Piezoelectric Actuator Transverse Shear Deformation Shear Strain Component Viscoelastic Core Field Intensity Vector 
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19.2 References

  1. 19.1.
    Leibowitz, M. and Vinson, J.R. (1993) The Use of Hamilton’s Principle in Laminated Piezoelectric and Composite Structures, ASME-AD Vol. 35, Adaptive Structures and Material Systems, eds., G.P. Carman and E. Garcia, pp. 257–268.Google Scholar
  2. 19.2.
    Leibowitz, M. (1993) Studies on the Use of Piezoelectric Actuators in Composite Sandwich Constructions, Ph.D. Dissertation, University of Delaware.Google Scholar
  3. 19.3.
    Tzou, H.S. and Tseng, C.I. (1990) Distributed Piezoelectric Sensor/Actuator Design for Dynamic Measurement/Control of Distributed Parameter System: A Piezoelectric Finite Element Approach, Journal of Sound and Vibration, Vol. 138, No. 1, pp. 17–34.CrossRefGoogle Scholar
  4. 19.4.
    Robbins, D.H. and Reddy, J.N. (1991) Analysis of Piezoelectrically Actuated Beam Using a Layer-Wise Displacement Theory, Composites and Structures, Vol. 41, No. 2, pp. 265–279.CrossRefzbMATHGoogle Scholar
  5. 19.5.
    Wang, B.T. and Rogers, C.A. (1991) Laminate Plate for Spatially Distributed Inducer Strain Actuators, Journal of Composite Materials, Vol. 25, April.Google Scholar
  6. 19.6.
    Fukada, E. and Sakurai, T. (1971) Piezoelectricity in Polarized Polyvinylidene Fluoride ( ) Fibers, Polymer Journal, Vol. 2, No. 5, pp. 656–662.CrossRefGoogle Scholar

Copyright information

© Springer 2005

Authors and Affiliations

  • Jack R. Vinson
    • 1
  1. 1.Center for Composite Materials and College of Marine Studies, Department of Mechanical Engineering, Spencer LaboratoryUniversity of DelawareNewarkUSA

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