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Hydrodynamic effects in three-dimensional microphase separation of block copolymers: Dynamic mean-field density functional approach

机译:嵌段共聚物三维微相分离中的流体动力学效应:动态平均场密度泛函方法

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The dynamic mean-field density functional method is used to describe phase separation including hydrodynamic effects in specific three-dimensional (3D) compressible copolymer liquids. We show that it is justified to use Darcy's approximation for the velocity field. This simple model enables us to reproduce both the increased domain growth and the faster removal of defects that are a result of hydrodynamics. We perform a simulation of a diblock copolymer melt to study the viscous effects in 3D. The free energy is shown to decrease twice as fast as in a simulation which only includes diffusion. The hydrodynamics are shown to become important only in the later stages of phase separation as is also predicted from theoretical analysis. The separation process proceeds faster because the growth of bulk domains is accelerated compared to the purely diffusive case. (C) 1998 American Institute of Physics. [S0021-9606(98)51021-5]. [References: 39]
机译:动态平均场密度泛函方法用于描述相分离,包括特定三维(3D)可压缩共聚物液体中的流体动力学效应。我们证明了对速度场使用达西近似是合理的。这个简单的模型使我们能够重现由于流体动力学而增加的磁畴增长和更快地清除缺陷。我们对二嵌段共聚物熔体进行了模拟,以研究3D中的粘性效应。结果表明,自由能的下降速度是仅包含扩散的模拟速度的两倍。正如理论分析所预测的那样,流体动力学仅在相分离的后期才显示出重要作用。分离过程进行得更快,因为与纯扩散情况相比,体畴的生长得到了加速。 (C)1998美国物理研究所。 [S0021-9606(98)51021-5]。 [参考:39]

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