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Strengthened PAN-based carbon fibers obtained by slow heating rate carbonization

机译:通过缓慢升温速率碳化获得的增强型PAN基碳纤维

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摘要

Large efforts have been made over the last 40 years to increase the mechanical strength of polyacrylonitrile (PAN)-based carbon fibers (CFs) using a variety of chemical or physical protocols. In this paper, we report a new method to increase CFs mechanical strength using a slow heating rate during the carbonization process. This new approach increases both the carbon sp3 bonding and the number of nitrogen atoms with quaternary bonding in the hexagonal carbon network. Theoretical calculations support a crosslinking model promoted by the interstitial carbon atoms located in the graphitic interlayer spaces. The improvement in mechanical performance by a controlled crosslinking between the carbon hexagonal layers of the PAN based CFs is a new concept that can contribute further in the tailoring of CFs performance based on the understanding of their microstructure down to the atomic scale.
机译:在过去的40年中,已经进行了巨大的努力,以使用各种化学或物理方案来提高基于聚丙烯腈(PAN)的碳纤维(CF)的机械强度。在本文中,我们报告了一种在碳化过程中通过缓慢加热速率来提高CF的机械强度的新方法。这种新方法既增加了碳sp 3 键,又增加了六边形碳网络中具有季键的氮原子数。理论计算支持由位于石墨层间空间中的间隙碳原子促进的交联模型。通过在PAN基CFs的碳六边形层之间进行受控交联来改善机械性能是一个新概念,它可以基于对CFs微观结构的了解,甚至对原子尺度的理解,进一步有助于CFs性能的定制。

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