论文标题
干扰距离指示胶体剪切增厚
Jamming Distance Dictates Colloidal Shear Thickening
论文作者
论文摘要
我们报告了动态接触网络的实验和计算观察结果,以进行剪切增厚的胶体悬浮液。密集的悬浮液由空格对称且表面粗糙度变化的空间稳定的聚球体胶体组成。共聚焦流变计和耗散粒子动力学模拟表明,剪切增厚强度尺度呈指数尺度,尺度赤字接触数和缩放的干扰距离。与光滑的胶体相比,经历其他切线和滚动约束的粗糙胶体平均需要少量1.5-2个颗粒接触,以产生相同的剪切增厚强度。这是因为表面粗糙度以某种方式增强了几何摩擦,即粗糙胶体在干扰点附近的自由体积不会发生巨大变化。相反,光滑的胶体必须大大减少自由体积,以支持等效的剪切应力。不同胶体粗糙度的可用自由体积与剪切下最近的邻居数量的最大数量相关。我们的结果进一步表明,对于具有不同形态的颗粒,每次接触的力是不同的。
We report experimental and computational observations of dynamic contact networks for colloidal suspensions undergoing shear thickening. The dense suspensions are comprised of sterically stabilized poly(methyl methacrylate) hard sphere colloids that are spherically symmetric and have varied surface roughness. Confocal rheometry and dissipative particle dynamics simulations show that the shear thickening strength scales exponentially with the scaled deficit contact number and the scaled jamming distance. Rough colloids, which experience additional tangential and rolling constraints, require an average of 1.5 - 2 fewer particle contacts as compared to smooth colloids, in order to generate the same shear thickening strength. This is because the surface roughness enhances geometric friction in a way that the rough colloids do not experience a large change in the free volume near the jamming point. In contrast, smooth colloids must undergo significant reduction in the free volume to support an equivalent shear stress. The available free volume for different colloid roughness is related to the deficiency from the maximum number of nearest neighbors at jamming under shear. Our results further suggest that the force per contact is different for particles with different morphologies.