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Electrical Conductivity of Urea-Formaldehyde-Cellulose Composites Loaded with Copper

机译:铜负载尿素-甲醛-纤维素复合材料的电导率

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This work is concerned with the preparation and characterization of composite materials prepared by compression molding of mixtures of copper powder and a commercial grade thermosetting resin of urea-formaldehyde filled with α-cellulose in powder form. The electrical conductivity of the composites is <10~(-12) S/cm, unless the metal content reaches the percolation threshold of 24.0 vol %, beyond which the conductivity increases markedly by as much as 11 orders of magnitude, indicating an insulator-conductor phase transition. The homogeneity of these composites was checked by the morphologies of the constituents (filler and matrix) and the composites characterized by optical microscopy. The density of the composites was measured and compared with values calculated assuming different void levels within the samples to discuss the porosity effect. Finally, the obtained results on electrical conductivity have been well interpreted with the statistical percolation theory. The deduced critical parameters, such as the threshold of percolation, V_f*, the critical exponent, t, and the packing density coefficient, F, were in good accord with earlier studies. In addition, the hardness of samples remained almost constant with the increase of metal concentration.
机译:这项工作涉及复合材料的制备和表征,该复合材料是通过将铜粉与填充有粉末状α-纤维素的工业级脲醛甲醛热固性树脂的混合物压缩成型而制备的。复合材料的电导率<10〜(-12)S / cm,除非金属含量达到24.0 vol%的渗滤阈值,否则其电导率显着增加多达11个数量级,表明绝缘子-导体相变。这些复合物的均质性通过成分(填充物和基质)的形态以及光学显微镜表征的复合物来检查。测量复合材料的密度,并与假定样品中不同孔隙水平的计算值进行比较,以讨论孔隙率效应。最后,使用统计渗流理论已经很好地解释了所获得的电导率结果。推导的临界参数,例如渗滤阈值V_f *,临界指数t和堆积密度系数F与先前的研究非常吻合。另外,随着金属浓度的增加,样品的硬度几乎保持恒定。

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