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An alternative process to autoclaving, called Thermal Press Curing (TPC), is proposed, whereby an uncured composite laminate is pressed between a heated curing mold and customized rubber-faced mold that are designed to provide uniform temperature and pressure conditions.
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After complete drying, the samples were subjected to heat curing at different temperatures of 120, 150 and 200 °C for different times of 3, 6, 12 and 24 h.
The specimens were subjected to heat curing.
The elastomer base must be mixed with a curing agent at a ratio of 10 1 by weight and then heat cured, which results in a flexible material with high mechanical and optical stability over at least one year [ 3, 13].
The same exposure time was used to heat cure glass-ionomers with a halogen light, improving the hardness of the upper and lower surfaces of the samples [ 19].
Allow to dry for 24 hours and then heat cure by baking at 425 degrees Fahrenheit (218.3 degrees Celsius) for 1 hour.
UHPC has a very low porosity, especially under heat curing.
The copolymer and PVI graftings were investigated by heat curing.
The obtained results show that the heat curing process modifies the properties of both concretes in a similar way thus more sustainable heat cured SCC can be fabricated.
Paints and certain other coatings, for example, can be cured at room temperature with one-tenth of the energy required in heat curing.
There were no increases in the autogenous and drying shrinkage for HPFRCC immediately after finishing the initial heat curing, meaning that there is no possibility of shrinkage cracks forming in HPFRCC elements after the heat curing process.
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