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Charpy impact test of epoxy composites reinforced with untreated and mercerized mallow fibers

机译:未经处理和丝光锦葵纤维增强的环氧树脂复合材料的夏比冲击试验

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The mallow fiber(Urena lobata, linn)is demonstrating a great potential as reinforcement in polymer matrix composites. The difficulty in the use of the mallow, as in other natural lignocellulosic fibers (NLFs), is its hydrophilic compatibility with polymeric matrices that are typically hydrophobic. In order to improve the adhesion between the fiber surface and polymeric matrices, mallow fibers were subjected to mercerization treatment. In this work composites were produced with epoxy matrix reinforced with 30vol% of mallow fibers, both untreated and mercerized. By means of XRD analysis it was verified the variation of crystallinity in fibers treated with different NaOH solutions as well as immersion times and agitation. After this XRD preliminary analysis, a treatment of 5% NaOH solution for 24h without agitation was selected. The objective was to compare the Charpy impact energy of composites specimens produced with untreated mallow fibers and treated for the higher crystallinity obtained after the selected mercerization. For the analysis of impact energy the Tukey test was applied from which it could be assured, with a confidence level of 95%, that the epoxy specimens reinforced with 30vol% of untreated mallow fibers, had the best performance.
机译:锦葵纤维(Urena lobata,linn)显示出在聚合物基复合材料中作为增强材料的巨大潜力。像其他天然木质纤维素纤维(NLFs)一样,锦葵的使用困难在于其与通常为疏水性的聚合物基质的亲水相容性。为了改善纤维表面与聚合物基体之间的粘合性,对锦葵纤维进行丝光处理。在这项工作中,复合材料是用环氧树脂基体制成的,该基体用未经处理和丝光处理的30vol%的锦葵纤维增强。通过XRD分析,证实了用不同NaOH溶液处理的纤维的结晶度变化以及浸入时间和搅拌。经过XRD初步分析后,选择在不搅拌的情况下将5%NaOH溶液处理24小时。目的是比较用未经处理的锦葵纤维生产的复合材料样品的夏比冲击能,该复合材料样品经选择的丝光处理后可获得较高的结晶度。为了进行冲击能分析,应用了Tukey试验,可以确信度为95%,用30vol%未经处理的锦葵纤维增强的环氧样品性能最佳。

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