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Design of high-magnetic field gradient sources for controlling magnetically induced flow of ferrofluids in microfluidic systems

机译:用于控制微流体系统中铁磁流体的磁感应流的高磁场梯度源设计

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摘要

The use of miniature electromagnets for ferrofluid-actuated liquid dispensing into microfluidic channels has been investigated by numerical simulations using the finite element method and measurements of fluid displacement and flow rate. The simulations illustrate the effect of structural and geometrical parameters of single and paired solenoid coils on the magnetic force experienced by the ferrofluid. Dual solenoids were used for extended fluid displacement. Ferrofluid positioning and flow rates were controlled also by using a solenoid with an iron core. The experimental measurements of fluidflow in capillaries were used to validate the modeling calculations. The results can be used as a basis for the development of on-chip ferrofluid-based devices integrated with microfluidic architectures.
机译:通过使用有限元方法的数值模拟以及对流体排量和流速的测量,研究了使用微型电磁体将铁磁流体驱动的液体分配到微流体通道中。仿真说明了单个和成对螺线管线圈的结构和几何参数对铁磁流体所承受的磁力的影响。双螺线管用于延长流体排量。铁磁流体的定位和流速也可以通过使用带铁芯的螺线管来控制。使用毛细管中流体流动的实验测量值来验证建模计算。该结果可以用作开发与微流体架构集成的基于铁磁流体的芯片的基础。

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