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      An efficient shear deformation theory for wave propagation of functionally graded material plates

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      https://www.riss.kr/link?id=A103564948

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      다국어 초록 (Multilingual Abstract)

      An efficient shear deformation theory is developed for wave propagation analysis of an infinite functionally graded plate in the presence of thermal environments. By dividing the transverse displacement into bending and shear parts, the number of unkn...

      An efficient shear deformation theory is developed for wave propagation analysis of an infinite functionally graded plate in the presence of thermal environments. By dividing the transverse displacement into bending and shear parts, the number of unknowns and governing equations of the present theory is reduced, and hence, makes it simple to use. The thermal effects and temperature-dependent material properties are both taken into account. The temperature field is assumed to be a uniform distribution over the plate surface and varied in the thickness direction only. Material properties are assumed to be temperature-dependent, and graded in the thickness direction according to a simple power law distribution in terms of the volume fractions of the constituents. The governing equations of the wave propagation in the functionally graded plate are derived by employing the Hamilton’s principle and the physical neutral surface concept. There is no stretching–bending coupling effect in the neutral surface-based formulation, and consequently, the governing equations and boundary conditions of functionally graded plates based on neutral surface have the simple forms as those of isotropic plates. The analytic dispersion relation of the functionally graded plate is obtained by solving an eigenvalue problem. The effects of the volume fraction distributions and temperature on wave propagation of functionally graded plate are discussed in detail. It can be concluded that the present theory is not only accurate but also simple in predicting the wave propagation characteristics in the functionally graded plate. The results carried out can be used in the ultrasonic inspection techniques and structural health monitoring.

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      참고문헌 (Reference)

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      4 Sun, D., "Wave propagation and transient response of a functionally graded material plate under a point impact load in thermal environments" 36 : 444-462, 2012

      5 Yang, J., "Vibration characteristics and transient response of shear deformable functionally graded plates in thermal environments" 255 : 579-602, 2002

      6 Kutlu Darılmaz, "Vibration analysis of functionally graded material (FGM) grid systems" 국제구조공학회 18 (18): 395-408, 2015

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      35 M. Arefi, "Non linear analysis of a functionally graded square plate with two smart layers as sensor and actuator under normal pressure" 국제구조공학회 8 (8): 433-447, 2011

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      43 A. Shahrjerdi, "Free vibration analysis of solar functionally graded plates with temperaturedependent material properties using second order shear deformation theory" 대한기계학회 25 (25): 2195-2209, 2011

      44 Amina Attia, "Free vibration analysis of functionally graded plates with temperature-dependent properties using various four variable refined plate theories" 국제구조공학회 18 (18): 187-212, 2015

      45 Farzad Ebrahimi, "Free vibration analysis of a rotating non-uniform functionally graded beam" 국제구조공학회 19 (19): 1279-1298, 2015

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      50 Han, X., "Effects of SH waves in a functionally graded plate" 29 : 327-338, 2002

      51 Ait Atmane, H., "Effect of thickness stretching and porosity on mechanical response of a functionally graded beams resting on elastic foundations" 2016

      52 Chemi, A., "Critical buckling load of chiral double-walled carbon nanotube using non-local theory elasticity" 3 (3): 193-206, 2015

      53 Sobhy, M., "Buckling and free vibration of exponentially graded sandwich plates resting on elastic foundations under various boundary conditions" 99 : 76-87, 2013

      54 Yaghoobi, H., "Buckling analysis of sandwich plates with FGM face sheets resting on elastic foundation with various boundary conditions: An analytical approach" 48 : 2019-2035, 2013

      55 Mansouri, M.H., "Biaxial thermo-mechanical buckling of orthotropic auxetic FGM plates with temperature and moisture dependent material properties on elastic foundations" 83 : 88-104, 2015

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      57 Fouzia Larbi Chaht, "Bending and buckling analyses of functionally graded material (FGM) size-dependent nanoscale beams including the thickness stretching effect" 국제구조공학회 18 (18): 425-442, 2015

