液滴铁磁微流体的电永磁驱动。

TECHNOLOGY Pub Date : 2016-06-01 Epub Date: 2016-05-13 DOI:10.1142/S2339547816500023
José I Padovani, Stefanie S Jeffrey, Roger T Howe
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引用次数: 13

摘要

液滴驱动是基于液滴的微流体系统的基本机制。在基于铁磁流体的微流体系统中,按需电磁驱动用于水滴驱替。电永磁体(EPMs)在铁磁流体填充的微通道中产生50 mT的磁场,梯度高达6.4 × 104 kA/m2。短的50µs电流脉冲激活电永磁体,并在40 ~ 80µm的铁磁流体中水滴上产生10 ~ 70 nN的负磁泳力。在流动和无流动条件下,液滴的最大位移速度可达300µm/s。采用分结微流控设计,演示了电永磁体在连续流下的液滴分选。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Electropermanent magnet actuation for droplet ferromicrofluidics.

Electropermanent magnet actuation for droplet ferromicrofluidics.

Electropermanent magnet actuation for droplet ferromicrofluidics.

Electropermanent magnet actuation for droplet ferromicrofluidics.

Droplet actuation is an essential mechanism for droplet-based microfluidic systems. On-demand electromagnetic actuation is used in a ferrofluid-based microfluidic system for water droplet displacement. Electropermanent magnets (EPMs) are used to induce 50 mT magnetic fields in a ferrofluid filled microchannel with gradients up to 6.4 × 104 kA/m2. Short 50 µs current pulses activate the electropermanent magnets and generate negative magnetophoretic forces that range from 10 to 70 nN on 40 to 80 µm water-in-ferrofluid droplets. Maximum droplet displacement velocities of up to 300 µm/s are obtained under flow and no-flow conditions. Electropermanent magnet-activated droplet sorting under continuous flow is demonstrated using a split-junction microfluidic design.

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来源期刊
TECHNOLOGY
TECHNOLOGY ENGINEERING, MULTIDISCIPLINARY-
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