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In-Situ Modification-Dispersion Technique for Nano-fillers in Rubber Matrix

机译:橡胶基纳米填料的原位改性分散技术

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At the beginning of the nineties with the highly loaded silica passenger car trends, the modification of silica attracted great attention [1]. Silane coupling agent- bis-(3-triethoxisilylpropyl)-tetrasulfide (Si69) is the most widely used modifier. The reaction of Si69 with silica during the mixing (in-situ modification reaction) is always more economical than the use of modified fillers. By analyzing the strain dependence of the storage modulus and the loss factor tan8, the Rubber-Process-Analyzer (RPA, Alpha Technologies) allows a very reliable and detailed investigation of the dynamic behavior of green compounds and vulcanizates, which is closely related to the dispersion level of filler, the interfacial strength and etc. The aim of this report is to give a deeper insight into the in-situ modification dispersion technique (ISMD) for silica filled rubber system, and in the meantime, to extend the ISMD method for other nanofillers filled rubber composites, such as nano-Mg(OH)_2, and attapulgite, which have hydroxyl groups on their surfaces.
机译:九十年代初,随着高载二氧化硅乘用车的发展趋势,二氧化硅的改性引起了极大的关注[1]。硅烷偶联剂-双-(3-三乙氧基甲硅烷基丙基)-四硫化物(Si69)是使用最广泛的改性剂。 Si69与二氧化硅在混合过程中的反应(原位改性反应)总是比使用改性填料更经济。通过分析储能模量和损耗因子tan8的应变依赖性,Rubber-Process-Analyzer(RPA,Alpha Technologies)可以对绿色化合物和硫化橡胶的动态行为进行非常可靠和详细的研究,这与橡胶的硫化过程密切相关。填料的分散度,界面强度等。本报告的目的是更深入地了解二氧化硅填充橡胶体系的原位改性分散技术(ISMD),同时扩展ISMD方法用于其他纳米填料填充了橡胶复合材料,例如纳米Mg(OH)_2和凹凸棒石,它们的表面均具有羟基。

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