Viscosity and density sensor principle based on diamagnetic levitation using pyrolytic graphite

  • Stefan Clara (Speaker)

Activity: Talk or presentationContributed talkunknown

Description

We investigate the feasibility of viscosity and density measurements using diamagnetically stabilized levitation of a floater magnet on pyrolytic graphite. Immersing the floater magnet in a liquid, buoyancy forces will come into play. 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 from these adjustments. For viscosity measurements, we add an additional AC-driven coil to the setup, which yields a superposed alternating force on the floater magnet 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 where the resonance frequency for our setup is around 6 Hz.
Period06 Nov 2013
Event titleIEEE Sensors 2013
Event typeConference
LocationUnited StatesShow on map

Fields of science

  • 202028 Microelectronics
  • 202039 Theoretical electrical engineering
  • 202027 Mechatronics
  • 202037 Signal processing
  • 202036 Sensor systems
  • 203017 Micromechanics
  • 202019 High frequency engineering

JKU Focus areas

  • Mechatronics and Information Processing