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Original Articles

Improvement and miniaturization of a T-shaped linear piezoelectric actuator with single foot

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Pages 1-11 | Accepted 13 Jun 2015, Published online: 22 Feb 2016

References

  • C. S. Zhao, Ultrasonic Motors Technologies and Applications, Science Press, Beijing, 2010.
  • W. S. Chen, Y.X. Liu, S.J. Shi, Piezoelectric-Metal Composite Beam Type Ultrasonic Motors Using Longitudinal and Bending Modes, Harbin Institute of Technology Press, Harbin, 2011.
  • X. L. Lu, J.H. Hu, L. Yang, C.S. Zhao, A novel in-plane mode rotary ultrasonic motor, Chin. J. Aeronaut. 27, 420–424(2014).
  • Y. X. Liu, W.S. Chen, P.L. Feng, J.K. Liu, A rotary piezoelectric motor using bending vibrators, Sens. Actuators A 196, 48–54(2013).
  • S. Y. Li, W.C. Ou, M. Yang, C. Guo, C.Y. Lu, J.H. Hu, Temperature evaluation of traveling-wave ultrasonic motor considering interaction between temperature rise and motor parameters. Ultrasonics 57, 159–166 (2015).
  • X. L. Lu, J.H. Hu, Q. Zhang, L. Yang, C.S. Zhao, P. Vasiljev, An ultrasonic driving principle using friction reduction, Sens. Actuators A 199, 187–193(2013).
  • W. C. Ou, M. Yang, F. Meng, Z.H. Xu, X.Q. Zhuang, S.Y. Li, Continuous high-performance drive of rotary traveling-wave ultrasonic motor with water cooling, Sens. Actuators A 222, 220–227 (2015).
  • J. Z. Shi, D.M. You, Characteristic model of travelling wave ultrasonic motor, Ultrasonics 54, 725–730 (2014).
  • X. L. Lu, J.H. Hu, L. Yang, C.S. Zhao, Principle and experimental verification of novel dual driving face rotary ultrasonic motor, Chin. J. Mech. Eng. 26, 1006–1012 (2013).
  • S. Park, S. Y. He, Standing wave brass-PZT square tubular ultrasonic motor. Ultrasonics 52, 880–889 (2012).
  • X. L. Lu, Q. Zhang, J.H. Hu, A linear piezoelectric actuator based solar panel cleaning system. Energy 60, 401–406 (2013).
  • T. J. Peng, H.Y. Shi, X. Liang, F. Luo, X.Y. Wu, Experimental investigation on sandwich structure ring-type ultrasonic motor. Ultrasonics 56, 303–307 (2015).
  • Y. X. Liu, W.S. Chen, X.H. Yang, J.K. Liu. A Bonded-Type Linear Piezoelectric Motor with Four Feet. Ferroelectrics 459, 91–98 (2014).
  • W. S. Chen, Y.X. Liu, J.K. Liu, S.J. Shi, A Linear Ultrasonic Motor Using Bending Vibration Transducer with Double Driving Feet. Ferroelectrics 400, 221–230 (2010).
  • Y. X. Liu, W.S. Chen, X.H. Yang, J. K. Liu, A rotary piezoelectric actuator using the third and fourth bending vibration modes. IEEE Trans. Ind. Electron. 61, 4366–4373 (2014).
  • Y. L. Shi, C.S. Zhao, W.Q. Huang, Linear ultrasonic motor with wheel-shaped stator, Sens. Actuators A 161, 205–209 (2010).
  • Y. X. Liu, X.H. Yang, W.S. Chen, Y. Yao. A High Power Linear Ultrasonic Motor Using a Bending Bolt-Clamped Transducer. Ferroelectrics 445, 39–50 (2013).
  • X. H. Yang, Y.X. Liu, W.S. Chen, J.K. Liu. Longitudinal and bending hybrid linear ultrasonic motor using bending PZT elements. Ceram. Int. 39, S691–S694 (2013).
  • M. S. Guo, S. Pan, J.H. Hu, C.S. Zhao, S.X. Dong, A small linear ultrasonic motor utilizing longitudinal and bending modes of a piezoelectric tube. IEEE Trans. Ultrason. Ferroelectr. Freq. Contr. 61, 705–709 (2014).
  • J. F. Guo, S.J. Gong, H.X. Guo, X. Liu, K.H. Ji, Force transfer model and characteristics of hybrid transducer type ultrasonic motors. IEEE Trans. Ultrason. Ferroelectr. Freq. Contr. 51, 387–395 (2004).
  • L. Yang, C.S. Zhao, Flexible supporting and fixing method for hybrid ultrasonic motor using longitudinal and torsional vibration modes. J. Vibroeng. 16, 2854–2861 (2014).
  • H. Al-Budairi, M. Lucas, P. Harkness, A design approach for longitudinal-torsional ultrasonic transducers, Sens. Actuators A. 198, 99–106 (2013).
  • Y. X. Liu, J.K. Liu, W.S. Chen, S.J. Shi, A high-power linear ultrasonic motor using longitudinal vibration transducers with single foot. IEEE Trans. Ultrason. Ferroelectr. Freq. Contr. 57, 1860–1867 (2010).

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