Journal Article

·2018

Micro-Flow Sensor Design and Implementation Based on Diamagnetic Levitation

Gizem Aydemir YTU , Can Erozer , Hüseyin Üvet YTU

Abstract

This contribution presents a concept for the measurement of flow with laser sensor and magnetic levitation in microfluidic systems. Modelling of the flow and physical property diagnosis is crucial in microfluidic system design. The system is based on the displacement measurement of a levitated magnet in a channel with a laser sensor. On a pyrolytic graphite in the channel, levitation of the magnet in the channel is fixed by a ring magnet (NdFeB). The ring magnet is controlled by a micro stage that allows movement in z axis. Displacement in x axis is observed when variant flow rates are applied to the levitated magnet. Displacements are determined via laser sensor. Pressure and displacement values under flow and magnetic field are determined with multiphysics via FEM program (COMSOL). Displacement of the magnet is detected by the designed flow sensor; and the flow rate is detected by numerical analysis method using the data taken from the laser sensor with a C# program.

Keywords

Magnet Levitation Multiphysics Neodymium magnet Materials science Displacement (psychology) Magnetic levitation Mechanical engineering Laser Mechanics Finite element method Acoustics Physics Optics Engineering

Subject Areas

Microfluidic and Capillary Electrophoresis Applications ·Biomedical Engineering ·Physical Sciences
Heat Transfer and Boiling Studies ·Mechanical Engineering ·Physical Sciences
Microfluidic and Bio-sensing Technologies ·Biomedical Engineering ·Physical Sciences

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