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A Facile Strategy to Fabricate Antistatic Polyamide 1012/Multi-Walled Carbon Nanotube Pipes for Fuel Delivery Applications

机译:用于制造抗静电聚酰胺1012 /多壁碳纳米管管的容易策略用于燃料输送应用

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摘要

Developing antistatic long chain polyamide (LCPA) resins and fabricating the corresponding fuel pipes are challenges but necessary. Herein, a facile but effective strategy was put forward to fabricate LCPA resins with a superior conductivity, meeting the requirements of electrostatic sub-conductors. The strategy was based on, first, the incorporation of a large amount (15 wt%) of multi-walled carbon nanotubes (MWCNTs) into a polyamide 1012 (PA1012) matrix as a master batch, which formed a dense conductive network. Subsequently, it was diluted with PA1012 granules to produce base resins, and the reprocessed nanocomposites with a critical content of MWCNTs (3 wt%) could generate an effectively interconnected conductive network, with sparse and thinning features. Using the base resins, fuel pipes for automobiles, petrol stations and high pressure applications were successfully fabricated, where the thin conductive network was transformed into a thick one due to external field-induced re-agglomeration of MWCNTs. In this way, the obtained fuel pipes combined excellent conductive and barrier properties, and mechanical properties at high and low temperatures. These comprehensive properties also arose from the uniform dispersion of MWCNTs in an LCPA matrix, even without coupling agents; the attractive interaction between MWCNTs and the polyamide chains contributed to their strong interface adhesion. Thus, this research provides a versatile approach to fabricating antistatic LCPA resins, which will certainly extend their application to vehicle fuel systems.
机译:开发抗静电长链聚酰胺(LCPA)树脂并制造相应的燃料管是挑战,但需要。这里,提出了一种容易但有效的策略,以制造具有优异导电性的LCPA树脂,满足静电子导体的要求。该策略是基于,首先将大量(15wt%)的多壁碳纳米管(MWCNT)掺入聚酰胺1012(PA1012)基质中作为母料,其形成致密导电网络。随后,用PA1012颗粒稀释以产生基础树脂,并且具有临界含量的MWCNT(3wt%)的再加工纳米复合材料可以产生有效互连的导电网络,具有稀疏和稀疏的特征。使用基础树脂,成功制造了汽车,汽油站和高压应用的燃料管,其中薄导电网络由于外部场诱导的MWCNT的重聚而转化为厚的。以这种方式,所获得的燃料管在高温和低温下组合出优异的导电性和阻隔性能,以及在高温下的机械性能。这些综合性质也从MWCNTS在LCPA矩阵中的均匀分散,即使没有偶联剂; MWCNT和聚酰胺链之间的有吸引力的相互作用导致其强的界面粘附。因此,本研究提供了一种多功能的方法来制造抗静电LCPA树脂,肯定会将其应用延伸到车辆燃料系统。

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