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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Probing of field-induced structures and tunable rheological properties of surfactant capped magnetically polarizable nanofluids
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Probing of field-induced structures and tunable rheological properties of surfactant capped magnetically polarizable nanofluids

机译:表面活性剂封盖的可磁极化纳米流体的场致结构和可调节的流变性质的探测

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摘要

Oil-based nanofluid containing surfactant-capped magnetite nanoparticles are synthesized by a simple coprecipitation approach, and their magnetorheological properties are studied for different magnetic field strengths and volume fractions. We observe a distinct "plateau-like region" in the shear thinning viscosity curve, under an external magnetic field, possibly due to a peculiar alignment of the chains with respect to the field direction where the structure is stable against fragmentation. The observed plateau regime is reminiscent to that of kinetically arrested gel networks. Interestingly, such a plateau regime has been observed only above certain critical magnetic field when the dipolar interaction strength is much greater than the thermal energy where the aggregation becomes a nonequilibrium transport-limited process. The good collapse of specific viscosity data against Mason number for different magnetic field strengths onto a single curve suggests the dominance of hydrodynamic and magnetic forces on thermal force above a certain magnetic field strength. The observed increase in both static and dynamic yield stresses under the magnetic field confirms the formation of columnar structures that hinder the flow behavior. The hysteresis observed in the magnetic sweep experiments shows the inability of the chains to relax within the measurement time. The dynamic measurements confirm that the field-induced structures impart elastic behavior to the dispersion, which is found to increase with magnetic field and saturates at higher field strengths.
机译:通过简单的共沉淀方法合成了含油基纳米流体的表面活性剂封端的磁铁矿纳米颗粒,并针对不同的磁场强度和体积分数研究了它们的磁流变性质。我们在外部磁场作用下,在剪切稀化粘度曲线中观察到一个明显的“高原样区域”,这可能是由于链相对于磁场方向的特定排列所致,在该处结构稳定而不会断裂。所观察到的平稳状态使人联想到动力学上停止的凝胶网络。有趣的是,仅当偶极相互作用强度远大于聚集能成为非平衡输运限制过程的热能时,才在特定的临界磁场上方观察到这种平稳状态。在不同的磁场强度下,比粘度数据相对于梅森数的良好坍塌在一条曲线上,表明在一定磁场强度以上,流体动力和磁力对热力的支配力。在磁场下观察到的静态和动态屈服应力的增加证实了阻碍流动行为的柱状结构的形成。在磁扫实验中观察到的磁滞表明,链无法在测量时间内松弛。动态测量结果证实,场感应结构使分散体具有弹性,发现其随磁场而增加,并在较高的场强下饱和。

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