Shear-Induced Alignment of Janus Particle Lamellar Structures
收藏Figshare2017-11-08 更新2026-04-29 收录
下载链接:
https://figshare.com/articles/dataset/Shear-Induced_Alignment_of_Janus_Particle_Lamellar_Structures/5580097
下载链接
链接失效反馈官方服务:
资源简介:
Control over the alignment of colloidal structures plays a crucial role in advanced reconfigurable materials. In this work, we study the alignment of Janus particle lamellar structures under shear flow via Brownian dynamics simulations. Lamellar alignment (orientation relative to flow direction) is measured as a function of the Péclet number (Pe)the ratio of the viscous shear to the Brownian forcesthe particle volume fraction, and the strength of the anisotropic interaction potential made dimensionless with thermal energy. Under conditions where lamellar structures are formed, three orientation regimes are observed: (1) random orientation for very small Pe, (2) parallel orientationlamellae with their normals parallel to the direction of the velocity gradientfor intermediate values of Pe, and (3) perpendicular orientationlamellae with their normals parallel to the vorticity directionfor large Pe. To understand the alignment mechanism, we carry out a scaling analysis of competing torques between a pair of particles in the lamellar structure. Our results suggest that the change of parallel to perpendicular orientation is independent of the particle volume fraction and is caused by the hydrodynamic and Brownian torques on the particles overcoming the torques resulting from the interparticle interactions. This initial study of shear-induced alignment on lamellar structures formed by Janus colloidal particles also opens the door for future applications where a reversible actuator for structure orientation is required.
创建时间:
2017-11-08



