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Application of resonant steel tuning forks with circular and rectangular cross sections for precise mass density and viscosity measurements

Research output: Contribution to journalArticlepeer-review

Abstract

The feasibility of using commercially available steel tuning forks for viscosity and mass density sensing is investigated. For this task, the tuning forks are electromagnetically driven and read out to record their frequency responses containing the fundamental resonant mode upon immersion in a sample liquid. Evaluated resonance frequencies and quality factors are then related to the liquids’ mass density and vis- cosity. The used electromagnetic actuation and readout principle allows that only the tuning fork which is placed in the center of a glass tube gets wetted with the liquid to be examined. All excitation and read out related structures and electronics are placed outside the glass tube and thus, are not affected or influ- enced by the liquid. A generalized model relating evaluated quality factors and resonance frequencies to viscosity and mass density is used to describe the tuning forks’ sensitivities and furthermore to estimate required stabilities of apparent quality factors and resonance frequencies to achieve measurement accu- racies similar to those of laboratory instruments. It is shown that relative accuracies in the order of 1% in viscosity and 0.1 mg/cm3 in mass density are achievable.
Original languageEnglish
Pages (from-to)163-174
Number of pages12
JournalSensors and Actuators A: Physical
Volume226
DOIs
Publication statusPublished - Feb 2015

Fields of science

  • 202019 High frequency engineering
  • 202021 Industrial electronics
  • 202036 Sensor systems
  • 203017 Micromechanics
  • 202 Electrical Engineering, Electronics, Information Engineering
  • 202027 Mechatronics
  • 202028 Microelectronics
  • 202037 Signal processing

JKU Focus areas

  • Mechatronics and Information Processing

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