FORTH/IESL and Department of Materials Science and Technology, University of Crete, 71110, Heraklion, Greece.
Phys Rev Lett. 2012 Mar 2;108(9):098303. doi: 10.1103/PhysRevLett.108.098303.
Concentrated hard-sphere suspensions and glasses are investigated with rheometry, confocal microscopy, and Brownian dynamics simulations during start-up shear, providing a link between microstructure, dynamics, and rheology. The microstructural anisotropy is manifested in the extension axis where the maximum of the pair-distribution function exhibits a minimum at the stress overshoot. The interplay between Brownian relaxation and shear advection as well as the available free volume determine the structural anisotropy and the magnitude of the stress overshoot. Shear-induced cage deformation induces local constriction, reducing in-cage diffusion. Finally, a superdiffusive response at the steady state, with a minimum of the time-dependent effective diffusivity, reflects a continuous cage breakup and reformation.
运用流变学、共焦显微镜和布朗动力学模拟研究了浓硬球悬浮液和玻璃的启动剪切过程,将微观结构、动力学和流变学联系起来。在伸展轴上表现出微观结构各向异性,在超过应力时,对分布函数的最大值出现最小值。布朗松弛和剪切输运之间的相互作用以及可用的自由体积决定了结构各向异性和过冲应力的大小。剪切诱导的笼变形会引起局部收缩,从而降低笼内扩散。最后,在稳态下出现超扩散响应,时变有效扩散率达到最小值,这反映了连续的笼破裂和再形成。