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首页> 外文期刊>Journal of polymer engineering >Determination of mechanical properties of two-phase and hybrid nanocomposites: experimental determination and multiscale modeling
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Determination of mechanical properties of two-phase and hybrid nanocomposites: experimental determination and multiscale modeling

机译:两相杂交纳米复合材料的力学性能的测定:实验测定与多尺度建模

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In this paper, the effects of filler content and the use of hybrid nanofillers on agglomeration and nanocomposite mechanical properties such as elastic moduli, ultimate strength and elongation to failure are investigated experimentally. In addition, thermoset epoxy-based two-phase and hybrid nanocomposites are simulated using multiscale modeling techniques. First, molecular dynamics simulation is carried out at nanoscale considering the interphase. Next, finite element method and micromechanical modeling are used for micro and macro scale modeling of nanocomposites. Nanocomposite samples containing carbon nanotubes, graphene nanoplatelets, and hybrid nanofillers with different filler contents are prepared and are tested. Also, field emission scanning electron microscopy is used to take micrographs from samples' fracture surfaces. The results indicate that in two-phase nanocomposites, elastic modulus and ultimate strength increase while nanocomposite elongation to failure decreases with reinforcement weight fraction. In addition, nanofiller agglomeration occurred at high nanofiller contents especially higher than 0.75 wt% in the two-phase nanocomposites. Nanofiller agglomeration was observed to be much lower in the hybrid nanocomposite samples. Therefore, using hybrid nanofillers delays/prevents agglomeration and improves mechanical properties of nanocomposite at the same total filler content.
机译:本文实验研究了填料含量及杂交纳米填料对纳米复合力学机械性能的影响,例如弹性模量,最终强度和伸长率。此外,使用多尺度建模技术模拟热固性环氧基的两相和杂化纳米复合材料。首先,考虑到间隔的纳米尺度进行分子动力学模拟。接下来,有限元方法和微机械建模用于纳米复合材料的微型和宏观尺度建模。制备纳米复合材料,制备具有不同填料含量的碳纳米管,石墨烯纳米孔和具有不同填料含量的杂合纳米填料的样品。此外,场发射扫描电子显微镜用于从样品的骨折表面采用显微照片。结果表明,在两相纳米复合材料中,弹性模量和极限强度增加,而纳米复合材料伸长率与衰竭伸长率随增强重量馏分而降低。此外,纳米填料附聚在高纳米填充物中,在两相纳米复合材料中特别高于0.75wt%。在杂合纳米复合材料样品中观察到纳米填充聚集在杂交纳米复合材料样品中得多。因此,使用杂交纳米填充物延迟/防止聚集并在相同的总填料含量下提高纳米复合材料的机械性能。

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