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Ground state symmetry of an electrorheological fluid containing two types of particles

机译:包含两种类型颗粒的电流变流体的基态对称性

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The ground state symmetry of an electrorheological fluid is studied numerically using a finite element method. The free energies of body-centered cubic, body-centered tetragonal, simple hexagonal, hexagonal close-packed, simple cubic, simple hexagonal, and honeycomb structures are calculated for systems containing homogeneous particles with the dielectric constant greater or smaller than that of the base fluid. In accordance with other studies, the body-centered tetragonal symmetry was found to be the most favored lattice symmetry. The ground state of an ER system containing two types of particles, i.e., particles with the dielectric constant greater and smaller than that of the base fluid, was found to consist of separated particle columns each of which has only one type of particles. These separated particle columns preferred body-centered tetragonal symmetry. However, simple hexagonal and honeycomb symmetries were found to be energetically quite close to a body-centered tetragonal symmetry. In addition, simple hexagonal and honeycomb symmetries do not need phase separation between different types of particles and are thus more likely to form. Dynamical effects were studied using a point dipole model. Within the time-span studied the system seemed to form a polycrystalline structure. [References: 30]
机译:使用有限元方法对流变流体的基态对称性进行了数值研究。对于介电常数大于或小于基体的均质粒子的系统,计算了体心立方,体心四边形,简单六边形,六方密堆积,简单立方,简单六边形和蜂窝结构的自由能体液。根据其他研究,发现以人体为中心的四边形对称是最有利的晶格对称。发现包含两种类型的颗粒,即介电常数大于和小于基础流体的颗粒的ER系统的基态由分离的颗粒柱组成,每个颗粒柱仅具有一种类型的颗粒。这些分离的颗粒柱优选以身体为中心的四边形对称。然而,发现简单的六边形和蜂窝状对称在能量上非常接近以身体为中心的四边形对称。另外,简单的六边形和蜂窝状对称性不需要不同类型颗粒之间的相分离,因此更可能形成。使用点偶极子模型研究动力效应。在研究的时间跨度内,该系统似乎形成了多晶结构。 [参考:30]

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