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The effects of staged mixing on the dispersion of reinforcing fillers in elastomer compounds

机译:阶段混合对弹性体化合物中增强填料分散的影响

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摘要

Kinetically mixed reinforcing fillers are dispersed by accumulated strain. Processing conditions such as mixing geometry, intensity and the duration of mixing are key elements that control accumulated strain. A simple method to modify mechanical mixing is the mixing schedule which involves the timing of filler additions to a compound. For example, it is known that simultaneous addition of oil with filler is disadvantageous to dispersion, while the incorporation of oil after filler addition enhances dispersion. The simplest case of mixing schedule involves timed filler additions into an elastomer, for instance in a single stage or in two-stages. This study explores the effects of staged mixing on nanoscale dispersion based on a colloidal model. Dispersion is quantified using a pseudo-thermodynamic approach coupled with ultra-small angle X-ray scattering. It was found that single stage mixing yields optimal nano-dispersion for carbon-coated silica and carbon black in polybutadiene using an internal mixer.
机译:动力学混合增强填料是由积累变形分散。如混合几何形状,强度和混合的持续时间的加工条件是控制积累变形的关键要素。一种简单的方法来修改的机械混合是涉及填料添加的定时的化合物混合时间表。例如,已知的是同时加入的油与填料是不利的分散体,而油填料添加后掺入增强分散体。混合调度的最简单的情况包括在单个阶段或两阶段定时填料添加到弹性体,例如。本研究探讨基于胶体模型上的纳米级分散上演混合的效果。分散体使用再加超小角度X射线散射伪热力学方法定量。据发现,使用密炼机单阶段混合的产率最佳为在聚丁二烯碳涂布二氧化硅和炭黑的纳米分散体。

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