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Sensing Physical Fluid Properties in Microcavities Utilizing Diamagnetic Levitation

机译:利用反磁悬浮感测微腔中的物理流体性质

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This contribution presents a concept for the measurement of density and viscosity of fluids in microfluidic systems. To do so, we utilize diamagnetically stabilized levitation of a small floater magnet, which is integrated and confined in a small cavity. When liquid is fed into the microreactor, buoyancy forces act on the floater magnet. Keeping the levitation height of the floater magnet constant in different liquid surroundings by accordingly adjusting the lifter magnet, the buoyancy force and, therefore, the density of the fluid can be determined. For viscosity measurements, we add an additional ac-driven coil to the setup, which yields a superposed alternating force causing periodic vibrations of the floater magnet. The vibrations are damped according to the viscosity of the surrounding fluid. By performing a frequency sweep, the frequency response of the damped spring mass resonator can be obtained.
机译:该贡献提出了用于测量微流体系统中的流体的密度和粘度的概念。为此,我们利用了一个小的浮动磁铁的抗磁稳定悬浮力,该磁铁被集成并限制在一个小的空腔中。当液体被送入微反应器时,浮力作用在浮子磁铁上。通过相应地调节起重磁铁,可以确定浮子磁铁在不同液体环境中的悬浮高度恒定,从而可以确定浮力,从而确定流体的密度。对于粘度测量,我们在设置中添加了一个附加的交流驱动线圈,该线圈产生叠加的交变力,导致浮子磁体发生周期性振动。振动会根据周围流体的粘度而衰减。通过执行扫频,可以获得阻尼弹簧质量谐振器的频率响应。

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