32
2 Literature Review
198. Z.G. Song, L.W. Zhang, K.M. Liew, Active vibration control of CNT-reinforced composite
cylindrical shells via piezoelectric patches. Compos. Struct. 158, 92–100 (2016)
199. T. Tang, S.D. Felicelli, A multiscale model for electro-thermo-elasto-plastic piezoelectric
metal matrix multifunctional composites. Int. J. Eng. Sci. 73, 1–9 (2013)
200. M. Komijani, J.N. Reddy, M.R. Eslami, Nonlinear analysis of microstructure-dependent functionally graded piezoelectric material actuators. J. Mech. Phys. Solids 63, 214–227 (2014)
201. M.S. Boroujerdy, M.R. Eslami, Axisymmetric snap-through behavior of Piezo-FGM shallow
clamped spherical shells under thermo-electro-mechanical loading. Int. J. Press. Vessel. Pip.
120–121, 19–26 (2014)
202. M. Vinyas, S.C. Kattimani, Hygrothermal analysis of magneto-electro-elastic plate using 3D
finite element analysis. Compos. Struct. 180, 617–637 (2017)
203. Z.X. Yang, P.F. Dang, Q.K. Han, Z.H. Jin, Natural characteristics analysis of magneto-electroelastic multilayered plate using analytical and finite element method. Compos. Struct. 185,
411–420 (2018)
204. S. Razavi, A. Shooshtari, Free vibration analysis of a magneto-electroelastic doubly-curved
shell resting on a Pasternak-type elastic foundation. Smart Mater. Struct. 23, 105003 (9pp),
(2014)
205. F. Ebrahimi, A. Jafari, M.R. Barati, Vibration analysis of magneto-electro-elastic heterogeneous porous material plates resting on elastic foundations. Thin-Walled Struct. 119, 33–46
(2017)
206. H. Ezzin, M. Mkaoir, M.B. Amor, Rayleigh wave behavior in functionally graded
magnetoelectro-elastic material. Superlattices Microstruct. 112, 455–469 (2017)
207. A. Milazzo, Large deflection of magneto-electro-elastic laminated plates. Appl. Math. Model.
38, 1737–1752 (2014)
208. S.C. Kattimani, M.C. Ray, Smart damping of geometrically nonlinear vibrations of magnetoelectro-elastic plates. Compos. Struct. 114, 51–63 (2014)
209. S. Sahmani, M.M. Aghdam, Nonlocal strain gradient shell model for axial buckling and
postbuckling analysis of magneto-electro-elastic composite nanoshells. Compos. Part B 132,
258–274 (2018)
210. Z. Wang, X. Qin, H.T.Y. Yang, Active suppression of panel flutter with piezoelectric actuators
using eigenvector orientation method. J. Sound Vib. 331, 1469–1482 (2012)
211. Z.G. Song, F.M. Li, Active aeroelastic flutter analysis and vibration control of supersonic
composite laminated plate. Compos. Struct. 94, 702–713 (2012)
212. F.M. Li, Active aeroelastic flutter suppression of a supersonic plate with piezoelectric material.
Int. J. Eng. Sci. 51, 190–203 (2012)
213. M. Mohammadimehr, M. Mehrabi, Electro-thermo-mechanical vibration and stability analyses of double-bonded micro composite sandwich piezoelectric tubes conveying fluid flow.
Appl. Math. Model. 60, 255–272 (2018)
214. Z.G. Song, F.M. Li, E. Carrera, P. Hagedorn, A new method of smart and optimal flutter
control for composite laminated panels in supersonic airflow under thermal effects. J. Sound
Vib. 414, 218–232 (2018)
215. D.P. Skinner, R.E. Newnham, L.J.E. Cross, Flexible composite transducers. Mater. Res. Bull.
13(6), 599–607 (1978)
216. N. Hagood, R. Kindel, K. Ghandi, P. Gaudenzi, Improving transverse actuation of piezoceramics using interdigitated surface electrodes, in Proceedings of SPIE - Smart Structures
and Materials 1993: Smart Structures and Intelligent Systems, vol. 1917 (Albuquerque, New
Mexico, 8 September 1993. SPIE), pp. 341–352
217. A.A. Bent, N.W. Hagood, Piezoelectric fiber composite with integrated electrodes. J. Intell.
Mater. Syst. Struct. 8, 903–919 (1997)
