 months. Weight change and mechanical properties of degraded KUNCs in former three geographic positions in terms of tensile, flexural, impact and fracture toughness were measured instrumentally for ageing effect discussion and comparison. As expected, the aged specimens in those different positions all showed the dropped mechanical properties with weight increasing in varying degrees. Furthermore, the result of degradation level comparison among different positions revealed the positive correlation between increased weight percentages and dropped mechanical properties. In other words, dropped mechanical properties of the degraded composites with increasing weight were attributed to the effect of water, which deteriorates the interfacial properties of composites.
机译:随着工业界对可持续,生态高效和绿色材料应用的兴趣日益浓厚,聚合物复合材料中的天然纤维被引导快速发展,尤其是洋麻非织造布,以其相对优异的强度和可再生性来制造汽车内饰件。这项研究的目的是研究环境降解行为对洋麻/不饱和聚酯非织造复合材料(KUNC)物理和机械性能的影响,并特别参考不同地理自然气候老化条件的影响。 KUNC的制备方法是:在真空烘箱的辅助下,将针刺红麻浸渍到不饱和聚酯树脂中,然后手工叠层成型。通过将标本暴露于京都(日本),上海(中国)和哈尔滨(中国)三个月,在KUNC上进行了自然环境降解。在老化,讨论和比较方面,通过仪器测量了前三个地理位置中降解的KUNCs的重量变化和力学性能,包括拉伸强度,挠曲强度,冲击强度和断裂韧性。不出所料,在不同位置的老化试样都显示出机械性能下降,重量不同程度地增加。此外,不同位置之间的降解水​​平比较结果显示,重量百分比增加与机械性能下降之间存在正相关关系。换句话说,降解复合材料的机械性能随重量增加而下降是由于水的作用,这降低了复合材料的界面性能。

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