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Stability behavior of composite magnetorheological fluids by an induction method

机译:复合磁流变液的感应行为稳定性

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In this work, we study the stability behavior of composite magnetorheological fluids consisting of magnetic (iron) and non-magnetic (poly(methylmethacrylate)) particles dispersed in mineral oil. Because of the opacity of the suspensions, optical methods traditionally employed for evaluation of the gravitational settling in colloidal suspensions are not suitable for sedimentation follow-up in this case. For this reason, we use an alternative method based on the evaluation of the resonant frequency of the inductance of a thin coil surrounding the sample. The movement of the coil along the height of the container at specified steps and time intervals allows obtaining information about the local volume fraction of particles inside the tube. The obtained successive profiles for the multi-component suspensions show a decrease of the iron particle settling and of the initial rate of settling as the poly(methylmethacrylate) volume fraction is increased. Finally, the increase of the poly(methylmethacrylate) concentration gives rise to an improvement of the rheological properties upon magnetic field application for a given concentration of iron. Both a strong rheological response and a good colloidal stability are essential for practical applications.
机译:在这项工作中,我们研究了由分散在矿物油中的磁性(铁)和非磁性(聚(甲基丙烯酸甲酯))颗粒组成的复合磁流变液的稳定性行为。由于悬浮液的不透明性,在这种情况下,传统上用于评估胶体悬浮液中重力沉降的光学方法不适合进行沉淀。因此,我们基于样品周围细线圈电感的谐振频率的评估,使用了另一种方法。线圈以指定的步长和时间间隔沿着容器的高度运动允许获得有关管内颗粒的局部体积分数的信息。所获得的多组分悬浮液的连续分布曲线表明,随着聚(甲基丙烯酸甲酯)体积分数的增加,铁颗粒的沉降和沉降的初始速率降低。最后,对于给定浓度的铁,在施加磁场时,聚(甲基丙烯酸甲酯)浓度的增加引起流变性质的改善。强烈的流变响应和良好的胶体稳定性对于实际应用都是必不可少的。

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