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首页> 外文期刊>Journal of Applied Polymer Science >Electrical conductivity modeling of carbon black/polycarbonate, carbon nanotube/polycarbonate, and exfoliated graphite nanoplatelet/polycarbonate composites
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Electrical conductivity modeling of carbon black/polycarbonate, carbon nanotube/polycarbonate, and exfoliated graphite nanoplatelet/polycarbonate composites

机译:炭黑/聚碳酸酯,碳纳米管/聚碳酸酯和片状石墨纳米片/聚碳酸酯复合材料的电导率模型

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摘要

Adding conductive carbon fillers to electrically insulating thermoplastic polymers increases the resulting composite's electrical conductivity, which would enable them to be used in electrostatic dissipative and semiconductive applications. In this study, varying amounts of carbon black (CB: 2 to 10 wt %), multiwalled carbon nanotubes (CNT: 0.5 to 8 wt %), or exfoliated graphite nanoplatelets (GNP: 2 to 15 wt %) were added to polycarbonate (PC) and the resulting composites were tested for electrical conductivity (EC = 1/electrical resistivity). The percolation threshold was a 1.2 vol % CNT, a 2.4 vol % CB, and a 4.6 vol % GNP. In addition, three EC models (Mamunya, additive, and general effective media) were developed for the CB/PC, CNT/PC, and GNP/PC composites. The general effective media (GEM) model showed the best agreement with the experimental results over the entire range of filler concentrations (above and below the percolation threshold) for all three composite systems. In addition, the GEM model can be easily adapted for composites containing combinations of different conductive fillers.
机译:在电绝缘的热塑性聚合物中添加导电碳填料可提高所得复合材料的电导率,这将使其能够用于静电耗散和半导电应用。在这项研究中,将不同量的炭黑(CB:2至10 wt%),多壁碳纳米管(CNT:0.5至8 wt%)或脱落的石墨纳米片(GNP:2至15 wt%)添加到聚碳酸酯( PC)和所得复合材料的电导率(EC = 1 /电阻率)。渗滤阈值为1.2体积%的CNT,2.4体积%的CB和4.6体积%的GNP。此外,针对CB / PC,CNT / PC和GNP / PC复合材料开发了三种EC模型(Mamunya,添加剂和一般有效介质)。通用有效介质(GEM)模型在所有三种复合系统的整个填料浓度范围(高于和低于渗滤阈值)上均显示出与实验结果的最佳一致性。此外,GEM模型可轻松适用于包含不同导电填料组合的复合材料。

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