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Development and weatherability of bio-based composites of structural quality using flax fiber and epoxidized sucrose soyate

机译:使用亚麻纤维和环氧化蔗糖大豆酸酯开发具有结构质量的生物基复合材料及其耐候性

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摘要

Composites having high bio-based content with properties and costs rivaling those consisting of synthetic constituents are a goal of much current research. The obviousmaterial choices -vegetable oil based resins and natural fibers -present the challenges of poor resin properties and weak fiber/matrix bonding, respectively. Conventional methods of overcoming poor resin quality involve the incorporation of additives, which dilute the resulting composite's bio-content and increases cost. To overcome these limitations while maintaining high bio-content, in this study, a newly developed biobased resin, epoxidized sucrose soyate (ESS), is combined with surface-treated flax fiber to produce novel bio-composites. Properties of manufactured composites were compared against those using epoxy resin reinforced with flax fiber. In addition to mechanical property evaluation, accelerated weathering was performed on the manufactured composites to evaluate the mechanical properties after exposing to UV and moisture. The results of this study revealed the successful production of biocomposites having properties that meet or exceed those of conventional pultruded members while having 85% bio-content. Moreover, composites using treated flax fiber and ESS resin showed less degradation in properties and appearance after accelerated weathering exposure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:具有高生物基含量且其性能和成本可与由合成成分组成的复合材料相媲美的复合材料是许多当前研究的目标。明显的材料选择-植物油基树脂和天然纤维-分别带来了不良的树脂性能和较弱的纤维/基体粘合力的挑战。克服不良树脂质量的常规方法包括加入添加剂,这会稀释所得复合材料的生物含量并增加成本。为了克服这些局限性,同时保持较高的生物含量,在这项研究中,一种新开发的生物基树脂,环氧化蔗糖大豆酸酯(ESS),与经过表面处理的亚麻纤维结合制成了新型的生物复合材料。将制成的复合材料的性能与使用亚麻纤维增强的环氧树脂进行了比较。除了机械性能评估外,还对制成的复合材料进行了加速老化试验,以评估其在暴露于紫外线和湿气后的机械性能。这项研究的结果表明,成功生产出具有达到或超过传统拉挤部件性能的生物复合材料,同时具有85%的生物含量。此外,使用经过处理的亚麻纤维和ESS树脂的复合材料在加速风化暴露后显示出较少的性能和外观退化。 (C)2016 Elsevier Ltd.保留所有权利。

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