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Collective Magnetoresistance Effect of Ferromagnetic Microparticle Suspension

机译:铁磁微粒悬浮液的集体磁阻效应

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The study of magnetic micro-ano-particle suspensions as a magnetorheology material has been attracting much attention due to its possible applications in smart engineering as a kind of intelligent materials [1], [2]. Recently, enhancement and/or controllability of the magnetoresistance (MR) effect have become important issues for applications of magnetic micro-particle suspensions [3]. The magnetic particle suspension is a dispersing liquid of micron-sized ferromagnetic metallic particles. As a flowable ferromagnetic metallic material without any field (it is not easy to flow under the magnetic field), it necessarily exists the MR effect under applied magnetic field. Therefore, understanding and control of the magnetic suspension MR effect is one of important topics for electrical applications of magnetic suspensions. In this work, we experimentally investigated the collective MR effect of magnetic micro-particle suspensions. The magnetic suspension is based on ferromagnetic carbonyl iron microparticles, which is dispersed in the silicone oil with various surfactants. The magnetic suspension MR effect was intensively examined with changing the strength and the direction of the external magnetic field. As shown in Fig. 1, we have observed that the electrical resistance of magnetic suspensions was affected by the strength and the direction of the external magnetic field. The magnetorheological effect is attributed to the collective dynamic behavior of microparticles in the magnetic suspension under the magnetic fields.
机译:磁性微/纳米颗粒悬浮液作为磁流变材料的研究由于其在智能工程中作为一种智能材料的可能应用而受到了广泛的关注[1],[2]。近年来,磁阻效应的增强和/或可控性已成为应用磁性微粒悬浮液的重要问题[3]。磁性颗粒悬浮液是微米级铁磁性金属颗粒的分散液。作为没有任何场(在磁场下不易流动)的可流动铁磁金属材料,在施加磁场的情况下必然存在MR效应。因此,对磁悬浮MR效应的理解和控制是磁悬浮电气应用的重要课题之一。在这项工作中,我们实验研究了磁性微粒悬浮液的集体MR效应。磁性悬浮液基于铁磁性羰基铁微粒,该微粒与各种表面活性剂一起分散在硅油中。随着强度和外部磁场方向的变化,对磁悬浮MR效应进行了深入研究。如图1所示,我们观察到磁悬浮的电阻受外部磁场强度和方向的影响。磁流变效应归因于磁场下磁性悬浮液中微粒的集体动力学行为。

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