论文标题
粒子粗糙度对毛细管悬浮液的流变学和结构的影响
Effects of particle roughness on the rheology and structure of capillary suspensions
论文作者
论文摘要
我们表明,粒子粗糙度会导致毛细管悬浮液中液体桥的数量,形状和结果毛细管的变化。我们通过静电吸附的二氧化硅纳米粒子在硅胶微粒上创建了荧光标记的覆盆子样颗粒,具有不同的粗糙度。粗糙的颗粒需要更多的液体才能填充表面悬垂性,然后才形成摆桥,从而导致较小和较弱的桥梁。在调整有效桥梁体积的系统中,较高的粒子粗糙度导致群集较少的网络,与光滑的粒子网络相比,匹配存储模量的产量应变更高。这一发现表明,颗粒粒子摩擦接触也会影响毛细管悬浮液的强度。使用渐近的非线性振荡性流变学,我们证实了第三个谐波的非核功率定律缩放在剪切应力响应中,这是由赫兹的接触和毛细管桥连接的颗粒之间的摩擦引起的。我们证明了排斥的Hertzian接触参数$ A $对液体桥强度敏感,并且粗糙度似乎将功率法指数的相对缩放转移到粘合剂控制的摩擦转换为负载控制的摩擦。
We show that particle roughness leads to changes in the number, shape and resulting capillary force of liquid bridges in capillary suspensions. We created fluorescently labeled, raspberry-like particles with varying roughness by electrostatically adsorbing silica nanoparticles with sizes between 40 nm and 250 nm on silica microparticles. Rougher particles require more liquid to fill the surface asperities before they form pendular bridges, resulting in smaller and weaker bridges. In a system where the effective bridge volume is adjusted, higher particle roughness leads to less clustered networks, which show a higher yield strain for a matching storage modulus compared to the smooth particle networks. This finding suggests that the particle-particle frictional contacts also affects the strength of capillary suspensions. Using asymptotically nonlinear oscillatory rheology, we corroborate the non-cubical power law scaling of the third harmonic in the shear stress response that results from both Hertzian contacts and friction between particles connected by capillary bridges. We demonstrate that the repulsive Hertzian contact parameter $A$ is sensitive to the liquid bridge strength and that roughness appears to shift the relative scaling of the power law exponents from adhesive-controlled friction to load-controlled friction.