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Magnetic circuits based on polymer composites for controlled actuation of a ferromagnetic sphere at a microfluidic junction

机译:基于聚合物复合材料的磁路,用于在微流体连接处控制铁磁球的致动

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We present the utilization of polymer composites for the realization of magnetic circuits for flux density engineering. Three-dimensional composite structures for guidance and concentration of the magnetic flux density have been devised and realized, which are used to actuate a ferromagnetic sphere at the intersection of two microfluidic channels. Depending on the position of the sphere the flow in the single branches can be blocked or released, i.e. it resembles the functionality of a microfluidic valve. Additionally, it can also realize some kind of liquid logic in a microfluidic network. At certain positions of the sphere at the x-junction the incoming flow splits up into different fractions for the three outgoing channels. Interestingly enough, permutations of the outward flows can be realized by switching the position of the sphere to predefined positions. In our contribution we describe the technology for creating the desired magnetic flux densities in microstructures based on polymer composites, and we present the application of this approach for the controlled actuation of a ferromagnetic sphere at the x-junction of microchannels for the realization of a valve with multiple switching states.
机译:我们介绍了利用聚合物复合材料实现磁通密度工程中的磁路。已经设计并实现了用于引导和集中磁通密度的三维复合结构,该结构用于在两个微流体通道的交点处驱动铁磁球。取决于球体的位置,单个分支中的流动可被阻止或释放,即,其类似于微流体阀的功能。另外,它还可以在微流体网络中实现某种液体逻辑。在球体在x接点的某些位置处,传入的流针对三个传出通道分成不同的分数。有趣的是,可以通过将球体的位置切换到预定义的位置来实现外向流的排列。在我们的贡献中,我们描述了在基于聚合物复合材料的微结构中创建所需磁通量密度的技术,并介绍了该方法在微通道x结处对铁磁球的受控驱动以实现阀的应用。具有多个开关状态。

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