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首页> 外文期刊>Journal of Applied Polymer Science >Development of an additive equation for predicting the electrical conductivity of carbon-filled composites
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Development of an additive equation for predicting the electrical conductivity of carbon-filled composites

机译:开发用于预测碳填充复合材料电导率的加性方程

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The electrical conductivity of polymeric materials can be increased by the addition of carbon fillers. The resulting composites can be used in applications such as electrostatic dissipation and interference shielding. Electrical conductivity models are often proposed to predict the conductivity behavior of these materials. The electrical conductivity of carbon-filled polymers was studied here by the addition of three single fillers to nylon 6,6 and polycarbonate in increasing concentrations. The fillers used in this project were carbon black, synthetic-graphite particles, and milled pitch-based carbon fibers. Materials were extruded and injection-molded into test specimens, and then the electrical conductivity was measured. Additional material characterization tests included optical microscopy for determining the filler aspect ratio and orientation. The filler and matrix surface energies were also determined. An updated model developed by Mamunya and others and a new additive model (including the constituent conductivities, filler volume fraction, percolation threshold, constituent surface energies, filler aspect ratio, and filler orientation) fit the electrical conductivity results well. (C) 2003 Wiley Periodicals, Inc. [References: 39]
机译:可以通过添加碳填料来提高聚合物材料的电导率。所得复合材料可用于静电消散和干扰屏蔽等应用。通常建议使用电导率模型来预测这些材料的电导率行为。在这里,通过向尼龙6,6和聚碳酸酯中增加浓度的三种单一填料的添加,研究了含碳聚合物的电导率。该项目中使用的填料是炭黑,合成石墨颗粒和磨碎的沥青基碳纤维。将材料挤出并注塑成试样,然后测量电导率。其他材料表征测试包括用于确定填料纵横比和取向的光学显微镜。还确定了填料和基体的表面能。 Mamunya等人开发的更新模型和新的添加剂模型(包括组成电导率,填料体积分数,渗滤阈值,组成表面能,填料纵横比和填料取向)非常符合电导率结果。 (C)2003 Wiley Periodicals,Inc. [参考:39]

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