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Synthesis, characterization and magnetorheological properties of carbonyl iron suspension with superparamagnetic nanoparticles as an additive

机译:超顺磁性纳米粒子作为添加剂的羰基铁悬浮液的合成,表征和磁流变性能

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摘要

Magnetorheological (MR) fluids are suspensions of micron-sized particles dispersed in carrier fluid. Due to high density magnetic particles, MR fluids are facing the problem with the instability of the suspension caused by high settling rate. Recently, researches have been conducted on the advantages of using the mixture of magnetic nanoparticles and microparticles, called bidisperse MR fluids. However, even though the sedimentation stability is improved, there is a reduction in dynamic yield stress when the nanoparticle is introduced. In this work, the investigation of magnetic iron nanoparticles (gamma-Fe2O3) as an additive to magnetic carbonyl iron (CI) suspension has been proposed so as to improve the sedimentation stability and redispersibility, but at the same time enhance the MR performance. The results indicated that the addition of nanoparticles reduced the sedimentation rate, improved redispersibility and enhanced the rheological performance of MR fluids as the particle fill the voids between the microparticles and strengthened the interparticle chains contributing to well-arranged particle structures.
机译:磁流变(MR)流体是分散在载流体中的微米级颗粒的悬浮液。由于高密度的磁性颗粒,MR流体面临着由高沉降速率引起的悬浮液不稳定的问题。最近,已经对使用磁性纳米颗粒和微粒的混合物(称为双分散MR流体)的优点进行了研究。然而,即使沉积稳定性得到改善,当引入纳米颗粒时,动态屈服应力也会降低。在这项工作中,已经提出了研究磁性铁纳米颗粒(γ-Fe2O3)作为羰基磁性铁(CI)悬浮液的添加剂,以提高沉积稳定性和可再分散性,但同时提高了MR性能。结果表明,纳米颗粒的添加降低了沉降速率,改善了再分散性,并增强了MR流体的流变性能,因为该颗粒填充了微粒之间的空隙并增强了颗粒间链,从而有助于合理地排列颗粒结构。

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