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These results provide a scalable route for preparing highly stretchable and conductive SWCNT composites with relatively low SWCNT concentrations.
Fabrication at 0.6 C also generated polymer composites with relatively similar charge storage capacity and hydrophobicity, thus giving an opportunity to study the effect of the electrochemical redox state and exposure of chemical functional groups as sole factors affecting biofilm formation.
Current finite element models for these materials have however been only validated for uniaxial stress states, and mostly restricted to cement composites with relatively limited strain hardening capacity in tension.
High concentration of MWCNT/WPU composites at low thicknesses indicates higher capability of shielding by absorption compared to reflection, which is adverse to composites with relatively low MWCNT mass ratios.
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Microwave techniques can be effective in detecting delamination within composites structures with relatively low electrical conductivity.
Thus, the objective of this short communication is to evaluate the thermogravimetric (TG/DTG) behavior of polyester matrix composites reinforced with relatively higher volume fractions, 30, 40 and 50 vol%, of eucalyptus fibers.
In particular, it is demonstrated that the higher-order terms in the localization relationships play an increasingly important role in the spatial distribution of elastic stress or strain fields at the microscale in composite systems with relatively high contrast.
This first chapter of the volume largely serves to set the scene for an appraisal of the current status of metal matrix composite (MMCs), with relatively little in the way of detailed information, but extensive cross-referencing to other chapters of the volume, in addition to conventional citation of the literature.
The DI approach is used to identify various types of defects in the form of loose rivet holes, delaminations due to low velocity impact and added mass for changes in the stiffness, in both metallic and composite structural components with relatively complex geometries.
This paper presents the use of an auxetic double helix yarn that is used to produce a unidirectional fibre composite with both relatively high stiffness (4 GPa) and negative Poisson's ratio (−6.8), at 30% fibre volume fraction, compared to other auxetic composites.
Our results strongly suggest that, although voids in these composites are probably associated with relatively poor adhesion along graphite/polymer interfaces, the voids are also discrete (i.e. they do not form a continuous network, even if the graphite particles do).
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