H. Hedayati
Islamic Azad University
7 Papers
1 Citations
H. Hedayati is an academic researcher from Islamic Azad University. The author has contributed to research in topics: Boundary value problem & Heat-affected zone. The author has an hindex of 5, co-authored 7 publications. Previous affiliations of H. Hedayati include Isfahan University of Technology.
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Papers
Influence of graded agglomerated CNTs on vibration of CNT-reinforced annular sectorial plates resting on Pasternak foundation
H. Hedayati,B. Sobhani Aragh +1 more
TL;DR: An equivalent continuum model based on the Eshelby–Mori–Tanaka approach is employed to estimate the effective constitutive law of the elastic isotropic medium (matrix) with oriented straight CNTs and the fast rate of convergence of the method is shown.
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Static response and free vibration of two-dimensional functionally graded metal/ceramic open cylindrical shells under various boundary conditions
B. Sobhani Aragh,H. Hedayati +1 more
TL;DR: In this article, the free vibration and static response of a two-dimensional functionally graded (2-D FGM) metal/ceramic open cylindrical shell are analyzed using 2-D generalized differential quadrature method.
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A novel 2-D six-parameter power-law distribution for free vibration and vibrational displacements of two-dimensional functionally graded fiber-reinforced curved panels
TL;DR: In this paper, the 3D free vibration and vibrational displacements characteristics of two-dimensional functionally graded fiber-reinforced (2-D FGFR) curved panels with different boundary conditions are presented.
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Two-Dimensional Differential Quadrature Solution for Vibration Characteristics of Two-Dimensional Functionally Graded Metal/Ceramic Open Cylindrical Shells
TL;DR: In this paper, a semi-analytical 3D elasticity solution is presented to study the vibration characteristics of two-dimensional functionally graded (2D FGM) metal/ceramic open cylindrical shells under various boundary conditions.
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Effect of welding sequence and hydrotest process on welding residual stresses in stainless steel sus304 pipes
Mohammad Mashayekhi,H. Hedayati +1 more
- 01 Jan 2011
TL;DR: In this paper, temperature fields and residual stress states in the weld joint of the stainless steel pipe are computed numerically using a thermo-elastic-plastic analysis and the effect of welding sequence on welding residual stresses are considered using four different welding sequences proposed.
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