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首页> 外文期刊>Polymers for advanced technologies >Enhanced conductivity composites for aircraft applications: carbon nanotube inclusion both in epoxy matrix and in carbonized electrospun nanofibers
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Enhanced conductivity composites for aircraft applications: carbon nanotube inclusion both in epoxy matrix and in carbonized electrospun nanofibers

机译:用于飞机的增强导电性复合材料:环氧基质和碳化电纺纳米纤维中均包含碳纳米管

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摘要

The potential of carbonized electrospun nanofiber mats to render epoxy resin composites for aircraft applications electrically and thermally more conductive was investigated. The effect of carbon nanotube inclusion both inside the carbon nanofiber and in the epoxy resin matrix material was studied, in order to reveal any synergistic effects of multilevel presence of nanosized reinforcements on the conductivity and mechanical properties. The carbon nanotube inclusion into the carbonized nanofibers increased the electrical conductivity of the samples by 20-50% and the thermal conductivity by approximately three times leading to a higher value than that of the conventional composites. The preparation of layered composites with a conductive upper layer containing nonwoven carbon nanofabric and a load bearing lower layer with conventional unidirectional carbon fiber reinforcement can offer a cost-effective and weight-saving solution for the replacement of metal meshes in structural aircraft composites.
机译:研究了碳化电纺纳米纤维毡在飞机和航空应用中使环氧树脂复合材料导电和导热的潜力。研究了碳纳米管内部和环氧树脂基体材料中碳纳米管夹杂物的作用,以揭示纳米增强材料多级存在对导电性和机械性能的任何协同作用。碳化纳米纤维中包含的碳纳米管将样品的电导率提高了20%至50%,并将热导率提高了约三倍,从而获得了比常规复合材料更高的值。具有导电上层(包含非织造碳纳米纤维)和具有常规单向碳纤维增强材料的承重下层的层状复合材料的制备可以为结构飞机复合材料中的金属网眼更换提供经济高效且重量轻的解决方案。

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