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An Experimental Study on Hemp/Sisal Fiber Embedded Hybrid Polymer Composites

机译:大麻/剑麻纤维杂交聚合物复合材料的实验研究

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Environmental concerns encourage the use of artless fibers since bio-fiber embedded polymer composite crumble easily in nature and cheaper compare to petroleum-based fibers. Cellulosic fibers are gradually more gaining attention as their uses are diversified into structural and automobile parts for vehicle where low weight is necessary. The low density of cellulosic fibers is very beneficial in the structural and automobile industry. Cellulosic fibers offer many ecological and technical benefits for its use in incorporating composites. Current research paper investigates the mechanical strength (tensile, flexural, compression strength and shore-D hardness) and water absorption performance of different weight percentage of hemp/sisal fiber embedded polymer resin (epoxy resin) hybrid composites. Hemp and sisal fiber surfaces were subjected to 10 weight percentage of alkaline (NaOH) solution to improve the bonding characteristic between hydrophilic cellulosic fibers and hydrophobic polymer resin. Hybrid composite specimens were prepared by simple cold pressing technique. A 40 weight percentage of hemp/sisal fiber embedded hybrid composite sample discloses maximum tensile strength, flexural strength and compression strength. Shore-D hardness value and absorption of moisture of hybrid composite samples increases with increase in fiber loading. Morphological analyses are carried out to analyze the fractured surface of hybrid composite samples by using scanning electron microscope (SEM) and reported. The investigational result also discloses that the hemp and sisal fibers are promising reinforcements for use in cheaper bio-composites which have high strength to weight ratio.
机译:环境问题促进使用无缝纤维,因为生物纤维嵌入式聚合物复合材料容易本质上崩溃,与基于石油的纤维更便宜。纤维素纤维逐渐升高,因为它们的用途被多样化为适用于需要低重量的车辆的结构和汽车零件。纤维素纤维的低密度在结构和汽车工业中非常有益。纤维素纤维提供许多生态和技术益处,用于掺入复合材料。目前的研究论文研究了大麻/剑麻纤维嵌入聚合物树脂(环氧树脂)杂交复合材料的不同重量百分比的机械强度(拉伸,弯曲,压缩强度和肖氏硬度)和吸水性能。大麻和Sisal纤维表面受到10重量百分比的碱性(NaOH)溶液,以改善亲水性纤维素纤维和疏水性聚合物树脂之间的粘合特性。通过简单的冷压技术制备杂化复合标本。 40重量百分比的大麻/ Sisal嵌入式混合复合样品公开了最大的拉伸强度,弯曲强度和压缩强度。杂交复合样品水分的肖氏硬度值和吸收随着纤维负载的增加而增加。通过使用扫描电子显微镜(SEM)并报道,进行形态学分析以分析混合复合样品的裂缝表面。调查结果还公开了大麻和剑麻纤维是有望的增强,用于更便宜的生物复合材料,其具有高强度的重量比。

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