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This paper investigates the effects of unequal compressive and tensile moduli of carbon fibre reinforced plastic (CFRP) composites.
The elastic moduli of carbon fiber, Kevlar, and hybrid were determined from tensile testing.
To this aim, the overall elastic moduli of carbon nanotube reinforced composites are computed by the Eshelby-Mori-Tanaka method with consideration of waviness and agglomeration effects.
Based on the rule of mixture, the effective Young's and shear moduli of carbon nanotube (CNT) are established.
Parametric studies have been performed to investigate the effects of the number of CFRP layers and the moduli of carbon fibre & adhesive on the stress intensity factor.
A free oscillation technique has been adopted to measure the dynamic storage and loss moduli of carbon black filled natural rubber materials.
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A simple mathematical formula was developed for calculating the flexural modulus of hybrid composites, given the moduli of full carbon and full glass composites, and the hybrid ratio.
In this paper, we proposed a new way of constructing structural models of carbon nanocoils and computed the Young's moduli and spring constants for a series of ultrathin CNCs.
The moduli of single-walled carbon nanotubes with 10.0% of vacancy defects, when compared with the values obtained for perfect nanotubes, are of about 43% for the Young's modulus and of about 33% for the shear modulus.
Open image in new window Fig. 1 Comparison of Young's moduli of steel and carbon, aramid and GF.
In all media, the shear modulus components increased with film thickness and in any given medium both the storage and the loss moduli were greater in the presence of carbon nanotubes.
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