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Both composition and preparation procedure determining degree of interaction between components of composites were found to strongly affect performance of nanocomposites in steam reforming of methane at short contact times as well as their stability to coking in stoichiometric feeds.
Nanoindentation hardness and modulus of DM composites were found to be comparable to their SM counterparts.
The mechanical and wear properties of WPVC composites were found to improve with the addition of the E-glass fiber.
These composites were found to have higher piezoelectric voltage coefficient and lower acoustic impedance value than pure ceramic.
The composites were found to be initially effective at reducing the amount of heat released during oxidation.
The absorption processes for all families of composites were found to exhibit Fickian diffusion behavior.
Thus, mullite/SiC-whisker composites were found to have mode I oxidation behavior, while certain (mullite+ZrO2)/SiC-whisker composites were found to exhibit mode II behavior, followed by a mixed mode after severe exposures.
The crystallite size and the microstrain of the composites were found below 15 nm and < 0.0085, respectively.
All prepared composites were found more selective in a microwave field in the temperature range 380 450 °C.
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The flexural and impact strength of these hybrid composites were found to be significantly higher than that made from either PLA/RNCF.
Using experimental results, these biobased composites were found to have competitive flexural properties and thermal conductivity with certain short-chopped glass fiber reinforced plastics.
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