JOURNAL ARTICLE

Modeling Carbon Nanotube Reinforced Composite Materials

R. M. HackettJ.G. Bennett

Year: 2011 Journal:   Journal of Nanomechanics and Micromechanics Vol: 2 (1)Pages: 7-14   Publisher: American Society of Civil Engineers

Abstract

Micromechanics modeling is employed to characterize the mechanical behavior of a transversely isotropic, isothermal material system of a hollow carbon nanotube embedded in a polymeric matrix. The characterization yields five independent constants of the homogenized system. In particular, the derivation of the transverse shear modulus is a focus of the work because, up to this point, it has not been satisfactorily resolved. Numerical examples of each of the independent constants, obtained from the derived expressions, are presented, and are based on appropriate values of the properties of the carbon nanotube and epoxy matrix. The numerical results are presented graphically.

Keywords:
Micromechanics Materials science Transverse isotropy Carbon nanotube Composite material Nanotube Modulus Epoxy Shear modulus Composite number Isothermal process Carbon nanotube metal matrix composites Isotropy Matrix (chemical analysis) Characterization (materials science) Nanotechnology Thermodynamics Physics

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0.15
FWCI (Field Weighted Citation Impact)
18
Refs
0.51
Citation Normalized Percentile
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Citation History

Topics

Carbon Nanotubes in Composites
Physical Sciences →  Materials Science →  Materials Chemistry
Composite Material Mechanics
Physical Sciences →  Engineering →  Mechanics of Materials
Mechanical Behavior of Composites
Physical Sciences →  Engineering →  Mechanics of Materials

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