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Drying is a thermodynamic process used to control moisture concentration in the material.
Except for temperature and moisture concentration, an unexpected environmental effect is found accidentally.
Coefficient of hygric strains are determined from moisture concentration (C) and hygric strains.
Hygrothermal effects in composites are induced by temperature and moisture concentration.
A critical interface moisture concentration was identified, where the strength is expected to go to zero.
A uniform temperature rise and moisture concentration rise has been considered.
The analysis also accounts for lamina material properties at elevated moisture concentration and temperature.
Modelling of the moisture concentration field due to cyclical hygrothermal conditions in thick laminated pipes.
The rise in moisture concentration and temperature reduces both strength and stiffness of composites.
The analysis takes into account the lamina material properties at elevated moisture concentration and temperature.
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This enabled smooth moisture-concentration switching within 1 min for 90%% response to the step change between 11 nmol/mol and 8.8 μmol/mol.
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