首页> 外文会议>Asian-Australasian Conference on Composite Materials;ACCM; 20061127-30;20061127-30; Hong Kong(CN);Hong Kong(CN) >Encapsulation of Carbonyl Iron Particles with Poly(Vinyl Butyral) and Their Magnetorheology
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Encapsulation of Carbonyl Iron Particles with Poly(Vinyl Butyral) and Their Magnetorheology

机译:聚乙烯醇缩丁醛对羰基铁颗粒的包封及其磁流变学

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摘要

To enhance dispersion stability of magnetorheological (MR) fluids, hybrid magnetic particles of carbonyl iron (CI)/ poly(vinyl butyral) (PVB) with core/shell microstrcutre (CI-PVB) were prepared, since pure magnetic CI based MR fluid systems show severe sedimentation of the CI particles due to the large density mismatch with the carrier liquid and difficulties in redispersion after caking. The composite particles of CI-PVB have a lower density than that of the pure CI particles, while exhibiting almost original magnetic property of the CI. Both CI and CI-PVB particles were dispersed in mineral oil (20 vol%) and their MR characteristics were examined via a rotational rheometer with a magnetic field supplier. Various characterizations of the CI-PVB particles were performed via SEM, TEM and FT-IR. Both yield stress and flow curve of shear stress as a function of shear rate of the MR fluids were investigated under applied magnetic field strengths.
机译:为了提高磁流变(MR)流体的分散稳定性,由于基于纯磁性CI的MR流体系统,制备了具有核/壳微结构(CI-PVB)的羰基铁(CI)/聚乙烯醇缩丁醛(PVB)混合磁性颗粒由于与载液的密度大不匹配以及结块后难以再分散,因此显示出CI粒子的严重沉淀。 CI-PVB的复合颗粒的密度低于纯CI颗粒的密度,同时几乎表现出CI的原始磁性。 CI和CI-PVB颗粒均分散在矿物油(20%(体积))中,并通过带有磁场供应器的旋转流变仪检查了其MR特性。通过SEM,TEM和FT-IR对CI-PVB颗粒进行了各种表征。在施加的磁场强度下,研究了MR流体的屈服应力和剪切应力流动曲线与MR流体剪切速率的关系。

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