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首页> 外文期刊>Polymer international >Reinforcing mechanisms of carbon nanotubes and high structure carbon black in natural rubber/styrene-butadiene rubber blend prepared by mechanical mixing-effect of bound rubber
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Reinforcing mechanisms of carbon nanotubes and high structure carbon black in natural rubber/styrene-butadiene rubber blend prepared by mechanical mixing-effect of bound rubber

机译:机械粘合效果的天然橡胶/丁苯橡胶共混物中碳纳米管和高结构炭黑的增强机理

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摘要

The reinforcing effect of high structure carbon black (HSCB) and multi-walled carbon nanotubes (MWCNTs) on natural rubber/styrene-butadiene rubber blend processed using mechanical mixing was comparatively investigated. In-depth analysis by dynamic mechanical analysis, the Eggers-Schummer model and Medalia's relationship showed that HSCB aggregates provided large internal pores leading to significant immobilized macromolecules in filled rubber. Additionally, a tubular immobilized rubber layer with a thickness of 8nm was estimated for the rubber/MWCNT system based on dynamic mechanical analysis data. The mechanical performance of the HSCB filled blend was higher than that of the MWCNT filled blend at the same loading which was correlated to its higher bound rubber content. Both bound rubber content and filler anisotropy were found to govern the overall mechanical properties of rubber/MWCNT composites. Stress softening was correlated with rupture energy suggesting hysteretic failure mechanisms in both MWCNT and HSCB filled rubbers. (c) 2015 Society of Chemical Industry
机译:比较研究了高结构炭黑(HSCB)和多壁碳纳米管(MWCNT)对机械混合加工的天然橡胶/丁苯橡胶混合物的增强作用。通过动态力学分析进行深入分析,Eggers-Schummer模型和Medalia的关系表明,HSCB聚集体提供了较大的内部孔,从而导致填充橡胶中大量固定化的大分子。另外,基于动态力学分析数据,针对橡胶/ MWCNT系统估计了厚度为8nm的管状固定橡胶层。在相同载荷下,HSCB填充共混物的机械性能高于MWCNT填充共混物,这与其较高的粘结橡胶含量有关。发现结合的橡胶含量和填料各向异性都控制着橡胶/ MWCNT复合材料的整体机械性能。应力软化与断裂能相关,表明在MWCNT和HSCB填充橡胶中都有滞后破坏机理。 (c)2015年化学工业学会

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