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Thermo-mechanical analysis of laminated composites shells exposed to fire
R. Pacheco-Blazquez
*
, D. Di Capua
, J. García-Espinosa
, O. Casals
, Tuula Hakkarainen
*
Corresponding author for this work
BA5503 ProperTune AI
Institut Catala de la Salut
Polytechnic University of Catalonia (UPC)
Technical University of Madrid
Compass Ingeniería y Sistemas S.A.
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Keyphrases
Thermo-mechanical Analysis
100%
Thermo-mechanical Model
100%
Exposed to Fire
100%
Laminated Composite Shells
100%
Temperature Profile
50%
Pyrolysis
50%
Numerical Methods
50%
Thermomechanical
50%
H2020 Projects
50%
Fire Performance
50%
Composite Structures
50%
Coding Standards
50%
Constitutive Model
50%
Bulkhead
50%
Vertical Furnace
50%
Thermal Deformation
50%
Furnace Test
50%
One-dimensional Thermal Model
50%
Serial-parallel Rule of Mixtures
50%
Quadrilateral Shell Element
50%
Thermo-mechanical Coupling
50%
Thermal Model
50%
INIS
validation
100%
fires
100%
shells
100%
performance
50%
mixtures
50%
thickness
50%
deformation
50%
coupling
50%
experimental data
50%
one-dimensional calculations
50%
pyrolysis
50%
accuracy
50%
furnaces
50%
ships
50%
Engineering
Thermal Model
100%
Mechanical Model
100%
Composite Shell
100%
Constitutive Model
50%
One Dimensional
50%
Composite Structure
50%
Fire Performance
50%
Thermal Deformation
50%
Rule of Mixture
50%
Thermomechanical Coupling
50%
Pyrolysis
50%
Numerical Methods
50%
Temperature Profile
50%
Reinforced Plastic
50%
Material Science
Composite Material
100%
Mechanical Testing
100%
Laminated Composite
100%
Reinforced Plastic
50%