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首页> 外文期刊>RSC Advances >Reinforcing efficiency and compatibilizing effect of sol-gel derived in situ silica for natural rubber/chloroprene rubber blends
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Reinforcing efficiency and compatibilizing effect of sol-gel derived in situ silica for natural rubber/chloroprene rubber blends

机译:溶胶-凝胶原位二氧化硅对天然橡胶/氯丁橡胶共混物的增强效率和增容效果

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摘要

Nano silica is grown, in situ, in natural rubber (NR)/chloroprene rubber (CR) blends, by the soaking sol-gel method. Much better silica dispersion in the rubber blends is achieved following this technique in comparison to the rubber blends with externally filled silica at the same filler loading and same blend composition. This leads to a significant improvement in modulus, tensile strength and dynamic mechanical properties of all the in situ silica filled composites relative to externally filled composites. Additionally, analysis of glass transition temperature (T-g) values reveals that compatibility of NR and CR in the blend is enhanced when silica is incorporated in situ which in turn contributes to improving the physical properties of the composites. This enhancement in the compatibility of rubber blends is attributed to the preferential accumulation of in situ silica at the interphase of the two constituent rubbers. The best mechanical properties are shown by the in situ filled composite with NR/CR at a 40/60 blend ratio. This result is in agreement with the rheological properties, thermal properties and viscoelastic behaviors of this particular composite. The ultimate properties of the composites are found to be governed by the blend composition, blend compatibility and state of filler dispersion, in addition to the filler content.
机译:通过浸泡溶胶-凝胶法,在天然橡胶(NR)/氯丁二烯橡胶(CR)混合物中原位生长纳米二氧化硅。与具有相同填充量和相同共混物组成的外部填充二氧化硅的橡胶共混物相比,采用该技术可实现在橡胶共混物中的二氧化硅更好的分散。相对于外部填充的复合物,这导致所有原位填充二氧化硅的复合物的模量,拉伸强度和动态机械性能的显着改善。另外,玻璃化转变温度(T-g)值的分析表明,当就地加入二氧化硅时,共混物中NR和CR的相容性得到增强,这反过来有助于改善复合材料的物理性能。橡胶共混物相容性的这种提高归因于原位二氧化硅在两种组成橡胶之间的优先聚集。 NR / CR原位填充复合材料以40/60的混合比显示出最佳的机械性能。该结果与该特定复合材料的流变性质,热性质和粘弹性行为一致。除了填料含量外,还发现复合材料的最终性能受共混物组成,共混物相容性和填料分散状态的控制。

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