Morphologic transformation of ferrofluid during micropump driving under field control.

IF 4.1 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Wangxu Li, Zhenggui Li, Wei Han, Ye Wang, Jiali Zhao, Juping Zhou
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Abstract

The superiority of ferrofluid pumps in the fields of biomedical, life science, energy, and power research has been experimentally demonstrated. However, the mechanisms underlying the morphological transformations of ferrofluid fusion and separation during pump driving are not completely understood. To bridge the gap between the theory and practical applications of ferrofluid pumps, we employed optical methods to record the dynamic morphological transformation of rotating and fixed ferrofluids under different magnetic field polarities, magnetic field distributions, and ferrofluid mass fractions. The magnetic field polarity causes dynamic differences in the fusion-separation process of the ferrofluid but does not affect the volume segmentation of the ferrofluid, which depends on the ratio of the magnetic field intensities. When this ratio deviates from one, the morphology of ferrofluid changes, reducing the pumping efficiency. Compared to external environmental factors, the mass fraction does not change the morphology of the ferrofluid. However, high mass fractions lead to wall-clinging of the ferrofluid, and low mass fractions induce bubbles, both of which detrimentally affect the pumping performance. This study reveals the properties of ferrofluid and the effects of external environmental conditions on the morphological transformation of ferrofluid, providing references for optimizing ferrofluid pumps.

现场控制下的微泵驱动过程中铁流体的形态变化。
铁流泵在生物医学、生命科学、能源和动力研究领域的优越性已得到实验证明。然而,人们对铁流体在泵驱动过程中融合和分离的形态变化机理还不完全了解。为了弥补铁氟体泵理论与实际应用之间的差距,我们采用光学方法记录了旋转和固定铁氟体在不同磁场极性、磁场分布和铁氟体质量分数下的动态形态变化。磁场极性会导致铁流体融合分离过程中的动态差异,但不会影响铁流体的体积分割,体积分割取决于磁场强度比。当该比率偏离 1 时,铁流体的形态会发生变化,从而降低泵送效率。与外部环境因素相比,质量分数不会改变铁流体的形态。然而,高质量分数会导致铁流体贴壁,低质量分数会产生气泡,这两种情况都会对泵送性能产生不利影响。这项研究揭示了铁流体的特性以及外部环境条件对铁流体形态变化的影响,为优化铁流泵提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Annals of the New York Academy of Sciences
Annals of the New York Academy of Sciences 综合性期刊-综合性期刊
CiteScore
11.00
自引率
1.90%
发文量
193
审稿时长
2-4 weeks
期刊介绍: Published on behalf of the New York Academy of Sciences, Annals of the New York Academy of Sciences provides multidisciplinary perspectives on research of current scientific interest with far-reaching implications for the wider scientific community and society at large. Each special issue assembles the best thinking of key contributors to a field of investigation at a time when emerging developments offer the promise of new insight. Individually themed, Annals special issues stimulate new ways to think about science by providing a neutral forum for discourse—within and across many institutions and fields.
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