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The homogenized moduli are found in close agreement with the moduli obtained from finite element simulations performed over extended lattices.
From the experiments, the measured flexural moduli are found to be significantly larger than the corresponding Young's moduli.
All the elastic moduli are found to follow the well-known power-law formula.
The piezoelectric moduli are found to vary approximately linearly with polarization, regardless of the remanent strain state, whilst the dielectric moduli and elastic compliances show more complex behaviour.
These high moduli are found to be isotropic to a good degree, in contrast to fibrillar polymer blends which can have such high moduli only in one direction.
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A qualitative agreement with the experimental moduli was found.
In particular, the compressive moduli were found to be comparable with that of trabecular bone.
The calculated moduli were found to be in good agreement with experimental results.
The predicted elastic moduli were found to be 4155.7, 7380.0 and 8992.1 MPa.
Longitudinal moduli were found higher than transversal moduli and the difference could be related to the longitudinal orientation of collagen fibers.
30 40% reductions in permeability and up to 60% higher Young's moduli were found in these HDPE-GNP nanocomposites.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com