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Magnetic forces produced by rectangular permanent magnets in static microsystems

机译:静态微系统中矩形永磁体产生的磁力

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摘要

Finite element numerical simulations were carried out in 2D geometries to map the magnetic field and force distribution produced by rectangular permanent magnets as a function of their size and position with respect to a microchannel. A single magnet, two magnets placed in attraction and in repulsion have been considered. The goal of this work is to show where magnetic beads are preferentially captured in a microchannel. These simulations were qualitatively corroborated, in one geometrical case, by microscopic visualizations of magnetic bead plug formation in a capillary. The results show that the number of plugs is configuration dependent with: in attraction, one plug in the middle of the magnets; in repulsion, two plugs near the edges of the magnets; and with a single magnet, a plug close to the center of the magnet. The geometry of the magnets (h and l are the height and length of the magnets respectively) and their relative spacing s has a significant impact on the magnetic flux density. Its value inside a magnet increases with the h/l ratio. Consequently, bar magnets produce larger and more uniform values than flat magnets. The l/s ratio also influences the magnetic force value in the microchannel, both increasing concomitantly for all the configurations. In addition, a zero force zone in the middle appears in the attraction configuration as the l/s ratio increases, while with a single magnet, the number of maxima and minima goes from one to two, producing two focusing zones instead of only one.
机译:在2D几何形状中进行了有限元数值模拟,以绘制矩形永磁体产生的磁场和力分布,这些磁场和力分布是它们相对于微通道的大小和位置的函数。已经考虑了单个磁体,两个处于吸引和排斥状态的磁体。这项工作的目的是显示在微通道中优先捕获磁珠的位置。在一种几何情况下,通过毛细管中磁珠塞形成的微观可视化,在质量上证实了这些模拟。结果表明,插头的数量与配置有关,取决于:吸引时,磁铁中间有一个插头;在排斥时,在磁体边缘附近有两个插头;并带有单个磁铁,靠近磁铁中心的插头。磁体的几何形状(h和l分别是磁体的高度和长度)及其相对间距s对磁通密度有重要影响。其在磁体内部的值随h / l比增加。因此,条形磁体比平面磁体产生更大,更均匀的值。升/秒比还影响微通道中的磁力值,两者对于所有配置都随之增加。另外,随着l / s比的增加,中间的零力区域会出现在吸引力配置中,而对于单个磁体,最大值和最小值的数量会从一变为两个,从而产生两个聚焦区域,而不仅仅是一个聚焦区域。

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