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Ultrasonic measurement of rolling bearing lubrication using piezoelectric thin films

  • B.W. Drinkwater
  • , J. Zhang
  • , K.J. Kirk
  • , J. Elgoyhen
  • , R.S. Dwyer-Joyce

Research output: Contribution to JournalArticlepeer-review

Abstract

This paper describes the measurement of lubricant-film thickness in a rolling element bearing using a piezoelectric thin film transducer to excite and receive ultrasonic signals. High frequency (200 MHz) ultrasound is generated using a piezoelectric aluminum nitride film deposited in the form of a very thin layer onto the outer bearing raceway. This creates a transducer and electrode combination of total thickness of less than
⁠. In this way the bearing is instrumented with minimal disruption to the housing geometry and the oil-film can be measured noninvasively. The high frequency transducer generates a fine columnar beam of ultrasound that has dimensions less than the typical lubricated contact ellipse. The reflection coefficient from the lubricant-layer is then measured from within the lubricated contact and the oil-film thickness extracted via a quasistatic spring model. The results are described on a deep groove 6016 ball bearing supporting an 80 mm shaft under normal operating conditions. Good agreement is shown over a range of loads and speeds with lubricant-film thickness extracted from elastohydrodynamic lubrication theory.
Original languageEnglish
Article number011502
Number of pages8
JournalJournal of Tribology
Volume131
Issue number1
DOIs
Publication statusPublished - 3 Dec 2008

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