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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Oscillating Ferrofluid Droplet Microrheology of Liquid-Immersed Sessile Droplets
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Oscillating Ferrofluid Droplet Microrheology of Liquid-Immersed Sessile Droplets

机译:振动液体浸渍术液滴的振动效果流体液滴微流理

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摘要

The damped oscillations of liquid-immersed ferrofluid sessile droplets were studied with high-speed imaging experiments and analytical modeling to develop a novel microrheology technique. Droplet oscillations were induced with an external magnetic field, thereby avoiding transients in the resulting vibrational response of the droplet. By following the droplet relaxation with a high-speed camera, the frequency and relaxation time of the damped harmonic oscillations were measured. We extend upon existing analytical theories to describe our liquid-immersed sessile droplet system, and directly quantify the droplet relaxation with the viscosity of the internal and external fluid as well as the interfacial tension between these. The easily controllable magnetic droplets make our oscillating ferrofluid droplet technique a potential candidate for high-throughput microrheology and tensiometry in the future.
机译:用高速成像实验研究了液体浸渍的铁磁流体液滴液滴的阻尼振荡,并分析模拟以开发一种新型微流理技术。 用外部磁场诱导液滴振荡,从而避免了液滴的所得到的振动响应中的瞬变。 通过用高速相机突出液滴放松,测量阻尼谐波振荡的频率和弛豫时间。 我们延长了现有的分析理论来描述我们的液体浸渍的术液滴系统,并直接用内部和外部流体的粘度来定量液滴松弛以及这些液体之间的界面张力。 易于控制的磁液滴使我们的振荡的Ferrofluid液滴技术成为未来高通量微流学和张力学的潜在候选者。

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