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Composite Structures, 2016
Abstract The third-order shear deformation plate theory is utilized to analyze the vibration and bending of the simply-supported magneto-electro-elastic rectangular plates. The obtained analytical solution is valid for both thick and thin plates, and for arbitrary variation of material properties in the thickness direction.
Yunying Zhou, Jun Zhu
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Abstract The third-order shear deformation plate theory is utilized to analyze the vibration and bending of the simply-supported magneto-electro-elastic rectangular plates. The obtained analytical solution is valid for both thick and thin plates, and for arbitrary variation of material properties in the thickness direction.
Yunying Zhou, Jun Zhu
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Thermal Stress Analysis of Laminated Composite Plates Using Third Order Shear Deformation Theory
2014The strength properties of FRP collectively make up one of the primary reasons for which civil engineers select for the construction of structures. The higher order shear deformation theory accounts not only for transverse shear strains of laminated composites but also for a parabolic distribution of the distribution of the transverse strains through ...
Moumita Sit, Chaitali Ray, Dhiraj Biswas
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Volume 1: Advanced Energy Systems, Advanced Materials, Aerospace, Automation and Robotics, Noise Control and Acoustics, and Systems Engineering, 2006
Thermal buckling analysis of rectangular functionally graded plates with initial geometric imperfections is presented in this paper. It is assumed that the non-homogeneous mechanical properties vary linearly through the thickness of the plate. The plate is assumed to be under various types of thermal loadings, such as the uniform temperature rise and ...
B. Samsam Shariat +2 more
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Thermal buckling analysis of rectangular functionally graded plates with initial geometric imperfections is presented in this paper. It is assumed that the non-homogeneous mechanical properties vary linearly through the thickness of the plate. The plate is assumed to be under various types of thermal loadings, such as the uniform temperature rise and ...
B. Samsam Shariat +2 more
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AIP Conference Proceedings, 2010
The present investigation focuses on the research of the nonlinear vibration of a cantilevered FGMs rectangular plate subjected to the transversal excitation. Materials properties of the constituents are graded in the thickness direction according to a power law distribution and are assumed to be temperature‐dependent and vary along the thickness ...
Y. X. Hao +5 more
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The present investigation focuses on the research of the nonlinear vibration of a cantilevered FGMs rectangular plate subjected to the transversal excitation. Materials properties of the constituents are graded in the thickness direction according to a power law distribution and are assumed to be temperature‐dependent and vary along the thickness ...
Y. X. Hao +5 more
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Nonlocal nonlinear analysis of functionally graded plates using third-order shear deformation theory
International Journal of Engineering Science, 2018zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Srividhya, S. +3 more
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Nonlinear Dynamics, 2009
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Zhang, Wei, Yang, Jie, Hao, Yuxin
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Zhang, Wei, Yang, Jie, Hao, Yuxin
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Composite Structures, 2004
A new mixed finite element formulation is proposed to analyze transient coupled thermoelastic problems. Coupled model of dynamic thermoelasticity is selected for a laminated composite and a homogeneous isotropic plate. For the particular finite element developed here, there are 15 degrees of freedom at each node.
Kamran Daneshjo, Morteza Ramezani
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A new mixed finite element formulation is proposed to analyze transient coupled thermoelastic problems. Coupled model of dynamic thermoelasticity is selected for a laminated composite and a homogeneous isotropic plate. For the particular finite element developed here, there are 15 degrees of freedom at each node.
Kamran Daneshjo, Morteza Ramezani
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Applied Physics A, 2015
In this paper, a general third-order beam theory that accounts for nanostructure-dependent size effects and two-constituent material variation through the nanobeam thickness, i.e., functionally graded material (FGM) beam is presented. The material properties of FG nanobeams are assumed to vary through the thickness according to the power law.
O. Rahmani, A. A. Jandaghian
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In this paper, a general third-order beam theory that accounts for nanostructure-dependent size effects and two-constituent material variation through the nanobeam thickness, i.e., functionally graded material (FGM) beam is presented. The material properties of FG nanobeams are assumed to vary through the thickness according to the power law.
O. Rahmani, A. A. Jandaghian
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Acta Mechanica, 2009
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Atashipour, S. R. +2 more
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Atashipour, S. R. +2 more
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Dynamic stability of different kinds of sandwich plates using third order shear deformation theory
Thin-Walled Structures, 2022Ali Ghiamy, Hossein Amoushahi
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