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Cure temperatures were designed to obtain different processing windows while the overall degree of cure was equivalent, leading to laminates with average porosities in the range 0.4% and 2.9%.
An interconnected, or bicontinuous morphology could only be observed at cure temperatures lower than 140 °C.
Reactivity ratios were determined via a non-linear method at four cure temperatures.
A semi-empirical model was used to describe the cure process using the data obtained at different cure temperatures.
In relatively immiscible blends and at low cure temperatures, phase separation occurred immediately after mixing.
This was compared to thermal analysis of the cure process at a range of cure temperatures by d.s.c.s.c
Similar(36)
Direct observations of the microdomain morphology do not show substantial differences due to cure temperature.
Here, it is found that both mass fraction and cure temperature affect the electrical properties.
We include the effects of thermal contraction from the cure temperature to the operating temperature of 4.2 K.
CNT mass fraction and the matrix cure temperature are two ways to tune the direct and alternating current electrical properties of these nanocomposites; yet, how mass fraction and cure temperature affect electrical properties remains unclear.
-3 Final cure temperature (°C) 50.
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