首页> 美国卫生研究院文献>Polymers >Accelerated Shape Forming and Recovering Induction and Release of Adhesiveness of Conductive Carbon Nanotube/Epoxy Composites by Joule Heating
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Accelerated Shape Forming and Recovering Induction and Release of Adhesiveness of Conductive Carbon Nanotube/Epoxy Composites by Joule Heating

机译:焦耳加热加速形状的形成和导电碳纳米管/环氧树脂复合材料的粘合性的恢复诱导和释放

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摘要

The versatile properties of a nanopaper consisting of a porous network of multi-walled carbon nanotubes were applied to enhance the mechanical and electrical properties of a thermosetting epoxy polymer. The embedded nanopaper proved useful both in the monitoring of the curing process of the epoxy resin by the self-regulating Joule heating and in the supervising of tensile deformations of the composite by detecting changes in its electrical resistance. When heated by Joule heating above its glass transition temperature, the embedded carbon nanotube nanopaper accelerated not only the modelling of the composites into various shapes, but also the shape recovery process, wherein the stress in the nanopaper was released and the shape of the composite reverted to its original configuration. Lastly, in comparison with its respective epoxy adhesive, the internally heated electro-conductive carbon nanotube nanopaper/epoxy composite not only substantially shortened curing time while retaining comparable strength of the adhesive bonding of the steel surfaces, but also enabled a release of such bonds by repeated application of DC current.
机译:由多壁碳纳米管的多孔网络组成的纳米纸的多用途特性被应用于增强热固性环氧聚合物的机械和电气特性。事实证明,嵌入的纳米纸既可用于通过自调节焦耳加热来监测环氧树脂的固化过程,也可用于通过检测复合材料的电阻变化来监督复合材料的拉伸变形。当通过焦耳加热将其加热到高于其玻璃化转变温度时,嵌入的碳纳米管纳米纸不仅可以将复合材料建模为各种形状,还可以加快形状恢复过程,从而释放纳米纸中的应力并使复合材料的形状恢复原状。还原为原始配置。最后,与其各自的环氧粘合剂相比,内部加热的导电碳纳米管纳米纸/环氧复合材料不仅大大缩短了固化时间,同时保持了钢表面的粘合强度,而且通过重复施加直流电流。

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