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Dynamic mechanical properties of natural fiber/polymer biocomposites: The effect of fiber treatment with electron beam

机译:天然纤维/聚合物生物复合材料的动态力学性能:电子束处理纤维的效果

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Environmentally friendly biocomposites were made using plant-based natural fibers, such as henequen and kenaf. The natural fiber reinforced polypropylene (PP) and unsaturated polyester (UP) biocomposites were examined in terms of the reinforcing effect of natural fibers on thermoplastic and thermosetting polymers. Kenaf (KE) and henequen (HQ) fibers were treated with an electron beam (EB) of 10 and 200 kGy doses, respectively, or with a 5 wt% NaOH solution. Four types of biocomposites (KE/PP, HQ/PP, KE/UP and HQ/UP) were fabricated by compression molding and each biocomposite was characterized by dynamic mechanical analysis and thermogravimetric analysis. The kenaf fiber had the larger reinforcing effect on the dynamic mechanical properties of both PP and UP biocomposites than the henequen fiber. The highest storage modulus was obtained from the biocomposite with the combination of UP matrix and 200 kGy EB treated kenaf fibers.
机译:使用基于植物的天然纤维(如henequen和洋麻)制成环保的生物复合材料。就天然纤维对热塑性和热固性聚合物的增强作用而言,检查了天然纤维增强聚丙烯(PP)和不饱和聚酯(UP)生物复合材料。分别用10和200 kGy剂量的电子束(EB)或5 wt%的NaOH处理Kenaf(KE)和henequen(HQ)纤维。通过压缩成型制造四种类型的生物复合材料(KE / PP,HQ / PP,KE / UP和HQ / UP),并通过动态力学分析和热重分析对每种生物复合材料进行表征。洋麻纤维对PP和UP生物复合材料的动态力学性能的增强作用均比henequenen纤维大。从具有UP基质和200 kGy EB处理的洋麻纤维的生物复合材料中获得最高的储能模量。

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