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Using experimental data of composites made with two different cellulose nanocrystal (CNC) types, we show that a substantial fraction of the high-aspect-ratio CNCs can be substituted with the low-aspect-ratio nanoparticles without significantly affecting the properties.
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Available experimental data of composite laminate behavior at all scales fall within the scatters predicted by PICAN.
This paper deals with several statistical distribution functions in order to analyze the strength data of composite laminates with impact-induced damage under low temperature.
Thirteen sets of experimental data of composite stiffness degradation were employed to verify the presented model, and the statistical results showed that this model is capable of describing the damage evolution of composite materials.
Field emission scanning electron microscopy (FE-SEM) data of composite materials revealed an effective adhesion of clay over the surface of BC membrane; inorganic particles also penetrate into the polymer bulk, with a significant change of the surface topography even at 5% of clay loading.
The numerical results were validated by experimental data of composite components using DIC, showing the capability of the developed model to predict damage evolution and material-property degradation in a tri-axial braided carbon-fibre/polymer-matrix component.
In order to check whether the Paris equation can be used for describing the fatigue properties of whisker reinforced metal matrix composites (WMMCs), fatigue data of SiCw/Al6061 composites were statistically analyzed, using the following statistical models: linear model ddN=AΔK+B, exponential model ddN=exp(AΔK+B) and polynomial model ddN=AΔKB.
SAS data on composites with matrices of two different molecular weights indicate that the particle aggregation is independent of the molecular weight of the matrix for a fixed filler concentration and surface treatment.
Then, the predicted results are compared with the available experimental data of glass/epoxy composites.
The thermal conductivity data of VGCNF/RE composites best fits to the Hatta–Taya model.
Upon comparison with the neat copolymers, no significant changes in the peak temperature and width of the matrix glass transition were observed in the DMA and the DSC data of the composites.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com