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Fabrication and characterization of silicon carbide/epoxy nanocomposite using silicon carbide nanowhisker and nanoparticle reinforcements

机译:使用碳化硅纳米晶须和纳米颗粒增强材料制备和表征碳化硅/环氧树脂纳米复合材料

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In this study, the influence of filler shape and filler content on the physical and mechanical properties of silicon carbide/epoxy nanocomposites was investigated using silicon carbide nanoparticles and nanowhiskers. Samples containing 0.5, 1, 2 and 4wt% of -silicon carbide nanowhiskers and nanoparticles in epoxy resin were prepared using a high-intensity ultrasonic liquid processor and casting technique. Mechanical and physical tests such as tensile, flexural, hardness, and wear along with a morphological investigation by FT-IR, scanning electron microscopy and transition electron microscopy were performed. Results of mechanical tests indicating about 20% and 40% improvement were achieved in nanoparticle (1wt%) and nanowhisker (2wt%) reinforced samples, respectively. Also mechanical experiment results have been evaluated with theoretical models. Tribological results show that wear and frictional properties improved about 50% and 30%, respectively, by adding silicon carbide nanoparticles (4wt%) and nanowhiskers (4wt%) to epoxy resin. TEM and SEM observations showed that nano-fillers are dispersed in low weight ratio but agglomerated above a critical content.
机译:在这项研究中,使用碳化硅纳米颗粒和纳米晶须研究了填料形状和填料含量对碳化硅/环氧树脂纳米复合材料的物理和机械性能的影响。使用高强度超声液体处理器和浇铸技术制备了在环氧树脂中包含0.5、1、2和4wt%的-碳化硅纳米晶须和纳米颗粒的样品。进行了机械和物理测试,例如拉伸,挠曲,硬度和磨损,以及通过FT-IR,扫描电子显微镜和过渡电子显微镜进行的形态研究。力学测试结果表明,分别在纳米颗粒(1wt%)和纳米晶须(2wt%)增强的样品中实现了约20%和40%的改善。力学实验结果也已经用理论模型进行了评估。摩擦学结果表明,通过向环氧树脂中添加碳化硅纳米颗粒(4wt%)和纳米晶须(4wt%),磨损和摩擦性能分别提高了约50%和30%。 TEM和SEM观察表明,纳米填料以低的重量比分散,但在高于临界含量时会聚结。

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