Simulation on the aggregation process of spherical particle confined in a spherical shell

球壳 壳体(结构) 粒子(生态学) 星团(航天器) 材料科学 化学物理 多孔性 骨料(复合) 扩散 动力学 润湿 纳米技术 物理 经典力学 复合材料 热力学 海洋学 地质学 程序设计语言 计算机科学
作者
Jun Wang,Jingbo Xu,Liang Zhang
出处
期刊:International Journal of Modern Physics B [World Scientific]
卷期号:30 (11): 1650065-1650065
标识
DOI:10.1142/s021797921650065x
摘要

The aggregation process of spherical particles confined in a spherical shell was studied by using a diffusion-limited cluster–cluster aggregation (DLCA) model. The influence of geometrical confinement and wetting-like properties of the spherical shell walls on the particle concentration profile, aggregate structure and aggregation kinetics had been explored. The results show that there will be either depletion or absorption particles near the shell walls depending on the wall properties. It is observed that there are four different types of density distribution which can be realized by modifying the property of the inner or outer spherical shell wall. In addition, the aggregate structure will become more compact in the confined spherical shell comparing to bulk system with the same particle volume fraction. The analysis on the aggregation kinetics indicates that geometrical confinement will promote the aggregation process by reducing the invalid movement of the small aggregates and by constraining the movement of those large aggregates. Due to the concave geometrical characteristic of the outer wall of the spherical shell, its effects on the aggregating kinetics and the structure of the formed aggregates are more evident than those of the inner wall. This study will provide some instructive information of controlling the density distribution of low-density porous polymer hollow spherical shells and helps to predict gel structures developed in confined geometries.
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