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首页> 外文期刊>Composites Science and Technology >Understanding the strain-dependent dielectric behavior of carbon black reinforced natural rubber - An interfacial or bulk phenomenon?
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Understanding the strain-dependent dielectric behavior of carbon black reinforced natural rubber - An interfacial or bulk phenomenon?

机译:了解炭黑增强天然橡胶的应变相关介电性能-界面现象还是体积现象?

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Filler-polymer interactions are one of the keys to understanding the physical properties of polymer composites. These interactions give rise to an interface with specific properties that may have a nontrivial effect on the macroscopic properties of composites. Direct measurement of the interface properties at nanometer scale is usually unavailable. Thus, interface properties are often back calculated from the bulk response using a computational model. However, if the model does not take into account the morphology of the filler dispersion, the results can be misleading. Recently it has been found that the dielectric response of a carbon black filled natural rubber film can change dramatically upon stretching [M. Huang, Macromolecules 49, 2339 (2016)]. In this paper, we will show that this phenomenon can be largely explained by changes in filler cluster connectivity due to strain and is probably not caused by changes in the interfacial interactions. To support the argument, the polarization mechanism of the composites in the measured frequency range is analyzed and numerical models are developed to virtually reproduce the physical phenomenon as a function of strain. A power-law dependence of dielectric permittivity with strain is derived, which matches closely with the experimental results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:填料-聚合物相互作用是理解聚合物复合材料物理性能的关键之一。这些相互作用产生了具有特定性质的界面,该界面可能对复合材料的宏观性质产生重要影响。通常无法直接测量纳米级的界面特性。因此,通常使用计算模型从整体响应中反算接口属性。但是,如果模型未考虑填料分散体的形态,则结果可能会产生误导。最近发现,填充炭黑的天然橡胶膜的介电响应在拉伸时会发生巨大变化[M.黄,高分子49,2339(2016)。在本文中,我们将表明,这种现象在很大程度上可以归因于应变引起的填充团簇连通性变化,而可能不是界面相互作用变化引起的。为支持这一论点,分析了复合材料在测量频率范围内的极化机理,并建立了数值模型以虚拟再现作为应变函数的物理现象。推导了介电常数与应变的幂律相关性,与实验结果非常吻合。 (C)2017 Elsevier Ltd.保留所有权利。

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    《Composites Science and Technology 》 |2017年第12期| 91-97| 共7页
  • 作者单位

    Rensselaer Polytech Inst, Dept Mat Sci & Engn, 110 8th St, Troy, NY 12180 USA;

    Rensselaer Polytech Inst, Dept Mat Sci & Engn, 110 8th St, Troy, NY 12180 USA;

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