      58 Zidi, M., "Bending analysis of FGM plates under hygro-thermo-mechanical loading using a four variable refined plate theory" 34 : 24-34, 2014

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      60 Hessameddin Yaghoobi, "Analytical study on post-buckling and nonlinear free vibration analysis of FG beams resting on nonlinear elastic foundation under thermo-mechanical loadings using VIM" 국제구조공학회 17 (17): 753-776, 2014

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      62 Reddy, J.N., "Analysis of functionally graded plates" 47 : 663-684, 2000

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      67 Shimpi, R.P., "A two variable refined plate theory for orthotropic plate analysis" 43 (43): 6783-6799, 2006

      68 Kim, S.E., "A two variable refined plate theory for laminated composite plates" 89 : 197-205, 2009

      69 Kada Draiche, "A trigonometric four variable plate theory for free vibration of rectangular composite plates with patch mass" 국제구조공학회 17 (17): 69-81, 2014

      70 Ahmed Hamidi, "A sinusoidal plate theory with 5-unknowns and stretching effect for thermomechanical bending of functionally graded sandwich plates" 국제구조공학회 18 (18): 235-253, 2015

      71 Tounsi, A., "A refined trigonometric shear deformation theory for thermoelastic bending of functionally graded sandwich plates" 24 : 209-220, 2013

      72 Kien T. Nguyen, "A refined higher-order shear deformation theory for bending, vibration and buckling analysis of functionally graded sandwich plates" 국제구조공학회 18 (18): 91-120, 2015

      73 Khalfi, Y., "A refined and simple shear deformation theory for thermal buckling of solar functionally graded plates on elastic foundation" 11 (11): 135007-, 2014

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      76 Mohamed Sadoune, "A novel first-order shear deformation theory for laminated composite plates" 국제구조공학회 17 (17): 321-338, 2014

      77 Abdelouahed Tounsi, "A nonlocal zeroth-order shear deformation theory for free vibration of functionally graded nanoscale plates resting on elastic foundation" 국제구조공학회 20 (20): 227-249, 2016

      78 Mohamed Bourada, "A new simple shear and normal deformations theory for functionally graded beams" 국제구조공학회 18 (18): 409-423, 2015

      79 Hebali, H., "A new quasi-3D hyperbolic shear deformation theory for the static and free vibration analysis of functionally graded plates" 140 : 374-383, 2014

      80 Mahi, A., "A new hyperbolic shear deformation theory for bending and free vibration analysis of isotropic, functionally graded, sandwich and laminated composite plates" 39 : 2489-2508, 2015

      81 Riadh Bennai, "A new higher-order shear and normal deformation theory for functionally graded sandwich beams" 국제구조공학회 19 (19): 521-546, 2015

      82 Mustapha Meradjah, "A new higher order shear and normal deformation theory for functionally graded beams" 국제구조공학회 18 (18): 793-809, 2015

      83 Bourada, M., "A new four-variable refined plate theory for thermal buckling analysis of functionally graded sandwich plates" 14 (14): 5-33, 2012

      84 Fekrar, A., "A new five-unknown refined theory based on neutral surface position for bending analysis of exponential graded plates" 49 : 795-810, 2014

      85 Amine Zemri, "A mechanical response of functionally graded nanoscale beam: an assessment of a refined nonlocal shear deformation theory beam theory" 국제구조공학회 54 (54): 693-710, 2015

      86 L. Hadji, "A higher order shear deformation theory for static and free vibration of FGM beam" 국제구조공학회 16 (16): 507-519, 2014

      87 Benachour, A., "A four variable refined plate theory for free vibrations of functionally graded plates with arbitrary gradient" 42 : 1386-1394, 2011

      88 Hassen Ait Atmane, "A computational shear displacement model for vibrational analysis of functionally graded beams with porosities" 국제구조공학회 19 (19): 369-384, 2015

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