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聚合物成分在三元流体混合物相分离中的作用:耗散粒子动力学研究。

Role of a polymeric component in the phase separation of ternary fluid mixtures: a dissipative particle dynamics study.

机构信息

School of Computational and Integrative Sciences, Jawaharlal Nehru University, New Delhi-110067, India.

出版信息

Soft Matter. 2018 May 30;14(21):4317-4326. doi: 10.1039/c8sm00625c.

Abstract

We present the results from dissipative particle dynamics (DPD) simulations of phase separation dynamics in ternary (ABC) fluids mixture in d = 3 where components A and B represent the simple fluids, and component C represents a polymeric fluid. Here, we study the role of polymeric fluid (C) on domain morphology by varying composition ratio, polymer chain length, and polymer stiffness. We observe that the system under consideration lies in the same dynamical universality class as a simple ternary fluids mixture. However, the scaling functions depend upon the parameters mentioned above as they change the time scale of the evolution morphologies. In all cases, the characteristic domain size follows l(t) ∼ tφ with dynamic growth exponent φ, showing a crossover from the viscous hydrodynamic regime (φ = 1) to the inertial hydrodynamic regime (φ = 2/3) in the system at late times.

摘要

我们展示了在 d = 3 下三元(ABC)流体混合物中通过耗散粒子动力学(DPD)模拟的相分离动力学的结果,其中 A 和 B 成分代表简单流体,而 C 成分代表聚合流体。在这里,我们通过改变组成比、聚合物链长和聚合物刚度来研究聚合流体(C)对畴形态的作用。我们观察到所考虑的系统与简单三元流体混合物处于相同的动力学普遍性类别。然而,标度函数取决于上述参数,因为它们改变了演化形态的时间尺度。在所有情况下,特征域尺寸遵循 l(t) ∼ tφ,其中φ是动态增长指数,表明在系统的后期从粘性流体动力学(φ = 1)到惯性流体动力学(φ = 2/3)的转变。

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