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Validation of FE models for buckling analysis of woven GFRP shells
M. K. Chryssanthopoulos
,
A. Y. Elghazouli
, I. E. Esong
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
27
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Citations (Scopus)
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Dive into the research topics of 'Validation of FE models for buckling analysis of woven GFRP shells'. Together they form a unique fingerprint.
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Keyphrases
Finite Element Model
100%
Buckling Analysis
100%
Woven GFRP
100%
GFRP Shell
100%
Numerical Results
50%
Numerical Model
50%
Surface Strain
50%
Buckling Strength
50%
Buckling Behavior
50%
Geometrically Nonlinear Analysis
50%
Imperfection
50%
Radius to Thickness Ratio
50%
Finite Element Program
50%
Deformation Strain
50%
Buckling Deformation
50%
Initial Geometric Imperfection
50%
Validation Studies
50%
Test Elements
50%
Axial Stiffness
50%
Eccentric Compression
50%
Concentric Compression
50%
Woven Glass Fiber
50%
Nonlinear Simulation
50%
Linear Eigenvalue Analysis
50%
Laminated GFRP
50%
Knockdown Factor
50%
Polyester Resin Matrix
50%
Geometric Imperfections
50%
Finite Element Results
50%
Finite Element Evaluation
50%
Geometrically Nonlinear
50%
Numerical Finite Element
50%
Engineering
Buckling Analysis
100%
Finite Element Analysis
100%
Experimental Result
50%
Experimental Investigation
50%
Buckling Strength
50%
Experimental Work
50%
Buckling Behavior
50%
Finite Element Result
50%
Geometrically Nonlinear Analysis
50%
Initial Geometric Imperfection
50%
Eigenvalue Analysis
50%
Axial Stiffness
50%
Resin Matrix
50%
Limitations
50%
Finite Element Modeling
50%
Numerical Model
50%
Thickness Ratio
50%
Polyester Resin
50%
Knock-down Factor
50%
Glass-Fiber Reinforced Plastic
50%
Material Science
Cylinder
100%
Finite Element Methods
75%
Polyester
25%
Finite Element Modeling
25%
Glass Fiber
25%