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Based on these experiments, the cure temperature information was obtained, and some samples were prepared for evaluating curing reactions using near-infrared spectroscopy since the changes upon heating are not easily detected using mid-infrared spectroscopy due to overlapping and low intensities of vibrational bands [33].
Here, it is found that both mass fraction and cure temperature affect the electrical properties.
Direct observations of the microdomain morphology do not show substantial differences due to cure temperature.
Lowering the cure temperature only lowers distortions for high temperature rates.
The Tg of the neat resin decreased with the decrease in cure temperature.
The 10 wt% POSS epoxies also showed improved dispersion with pre-reaction and increasing cure temperature.
The influence of the amount, the molar mass of PCL and the cure temperature is discussed.
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.
We include the effects of thermal contraction from the cure temperature to the operating temperature of 4.2 K.
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Damaged glass/epoxy specimens repaired using chopped short fibers and exposed to a post-cure temperature of 50 °C showed the most favorable indentation behavior.
The pre-cure temperature and the structure of the hardeners govern the packing of the molecular chains of the epoxy network.
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