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The effects of the curing temperature as well as the curing time were also investigated.
The sample preparation parameters, such as the curing time and curing intensity were optimized.
As the curing time increases, the hydraulic conductivity decreases.
Despite dilution effect in blended samples, both the compressive (CS) and flexural strength (FS) increased throughout all the curing time and reached the values higher than that of referential sample.
Previous experiments have shown that microwave curing of epoxies reduces the curing time and could lead to improvements in the mechanical properties of the cured epoxies.
Our UV-assisted thermal curing process significantly shortens the curing time.
The cure time drastically decreased with increasing NaIO4 concentration.
Additionally, the necessary curing time at minimum 120 °C is ensured.
A higher UV dose for preexposure and a higher curing temperature greatly shorten the thermal curing time.
Figure 8 traces the pH value verses curing time graph.
The reduction rate decreased as curing time progressed.
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