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The mullite whisker/mullite fiber (MW/MF) network exhibited the best high temperature compress resistence and lowest soot oxidation temperature.
It was illustrated that the FeCrAlTiCRE coating had the best high temperature oxidation resistance among the three coatings.
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The results revealed the composite coatings possessed the best high-temperature oxidation and spallation resistance.
These films, consisting of TiCx nanocrystallites, encapsulated in amorphous SiC/aC H matrix, show also the best high-temperature properties.
Moreover, ASSF corresponding mastic owned the best high-temperature rheological properties while BSSF corresponding mastic revealed the most balanced low-temperature rheological properties.
In comparison, Ti-Al-xNb (x = 10, 20, 30 and 40) coatings had better high-temperature oxidation resistance and Ti-Al-40Nb coating had the best high-temperature oxidation resistance.
Results also show that although propane yields better coefficient of performance (COP) in low temperature heating applications, ammonia performs the best in high temperature heating applications.
Since these converters function best at high temperatures, they may eventually be developed for use as topping devices in conventional fossil fuel power plants.
The photon enhanced thermionic emission, or PETE, works best at high temperatures, where current photovoltaics struggle.
It works best at high temperatures, but then you're looking more into the heat management side of things where you don't want it to get too hot.
Thus, genotypes that performed well at control temperatures also performed the best in high temperatures and similarly for pH.
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