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首页> 外文期刊>International Journal of Polymer Science >Study on Microstructure Effect of Carbon Black Particles in Filled Rubber Composites
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Study on Microstructure Effect of Carbon Black Particles in Filled Rubber Composites

机译:填充橡胶复合材料中炭黑颗粒的微观结构效应研究

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The cross sections of blended natural/styrene-butadiene (NSBR) composites filled with different volume fractions of carbon particles were observed using a Quanta 250 scanning electron microscope. In addition, the sizes and distributions of the carbon particles were analyzed using Nano Measurer. A two-dimensional representative volume element model (RVE) for a rubber composite reinforced with circular carbon particles was established, and the uniaxial tensile behaviors of polymer nanocomposites with different particle size distribution patterns were simulated using the ABAQUS software. The results showed the following. (1) For the random models, if the difference of particle size was larger and particle distance was closer, stress distribution would be denser as well as the stress concentration would become greater. However, if the difference of particle size was small, for the case of same particle volume fraction, the particle size has little influence on the macromechanical properties whether the average size is large or small. (2) The correlation between the volume fraction and distribution of the carbon particles revealed that when the volume fraction of carbon black particles was larger than 12%, clusters between carbon particles in the polymer nanocomposites could not be avoided and the modulus of the composites increased with an increase in the cluster number.
机译:使用Quanta 250扫描电子显微镜观察了填充有不同体积分数的碳颗粒的天然/苯乙烯-丁二烯(NSBR)混合共混物的横截面。另外,使用Nano Measurer分析了碳颗粒的尺寸和分布。建立了圆形碳粒子增强的橡胶复合材料的二维代表性体积元模型(RVE),并使用ABAQUS软件模拟了具有不同粒径分布模式的聚合物纳米复合材料的单轴拉伸行为。结果显示如下。 (1)对于随机模型,如果粒径差异较大且距离较近,则应力分布会更密集,应力集中会更大。但是,如果粒径之差小,则对于相同的粒径分率,无论平均粒径是大还是小,粒径对宏观力学性能的影响都不大。 (2)碳颗粒的体积分数与分布之间的相关性表明,当炭黑颗粒的体积分数大于12%时,无法避免聚合物纳米复合材料中碳颗粒之间的团簇,并且复合材料的模量增加。集群数量增加。

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