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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Analysis of the interaction between rubber polymer and carbon black surfaces by efficient removal of physisorbed polymer from carbon-rubber composites
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Analysis of the interaction between rubber polymer and carbon black surfaces by efficient removal of physisorbed polymer from carbon-rubber composites

机译:通过从碳橡胶复合物中有效去除物理吸附的聚合物来分析橡胶聚合物与炭黑表面之间的相互作用

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The purpose of the present study is to provide insight into the structure of "bound rubber", which is responsible for the reinforcing effect of carbon black (CB) in a rubber composite. When styrene-butadiene rubber (SBR)-CB composites were treated with toluene at a high temperature (150 degrees C) in an autoclave (AC) vessel, it was found that the AC treatment extracted a much larger amount of physisorbed rubber than the conventional Soxhlet extraction. Moreover, the pulsed H-1 NMR technique reveals that the AC treatment can extract almost all of "loosely bound rubber" but leave "tightly bound rubber". An attempt was then made to correlate the amount of tightly bound rubber with the carbon surface chemistry in CB. As a result, a good linear relationship was found between the amount of tightly bound rubber and the hydrogen content of CB among four SBR composites with different types of CBs. Based on the above linear relationship, the origin of the tightly bound rubber is discussed in terms of the nature of the interaction (chemical and physical) between the rubber polymer chains and the CB surface. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究的目的是提供对“结合橡胶”结构的见解,该结构负责橡胶复合物中炭黑(CB)的增强作用。当在高压釜(AC)容器中在高温(150摄氏度)下用甲苯对丁苯橡胶(SBR)-CB复合材料进行甲苯处理时,发现与常规方法相比,AC处理可提取大量的物理吸附橡胶索氏提取。此外,脉冲H-1 NMR技术表明AC处理可以提取几乎所有“松散结合的橡胶”,而留下“紧密结合的橡胶”。然后尝试使紧密结合的橡胶的量与CB中的碳表面化学性质相关联。结果,在四种具有不同CB类型的SBR复合物中,紧密结合的橡胶量与CB的氢含量之间发现了良好的线性关系。基于上述线性关系,根据橡胶聚合物链与CB表面之间相互作用(化学和物理)的性质,讨论了紧密结合的橡胶的起源。 (C)2015 Elsevier Ltd.保留所有权利。

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