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二元 Lennard-Jones 玻璃中静态屈服应力的研究。

A study of the static yield stress in a binary Lennard-Jones glass.

作者信息

Varnik F, Bocquet L, Barrat J-L

机构信息

CECAM, ENS-Lyon, 46 Allee d'Italie, 69007 Lyon, FranceLaboratoire de Physique de la Matiere Condense et Nanostructures, Universite Lyon I and CNRS, 69622 Villeurbanne Cedex, France.

出版信息

J Chem Phys. 2004 Feb 8;120(6):2788-801. doi: 10.1063/1.1636451.

Abstract

The stress-strain relations and the yield behavior of a model glass (a 80:20 binary Lennard-Jones mixture) is studied by means of molecular dynamics simulations. In a previous paper it was shown that, at temperatures below the glass transition temperature, Tg, the model exhibits shear banding under imposed shear. It was also suggested that this behavior is closely related to the existence of a (static) yield stress (under applied stress, the system does not flow until the stress sigma exceeds a threshold value sigmay). A thorough analysis of the static yield stress is presented via simulations under imposed stress. Furthermore, using steady shear simulations, the effect of physical aging, shear rate and temperature on the stress-strain relation is investigated. In particular, we find that the stress at the yield point (the "peak"-value of the stress-strain curve) exhibits a logarithmic dependence both on the imposed shear rate and on the "age" of the system in qualitative agreement with experiments on amorphous polymers, and on metallic glasses. In addition to the very observation of the yield stress which is an important feature seen in experiments on complex systems like pastes, dense colloidal suspensions and foams, further links between our model and soft glassy materials are found. An example is the existence of hysteresis loops in the system response to a varying imposed stress. Finally, we measure the static yield stress for our model and study its dependence on temperature. We find that for temperatures far below the mode coupling critical temperature of the model (Tc = 0.435 in Lennard-Jones units), sigmay decreases slowly upon heating followed by a stronger decrease as Tc is approached. We discuss the reliability of results on the static yield stress and give a criterion for its validity in terms of the time scales relevant to the problem.

摘要

通过分子动力学模拟研究了一种模型玻璃(80:20二元 Lennard-Jones 混合物)的应力-应变关系和屈服行为。在之前的一篇论文中表明,在低于玻璃化转变温度Tg的温度下,该模型在施加剪切力时会出现剪切带。还提出这种行为与(静态)屈服应力的存在密切相关(在施加应力下,系统直到应力σ超过阈值σy才会流动)。通过施加应力下的模拟对静态屈服应力进行了深入分析。此外,使用稳态剪切模拟,研究了物理老化、剪切速率和温度对应力-应变关系的影响。特别是,我们发现屈服点处的应力(应力-应变曲线的“峰值”)对施加的剪切速率和系统的“年龄”都呈现对数依赖性,这与非晶态聚合物和金属玻璃的实验定性一致。除了观察到屈服应力这一在诸如糊状物、浓胶体悬浮液和泡沫等复杂系统实验中看到的重要特征外,还发现了我们的模型与软玻璃材料之间的进一步联系。一个例子是系统对变化的施加应力的响应中存在滞后环。最后,我们测量了我们模型的静态屈服应力并研究了其对温度的依赖性。我们发现,对于远低于模型的模式耦合临界温度(在 Lennard-Jones 单位中Tc = 0.435)的温度,σy在加热时缓慢降低,随后在接近Tc时下降得更快。我们讨论了静态屈服应力结果的可靠性,并根据与问题相关的时间尺度给出了其有效性的标准。

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