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Experimental Analysis on the Effect of Surface Treatment of Glass Fibers Nanoclay on Mechanical Properties of Glass Fiber Reinforced Polymer Nanocomposites

机译:玻璃纤维和纳米荧光表面处理对玻璃纤维增​​强聚合物纳米复合材料力学性能影响的实验分析

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The objective of this study is to analyze the effect of surface treatment on mechanical properties of Glass Fiber reinforced epoxy nanoclay nanocomposites which was manufactured using nanoclay, Nanomer 1.28E content with a fixed percentage of 3 wt. % by compression molding. Nine different samples were made with different possible combinations to compare the effect of surface treatment of glass fibers (Untreated/Silane and Acid Treated) and nanoclay (Untreated and trimethyl stearyl ammonium modified). Tensile, Impact, Flexural and Hardness tests had been done to evaluate the mechanical performance of the composites. The fine morphological modifications made on the surface of the glass fiber and nanoclay enhanced the interfacial bonding between the epoxy resin and reinforcement which in turn improved the tensile, flexural and impact properties by improvement in hardness too. The mechanical properties such as flexural strength and impact strength has slightly decreased in the composite made of Epoxy, Silane treated Glass fiber and surface modified nanoclay but instead there is an increase in tensile strength and hardness which in turn will improve the wear properties when compared to neat composite.
机译:本研究的目的是分析表面处理对玻璃纤维增​​强环氧纳米载体纳米复合材料的机械性能的影响,该纳米载体的纳米粘土纳米1.28E含量为3重量%的百分比。 %通过压缩成型。用不同可能的组合进行九种不同的样品,以比较玻璃纤维的表面处理(未处理/硅烷和酸处理)和纳米碳(未处理和三甲基硬脂酰铵改性)的影响。已经进行了拉伸,撞击,弯曲和硬度测试来评估复合材料的机械性能。在玻璃纤维和纳米山的表面上进行的细形态改性增强了环氧树脂和增强之间的界面键合,这又通过改善了硬度改善了拉伸,弯曲和冲击性能。由环氧树脂,硅烷处理的玻璃纤维和表面改性的纳米粘土制成的复合材料中的机械性能略微降低,但是随着拉伸强度和硬度的增加,又会增加抗拉强度和硬度。与整洁的复合材料。

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