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Reaction formed and biomorphic SiC show better, high temperature compressive creep resistance and strength than reaction bonded SiC.
Compared to foamed warm-mix asphalt, foamed warm-mix recycled asphalt provides better high temperature performance and temperature sensitivity.
The results of dynamic shear rheometer (DSR) showed that the asphalt containing waste oil and polymers has the better high temperature property.
Additionally, 20T3S asphalt mixture had better high temperature stability and fatigue performance comparing to 4.5S (4.5 wt% SBS) modified asphalt mixture.
The possibility of the phenomenon in fast reactors has been ignored due to the preclusion of LOCA in the design relatively low operating pressure and better high temperature resistant structural materials.
Basalt fibres are claimed to show better high temperature resistance compared to glass fibres, suggesting better prospects to survive an end-of-life composite thermal recycling process while preserving an adequate reinforcing efficiency.
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Alloys can have much better high-temperature oxidation resistance than pure metals.
As higher G * /sinδ represented better high-temperature performance, the rutting resistance of asphalt mortar decreased when temperature rose.
Carbonized samples demonstrate far better high-temperature heat/oxidation resistance than do non-carbonized samples.
The results indicated that the FeCrNiNbBSiW coating had better high-temperature oxidation resistance than did the FeCrNiNbBSiMo coating.
The Fe Al layer had better high-temperature oxidation resistance, while the Fe Zn layer had better corrosion resistance in chloride solution.
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