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Magnetic prestressing for a d 32 -mode single crystal ultrasonic transducer.

Scott D MossJess D FlickerDavid J MunkMatthew J SchipperJoel SmithardGeorge JungZane HillsJianfu HouJohn E DanielsPeter Finkel
Published in: The Journal of the Acoustical Society of America (2023)
This work describes a 35.9 kHz ultrasonic transducer that incorporates a magnetic arrangement to apply a static-compressive prestress to a d 32 -mode relaxor ferroelectric single crystal drive-element. The magnetic arrangement produces a 22.5 N static-compressive force, inducing a static compression of ∼630 nm on the drive-element. Operating in air with a continuous-wave 10 V peak drive at ∼35.9 kHz, the measured resonant peak displacement of the transducers head-mass was 127 nm. This is well within the predicted static compression, thus, the drive-element is protected from damaging tensile stress. Under the same drive conditions and at an axial distance of 10 mm from the face of the head-mass, the measured acoustic pressure was ∼12 Pa. Analytical and finite element model predictions and the measured behaviour of a prototype device are presented and show good correlation, demonstrating that magnetic prestressing of the drive-element can be a viable alternative to the traditional bolt-clamp.
Keyphrases
  • molecularly imprinted
  • high frequency
  • photodynamic therapy
  • high resolution
  • mass spectrometry
  • stress induced
  • solid phase extraction
  • liquid chromatography
  • tandem mass spectrometry