首页> 外文期刊>Journal of Elastomers & Plastics >XSBR/NR Rubber Blends Filled with Polystyrene-Encapsulated Nanosilica Prepared by in situ Differential Microemulsion Polymerization
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XSBR/NR Rubber Blends Filled with Polystyrene-Encapsulated Nanosilica Prepared by in situ Differential Microemulsion Polymerization

机译:原位微分乳液聚合制备的XSBR / NR掺有聚苯乙烯包封纳米二氧化硅的橡胶共混物

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摘要

Rubber blends of caboxylated styrene butadiene rubber (XSBR) and natural rubber (NR) filled with polystyrene-encapsulated nanosilica (PS-nSiO2) were prepared by latex compounding. The PS-nSiO2 synthesized by in situ differential microemulsion polymerization was used at 3 phr as the filler in three different XSBR/NR blend ratios (70/30, 50/50, and 30/70). The nanocomposite latex was cast into sheets on glass molds and cured in an oven. The specimens were examined for their tensile properties, dynamic mechanical properties, and thermal stability. The tensile strength and elongation at break were found to increase with increasing levels of NR in the rubber blends, but the modulus decreased. Moreover, the tensile properties, dynamic mechanical properties, and thermal stability were all improved by the addition of PS-nSiO2 within the blend systems.
机译:通过胶乳混合制备了丁烷氧基化丁苯橡胶(XSBR)和天然橡胶(NR)的橡胶共混物,其中填充了聚苯乙烯包封的纳米二氧化硅(PS-nSiO2)。通过三种不同的XSBR / NR混合比(70 / 30、50 / 50和30/70),通过原位微乳液聚合法合成的PS-nSiO2以3 phr的量用作填充剂。将纳米复合乳胶在玻璃模具上浇铸成片并在烘箱中固化。检查样品的拉伸性能,动态力学性能和热稳定性。发现随着橡胶共混物中NR含量的增加,拉伸强度和断裂伸长率增加,但是模量降低。此外,通过在共混体系中添加PS-nSiO2,可改善拉伸性能,动态力学性能和热稳定性。

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