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A Comparative Study on Structural, Morphological, and Tensile Properties of Binary and Ternary Epoxy Resin-Based Polymer Nanocomposites

机译:二元和三元环氧树脂基聚合物纳米复合材料结构,形态学和拉伸性能的比较研究

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In the present work, epoxy resin-based nanocomposites (NCPs) were fabricated with improved mechanical properties. The epoxy resin (EPR) was mixed with differing amounts of calcium titanate (CaTiO3) nanoparticles (NPs) and glass fiber. The results showed that the ternary system contained glass fiber exhibits low mechanical performance compared to binary [EPR:CaTiO3] system. The effect of fiber glass and NPs on the epoxy resin mechanical behavior was determined by conducting a tensile test for various specimen sets. From the mechanical characterizations, it was seen that there is a monotonic relationship between the NPs concentration and Young’s modulus. Additionally, NCPs samples were brittle in nature and the strain rate significantly decreased upon the addition of CaTiO3 concentration; while the tensile strength was increased. From the X-ray diffraction evaluation, it can be concluded that the addition of NPs have a great impact on the epoxy structure. Besides, the morphology appearance was in good agreement with structural and mechanical analysis.
机译:在本作工作中,用改善的机械性能制备环氧树脂基纳米复合材料(NCPS)。将环氧树脂(EPR)与不同量的钛酸钙(CATIO3)纳米颗粒(NPS)和玻璃纤维混合。结果表明,与二进制[EPR:CATIO3]系统相比,三元体系含有玻璃纤维的机械性能低。通过对各种样品套进行拉伸试验来确定纤维玻璃和NPS对环氧树脂机械行为的影响。从机械特征来看,可以看出,NPS浓度和杨氏模量之间存在单调关系。另外,NCPS样品本质上是脆性的,并且在添加CATIO3浓度时应变速率显着降低;虽然拉伸强度增加。从X射线衍射评估中,可以得出结论,NPS对环氧树脂结构产生很大影响。此外,形态外观与结构和机械分析很好。

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