Lootens Didier, van Damme Henri, Hémar Yacine, Hébraud Pascal
PPMD, CNRS UMR 7615, ESPCI, Paris, France.
Phys Rev Lett. 2005 Dec 31;95(26):268302. doi: 10.1103/PhysRevLett.95.268302. Epub 2005 Dec 22.
The flow anisotropy of a concentrated colloidal suspension at the jamming transition is studied. It is shown that the use of rough spherical particles reduces the hydrodynamic lubrication forces between adjacent colloids and makes possible the study of the stress tensor anisotropy. At low shear rates, the suspension exerts an attractive force between two opposite surfaces, whereas at higher shear rates it becomes dilatant. Direct confocal microscopy observation of the particles organization reveal that crystallites form at high shear rate.
研究了浓胶体悬浮液在堵塞转变时的流动各向异性。结果表明,使用粗糙的球形颗粒可降低相邻胶体之间的流体动力润滑力,并使研究应力张量各向异性成为可能。在低剪切速率下,悬浮液在两个相对表面之间施加吸引力,而在较高剪切速率下,它会发生膨胀。通过共聚焦显微镜直接观察颗粒的组织发现,在高剪切速率下会形成微晶。