The influence of matrix impregnation on effective elastic properties of a unidirectional carbon nanotube bundled composite: a topology optimization approach (2018)
- Authors:
- USP affiliated authors: TITA, VOLNEI - EESC ; CHRISTOFF, BRUNO GUILHERME - EESC ; SANTANA, HUMBERTO BRITO - EESC
- Unidade: EESC
- Subjects: TOPOLOGIA; MATERIAIS COMPÓSITOS DE FIBRAS; ENGENHARIA AERONÁUTICA
- Agências de fomento:
- Language: Inglês
- Imprenta:
- Publisher: PUC-RJ
- Publisher place: Rio de Janeiro, RJ
- Date published: 2018
- Source:
- Título: Proceedings
- Conference titles: Brazilian Conference on Composite Materials - BCCM
-
ABNT
CHRISTOFF, Bruno Guilherme et al. The influence of matrix impregnation on effective elastic properties of a unidirectional carbon nanotube bundled composite: a topology optimization approach. 2018, Anais.. Rio de Janeiro, RJ: PUC-RJ, 2018. Disponível em: https://repositorio.usp.br/directbitstream/8a52a830-4d39-484e-a9a1-81ad77236382/trabalho%2019%20-%20The%20influence%20of%20matrix%20impregnation%20on%20effective%20elastic%20properties%20of%20a%20unidirectional%20carbon%20nanotube%20bundled%20composite%20a%20topology%20optimization%20approach%20%28BCCM4%29.pdf. Acesso em: 28 fev. 2026. -
APA
Christoff, B. G., Santana, H. B., Cardoso, E. L., Abot, J. L., & Tita, V. (2018). The influence of matrix impregnation on effective elastic properties of a unidirectional carbon nanotube bundled composite: a topology optimization approach. In Proceedings. Rio de Janeiro, RJ: PUC-RJ. Recuperado de https://repositorio.usp.br/directbitstream/8a52a830-4d39-484e-a9a1-81ad77236382/trabalho%2019%20-%20The%20influence%20of%20matrix%20impregnation%20on%20effective%20elastic%20properties%20of%20a%20unidirectional%20carbon%20nanotube%20bundled%20composite%20a%20topology%20optimization%20approach%20%28BCCM4%29.pdf -
NLM
Christoff BG, Santana HB, Cardoso EL, Abot JL, Tita V. The influence of matrix impregnation on effective elastic properties of a unidirectional carbon nanotube bundled composite: a topology optimization approach [Internet]. Proceedings. 2018 ;[citado 2026 fev. 28 ] Available from: https://repositorio.usp.br/directbitstream/8a52a830-4d39-484e-a9a1-81ad77236382/trabalho%2019%20-%20The%20influence%20of%20matrix%20impregnation%20on%20effective%20elastic%20properties%20of%20a%20unidirectional%20carbon%20nanotube%20bundled%20composite%20a%20topology%20optimization%20approach%20%28BCCM4%29.pdf -
Vancouver
Christoff BG, Santana HB, Cardoso EL, Abot JL, Tita V. The influence of matrix impregnation on effective elastic properties of a unidirectional carbon nanotube bundled composite: a topology optimization approach [Internet]. Proceedings. 2018 ;[citado 2026 fev. 28 ] Available from: https://repositorio.usp.br/directbitstream/8a52a830-4d39-484e-a9a1-81ad77236382/trabalho%2019%20-%20The%20influence%20of%20matrix%20impregnation%20on%20effective%20elastic%20properties%20of%20a%20unidirectional%20carbon%20nanotube%20bundled%20composite%20a%20topology%20optimization%20approach%20%28BCCM4%29.pdf - Delamination influence on elastic properties of laminated composites
- A topology optimization approach used to assess the effect of the matrix impregnation on the effective elastic properties of a unidirectional carbon nanotube bundle composite
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- Effective elastic properties of layered composites considering non-uniform imperfect adhesion
- Multiscale analysis for predicting the constitutive tensor effective coefficients of layered composites with micro and macro failures
- Development of an ABAQUS™ plug-in to evaluate the fourth-order elasticity tensor of a periodic material via homogenization by the asymptotic expansion method
- Asymptotic Homogenization Method used to predict the effective properties of laminated composites considering delamination influence
- Multiscale embedded models to determine effective mechanical properties of composite materials: asymptotic Homogenization Method combined to Finite Element Method
- A multiscale topology optimisation framework for hollow spheres as cellular materials
- Effective elastic properties for a periodically laminated composite considering nonuniform imperfect adhesion
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