首页> 外文期刊>Open Engineering >Influence of Silica (SiO2) Loading on the Thermal and Swelling Properties of Hydrogenated-Nitrile-Butadiene-Rubber/Silica (HNBR/Silica) Composites
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Influence of Silica (SiO2) Loading on the Thermal and Swelling Properties of Hydrogenated-Nitrile-Butadiene-Rubber/Silica (HNBR/Silica) Composites

机译:二氧化硅(SiO2)的加入量对氢化丁腈橡胶/二氧化硅(HNBR / Silica)复合材料的热膨胀性能的影响

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Hydrogenated-Nitrile-Butadiene-Rubber (HNBR) is known for its good physical strength. It is a widely used rubber in electrical insulation and other high performance applications. Performance of HNBR is affected in high temperature and an aggressive fluid environment. Adding silica to HNBR may overcome this problem. In order to investigate the effect of fluids and temperature on HNBR/silica composites we prepared multiple composites of HNBR with 8.3, 16.7, 33.4, 50 and 66.7 phr of silica (SiO_(2)) by two roll compounding method. Swelling index and thermo gravimetric analyses were performed. Calculations of swelling indexes were performed at different time periods with ethanol, toluene and water. For thermo gravimetric analysis (TGA), thermo grams of samples were obtained and % char yields at 550 °C were analyzed for all samples. Improvements with the addition of silica were recorded up to a great extent in both analyses. Swelling index decreased with the addition of silica as compared to neat HNBR and reached an optimum position with 50 phr silica loading in ethanol, 8.3 phr in water and 66.7 phr in toluene. Moreover, the HNBR composite with 66.7 phr of silica was found to be the highest thermally stable sample and lost less than 60% of weight at 550 °C in comparison to neat HNBR in which 80% of weight loss occurred at 550 °C.
机译:氢化丁腈橡胶(HNBR)以其良好的物理强度而闻名。它是在电绝缘和其他高性能应用中广泛使用的橡胶。在高温和腐蚀性流体环境中,HNBR的性能会受到影响。在HNBR中添加二氧化硅可以解决这个问题。为了研究流体和温度对HNBR /二氧化硅复合材料的影响,我们通过两辊复合方法制备了8.3、16.7、33.4、50和66.7 phr二氧化硅(SiO_(2))的HNBR复合材料。进行溶胀指数和热重分析。使用乙醇,甲苯和水在不同时间段进行溶胀指数的计算。对于热重分析(TGA),获得了样品的热克数,并分析了所有样品在550°C下的%炭收率。在两种分析中都记录了添加二氧化硅的改进。与纯HNBR相比,添加二氧化硅的溶胀指数降低,并达到最佳位置,二氧化硅在乙醇中的含量为50 phr,在水中的含量为8.3 phr,在甲苯中的含量为66.7 phr。此外,与纯净的HNBR在550°C时发生80%的重量损失相比,发现具有66.7 phr二氧化硅的HNBR复合材料是最高的热稳定性样品,在550°C时其重量损失不到60%。

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