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首页> 外文期刊>Journal of Applied Polymer Science >Rheological, electrical, and microwave properties of polymers with nanosized carbon particles
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Rheological, electrical, and microwave properties of polymers with nanosized carbon particles

机译:具有纳米碳颗粒的聚合物的流变,电和微波性能

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摘要

The rheology, dc-conductivity, and microwave properties of acrylic, polyurethane, and epoxy composites containing 0-15 vol % of nanosized carbon particles have been investigated. Carbon nanoparticles (1-3 nm) are produced by a shock wave technology. Steady-state shear and oscillatory flow tests are applied to investigate the rheological properties of dispersions; dc-conductivity and MW absorption/reflection are investigated for solid composite films. Rheological characteristics are used for the evaluation of agglomeration processes of nanoparticles in dispersions, as controlled by volume fraction and processing technology. The percolation threshold is interpreted as a structural transition from a dispersed to an agglomerated state and it is found to depend significantly on the type of the matrix polymer. Above the percolation threshold, the presence of carbon nanoparticles produces a strong increase in the viscosity of dispersions as well as of the electrical conductivity and microwave properties of solid composites. A good correlation between the three characteristics is found for the systems in a wide range of carbon volume fractions. (C) 2004 Wiley Periodicals, Inc. [References: 36]
机译:研究了含有0-15%(体积)纳米碳颗粒的丙烯酸,聚氨酯和环氧复合材料的流变学,直流电导率和微波性能。碳纳米颗粒(1-3纳米)是通过冲击波技术生产的。稳态剪切和振荡流动试验用于研究分散体的流变性。研究了固体复合膜的直流电导率和MW吸收/反射率。流变特性用于评估分散体中纳米颗粒的团聚过程,该过程受体积分数和加工技术的控制。渗滤阈值被解释为从分散状态到团聚状态的结构转变,并且发现其显着取决于基质聚合物的类型。超过渗滤阈值,碳纳米颗粒的存在使分散体的粘度以及固体复合材料的电导率和微波性能大大提高。在广泛的碳体积分数范围内,系统的三个特性之间具有良好的相关性。 (C)2004 Wiley Periodicals,Inc. [参考:36]

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