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An Overview of Nanoparticles Utilization in Magnetorheological Materials

机译:磁流变材料纳米粒子利用概述

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Magnetorheological (MR) materials belong to smart materials family where the rheological properties can be altered continuously, rapidly and reversibly through the external magnetic field. The tuneable properties depend on the magnitude of the external magnetic field. The micron-sized magnetizable particles having high saturation magnetization within matrix carrier react to the magnetic field resulting in alteration of MR effect. The classic problem of smart materials is particles sedimentation and aggregation issues due to the high concentration and large size of magnetic particles. Many researchers have attempted to solve this issues by introducing nano-sized particles into these materials. Based on the previous researches, the nanoparticles incorporation in MR materials is reported to improve the stability of the MR materials and at the same time enhance the MR performance. This paper presents an overview of nanoparticles incorporation in different types of MR materials which are MR fluids, MR grease, and MR elastomer including the stability and performance achievement regarding rheological properties.
机译:磁流变学(MR)材料属于智能材料系列,其中通过外部磁场可以连续地,快速且可逆地改变流变性质。可调谐特性取决于外部磁场的大小。在基质载体内具有高饱和磁化的微米尺寸可磁化颗粒与磁场反应导致MR效应的改变。智能材料的经典问题是由于高浓度和大尺寸的磁性颗粒,粒子沉降和聚集问题。许多研究人员试图通过将纳米大小的颗粒引入这些材料来解决这一问题。基于先前的研究,据报道,纳米颗粒掺入MR材料以改善MR材料的稳定性,同时增强MR性能。本文概述了纳米颗粒掺入不同类型的MR材料,该MR材料是MR流体,润滑脂和弹性体,包括关于流变性质的稳定性和性能成果。

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