3O Effect of Magnetic Nanoparticle Additive on Viscoelastic Behaviors of Carbonyl Iron-Based Magnetorheological Suspension
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Effect of Magnetic Nanoparticle Additive on Viscoelastic Behaviors of Carbonyl Iron-Based Magnetorheological Suspension

机译:磁性纳米粒子添加剂对羰基铁基磁流变悬浮液粘弹性行为的影响

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摘要

Magnetic Fe3O4/polystyrene (PS) composite particles were synthesized via a Shirasu porous glass (SPG) membrane emulsification technique and introduced to carbonyl iron (CI) particle-based magnetorheological (MR) fluid as an additive to enhance its MR performance and dispersion stability relative to pure CI particle-based MR suspension. The SPG method was adopted for achieving a narrow size distribution of the magnetic composite particles. The morphology and size distribution of Fe3O4/PS composites were examined by transmission electron microscope and dynamic light scattering, respectively. The magnetic characteristic of Fe3O4/PS composites was evaluated using vibrating sample magnetometer. Rheological properties of both pure CI and CI-Fe3O4/PS additive-based MR suspensions were investigated by a rotation rheometer via a steady shear test under different external magnetic field strengths. The dispersion stability of both MR suspensions were also measured through Turbiscan.
机译:磁性Fe n 3 nO n 4 n /聚苯乙烯(PS)复合颗粒是通过Shirasu多孔玻璃(SPG)膜乳化技术合成的,并引入到基于羰基铁(CI)颗粒的磁流变(MR)流体中相对于纯CI颗粒基MR悬浮液而言,它是增强其MR性能和分散稳定性的添加剂。采用SPG方法可实现磁性复合颗粒的窄粒度分布。 Fe n 3 nO n 4/PS复合材料分别通过透射电子显微镜和动态光散射进行了检测。 Fe n 3 nO n 4/PS复合材料。纯CI和CI-Fe n 3 nO n 4 n / PS基于添加剂的MR悬浮液通过旋转流变仪在不同外部磁场强度下通过稳定剪切试验进行了研究。还通过Turbiscan测量了两种MR悬浮液的分散稳定性。

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