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Liquid-liquid-solid transition in viscoelastic liquids

机译:粘弹性液体中的液-液-固转变

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Liquid-liquid-solid transitions (LLST) are known to occur in confined liquids, exist in supercooled liquids and emerge in liquids driven from equilibrium. Molecular dynamics (MD) simulations claim many successes in forecasting the phenomena. The transitions are also studied in the framework of thermodynamics based methods and minimalistic models. In here, the proposed approach is derived in the framework of continuum and includes spatial and temporal dynamic heterogeneities; the approach is meant to capture the material behavior at small scales. We conjecture that the liquid-like and solid-like behaviors are dissimilar enough for the two to be governed by different constitutive relations. In this way, we gain additional degree of freedom, which is found essential when predicting the transitional phenomena. As a result, we derive the LLST criteria for liquids in equilibrium, during steady flow and at transient conditions. Lastly, we forecast short-lived LLSTs in human blood during cardiac cycle.
机译:已知液-液-固转变(LLST)发生在封闭液体中,存在于过冷液体中,并出现在平衡驱动的液体中。分子动力学(MD)模拟在预测现象方面取得了许多成功。在基于热力学的方法和简约模型的框架内也研究了转变。在这里,所提出的方法是在连续体的框架中得出的,并且包括时空动态异质性。该方法旨在以小规模捕获物质行为。我们推测,液体和固体的行为相异,足以使二者受不同的本构关系支配。这样,我们获得了额外的自由度,这在预测过渡现象时必不可少。结果,我们得出了在稳态,稳定流动和瞬态条件下液体的LLST标准。最后,我们预测了心脏周期中人类血液中的短寿命LLST。

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