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Eco-friendly composites derived from naturally occurring molecules in promoting dispersion of nanosized silica particulates

机译:生态友好型复合材料衍生自天然存在的分子在促进纳米二氧化硅颗粒的分散体中

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The reinforcement of highly dispersible silica (HDS) in Natural rubber was hindered by their high polarity and hydrophilic surface of the filler. We addressed this challenge by developing a Terpene phenolic resin functionalized Natural rubber (TNR) coupled with epoxidized natural rubber (ENR) composites. The loading of the HDS were considered from 40 to 60 phr (parts per hundred rubber). The uniform distribution of the HDS within the rubber blends in the absence of silane coupling agent and process oil was proven by cure characteristics, physico-mechanical properties, air ageing, dynamic mechanical analyses, Payne effect, contact angle, DeMattia flexing, dielectric properties and transmission electron microscopy. Overall, these newly developed green composites are superior to that of the reference composite, using process oil and TESPT (Bis-(triethoxysilylpropyl) tetrasulfide) as a coupling agent. Dispersion of HDS in rubber matrix may interfere with the addition of Zinc Oxide Nano particles (Nano-ZnO) due to the alkali-acidic reaction. Thus, this study explores the importance of omitting Nano-ZnO during internal mixing stage but incorporation of the same with the curing additives on a two roll mill. Our findings open up a new avenue to a fundamental understanding of HDS interaction in the novel green composites. POLYM. COMPOS., 40:871-883, 2019. (c) 2018 Society of Plastics Engineers
机译:通过其高极性和填料的亲水表面阻碍了天然橡胶中高度分散的二氧化硅(HDS)的加强。通过开发与环氧化天然橡胶(ENR)复合材料偶联的萜烯酚醛树脂官能化天然橡胶(TNR)来解决这一挑战。将HDS的加载量为40至60phr(每百橡胶部分)。通过固化特性,物理 - 机械性能,空气老化,动态机械分析,Payne效果,接触角,Demattia弯曲,介电性能和介电性能和介电性能,介电性能和施加施用透射电子显微镜。总的来说,这些新开发的绿色复合材料优于参考复合材料的优于参考复合材料,使用工艺油和TESPT(双 - (三乙氧基甲硅烷烯丙基)四硫醚)作为偶联剂。 Hds在橡胶基质中的分散可能由于碱性酸性反应而干扰氧化锌纳米颗粒(纳米ZnO)。因此,该研究探讨了内部混合阶段省略纳米ZnO的重要性,但在两个辊磨机上掺入固化添加剂。我们的调查结果向新颖的绿色复合材料中HDS交互的基本理解开辟了新的途径。聚合物。 Compos。,40:871-883,2019。(c)2018年塑料工程师协会

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