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Fabrication and Mechanical Properties of a Micro/Nanoscale Hybrid Composite
Wang G., Zhao H., Bai J., Zhao Y.-P.
International Journal of Nonlinear Sciences and Numerical Simulation 13, 2 (2012) 153-157 - http://hal.archives-ouvertes.fr/hal-00694922
Articles dans des revues avec comité de lecture
Sciences de l'ingénieur/Micro et nanotechnologies/Microélectronique
Fabrication and Mechanical Properties of a Micro/Nanoscale Hybrid Composite
Genwei Wang 1, Han Zhao 1, Jinbo Bai () 2, Ya-Pu Zhao
1 :  Laboratoire de Mécanique et Technologie (LMT)
http://www.lmt.ens-cachan.fr/
CNRS : UMR8535 – Université Pierre et Marie Curie [UPMC] - Paris VI – École normale supérieure de Cachan - ENS Cachan
Bât. Léonard de Vinci 61 Av du président Wilson 94235 CACHAN CEDEX
France
2 :  Laboratoire de mécanique des sols, structures et matériaux (MSSMat)
http://www.mssmat.ecp.fr
CNRS : UMR8579 – Ecole Centrale Paris
Grande voie des vignes 92295 CHATENAY MALABRY CEDEX
France
Microscale SiC particles with multiwalled carbon nanotubes grow on were filled in epoxy resin to construct multiscale hybrid composite. Static and dynamic compressive responses of composites were investigated. A dynamic experimental technique, split Hopkinson press bar (SHPB), was introduced to study the constitutive laws of materials at high strain rates. SEM observations show good dispersion of carbon nanotubes and SiC particles, but bad link between SiC particles and carbon nanotubes exists. Experimental results of static and dynamic tests verify that increase of strength happens with SiC/CNT as reinforcement Increment of strength under dynamic loading is bigger than under static loading.
Anglais
01/11/2011

International Journal of Nonlinear Sciences and Numerical Simulation
internationale
06/04/2012
23/02/2012
13
2
153-157