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Influence of macro-topography on damage tolerance and fracture toughness of 0.1 wt multi-layer graphene/clay-epoxy nanocomposites

机译:宏观形貌对0.1 wt%多层石墨烯/粘土-环氧纳米复合材料损伤容忍度和断裂韧性的影响

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摘要

Influence of topographical features on mechanical properties of 0.1 wt % Multi-Layer Graphene (MLG)/clay-epoxy nanocomposites has been studied. Three different compositions were made: (1) 0.1 wt % MLG-EP; (2) 0.1 wt % clay-EP and (3) 0.05 wt % MLG-0.05 wt % clay-EP. The objective of making hybrid nanocomposites was to determine whether synergistic effects are prominent at low weight fraction of 0.1 wt % causing an improvement in mechanical properties. The topographical features studied include waviness (Wa), roughness average (Ra), root mean square value (Rq) and maximum roughness height (Rmax or Rz). The Rz of as-cast 0.1 wt % MLG-EP, clay-EP and 0.05 wt % MLG-0.05 wt % clay-EP nanocomposites were 43.52, 48.43 and 41.8 µm respectively. A decrease in Rz values was observed by treating the samples with velvet cloth and abrasive paper 1200P while increased by treating with abrasive papers 320P and 60P. A weight loss of up to 16% was observed in samples after the treatment with the abrasive papers. It was observed that MLG is more effective in improving the mechanical properties of epoxy than nanoclay. In addition, no significant improvement in mechanical properties was observed in hybrid nanocomposites indicating that 0.1 wt % is not sufficient to generate conspicuous synergistic effects.
机译:研究了形貌特征对0.1 wt%多层石墨烯(MLG)/粘土-环氧纳米复合材料力学性能的影响。制成三种不同的组合物:(1)0.1重量%的MLG-EP; (2)0.1重量%的粘土-EP和(3)0.05重量%的MLG-0.05重量%的粘土-EP。制备杂化纳米复合材料的目的是确定在低重量分数为0.1 wt%时引起机械性能改善的协同效果是否显着。研究的地形特征包括波纹度(Wa),粗糙度平均值(Ra),均方根值(Rq)和最大粗糙度高度(Rmax或Rz)。铸态的0.1wt%的MLG-EP,粘土-EP和0.05wt%的MLG-0.05wt%的粘土-EP纳米复合物的Rz分别为43.52、48.43和41.8μm。通过用绒布和砂纸1200P处理样品观察到Rz值降低,而通过用砂纸320P和60P处理则观察到Rz值降低。用砂纸处理后,样品中的重量损失高达16%。据观察,MLG比纳米粘土在改善环氧树脂的机械性能上更有效。另外,在杂化纳米复合材料中未观察到机械性能的显着改善,表明0.1重量%不足以产生明显的协同作用。

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  • 作者

    Atif Rasheed; Inam Fawad;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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