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Polypropylene, on the other hand, with a much higher undercooling (close to 40 °C), crystallizes at around 80 °C, i.e., now 5 °C below the crystallization temperature of polyethylene.
All scaffolds exhibited compressive strengths comparable to that of cancellous bone (2 13 MPa), including those sintered at temperatures below the crystallization temperature of 45S5 bioactive glass.
Results from the 3DAP have clearly shown that Cu atom clusters are present in the amorphous state after annealing below the crystallization temperature.
Annealing of the phase-separated Ni70Nb15Y15 glass below the crystallization temperature leads to an increase in the amplitude of the fluctuations.
High-pressure high-temperature sintering below tHigh-pressure high-temperature of tHigh-pressure high-temperaturerysinteringamorphous composite that was used for creep experiments.
Amorphous melt-spun ribbons with the composition Ti50Ni25Cu25 were heat-treated for various times above, near or below the crystallization temperature in order to achieve three different states concerning the quantity of precipitates.
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The α-form crystals develop at the crystallization temperature below 140 °C while β-form crystals develop above 160 °C.
PHBV also showed the spherulitic morphology within the matrix of the pre-existing PVDF crystals when PVDF/PHBV blends were quenched from the melt to the crystallization temperature below the melting point of PHBV.
When the crystallization temperature (Tc) is below 40°C, the PEO crystals melt below 55°C, which is much lower than the melting point of their homopolymer analogs.
A lower critical solution temperature (LCST) was observed above the crystallization temperature, but below the melting temperature of iPP.
For samples containing different amount of γ-quinacridone, FSC cooling experiments revealed information about a critical cooling rate above which the crystallization temperature decreases to below 105 °C, that is, to temperatures at which the growth rate of α-crystals is higher than that of β-crystals.
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below the hybridization temperature
below the peritectic temperature
below the crystallization point
below the freezing temperature
below the optimum temperature
below the emplacement temperature
below the recrystallization temperature
below the equilibrium temperature
below the dissolution temperature
below the transition temperature
below the Néel temperature
below the solidus temperature
below the ignition temperature
below the air temperature
below the θ temperature
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