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Nonlinear Electrical Conductivity of Tin-Filled Urea-Formaldehyde-Cellulose Composites

机译:锡填充尿素-甲醛-纤维素复合材料的非线性电导率

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This work reports on the elaboration and characterization of composite materials prepared by compression molding of mixtures of tin powder and a commercial grade thermo-setting resin of urea-formaldehyde filled with alpha-cellulose in powder form.The morphology of constituents and composites has been characterized by optical microscopy.The porosity rate of the composites has been determined from density measurements.These results show that the composites are homogeneous.Furthermore,it has been shown that the hardness of samples remains almost constant with the increase of metal concentration.The electrical conductivity of the composites is <10~(-11) S/cm unless the metal content reaches the percolation threshold at a volume fraction of 18.6%,beyond which the conductivity increases markedly by as much as 11 orders of magnitude.The results have been well interpreted in the statistical percolation theory frame.
机译:这项工作报道了复合材料的制备和表征,该复合材料是通过将锡粉与填充有粉状α-纤维素的商业级脲醛甲醛热固性树脂的混合物压缩成型而制备的。用光学显微镜观察了复合材料的孔隙率,结果表明复合材料是均匀的。此外,随着金属浓度的增加,样品的硬度几乎保持恒定。除非金属含量以体积分数达到18.6%达到渗滤阈值,否则复合材料的电导率<10〜(-11)S / cm,除此之外,电导率显着增加多达11个数量级。在统计渗流理论框架中进行解释。

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