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Analysis and Simulation of the Electrical Properties of CNTs/Epoxy Nanocomposites for High Performance Composite Matrices

机译:高性能复合材料基体中碳纳米管/环氧纳米复合材料电性能分析与仿真

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Carbon fiber composite laminates have good electrical properties due to the performance of the fibers, but the composite anisotropy induces a quite lower conductivity through the thickness. In fact, in this direction the fiber bundles are separated by insulating epoxy matrix. In this work, CNTs (carbon nanotubes) with different geometries and functionalization have been added to an epoxy resin to improve the electrical performance. The nano-filled matrix has been used to produce carbon fiber (CF) composites for aerospace applications. Multiscale modeling was used to predict some important parameters such as percolation threshold and the model has been successfully verified with experimental results. The results reported show a good improvement of the electrical and mechanical properties both in the matrix and in the composites. In particular, in composites with the nanocomposite matrix, an improvement of one order of magnitude in the electrical conductivity through the laminate thickness has been achieved. POLYM. COMPOS., 38: 105-115, 2017. (C) 2015 Society of Plastics Engineers
机译:由于纤维的性能,碳纤维复合材料层合板具有良好的电性能,但复合各向异性通过厚度引起的电导率相当低。事实上,在这个方向上,纤维束被绝缘环氧树脂基体隔开。在这项工作中,将具有不同几何形状和功能化的碳纳米管(碳纳米管)添加到环氧树脂中,以提高电性能。纳米填充基体已用于生产用于航空航天应用的碳纤维 (CF) 复合材料。采用多尺度建模对渗流阈值等重要参数进行预测,实验结果验证了该模型。报告的结果表明,基体和复合材料的电气和机械性能均得到了良好的改善。特别是,在具有纳米复合基体的复合材料中,通过层压板厚度实现了电导率提高一个数量级。波利姆。作曲, 38: 105-115, 2017.(C) 2015年塑料工程师学会

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