Study on microscale flow characteristics of electrorheological Fluids

Author:

Zhu Shisha,Lei Xianhua

Abstract

Abstract Electrorheological fluid is a kind of intelligent material whose rheological properties change rapidly and reversibly under the action of external electric field, It has a broad prospect in practical engineering application. It is found in the research progress of electrorheological fluids. The time scale and space scale of the electrorheological effect are very small, and the flow process has some micro-scale flow characteristics. In this paper, the dynamics of dielectric particles in electrorheological fluids under static and dynamic coupling fields is numerically simulated by dissipative particle dynamics method. The influence of surface force under static field on the submicrostructure of Electrorheological fluid and the influence of electroviscosity under dynamic coupled field on the flow rate of Electrorheological fluid are also studied.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference10 articles.

1. Research status of electrorheological fluids and electrorheological effects [J];Wu;Communication power supply technology,2020

2. Application of magnetorheological fluid device in construction machinery [J];Bao;Construction machinery technology and management,2019

3. Capture effect in Current dynamics based on Visualization [J];Zhu;Journal of Materials Science and Engineering,2018

4. Application of Electrorheological Fluid Intelligent Materials in Engineering Technology [J];Liu;China Building Materials Science and Technology,2018

5. Negative electrorheological responses of micro-polar fluids in the finite spin viscosity small spin velocity limit. I. Couette flow geometries [J];Huang;Journal of Electrostatics,2011

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