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首页> 外文期刊>Journal of Rheology >Start-up shear of concentrated colloidal hard spheres: Stresses, dynamics, and structure
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Start-up shear of concentrated colloidal hard spheres: Stresses, dynamics, and structure

机译:浓缩胶体硬球的启动剪切:应力,动力学和结构

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The transient response of model hard sphere glasses is examined during the application of steady rate start-up shear using Brownian dynamics simulations, experimental rheology and confocal microscopy. With increasing strain, the glass initially exhibits an almost linear elastic stress increase, a stress peak at the yield point and then reaches a constant steady state. The stress overshoot has a nonmonotonic dependence with Peclet number, Pe, and volume fraction, phi, determined by the available free volume and a competition between structural relaxation and shear advection. Examination of the structural properties under shear revealed an increasing anisotropic radial distribution function, g(r), mostly in the velocity-gradient ( xy) plane, which decreases after the stress peak with considerable anisotropy remaining in the steady-state. Low rates minimally distort the structure, while high rates show distortion with signatures of transient elongation. As a mechanism of storing energy, particles are trapped within a cage distorted more than Brownian relaxation allows, while at larger strains, stresses are relaxed as particles are forced out of the cage due to advection. Even in the steady state, intermediate super diffusion is observed at high rates and is a signature of the continuous breaking and reformation of cages under shear. (C) 2016 The Society of Rheology.
机译:使用布朗动力学模拟,实验流变学和共聚焦显微镜,在稳定速率启动剪切的应用过程中检查了硬球样玻璃的瞬态响应。随着应变的增加,玻璃开始时呈现出几乎线性的弹性应力增加,应力在屈服点达到峰值,然后达到恒定的稳态。应力超调与非单调性相关,与Peclet数Pe和体积分数phi有关,后者由可用的自由体积以及结构松弛与剪切对流之间的竞争关系确定。剪切下的结构特性检查显示,各向异性径向分布函数g(r)增大,主要在速度梯度(xy)平面上,在应力峰值后减小,并且在稳态下还存在相当大的各向异性。低速率使结构变形最小,而高速率则显示出具有瞬时伸长特征的变形。作为存储能量的机制,粒子被捕获在笼子内的变形程度超过布朗松弛允许的范围,而在较大的应变下,由于对流将粒子从笼子中挤出,应力得以缓解。即使在稳态下,也能以较高的速率观察到中间超扩散,这是保持架在剪切作用下连续破坏和重新形成的标志。 (C)2016流变学学会。

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