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Morphology and dynamic mechanical properties of natural rubberitrile rubber blends containing frans-polyoctylene rubber as a compatibilizer

机译:含有氟烷-聚辛烯橡胶作为增容剂的天然橡胶/丁腈橡胶混合物的形态和动态力学性能

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摘要

The use of traws-polyoctylene rubber(TOR)as a compatibilizer for blends of natural rubber(NR)and acrylonitrile-butadiene rubber(NBR)was investigated using atomic force microscopy(AFM)and dynamic mechanical analysis(DMA).The NR/NBR blends containing varying proportions of TOR were prepared in an internal mixer.AFM micrographs of NR/NBR blend at 50/50(w/w)composition showed heterogeneous phase morphology with NR as a matrix and NBR as a dispersed phase.Inclusion of TOR in the NR/NBR blend altered the phase morphology by reducing the size of the NBR phase.DMA of NR/NBR/TOR showed reduction in tan S peak height of NBR and an increase in storage modulus E' in the rubbery region for the NR/NBR blends.A comparison of the E' obtained from experimental data with that from theoretical models was made to deduce the location of TOR in the blend.Based on the fittings of calculated and experimental values of E',it was inferred that TOR was incorporated into the NR phase at lower proportion as well as at the interfacial region at higher proportion.The Cole-Cole plot illustrated the conipatibiliziiig effect of TOR.
机译:通过原子力显微镜(AFM)和动态力学分析(DMA),研究了使用拖线式聚辛烯橡胶(TOR)作为天然橡胶(NR)和丙烯腈-丁二烯橡胶(NBR)共混物的增容剂。在内部混合器中制备了含有不同比例TOR的共混物.NR / NBR共混物在50/50(w / w)组成下的AFM显微照片显示了异相相形态,其中NR为基质,NBR为分散相。 NR / NBR / TOR的DMA通过减小NBR相的大小来改变相态.NR / NBR / TOR的DMA显示NR / NBR的tan S峰高降低,橡胶状区域的储能模量E'增加。 NBR共混物。比较实验数据与理论模型得出的E',得出TOR在共混物中的位置。根据E'的计算值和实验值的拟合,推断出TOR被掺入以较低的比例进入NR阶段s在界面区域的比例更高。Cole-Cole图说明了TOR的可贴合效应。

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