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Multi-functional multi-walled carbon nanotube-jute fibres and composites

机译:多功能多壁碳纳米管-黄麻纤维及其复合材料

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摘要

Jute fibres and corresponding epoxy based composites with sensing abilities could be realized by depositing multi-walled carbon nanotubes (MWCNTs) on the surfaces of jute fibres or fabrics using simple and scalable dip coating. The formation of electrically semiconducting MWCNT networks on jute fibre surfaces was confirmed, which in turn caused the formation of jute/epoxy interphases with highly concentrated MWCNTs. The sensing behaviour of the MWCNT coated jute fibres and jute/epoxy composites for temperature, relative humidity and stress/strain was further established in detail, which were strongly influenced by the intrinsic physical and chemical features of the fibres. In addition, a significant improvement in dielectric properties of the MWCNT-jute/epoxy composites was observed compared to neat jute/epoxy composites. Based on this approach, the electrically insulating natural fibres along with semiconducting MWCNTs on surface will stimulate and realize a broad range of multi-functional applications.
机译:通过使用简单且可扩展的浸涂法在黄麻纤维或织物的表面上沉积多壁碳纳米管(MWCNT),可以实现具有传感能力的黄麻纤维和相应的基于环氧的复合材料。证实了在黄麻纤维表面上形成了半导电的MWCNT网络,这又导致了高浓度MWCNT形成了黄麻/环氧中间相。进一步详细建立了MWCNT涂层的黄麻纤维和黄麻/环氧复合材料对温度,相对湿度和应力/应变的传感行为,这些行为受纤维固有的物理和化学特性的强烈影响。此外,与纯黄麻/环氧树脂复合材料相比,MWCNT-黄麻/环氧树脂复合材料的介电性能得到了显着改善。基于这种方法,表面上的电绝缘天然纤维以及半导体MWCNT将刺激并实现广泛的多功能应用。

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