Université Montpellier 2, Laboratoire Charles Coulomb UMR 5221, F-34095, Montpellier, France.
Phys Rev Lett. 2011 Mar 18;106(11):118302. doi: 10.1103/PhysRevLett.106.118302. Epub 2011 Mar 14.
We use a combination of original light scattering techniques and particles with unique optical properties to investigate the behavior of suspensions of attractive colloids under gravitational stress, following over time the concentration profile, the velocity profile, and the microscopic dynamics. During the compression regime, the sedimentation velocity grows nearly linearly with height, implying that the gel settling may be fully described by a (time-dependent) strain rate. We find that the microscopic dynamics exhibit remarkable scaling properties when time is normalized by the strain rate, showing that the gel microscopic restructuring is dominated by its macroscopic deformation.
我们使用原创的光散射技术和具有独特光学性质的粒子组合,研究在重力作用下吸引力胶体悬浮液的行为,随着时间的推移,我们跟踪浓度分布、速度分布和微观动力学。在压缩阶段,沉降速度随高度近乎呈线性增长,这表明凝胶沉降可以通过(随时间变化的)应变速率来完全描述。我们发现,当时间用应变速率归一化时,微观动力学表现出显著的标度性质,表明凝胶微观结构的重组由其宏观变形主导。