Chirikov D N, Fedotov S P, Iskakova L Yu, Zubarev A Yu
Urals State University, Lenina Avenue, 620083 Ekaterinburg, Russia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Nov;82(5 Pt 1):051405. doi: 10.1103/PhysRevE.82.051405. Epub 2010 Nov 16.
The paper deals with theoretical study of non linear viscoelastic phenomena in ferrofluids placed in magnetic field. Our attention is focused on the study of nonstationary flow and Maxwell-like relaxation of the macroscopical viscous stress after alternation of the shear rate. We propose that these phenomena can be explained by finite rate of evolution of chainlike aggregates, consisting of the ferrofluid particles. Statistical model of the chains growth-disintegration is suggested. In this model the chain-single particle mechanism of the chains evolution is considered, the effects of the chain-chain interaction are ignored. The proposed model allows us to estimate the time-dependent function of distribution over number of particles in the chain. Having determined this function and using methods of hydromechanics of ferrofluids with chainlike aggregates, we have studied evolution of the ferrofluid viscosity after stepwise alternation of the fluid shear rate. The estimated time of relaxation is in a reasonable agreement with experimental results. Thus, our analysis shows that the observed macroscopical viscoelastic phenomena in ferrofluids can be provided by evolution of the chain ensemble.
本文研究了置于磁场中的铁磁流体非线性粘弹性现象的理论。我们的注意力集中在非定常流动以及剪切速率交替后宏观粘性应力的类麦克斯韦弛豫的研究上。我们提出,这些现象可以通过由铁磁流体颗粒组成的链状聚集体的有限演化速率来解释。提出了链生长 - 解体的统计模型。在该模型中,考虑了链演化的链 - 单颗粒机制,忽略了链 - 链相互作用的影响。所提出的模型使我们能够估计链中颗粒数分布的时间相关函数。确定该函数并使用具有链状聚集体的铁磁流体流体力学方法后,我们研究了流体剪切速率逐步交替后铁磁流体粘度的演化。估计的弛豫时间与实验结果合理吻合。因此,我们的分析表明,铁磁流体中观察到的宏观粘弹性现象可以由链系综的演化来解释。