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首页> 外文期刊>Journal of Chemical Physics >Glassy dynamics and mechanical response in dense fluids of soft repulsive spheres. II. Shear modulus, relaxation-elasticity connections, and rheology
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Glassy dynamics and mechanical response in dense fluids of soft repulsive spheres. II. Shear modulus, relaxation-elasticity connections, and rheology

机译:软排斥球体的稠密流体中的玻璃动力学和机械响应。二。剪切模量,松弛弹性连接和流变性

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We apply the quiescent and mechanically driven versions of nonlinear Langevin equation theory to study how particle softness influences the shear modulus, the connection between shear elasticity and activated relaxation, and nonlinear rheology of the repulsive Hertzian contact model of dense soft sphere fluids. Below the soft jamming threshold, the shear modulus follows a power law dependence on volume fraction over a narrow interval with an apparent exponent that grows with particle stiffness. To a first approximation, the elastic modulus and transient localization length are controlled by a single coupling constant determined by local fluid structure. In contrast to the behavior of hard spheres, an approximately linear relation between the shear modulus and activation barrier is predicted. This connection has recently been observed for microgel suspensions and provides a microscopic realization of the elastic shoving model. Yielding, shear and stress thinning of the alpha relaxation time and viscosity, and flow curves are also studied. Yield strains are relatively weakly dependent on volume fraction and particle stiffness. Shear thinning commences at values of the effective Peclet number far less than unity, a signature of stress-assisted activated relaxation when barriers are high. Apparent power law reduction of the viscosity with shear rate is predicted with a thinning exponent less than unity. In the vicinity of the soft jamming threshold, a power law flow curve occurs over an intermediate reduced shear rate range with an apparent exponent that decreases as fluid volume fraction and/or repulsion strength increase. © 2011 American Institute of Physics Article Outline INTRODUCTION NLE THEORY OF MECHANICAL RESPONSE Linear shear modulus Nonlinear rheology LINEAR SHEAR MODULUS CONNECTIONS BETWEEN THE ELASTIC MODULUS, ALPHA RELAXATION, AND KINETIC ARREST Barrier-modulus correlation Modulus-vitrification correlation NONLINEAR RHEOLOGY Stress dependence of barrier and absolute yielding Shear thinning and flow curves DISCUSSION AND SUMMARY
机译:我们应用非线性Langevin方程理论的静态和机械驱动版本来研究颗粒软度如何影响剪切力模量,剪切弹性与活化弛豫之间的联系以及稠密软球流体的排斥性Hertzian接触模型的非线性流变学。低于软干扰阈值,剪切模量遵循幂定律对窄范围内体积分数的依赖,表观指数随颗粒硬度而增长。对于第一近似,弹性模量和瞬态局部长度由局部流体结构确定的单个耦合常数控制。与硬球的行为相反,预测了剪切模量和活化势垒之间的近似线性关系。最近已观察到微凝胶悬浮液的这种连接,并提供了弹性推挤模型的微观实现。还研究了α松弛时间和粘度的屈服,剪切和应力稀化以及流动曲线。屈服应变相对较小地取决于体积分数和颗粒刚度。剪切稀化开始于有效Peclet值远小于1的值时,这是障碍较高时应力辅助激活松弛的标志。粘度随剪切速率的表观幂定律降低是通过稀疏指数小于1来预测的。在软干扰阈值附近,幂律流曲线出现在中间减小的剪切速率范围内,其表观指数随流体体积分数和/或斥力强度的增加而减小。 ©2011美国物理研究所文章概述力学非线性理论线性剪切模量非线性流变弹性模量,Alpha松弛和运动阻滞之间的线性剪切模量连接屏障模量相关模量玻璃化绝对相关非线性流变学产生剪切稀化和流动曲线的讨论和总结

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