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Saccaharum Cilliare Fiber Reinforced Polymer Composites

机译:Sacicahaharum cilliare纤维增强聚合物复合材料

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Renewable resources such as natural fibers in the field of fiber reinforced materials with their new range of applications represent an important basis in order to fulfill the ecological objective of creating eco-friendly materials. In views of enormous advantages a study on green composites usingSaccaharum cilliarefiber as a reinforcing material and urea-formaldehyde (UF) as a novel matrix has been made. First of all urea-formaldehyde resin synthesized was reinforced withSaccaharum cilliarefiber. Reinforcement of the fiber was accomplished in three different forms particle (200 micron) reinforcement, short fiber (3 mm.) reinforcement and long fiber (6 mm) reinforcement. Present work reveals that mechanical properties such as: tensile strength, compressive strength and wear resistance of urea -formaldehyde resin (UF) increases to a significant extent when reinforced withSaccaharum cilliarefiber which is found in outsized amount in the Himalayan Region. These mechanical properties mainly depend upon the dimensions of the fiber used. Analysis of results shows that particle reinforcement is more effective as compared to short and long fiber reinforcement. Morphological and thermal studies of these composites have also been carried out.
机译:可再生资源,如纤维增强材料领域的天然纤维,其新的应用范围代表了一个重要的基础,以满足创造环保材料的生态目标。在巨大优势的看法中,已经进行了绿色复合材料的研究,作为一种新型基质的加强材料和尿素 - 甲醛(UF)。首先,合成的所有尿素 - 甲醛树脂用Saccaharum Cilliarefiber加固。纤维的增强是在三种不同的形式颗粒(200微米)增强,短纤维(3mm。)加固和长纤维(6mm)加固中完成的。目前的工作表明,诸如:尿素 - 甲醛树脂(UF)的拉伸强度,抗压强度和耐磨性的机械性能随着在喜马拉雅地区的超出量发现的粘附量而在很大程度上增加。这些机械性能主要取决于所用纤维的尺寸。结果分析表明,与短和长纤维增强相比,颗粒增强更有效。还进行了这些复合材料的形态学和热研究。

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