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亲水性二氧化硅纳米颗粒对铁磁流体磁流变特性的影响:一项使用光磁流变仪的研究。

Effect of hydrophilic silica nanoparticles on the magnetorheological properties of ferrofluids: a study using opto-magnetorheometer.

作者信息

Felicia Leona J, Philip John

机构信息

SMARTS, Metallurgy and Materials Group, Indira Gandhi Centre for Atomic Research, Kalpakkam 603 102, India.

出版信息

Langmuir. 2015 Mar 24;31(11):3343-53. doi: 10.1021/acs.langmuir.5b00103. Epub 2015 Mar 10.

DOI:10.1021/acs.langmuir.5b00103
PMID:25734232
Abstract

For many technological applications of ferrofluids, the magnetorheological properties require being precisely controlled. We study the effect of hydrophilic silica on the magnetorheology of an oil-based ferrofluid containing Fe3O4 nanoparticles of size ∼10 nm. We observe that the presence of silica nanoparticles lowers the yield stresses, viscoelastic moduli, and shear thinning behavior of the ferrofluid because of the weakening of dipolar interactions, which was evident from the observed lower yield stresses exponent (<2). The ferrofluid containing silica exhibits a dominant elastic behavior, a reduced hysteresis during the forward and reverse magnetic field sweeps, and a longer linear viscoelastic regime under nonlinear deformation. The Mason number plots at low shear rates and magnetic fields show deviations from the master curve in the presence of silica. The magnetic field induced microstructures, visualized using opto-magnetorheometer, showed columnar aggregate structures along the field directions, which are reoriented along the shear flow direction at high shear rates. The image analysis shows that the average thickness of the columnar aggregates in pure ferrofluid is much larger than that of the mixed system, which suggests that the intervening silica matrix hampers the zippering transition of columns at higher magnetic field and shear rates. Our results suggest that optimization of rheological properties of ferrofluids is possible by carefully adding suitable silica nanoparticles, which may find practical applications such as dynamic seals, heat transfer, sensors, and opto-fluidic devices, etc.

摘要

对于铁磁流体的许多技术应用而言,磁流变特性需要得到精确控制。我们研究了亲水性二氧化硅对一种含有尺寸约为10纳米的Fe3O4纳米颗粒的油基铁磁流体磁流变学的影响。我们观察到,由于偶极相互作用的减弱,二氧化硅纳米颗粒的存在降低了铁磁流体的屈服应力、粘弹性模量和剪切变稀行为,这从观察到的较低屈服应力指数(<2)中可以明显看出。含有二氧化硅的铁磁流体表现出主导的弹性行为、在正向和反向磁场扫描期间滞后减小以及在非线性变形下有更长的线性粘弹性区域。在低剪切速率和磁场下的梅森数图表明,在有二氧化硅存在时偏离了主曲线。使用光磁流变仪可视化的磁场诱导微观结构显示,沿磁场方向有柱状聚集体结构,在高剪切速率下这些结构会沿剪切流动方向重新定向。图像分析表明,纯铁磁流体中柱状聚集体的平均厚度远大于混合体系的,这表明中间的二氧化硅基质在较高磁场和剪切速率下阻碍了柱体的拉链转变。我们的结果表明,通过小心添加合适的二氧化硅纳米颗粒来优化铁磁流体的流变特性是可行的,这可能会在诸如动态密封、传热、传感器和光流体装置等实际应用中找到用途。

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