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Influence of zinc oxide nanoparticles on the mechanical and thermal responses of glass fiber-reinforced epoxy nanocomposites

机译:氧化锌纳米粒子对玻璃纤维增强环氧纳米复合材料的机械和热反应的影响

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The present article investigates the effect of incorporation of zinc oxide (ZnO) nanoparticles in varied weight percentages into glass fiber-reinforced (GFR) epoxy composites through the evaluation of mechanical properties such as flexure strength, impact strength, and ultimate tensile strength of the composite. Thermo-gravimetric analysis for the fabricated composites has been taken up to evaluate the effect of ZnO nanoparticle on the thermal stability of the composite. The ZnO nanoparticle is loaded in different weight percentages ranging from 1 to 5 wt% and is dispersed uniformly in the epoxy resin through ultrasonication method. The required GFR epoxy-ZnO nanocomposites are fabricated through hand layup technique and cured through vacuum bagging method. The analysis of the obtained result indicate that ZnO has a negative impact on the mechanical properties such as flexure and tensile strengths, while it had a positive impact on the impact strength of the GFR epoxy-ZnO nanocomposites. These results indicate that ZnO has a greater affinity with the epoxy resin, which results in increase in matrix-dominated properties. The presence of ZnO nanoparticles result in the reduction of active sites for bond formation between the matrix and the glass fibers which tends to reduce the fiber-dominated properties such as tensile and flexure strength. The thermal responses of GFR epoxy-ZnO nanocomposites increased up to 2 wt% addition of ZnO nanoparticles, while at 5 wt% there was a reduction in the thermal response of the nanocomposite due to an increased steric hindrance.
机译:本文通过评价机械性能,如弯曲强度,冲击强度和最终拉伸强度,调查氧化锌(ZnO)纳米颗粒以不同重量百分比掺入玻璃纤维增​​强(GFR)环氧复合材料中的效果。 。制造复合材料的热重分析已被溶于评价ZnO纳米粒子对复合材料热稳定性的影响。 ZnO纳米颗粒以1至5wt%的不同重量百分比加载,并通过超声法均匀地分散在环氧树脂中。所需的GFR环氧-ZNO纳米复合材料通过手动叠层技术制造并通过真空袋制袋法固化。所获得的结果的分析表明,ZnO对机械性能的负面影响,例如弯曲和拉伸强度,而对GFR环氧-ZNO纳米复合材料的冲击强度产生正影响。这些结果表明,ZnO与环氧树脂具有更大的亲和力,这导致基质主导的性质增加。 ZnO纳米颗粒的存在导致在基质和玻璃纤维之间的键形成的活性位点的减少,这倾向于降低纤维主导的性质,例如拉伸强度。 GFR环氧-ZNO纳米复合材料的热应答增加高达2wt%的ZnO纳米颗粒,而在5wt%中,由于空间阻断增加,纳米复合材料的热响应减少。

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