Thermal buckling analysis of stiffened FGM truncated conical shells resting on elastic foundations using FSDT
From MaRDI portal
Publication:1637959
DOI10.1007/s00707-017-2090-2zbMath1390.74071OpenAlexW2782544772MaRDI QIDQ1637959
Dao Van Dung, Do Quang Chan, Le Kha Hoa
Publication date: 12 June 2018
Published in: Acta Mechanica (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00707-017-2090-2
Cites Work
- Unnamed Item
- Thermal buckling of temperature dependent FG-CNT reinforced composite plates
- Static analysis of functionally graded doubly-curved shells and panels of revolution
- Free vibration analysis of functionally graded conical, cylindrical shell and annular plate structures with a four-parameter power-law distribution
- Mechanical stability of functionally graded stiffened cylindrical shells
- Free vibrations of four-parameter functionally graded parabolic panels and shells of revolution
- Simple solutions for buckling of laminated conical shells
- Nonlinear dynamic analysis of eccentrically stiffened functionally graded circular cylindrical thin shells under external pressure and surrounded by an elastic medium
- Nonlinear thermal stability of eccentrically stiffened functionally graded truncated conical shells surrounded on elastic foundations
- Free vibration analysis of functionally graded panels and shells of revolution
- Semi-analytical approach for analyzing the nonlinear dynamic torsional buckling of stiffened functionally graded material circular cylindrical shells surrounded by an elastic medium
- Thermal buckling of temperature-dependent FGM conical shells with arbitrary edge supports
- Nonlinear theory and vibration analysis of laminated truncated, thick, conical shells
- Optimum design of stiffened conical shells with natural frequency constraints
- Governing equations of a stiffened laminated inhomogeneous conical shell
This page was built for publication: Thermal buckling analysis of stiffened FGM truncated conical shells resting on elastic foundations using FSDT