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The testing temperature spanned the domain 25 100 °C.
Additionally, the gelation time decreases as the testing temperature increases.
The testing temperature was 77 K and the relative pressure was 0.050 to 0.995.
The impact toughness of nanostructured Ti processed by SPD was enhanced with decreasing testing temperature.
It can be found that the rectifying effects exist at all testing temperature ranges.
Surface roughness and testing temperature only provide tiny improvements on the wetting property below 480 °C.
Influence of pyrolysis and testing temperature on compressive strength was investigated.
Grain growth was observed in nanocrystalline nickels as the testing temperature increases.
The testing temperature was 60aC and the chloride concentrations used were 0,1M, 1M and 10M.
The Weibull design parameters have been analysed as a function of GO content and testing temperature.
The flexural strength of ZB and ZW changed differently as testing temperature increased.
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