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The rate of crystallization for samples crystallized from the glass was ~̊ 30 times greater than that for samples crystallized from the melt at identical crystallization temperatures.
We found that increasing the clay content results in a faster rate of crystallization, but pure mPE still crystallizes the fastest.
Block copolymers thermally crystallized from the glassy state obtained a distinctly higher degree of crystallinity at a much faster rate of crystallization than the same copolymers crystallized from the melt at identical crystallization temperatures.
Differential scanning calorimetry studies showed that SWNTs at weight fractions as low as 0.03 wt% enhance the rate of crystallization in PET, as the cooling nanocomposite melt crystallizes at a temperature 10 °C higher as compared to neat PET.
The effects of convection induced both by diffusion and by the density difference between the solid crystal and the adjacent liquid upon the rate of crystallization are examined in the absence of body forces.
However, hydrate formation is usually controlled by the rate of crystallization and thus it can be a slow process.
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Kinetic studies revealed that the rates of nucleation and growth may be affected differently by photodegradation, and that the degraded molecules crystallized much faster than the unexposed material when their rates of crystallization under the same supercooling are compared.
They also increase rates of crystallization and reaction, especially when they are present as a fluid phase distinct from the magma.
The rates of crystallization ranked in order: lamellar>disordered≈gyroid>hexagonal≫cubic spheres.
The rate constants of crystallization for different blends decrease exponentially with crystallization temperature, whereas the rates of crystallization are scarcely affected by PVME content.
The WLF equation is inconsistent and hence unreliable in predicting the rates of crystallization at the glass-transition temperature from the analysis of experimental data at different temperatures.
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