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Rheological signatures of aging in hard sphere colloidal glasses

机译:硬球胶体眼镜衰老的流变签

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摘要

Colloidal glasses are out-of-equilibrium in nature. When such materials are quenched from a shear-melted state into a quiescent one, their structure freezes due to entropic caging of the constituents. However, thermal fluctuations allow slow structural evolution, a process known as aging, in favor of minimizing free energy. Here, we examine the rheological signatures of aging, in a model system of nearly hard sphere colloidal glass. Subtle changes in the linear viscoelastic properties are detected with the age of the colloidal glass where viscous modulus shows a decrease with aging whereas the elastic modulus remains unaffected. This is associated with the slowing-down of long-time out-of-cage dynamics as the glass ages. On the contrary, nonlinear rheological measurements such as start-up shear flow, stress relaxation, and creep experiments show a strong dependence on sample age. Moreover, creep and stress relaxation experiments show ample evidence of avalanche type processes that occur during aging of colloidal glasses. Finally, comparison of creep and start-up shear flow measurements indicate that the latter is more energy efficient in inducing flow in colloidal glasses irrespective of aging dynamics. Published under license by AIP Publishing.
机译:胶体眼镜本质上是均衡的。当这些材料从剪切熔化状态淬灭进入静止的物质时,它们的结构由于组分的熵捕获而冻结。然而,热量波动允许缓慢的结构演变,一种称为老化的过程,有利于最小化自由能。在这里,我们研究了老化的流变签名,在几乎硬球胶体玻璃的模型系统中。用胶体玻璃的年龄检测线性粘弹性性能的微妙变化,其中粘性模量显示随老化的降低,而弹性模量保持不受影响。这与长期外笼式动态减速相关的是玻璃年龄的关联。相反,非线性流变测量,例如启动剪切流动,应力松弛和蠕变实验表现出对样品时代的强烈依赖。此外,蠕变和应力松弛实验表明,充分证据了胶体眼镜老化期间发生的雪崩型过程。最后,蠕变和启动剪切流量测量的比较表明,无论老化动力学如何,后者在诱导胶体玻璃的流动方面更能节能。通过AIP发布在许可证下发布。

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