Cēbers A, Javaitis I
Institute of Physics, University of Latvia, Salaspils-1, LV-2169, Latvia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Feb;69(2 Pt 1):021404. doi: 10.1103/PhysRevE.69.021404. Epub 2004 Feb 26.
The model of an elastic magnetic rod is applied for a study of a behavior of the flexible magnetic particle chain in a rotating magnetic field. By numerical simulation it is shown that behavior of a flexible magnetic chain is characterized by the existence of a critical frequency beyond which the dynamics of the rod is periodic with subsequent stages of bending and straightening. The value of the critical frequency found is explained by a simple model. Below the critical frequency the chain is bent and rotates synchronously with a field. It is illustrated that in particular cases the considered model reproduces phenomena observed experimentally and numerically for the magnetic particle chains in magnetorheological suspensions. It is emphasized that the present approach gives the general framework for the description of different phenomena in magnetorheological suspensions.
应用弹性磁棒模型研究旋转磁场中柔性磁性粒子链的行为。通过数值模拟表明,柔性磁链的行为特征是存在一个临界频率,超过该频率后,磁棒的动力学呈周期性,随后经历弯曲和伸直阶段。所发现的临界频率值由一个简单模型解释。低于临界频率时,链会弯曲并与磁场同步旋转。结果表明,在特定情况下,所考虑的模型能够重现磁流变悬浮液中磁性粒子链的实验和数值观测现象。需要强调的是,本方法为描述磁流变悬浮液中的不同现象提供了一个通用框架。