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Cure Characteristics and Spectroscopic Studies of Silica filled EpoxidisedNatural Rubber Compound.

机译:二氧化硅填充环氧化橡胶化合物的固化特性和光谱研究。

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Reinforcement of rubber by precipitated silica is adversely affected due to lack of strong polymer filler bonding~(1-2). The surface energy of fillers play an important role in the reinforcement of rubbers and has a profound influence on the performance of rubber products~3. Functionalised polymers interact strongly with surface silanol groups of precipitated silica. In this work, the unique reinforcement mechanism exhibited by silica in EpoxidisedNatural Rubber (ENR) is established through rheometric and Fourier Transform Infrared Spectroscopic (FTIR) study. A rheometer torque rise was detected with anENR compound silica in the absence of any curing agent. On the other hand, the extent of the interaction increased with the increment of epoxidation level. Fourier transform infra red spectroscopic studies showed silica is bonded to ENR through formation of Si-O-C bond and the extent of the chemical interaction depends on the moulding time~4.
机译:由于缺乏强聚合物填充粘合剂〜(1-2),由于缺乏沉淀的二氧化硅加固橡胶受到不利影响〜(1-2)。填料的表面能在橡胶加固中起着重要作用,对橡胶制品的性能进行了深远的影响。官能化聚合物用沉淀二氧化硅的表面硅烷醇基相互作用。在这项工作中,通过流变率和傅里叶变换红外光谱(FTIR)研究建立了二氧化硅展示的独特增强机制(ENR)。在不存在任何固化剂的情况下,用AnenR化合物二氧化硅检测流变仪扭矩升高。另一方面,相互作用的程度随环氧化水平的增量而增加。傅里叶变换红外线测量的红光光谱研究显示二氧化硅以通过形成Si-O-C键来键合,化学相互作用的程度取决于模塑时间〜4。

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