Comparison between mechanical properties of bio and synthetic composites for use in aircraft interior structures (2017)
- Authors:
- USP affiliated authors: RIBEIRO, MARCELO LEITE - EESC ; TITA, VOLNEI - EESC
- Unidade: EESC
- Subjects: BIOMATERIAIS; MATERIAIS COMPÓSITOS; ESTRUTURA DE AERONAVES; INTERIOR DE AERONAVES; ENGENHARIA AERONÁUTICA
- Language: Inglês
- Imprenta:
- Publisher: EESC-USP
- Publisher place: São Carlos, SP
- Date published: 2017
- ISBN: 9788580230505
- Source:
- Título: Anais
- Conference titles: Meeting on Aeronautical Composite Materials and Structures - MACMS 2015
-
ABNT
ELOY, Felipe de S. et al. Comparison between mechanical properties of bio and synthetic composites for use in aircraft interior structures. 2017, Anais.. São Carlos, SP: EESC-USP, 2017. Disponível em: http://soac.eesc.usp.br/index.php/macms/macms/paper/view/330/268. Acesso em: 21 maio 2025. -
APA
Eloy, F. de S., Costa, R. R. C. da, Medeiros, R. de, Ribeiro, M. L., & Tita, V. (2017). Comparison between mechanical properties of bio and synthetic composites for use in aircraft interior structures. In Anais. São Carlos, SP: EESC-USP. Recuperado de http://soac.eesc.usp.br/index.php/macms/macms/paper/view/330/268 -
NLM
Eloy F de S, Costa RRC da, Medeiros R de, Ribeiro ML, Tita V. Comparison between mechanical properties of bio and synthetic composites for use in aircraft interior structures [Internet]. Anais. 2017 ;[citado 2025 maio 21 ] Available from: http://soac.eesc.usp.br/index.php/macms/macms/paper/view/330/268 -
Vancouver
Eloy F de S, Costa RRC da, Medeiros R de, Ribeiro ML, Tita V. Comparison between mechanical properties of bio and synthetic composites for use in aircraft interior structures [Internet]. Anais. 2017 ;[citado 2025 maio 21 ] Available from: http://soac.eesc.usp.br/index.php/macms/macms/paper/view/330/268 - A finite element damage model to predict failure behavior of composite sandwich structures
- Stacking sequence optimization in composite tubes under internal pressure based on genetic algorithm accounting for progressive damage
- Progressive failure analysis of filament wound composite tubes under internal pressure
- Damage modeling for carbon fiber/epoxy filament wound composite tubes under radial compression
- Analysis of delamination of composite laminates via XFEM based on the layerwise displacement theory and cohesive zone method
- A computational framework for predicting onset and crack propagation in composite structures via extended Finite Element Method (XFEM)
- Unified formulation for composite plate structures: implementation and evaluation
- Design, modeling, optimization, manufacturing and testing of variable-angle filament-wound cylinders
- Failure models for composite structures under compression loading
- Influence of stacking sequence on the radial compression of filament wound composite tubes
How to cite
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas