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在外加磁场作用下,磁性微珠链在流体中旋转的瞬态行为。

Transient behaviour of magnetic micro-bead chains rotating in a fluid by external fields.

作者信息

Petousis Ioannis, Homburg Erik, Derks Roy, Dietzel Andreas

机构信息

Technische Universiteit Eindhoven, Department of Mechanical Engineering, PO Box 513, 5600 MB, Eindhoven, The Netherlands.

出版信息

Lab Chip. 2007 Dec;7(12):1746-51. doi: 10.1039/b713735b. Epub 2007 Sep 28.

Abstract

Magnetic micro-beads can facilitate many functions in lab-on-a-chip systems, such as bio-chemical labeling, selective transport, magnetic sensing and mixing. In order to investigate potential applications of magnetic micro-beads for mixing in micro fluidic systems, we developed a pin-jointed mechanism model that allows analysing the behaviour of rotating superparamagnetic bead chains. Our numerical model revealed the response of the chains on a rotating magnetic field over time. We could demonstrate that the governing parameters are the Mason number and number of beads in the chain. The results are in agreement with the simplified analytical model, assuming a straight chain, but also allow prediction of the transient chain shape. The modelled chains develop an anti-symmetric S-shape that is stable, if the Mason number for a given chain length does not surpass a critical value. Above that value, rupture occurs in the vicinity of the chain centre. However, variations in bead susceptibility can shift the location of rupture. Moreover, we performed experiments with superparamagnetic micro-beads in a small fluid volume exposed to a uniform rotating magnetic field. Our simulation could successfully predict the observed transient chain form and the time for chain rupture. The developed model can be used to design optimised bead based mixers in micro fluidic systems.

摘要

磁性微珠可在芯片实验室系统中实现多种功能,如生化标记、选择性传输、磁传感和混合。为了研究磁性微珠在微流体系统中用于混合的潜在应用,我们开发了一种销接机构模型,该模型可用于分析旋转超顺磁性珠链的行为。我们的数值模型揭示了链在旋转磁场作用下随时间的响应。我们能够证明,控制参数是梅森数和链中珠子的数量。结果与简化的解析模型一致,该解析模型假设链是直的,但也能预测瞬态链的形状。如果给定链长的梅森数不超过临界值,建模的链会形成稳定的反对称S形。超过该值,链中心附近会发生断裂。然而,珠子磁化率的变化会改变断裂位置。此外,我们在暴露于均匀旋转磁场的小流体体积中用超顺磁性微珠进行了实验。我们的模拟能够成功预测观察到的瞬态链形式和链断裂时间。所开发的模型可用于设计微流体系统中基于珠子的优化混合器。

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