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Phase field simulations of early stage structure formation during immersion precipitation of polymeric membranes in 2D and 3D

机译:聚合物膜在2D和3D中浸没沉淀过程中早期结构形成的相场模拟

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The immersion precipitation process makes most commercial polymeric membranes. which enjoy widespread use in water filtration and purification. In this work, a ternary Cahn-Hilliard formulation incorporating a Flory-Huggins homogeneous free energy function is used to simulate the liquid-liquid demixing stage of the immersion precipitation process. which determines much of the final morphology of membranes. Simulations start with a non-solvent/solvent/polymer ternary system with periodic boundary conditions and uniform initial conditions with small random fluctuations in two-dimensional (2D). Results in 2D domonstrate the effects of. M-q, (mobilities) and K-q (gradient penalty coefficients) on phase separation behavior. A two-layer polymer-solventon-Solvent initial condition is then used to simulate actual membrane fabrication conditions. 2D and 3D simulation results show an asymmetric structure of membrane morphology, which strongly agrees with the experimental observation. Then this system is coupled with the Navier-Stokes equations to model hydrodynamics in two dimensions. The results show that fluid flow destabilizes the top layer of membrane. (c) 2005 Elsevier B.V. All rights reserved.
机译:浸入沉淀法制得大多数商业聚合物膜。在水的过滤和净化中得到广泛应用。在这项工作中,结合了Flory-Huggins均质自由能函数的三元Cahn-Hilliard公式用于模拟沉浸沉淀过程的液-液混合阶段。这决定了膜的许多最终形态。模拟从非溶剂/溶剂/聚合物三元系统开始,该系统具有周期性边界条件和统一的初始条件,且二维(2D)的随机波动较小。 2D效果证明了的效果。 M-q(迁移率)和K-q(梯度惩罚系数)关于相分离行为。然后使用两层聚合物溶剂/非溶剂初始条件模拟实际的膜制造条件。 2D和3D仿真结果显示了膜形态的不对称结构,与实验观察结果非常吻合。然后,该系统与Navier-Stokes方程耦合,以二维模型模拟流体动力学。结果表明,流体流动使膜的顶层不稳定。 (c)2005 Elsevier B.V.保留所有权利。

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