Elongational flow mixing: A novel innovative approach to elaborate high-performance SBR-based elastomer compounds

IF 5.8 4区 工程技术 Q1 MECHANICS
Chloé Faverjon, Mohamed Yousfi, Caroline Parajua-sejil, Vivien Truchot, Jannick Duchet-Rumeau
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引用次数: 0

Abstract

Abstract A dominant extensional flow mixing device (Reactor/Elongational Flow MiXer; RMX) was used to prepare styrene-butadiene rubber (SBR)/silica nanocomposites with high physical performances. First, the processing parameters such as the temperature, number of mixing cycles, and sequenced mixing protocol have been optimized. Thereafter, the morphological structure of different compounds was probed using scanning and transmission electron microscopy. The prediction of the flow properties during processing of uncured materials were modeled using the dynamic and capillary rheometry. The thermo-mechanical sweep behavior of the as-prepared silica-filled SBR specimens was also investigated. By comparing with SBR/silica compounds prepared by the internal mixer, it was proven that elongational flow mixing process can not only reduce mixing energy consumption but also make the manufactured parts to have high state of dispersion, excellent viscoelastic properties, high extensional and yield stresses, and high elastic and rubbery moduli. This study highlights the potential of the elongational flow mixing as an innovative processing approach which is compatible with the industrial expectations for the fast manufacturing of high-performance silica and carbon black filled rubber compounds.
拉长流动混合:一种新颖的创新方法,精心制作高性能sbr基弹性体化合物
一种占主导地位的延伸流混合装置(反应器/延伸流混合器;利用RMX制备了物理性能优良的丁苯橡胶/二氧化硅纳米复合材料。首先,对温度、搅拌循环次数、顺序搅拌方案等工艺参数进行了优化。然后,用扫描电镜和透射电镜对不同化合物的形态结构进行了探测。采用动态流变法和毛细管流变法对未固化材料加工过程中的流动特性进行了预测。研究了制备的二氧化硅填充SBR试样的热-机械扫描行为。通过与内混炼器制备的SBR/silica化合物的对比,证明了拉长流混炼工艺不仅能降低混炼能耗,而且能使制件具有良好的分散状态、优异的粘弹性、高的拉伸和屈服应力、高的弹性和橡胶模量。这项研究强调了延长流混合作为一种创新的加工方法的潜力,这种方法与工业对高性能二氧化硅和炭黑填充橡胶化合物的快速制造的期望相兼容。
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来源期刊
Applied Rheology
Applied Rheology 物理-力学
CiteScore
3.00
自引率
5.60%
发文量
7
审稿时长
>12 weeks
期刊介绍: Applied Rheology is a peer-reviewed, open access, electronic journal devoted to the publication in the field of applied rheology. The journal provides the readers with free, instant, and permanent access to all content worldwide; and the authors with extensive promotion of published articles, long-time preservation, language-correction services, no space constraints and immediate publication.
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