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The mixed mode fracture behavior of a functionally graded orthotropic strip based on the distribution of dislocations is studied.
An analytical study for piezothermoelastic behavior of a functionally graded piezoelectric cylindrical shell subjected to axisymmetric thermal or mechanical loading is presented.
This paper considers magnetothermoelastic behavior of a functionally graded material (FGM) hollow cylinder, placed in a uniform magnetic field, subjected to thermal and mechanical loads.
Moreover, the buckling behavior of a functionally graded beam composed of aluminum and zirconia as two constituent phases is investigated for axially varying material properties.
In the present work, mechanical behavior of a functionally graded cantilever micro-beam subjected to a nonlinear electrostatic pressure and temperature changes has been studied.
In this paper, free vibration characteristics and the dynamic behavior of a functionally graded simply-supported beam under a concentrated moving harmonic load are investigated.
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This study introduces a micromechanical model for predicting effective thermo-viscoelastic behaviors of a functionally graded material (FGM).
Here, the dynamic stability behavior of a clamped functionally graded materials spherical shell structural element subjected to external pressure load is studied.
In the present paper, the electroelastic behavior of a Griffith crack in a functionally graded piezoelectric strip is investigated.
In this paper, an analysis of the transient thermo-mechanical behavior of a solid cylinder of functionally gradient material (FGM) under the convective boundary condition is presented theoretically.
This paper deals with time-dependent behavior of a simply-supported laminated functionally graded (FG) beam with viscoelastic interlayer.
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