218. W.K. Wilkie, R.G. Bryant, J.W. High, R.L. Fox, R.F. Hellbaum, A. Jalink, B.D. Little, P.H.
Mirick, Low-cost piezocomposite actuator for structural control applications, in SPIE - Smart
Structures and Materials 2000: Industrial and Commercial Applications of Smart Structures
Technologies, vol. 3991 (SPIE, 12 June 2000), pp. 323–334
2 Literature Review
198. Z.G. Song, L.W. Zhang, K.M. Liew, Active vibration control of CNT-reinforced composite
cylindrical shells via piezoelectric patches. Compos. Struct. 158, 92–100 (2016)
199. T. Tang, S.D. Felicelli, A multiscale model for electro-thermo-elasto-plastic piezoelectric
metal matrix multifunctional composites. Int. J. Eng. Sci. 73, 1–9 (2013)
200. M. Komijani, J.N. Reddy, M.R. Eslami, Nonlinear analysis of microstructure-dependent functionally graded piezoelectric material actuators. J. Mech. Phys. Solids 63, 214–227 (2014)
201. M.S. Boroujerdy, M.R. Eslami, Axisymmetric snap-through behavior of Piezo-FGM shallow
clamped spherical shells under thermo-electro-mechanical loading. Int. J. Press. Vessel. Pip.
120–121, 19–26 (2014)
202. M. Vinyas, S.C. Kattimani, Hygrothermal analysis of magneto-electro-elastic plate using 3D
finite element analysis. Compos. Struct. 180, 617–637 (2017)
203. Z.X. Yang, P.F. Dang, Q.K. Han, Z.H. Jin, Natural characteristics analysis of magneto-electroelastic multilayered plate using analytical and finite element method. Compos. Struct. 185,
411–420 (2018)
204. S. Razavi, A. Shooshtari, Free vibration analysis of a magneto-electroelastic doubly-curved
shell resting on a Pasternak-type elastic foundation. Smart Mater. Struct. 23, 105003 (9pp),
(2014)
205. F. Ebrahimi, A. Jafari, M.R. Barati, Vibration analysis of magneto-electro-elastic heterogeneous porous material plates resting on elastic foundations. Thin-Walled Struct. 119, 33–46
(2017)
206. H. Ezzin, M. Mkaoir, M.B. Amor, Rayleigh wave behavior in functionally graded
magnetoelectro-elastic material. Superlattices Microstruct. 112, 455–469 (2017)
207. A. Milazzo, Large deflection of magneto-electro-elastic laminated plates. Appl. Math. Model.
38, 1737–1752 (2014)
208. S.C. Kattimani, M.C. Ray, Smart damping of geometrically nonlinear vibrations of magnetoelectro-elastic plates. Compos. Struct. 114, 51–63 (2014)
209. S. Sahmani, M.M. Aghdam, Nonlocal strain gradient shell model for axial buckling and
postbuckling analysis of magneto-electro-elastic composite nanoshells. Compos. Part B 132,
258–274 (2018)
210. Z. Wang, X. Qin, H.T.Y. Yang, Active suppression of panel flutter with piezoelectric actuators
using eigenvector orientation method. J. Sound Vib. 331, 1469–1482 (2012)
211. Z.G. Song, F.M. Li, Active aeroelastic flutter analysis and vibration control of supersonic
composite laminated plate. Compos. Struct. 94, 702–713 (2012)
212. F.M. Li, Active aeroelastic flutter suppression of a supersonic plate with piezoelectric material.
Int. J. Eng. Sci. 51, 190–203 (2012)
213. M. Mohammadimehr, M. Mehrabi, Electro-thermo-mechanical vibration and stability analyses of double-bonded micro composite sandwich piezoelectric tubes conveying fluid flow.
Appl. Math. Model. 60, 255–272 (2018)
214. Z.G. Song, F.M. Li, E. Carrera, P. Hagedorn, A new method of smart and optimal flutter
control for composite laminated panels in supersonic airflow under thermal effects. J. Sound
Vib. 414, 218–232 (2018)
215. D.P. Skinner, R.E. Newnham, L.J.E. Cross, Flexible composite transducers. Mater. Res. Bull.
13(6), 599–607 (1978)
216. N. Hagood, R. Kindel, K. Ghandi, P. Gaudenzi, Improving transverse actuation of piezoceramics using interdigitated surface electrodes, in Proceedings of SPIE - Smart Structures
and Materials 1993: Smart Structures and Intelligent Systems, vol. 1917 (Albuquerque, New
Mexico, 8 September 1993. SPIE), pp. 341–352
217. A.A. Bent, N.W. Hagood, Piezoelectric fiber composite with integrated electrodes. J. Intell.
Mater. Syst. Struct. 8, 903–919 (1997)
218. W.K. Wilkie, R.G. Bryant, J.W. High, R.L. Fox, R.F. Hellbaum, A. Jalink, B.D. Little, P.H.
Mirick, Low-cost piezocomposite actuator for structural control applications, in SPIE - Smart
Structures and Materials 2000: Industrial and Commercial Applications of Smart Structures
Technologies, vol. 3991 (SPIE, 12 June 2000), pp. 323–334
