Effect of crack on the dynamic response of bidirectional porous functionally graded beams on an elastic foundation based on finite element method
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Publication:6556504
DOI10.1007/S00707-024-03906-1zbMATH Open1541.74034MaRDI QIDQ6556504
Riadh Bennai, Hassen Ait Atmane, Mourad Benadouda, Mouloud Dahmane, Ahmed Saimi
Publication date: 17 June 2024
Published in: Acta Mechanica (Search for Journal in Brave)
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Cites Work
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- Stress intensity factors for three-dimensional cracks in functionally graded materials using enriched finite elements
- Semi-analytical elasticity solutions for bi-directional functionally graded beams
- Edge crack problem in a semi-infinite FGM plate with a bi-directional coefficient of thermal expansion under two-dimensional thermal loading
- Nonlinear vibration of axially functionally graded tapered microbeams
- Natural frequency analysis of 2D-FGM thick hollow cylinder based on three-dimensional elasticity equations
- Vibration of bi-dimensional functionally graded Timoshenko beams excited by a moving load
- Study of non-linear dynamic behavior of open cracked functionally graded Timoshenko beam under forced excitation using harmonic balance method in conjunction with an iterative technique
- An engineering application of the h-p Version of the finite element method to the static analysis of a Euler-Bernoulli beam
- On the vibration and buckling behaviors of porous FG beams resting on variable elastic foundation utilizing higher-order shear deformation theory
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