论文标题

磁弹性效应在非纽顿铁氟液滴的撞击动力学中

Magnetoelastic effect in impact dynamics of nonNewtonian ferrofluid droplets

论文作者

Prasad, Gudlavalleti V V S Vara, Dhar, Purbarun, Samanta, Devranjan

论文摘要

在本文中,我们提出,借助详细的实验和缩放分析,在磁场存在下非牛顿铁氟液滴对超疏水(SH)表面的非牛顿铁氟液滴的影响中存在磁弹性效应。研究了磁键数(BOM),韦伯数(我们),聚合物浓度和磁性纳米颗粒(FE3O4)浓度在铁氟烷中的影响。与牛顿铁氟利液滴相比,聚合物的添加导致固定磁性纳米颗粒浓度在较低的BOM处相对较低的液滴抑制。我们进一步观察到,对于固定的聚合物浓度,我们增加了磁性纳米颗粒浓度,还会随着BOM的增加而触发早期的反弹抑制。在没有磁性纳米颗粒的情况下,非牛顿液滴不会显示出所研究的BOM范围的反弹抑制。同样,牛顿铁氟利人在很大的bom中表现出反弹抑制。被称为磁弹性效应的聚合物链和磁性纳米颗粒的弹性影响的有趣相互作用被发现导致反弹抑制。我们建立了缩放关系,以表明只有当提出的磁性Weissenberg数(WIM)超过统一时,才能将反弹抑制视为磁弹性不稳定性发作的表现。我们还提出了一个相位图,以确定此类液滴的影响铁水动力学的各种状态以及磁弹性效应的发生。

In this article, we propose, with the aid of detailed experiments and scaling analysis, the existence of magneto-elastic effects in the impact hydrodynamics of non-Newtonian ferrofluid droplets on superhydrophobic (SH) surfaces in presence of a magnetic field. The effects of magnetic Bond number (Bom), Weber number (We), polymer concentration and magnetic nanoparticle (Fe3O4) concentration in the ferrofluids were investigated. In comparison to Newtonian ferrofluid droplets, addition of polymers caused rebound suppression of the droplets relatively at lower Bom for a fixed magnetic nanoparticle concentration and We. We further observed that for a fixed polymer concentration and We, increasing magnetic nanoparticle concentration also triggers earlier rebound suppression with increasing Bom. In the absence of the magnetic nanoparticles, the non-Newtonian droplets do not show rebound suppression for the range of Bom investigated. Likewise, the Newtonian ferrofluids show rebound suppression at large Bom. This intriguing interplay of elastic effects of polymer chains and the magnetic nanoparticles, dubbed as the magneto-elastic effect is noted to lead to the rebound suppression. We establish a scaling relationship to show that the rebound suppression is observed as manifestation of onset of magneto-elastic instability only when the proposed magnetic Weissenberg number (Wim) exceeds unity. We also put forward a phase map to identify the various regimes of impact ferrohydrodynamics of such droplets, and the occurrence of the magneto-elastic effect.

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