首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Impact of carbon nanotube prelocalization on the ultra-low electrical percolation threshold and on the mechanical behavior of sintered UHMWPE-based nanocomposites
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Impact of carbon nanotube prelocalization on the ultra-low electrical percolation threshold and on the mechanical behavior of sintered UHMWPE-based nanocomposites

机译:碳纳米管预科大化对超低电渗滤阈值的影响及基于烧结UHMWPE的纳米复合材料的力学行为

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摘要

Nascent powder particles of Ultra High Molecular Weight Polyethylene have been covered by multi walled carbon nanotubes and then processed by means of sintering. The prelocalization of carbon nanotubes in the interfacial region between powder particles of UHMWPE allowed reaching an electrical percolation threshold as low as 0.04 wt%. It is also a possible way to reinforce specifically the interfacial regions with a very small amount of fillers. Indeed, the nucleation effect of the nanotubes is very strong on the strain-induced crystallization in the melting state of the composite. The tensile experiments above the melting point allowed by the extremely broad rubbery plateau of the UHMWPE show a significant increase in strain-hardening due to the addition of CNTs from 0.02 wt%. In the solid state the elastic properties, such as yield stress, and the crystallinity can also be increased for higher CNT concentrations despite the presence of aggregates which reduce the elongation at break. (c)2017 Published by Elsevier Ltd.
机译:超高分子量聚乙烯的新生粉末颗粒已被多壁碳纳米管覆盖,然后通过烧结加工。 UHMWPE粉末颗粒之间的界面区域中碳纳米管的预科化允许达到电渗透阈值,低至0.04wt%。还可以特别是用非常少量的填料来加强界面区域的可能方法。实际上,纳米管的成核效果在复合材料的熔化状态下应变诱导的结晶非常强。高于UHMWPE极宽的橡胶高原允许的熔点的拉伸实验表明,由于加入来自0.02wt%的CNT,应变硬化显着增加。在固态中,尽管存在聚集体,但也可以增加弹性性质,例如屈服应力,例如屈服应力,以及结晶度,并且在较高的CNT浓度下也可以增加粒子。 (c)2017年由elestvier有限公司出版

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