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首页> 外文期刊>The Journal of Chemical Physics >Theory of nonlinear elasticity, stress-induced relaxation, and dynamic yielding in dense fluids of hard nonspherical colloids
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Theory of nonlinear elasticity, stress-induced relaxation, and dynamic yielding in dense fluids of hard nonspherical colloids

机译:硬非球形胶体的稠密流体中的非线性弹性,应力引起的松弛和动态屈服的理论

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摘要

We generalize the microscopic nave mode coupling and nonlinear Langevin equation theories of the coupled translation-rotation dynamics of dense suspensions of uniaxial colloids to treat the effect of applied stress on shear elasticity, cooperative cage escape, structural relaxation, and dynamic and static yielding. The key concept is a stress-dependent dynamic free energy surface that quantifies the center-of-mass force and torque on a moving colloid. The consequences of variable particle aspect ratio and volume fraction, and the role of plastic versus double glasses, are established in the context of dense, glass-forming suspensions of hard-core dicolloids. For low aspect ratios, the theory provides a microscopic basis for the recently observed phenomenon of double yielding as a consequence of stress-driven sequential unlocking of caging constraints via reduction of the distinct entropic barriers associated with the rotational and translational degrees of freedom. The existence, and breadth in volume fraction, of the double yielding phenomena is predicted to generally depend on both the degree of particle anisotropy and experimental probing frequency, and as a consequence typically occurs only over a window of (high) volume fractions where there is strong decoupling of rotational and translational activated relaxation. At high enough concentrations, a return to single yielding is predicted. For large aspect ratio dicolloids, rotation and translation are always strongly coupled in the activated barrier hopping event, and hence for all stresses only a single yielding process is predicted.
机译:我们推广了单轴胶体致密悬浮液的平移-旋转耦合动力学的微观中殿模式耦合和非线性Langevin方程理论,以处理施加应力对剪切弹性,协同笼逃逸,结构松弛以及动态和静态屈服的影响。关键概念是应力相关的动态自由能表面,该表面量化运动的胶体上的质心力和扭矩。在硬核双胶体的致密,玻璃形成的悬浮液的背景下,确定了可变的颗粒长径比和体积分数的后果,以及塑料与双层玻璃的作用。对于低长宽比,该理论为最近观察到的双屈服现象提供了微观基础,该现象是应力驱动的笼形约束的连续解锁,其结果是通过减少与旋转和平移自由度相关的独特熵屏障而实现的。预计双屈服现象的存在和体积分数的广度通常取决于粒子各向异性的程度和实验探测频率,因此通常仅在存在(高)体积分数的窗口上发生旋转和平移激活松弛的强烈解耦。在足够高的浓度下,预计将返回单产。对于大纵横比的双胶体,在激活的势垒跳跃事件中旋转和平移始终紧密耦合,因此,对于所有应力,只能预测单个屈服过程。

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