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Two-layer coating with polymer and carbon nanotube on magnetic carbonyl iron particle and its magnetorheology

机译:羰基磁性铁颗粒上聚合物和碳纳米管的两层涂层及其磁流变学

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Magnetic carbonyl iron (CI)-based magnetorheo-logical (MR) fluids generally posses serious dispersion defects due to the large density mismatch between the CI particles and continuous oil medium, which restricts further MR applications. Polymer coating technology has been introduced in an attempt to reduce the density or prevent CI particle aggregation. In this study, a unique functional coating composed of a polyaniline layer and multiwalled carbon nanotube nest was fabricated on the surface of CI particles using a dispersion polymerization and solvent casting method to improve the sedimentation problem of CI-based MR fluids when dispersed in medium oil. The coating morphology was analyzed by scanning electron microscopy. The effect of the functional coating on the MR performance along with the sedimentation observations was investigated using a rotational rheometer. The results showed that the sedimentation of dispersed particles was improved considerably by the reduced density and rough morphology.
机译:基于羰基铁(CI)的磁性流变学(MR)流体通常具有严重的分散缺陷,这是因为CI颗粒与连续油介质之间存在很大的密度不匹配,这限制了进一步的MR应用。为了降低密度或防止CI颗粒聚集,已经引入了聚合物涂层技术。在这项研究中,使用分散聚合和溶剂浇铸方法在CI颗粒的表面上制备了由聚苯胺层和多壁碳纳米管巢组成的独特功能涂层,以改善CI基MR流体在中油中分散时的沉降问题。 。通过扫描电子显微镜分析涂层形态。使用旋转流变仪研究了功能涂层对MR性能的影响以及沉降观测。结果表明,降低的密度和粗糙的形态大大改善了分散颗粒的沉降。

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