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Potential of Syngonanthus nitens fiber as a reinforcement in epoxy composite and its mechanical characterization

机译:Syngonanthus硝酸盐作为环氧复合材料的增强件及其机械表征

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摘要

Syngonanthus nitens, locally called Sikki grass, is one of such potential natural fiber resources whose potential as a reinforcement in polymer matrix composite has not been explored till date. Natural fiber-reinforced epoxy composites are getting more importance between the research community in recent time. These types of composites are environment-friendly, biodegradable and having the comparable specific strength with respect to synthetic fiber composite. The present work is associated with fabrication of Syngonanthus nitens short fiber-reinforced epoxy polymer composite of different fiber fractions (10, 20, 30 and 40 wt%) by hand layup method. Mechanical tests were performed for characterization as per ASTM standard. It is observed that 30 wt% of fiber fraction composite gives the optimum strength among all weight percentage of fiber. EDS, XRD and FTIR analysis were carried out for finding the constituent proportion, crystallographic structure and organic functional group of the fiber and its composite. SEM study of fractured surfaces was also carried out for finding the fracture mechanism.
机译:局部叫西克基草的合成尼森是这种潜在的天然纤维资源之一,其作为聚合物基质复合材料中的增强潜力尚未探讨至今。近来,天然纤维增强的环氧复合材料在研究界之间得到更多重要性。这些类型的复合材料是环保的,可生物降解的并且具有相对于合成纤维复合材料的比较特异性强度。本作本作与手动叠层方法制备不同纤维级分(10,20,30和40wt%)的Syngonanthus硝基纤维增强环氧聚合物复合物。根据ASTM标准进行机械试验进行表征。观察到,30wt%的纤维级分复合物在所有重量百分比的纤维中产生最佳强度。进行EDS,XRD和FTIR分析,用于寻找纤维的组成比例,晶体结构和有机官能团及其复合材料。还对寻找裂缝机制进行了裂缝表面的SEM研究。

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