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Electrical Properties of Carbon Nanotubes-Based Epoxy Nanocomposites For High Electrical Conductive Plate

机译:基于碳纳米管的高导电板的环氧纳米复合材料的电性能

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Electrical properties of carbon nanotubes-based epoxy nanocomposites for high electrical conductive plate were investigated. Dispersion and incorporation mechanism between two conductive fillers with different sizes (CNTs and Graphite) in the polymer matrix are the key factors in the fabrication of high electrical conductivity plate. Different variation of carbon nanotubes (CNTs) (1approx10 wt percent) and Graphite (G) (60 approx 69 wt percent) loading concentration were added into the epoxy resin. Dispersion of CNTs and G in epoxy resin were conducted by the internal mixer with a Haake torque rheometer. The mixture of G/CNTs/EP was poured into the steel mold, and G/CNTs/EP nanocomposites had been fabricated through compression molding. The electrical conductivity of nanocomposites in terms of variation of G and CNTs concentration were measured by the four point probe for in a plane electrical conductivity. The results revealed that addition of G/CNTs and increasing curing temperature are effective ways to produce high electrical conductive nanocomposites. The highest electrical conductivity was reached on 104.7 S/cm by addition 7.5 wt(percent) of CNTs. Dispersion quality of G and CNTs in the epoxy matrix was observed on the fractured surface by scanning electron microscopic.
机译:研究了基于碳纳米管的碳纳米管的电性能研究了用于高导电板的高导电板。在聚合物基质中具有不同尺寸(CNT和石墨)的两个导电填料之间的分散和掺入机制是高电导率板的制造的关键因子。将碳纳米管(CNT)(1Approx10wt%)和石墨(G)(60%69重量%)加入环氧树脂的不同变化。用Haake扭矩流变仪通过内部混合器进行CNT和G在环氧树脂中的分散。将G / CNT / EP的混合物倒入钢模中,通过压缩成型制造了G / CNT / EP纳米复合材料。在G和CNT浓度的变化方面,通过四点探针在平面导电性中测量纳米复合材料的电导率。结果表明,添加G / CNT和增加的固化温度是生产高导电纳米复合材料的有效方法。通过加入7.5wt(百分比)的CNT加入104.7 s / cm达到最高电导率。通过扫描电子显微镜在裂缝表面上观察到环氧基质中的G和CNT的分散质量。

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