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As was demonstrated for the Ti 43Al 7 Nb,Mo)–0.2B alloy (in at.%), this resulted in superplastic behavior in the temperature range of T = 1050 1130 °C and a strain rate of ε′ = 1.7 × 10−4 s−10−4
It has been found that the thermal conductivity of Alloy 617 exhibits significant deviation from monotonic behavior in the temperature range from 600 °C to 850 °C, the temperatures of interest for most heat transfer applications.
To the best of our knowledge, we report for the first time the observation of positive to negative tuning of thermal quenching behavior, in the temperature range 10 K 300 K, for annealed CND samples.
The DSC (Differential Scaning Calorimetry) thermograms revealed a quite complex behavior in the temperature range 250 350 °C, where it was seen that with increase in fluence the DSC exotherm changed into the DSC endotherm.
Results showed that SDKP based bentonite-free fluids showed certain thermo-viscosifying behavior in the temperature range of 80 140 °C even in high salinity, which was benefit for carrying cuttings.
It is shown that significant reinforcement can be obtained with the multilayer films compared to virgin PMMA (on the order of 20 times in terms of fracture toughness) but also compared to classical blends, by a factor from 2 to 4. Reinforcing glassy thermoplastics has been a major industrial challenge due to their usually brittle behavior in the temperature range they are used.
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However, the magnetic study clarified paramagnetic behavior in all the temperature range.
The n-type and compensated alloys exhibit a weak metallic behavior in the complete temperature range.
The prepared hydrogel system showed a thermo-sensitivity through sol-gel transition behavior in the body temperature change.
A skeletal mechanism is introduced to account for specific kinetics behavior in the Negative Temperature Coefficient (NTC) region.
The activation energy term, λ, is written as a combination of two quadratic expressions so that the behavior in the negative temperature coefficient (NTC) region can be captured.
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