2014
DOI: 10.1007/s00707-014-1168-3
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Thermal buckling of temperature-dependent FGM conical shells with arbitrary edge supports

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Cited by 66 publications
(16 citation statements)
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“…It was shown that the structure stiffness increases linearly with the increase in actuator thickness and thereby increases the critical buckling temperature differences. Akbari et al investigated the buckling and bifurcation responses of the FG conical shell under thermal environment. Donnell and Von Karman theories were used to introduce the geometrical nonlinearity in structures.…”
Section: Buckling and Post‐buckling Responses Of Conical Shell Under mentioning
confidence: 99%
“…It was shown that the structure stiffness increases linearly with the increase in actuator thickness and thereby increases the critical buckling temperature differences. Akbari et al investigated the buckling and bifurcation responses of the FG conical shell under thermal environment. Donnell and Von Karman theories were used to introduce the geometrical nonlinearity in structures.…”
Section: Buckling and Post‐buckling Responses Of Conical Shell Under mentioning
confidence: 99%
“…Although asymmetric deformations occur at a certain value of pressure and the main purpose of this study is to obtain such pressure. 48 In bifurcation analysis, it is essential to examine prebuckling deformations first. However, the prebuckling equilibrium path of curved structures is more intricate than flat ones.…”
Section: Prebuckling Deformationmentioning
confidence: 99%
“…By the way, the symmetrical case of equilibrium equations with boundary conditions should be solved to trace the primary path. 48 In linear membrane approach, as most simple case of prebuckling solution, the von Ka´rma´n nonlinear terms and bending moments and curvatures are ignored. Also, the prebuckling deformations of the shell are achieved through following equations…”
Section: Prebuckling Deformationmentioning
confidence: 99%
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“…studied the nonlinear buckling response of thin FGM annular spherical shells subjected to external pressure and thermal loads [3]. Akbari et al [1] studied the thermal buckling of FG conical shells using the classical shell theory. In [49], Nguyen et al also studied the nonlinear response of carbon nanotube-reinforced composite truncated conical shells in thermal environment.…”
Section: Introductionmentioning
confidence: 99%