A Type of Novel Nonlinear Distributions for Improving Significantly the Stiffness of Carbon Nanotube-Reinforced Composite Beams
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Publication:4985158
DOI10.1142/S0219876219500579MaRDI QIDQ4985158
K. Nguyen-Quang, Huy-Cuong Vu-Do, Tam T. Truong, T. Vo-Duy, Trung Nguyen-Thoi
Publication date: 22 April 2021
Published in: International Journal of Computational Methods (Search for Journal in Brave)
functionally graded materialisogeometric analysisthird-order shear deformation theoryCNT-reinforced composite beam
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Cites Work
- Isogeometric shell analysis with Kirchhoff-Love elements
- Isogeometric analysis: CAD, finite elements, NURBS, exact geometry and mesh refinement
- Static and free vibration analyses of carbon nanotube-reinforced composite plate using differential quadrature method
- Vibration of carbon nanotube reinforced composite beams based on the first and third order beam theories
- Isogeometric analysis: an overview and computer implementation aspects
- Multiscale simulation of mechanical properties and microstructure of CNT-reinforced cement-based composites
- An isogeometric approach for dynamic response of laminated FG-CNT reinforced composite plates integrated with piezoelectric layers
- Bending and local buckling of a nanocomposite beam reinforced by a single-walled carbon nanotube
- A STUDY ON MECHANICAL BEHAVIOR OF FUNCTIONALLY-GRADED CARBON NANOTUBE-REINFORCED NANOCOMPOSITES
- Isogeometric Analysis
- Static, free vibration, and buckling analysis of laminated composite Reissner–Mindlin plates using NURBS‐based isogeometric approach
- An Edge-Based Smoothed Discrete Shear Gap Method for Static and Free Vibration Analyses of FG-CNTRC Plates