References
21
45. Karlici´ c, D., Jovanovi´ c, D., Kozi´ c, P., Caji´ c, M.: Thermal and magnetic effects on the vibration
of a cracked nanobeam embedded in a elastic medium. J. Mech. Mater. Struct. 10(1), 43–62
(2015)
46. Baghani, M., Mohammadi, M., Farajpour, A.: Dynamic and stability analysis of the rotating
nanobeam in a nonuniform magnetic field considering the surface energy. Int. J. Appl. Mech.
8(4), 1650048 (2016)
47. Du, H., Zhou, G., Zhao, Y., Chen, G., Chau, F.S.: Magnetic field sensor based on coupled
photonic crystal nanobeam cavities. Appl. Phys. Lett. 110, 061110 (2017)
48. Alibeigi, B., Beni, Y.T., Mehralian, F.: On the thermal buckling of magneto-electro-elastic
piezoelectric nanobeams. Eur. Phys. J. Plus 133, 133 (2018)
49. Kerid, R., Bourouina, H., Yahiaoui, R., Bounekhla, M., Aissat, A.: Magnetic field effect on
nonlocal resonance frequencies of structure-based filter with periodic square holes network.
Physica E 105, 83–89 (2019)
50. Alibeigloo, A.: Free vibration analysis of nano-plate using three-dimensional theory of elasticity. Acta Mech. 222, 149–159 (2011)
51. Yan, Z., Jiang, Y.: Vibration and buckling analysis of a piezoelectric nanoplate considering
surface effects and in-plane constraints. Proc. R. Soc. A 468, 3458–3475 (2012)
52. Asemi, S.R., Farajpour, A.: Vibration characteristics of double-piezoelectric-nanoplatesystems. Micro Nano Lett. 9, 280–285 (2014)
53. Salehipour, H., Nahvi, H., Shahidi, A.R.: Exact closed-form free vibration analysis for functionally graded micro/nano plates based on modified couple stress and three-dimensional
elasticity theories. Compos. Struct. 124, 283–291 (2015)
54. Jafari, A., Shah-Enayati, S.S., Atai, A.A.: Size dependency in vibration analysis of nano
plates; one problem, different answers. Eur. J. Mech.-A/Solids 59, 124–139 (2016)
55. Ghassabi, A.A., Dag, S., Cigeroglu, E.: Free vibration analysis of functionally graded rectangular nanoplates considering spatial variation of the nonlocal parameter. Arch. Mech. 69,
105–130 (2017)
56. Zarei, M., Faghani, G.R., Ghalami, M., Rahimi, G.H.: Buckling and vibration analysis of
tapered circular nano plate. J. Appl. Comput. Mech. 4, 40–54 (2018)
57. Shahrbabaki, E.A.: On three-dimensional nonlocal elasticity: free vibration of rectangular
nanoplate. Eur. J. Mech.-A/Solids 71, 122–133 (2018)
58. Despotovic, N.: Stability and vibration of a nanoplate under body force using nonlocal elasticity theory. Acta Mech. 229, 273–284 (2018)
59. Singh Pratap, P., Azam, M.S., Ranjan, V.: Analysis of free vibration of nano plate resting on
Winkler Foundation. Vibroeng. Procedia 21, 65–70 (2018)
60. Ajri, M., Fakhrabadi, M.M.S., Rastgoo, A.: Analytical solution for nonlinear dynamic behavior of viscoelastic nano-plates modeled by consistent couple stress theory. Lat. Am. J. Solids
Struct. 15, e113 (2018)
61. Pelevic, N., van der Meer, T.: Numerical investigation of heat transfer enhancement by carbon
nano fibers deposited on a flat plate. Comput. Math. Appl. 65, 914–923 (2013)
62. Khorshidi, K., Asgari, T., Fallah, A.: Free vibrations analysis of functionally graded rectangular nano-plates based on nonlocal exponential shear deformation theory. Mech. Adv. Compos.
Struct. 2, 79–93 (2015)
63. Hosseini, M., Jamalpoor, A.: Analytical solution for thermomechanical vibration of doubleviscoelastic nanoplate-systems made of functionally graded materials. J. Therm. Stress. 38,
1428–1456 (2015)
64. Mahmound, A.H., El-Shishtawy, R.M., Obaid, A.Y.: The impact of graphene nano-plates on
the behavior of novel conducting polyazomethine nanocomposites. R. Soc. Chem. 7, 9998–
10008 (2017)
65. Malikan, M.: Analytical predictions for the buckling of a nanoplate subjected to non-uniform
compression based on the four-variable plate theory. J. Appl. Comput. Mech. 3, 218–228
(2017)
66. Barati, M.R.: Magneto-hygro-thermal vibration behavior of elastically coupled nanoplate
systems incorporating nonlocal and strain gradient effects. J. Braz. Soc. Mech. Sci. Eng. 9,
4335–4352 (2017)
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