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Strain transfer mechanism of passive wireless surface acoustic wave torque sensors using shear lag theory

Strain transfer mechanism of passive wireless surface acoustic wave torque sensors using shear lag theory
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摘要 A shear-lag theory was developed to investigate the strain transfer from the metal substrate to the surface acoustic wave (SAW) resonator through a bonding layer. A three-layer model of host structure-adhesive layer-resonator layer was established. The strain transfer was theoretically analyzed, and the main factors impacting the SAW sensor measurement were studied. The relationship between the sensor response and the individual effect of all these factors under static loads was discussed. Results showed that better accuracy could be achieved with increase in the adhesive stiffness or resonator length, or decrease in the adhesive thickness. The values of the strain transfer rate calculated from the analytical model agreed well with that from the available experiment data. A shear-lag theory was developed to investigate the strain transfer from the metal substrate to the surface acoustic wave (SAW) resonator through a bonding layer. A three-layer model of host structure-adhesive layer-resonator layer was established. The strain transfer was theoretically analyzed, and the main factors impacting the SAW sensor measurement were studied. The relationship between the sensor response and the individual effect of all these factors under static loads was discussed. Results showed that better accuracy could be achieved with increase in the adhesive stiffness or resonator length, or decrease in the adhesive thickness. The values of the strain transfer rate calculated from the analytical model agreed well with that from the available experiment data.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2011年第2期221-226,共6页 北京理工大学学报(英文版)
基金 Supported by"111" Project of China(B08043)
关键词 passive wireless surface acoustic wave (SAW) TORQUE strain transfer shear lag passive wireless surface acoustic wave (SAW) torque strain transfer shear lag
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参考文献8

  • 1Buff W,Plath F.Remote sensor system using passive SAW sensors. IEEEUFFC International Symposium Proceeding . 1994
  • 2Kalinin V,Bown G,Leigh A.Contactless torque and temperature sensor based on SAW resonators. Proceedings of IEEE Ultrasonics Symposium . 2006
  • 3U. Wolff,F. Schmidt.Radio accessible SAW sensors for non-contact measurement of torque and temperature. IEEE Ultrasonics Symposium Proceedings . 1996
  • 4MOLYET K E.Study of induced strain transfer in piezoceramic smart material systems. Smart Materials and Structures . 1999
  • 5C. Park,C. Walz,I. Chopra.Bending and torsion models of beams with induced-strain actuators. Smart Materials and Structures . 1996
  • 6Reindl L,Scholl G,Ostertag T,et al.Theory and application of passive SAW radio transponders as sensors. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control . 1998
  • 7Crawley EF,De Luis J.Use of piezoelectric actuators as elements of intelligent structures. AIAA Journal . 1987
  • 8Crawley E F,Anderson E H.Detailed models of piezoceramic actuation of beams. Journal of Intelligent Material Systems and Structures . 1990

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