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Colloidal gels under shear: Strain rate effects

机译:剪切下的胶体凝胶:应变率效应

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Attractive colloidal particles are trapped in metastable states such as colloidal gels at high attraction strengths and attractive glasses and high volume fractions. Under shear such states flow via a two step yielding process that relates to bond and cluster or cage breaking. We discuss the way the structural properties and related stress response are affected by the shear rate. At low rates colloidal gels yield during start-up shear essentially in a single step, exhibiting a single stress overshoot due to creation of compact flowing clusters. With increasing shear rate a second stress overshoot, linked with further cluster breaking up to individual particles, is becoming more pronounced. We further present the age dependence of the two step yielding and wall slip effects often taking place during rheological experiments of colloidal gels. The latter is related both with the shear rate dependent gel structure as well as the time evolution of the near wall structure.
机译:有吸引力的胶体颗粒被困在亚料态状态,如胶体凝胶,高吸引力和吸引人的眼镜和高容量级分。在剪切这样的状态下,通过两个步骤产生的流程,与粘合和簇或笼子破碎。我们讨论了结构性和相关应力反应受剪切速率影响的方式。在低速率下,胶体凝胶在开始剪切期间在一个步骤中剪切在一步中,由于粗小的流动簇的产生而显示出单一的应力过冲。随着剪切速率的增加,第二次应力过冲,与进一步的簇与个体颗粒分解有关,变得更加明显。我们进一步提出了在胶体凝胶的流变实验期间经常发生的两步屈服和壁滑移效果的年龄依赖性。后者与剪切速率相关的凝胶结构以及近壁结构的时间演变有关。

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