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The moisture exposures lasted 24, 48 or 96 h, using soils moistened to 20, 50 and 90% of WHCmax.
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The effect of different surface treatments and moisture exposure on the yield behavior is studied.
The decrease in cohesive strength of the neat specimens were observed after moisture exposure.
SEM results show that moisture exposure result in surface micro-cracks compromise of the fiber matrix interface.
Increased air voids and permeability is one way to improve moisture exposure to the atmosphere and enhance the evaporation.
It was found that in all types of formulation the yield stress decreased after moisture exposure and that the yield stress was dependent on the surface treatment both before and after moisture exposure.
Effect of moisture exposure on scratch behavior of four model cast polyurethane (CPU) elastomers with different soft segments is investigated.
While failure modes were dominated by cohesive failure after moisture exposure and adhesive failure at elevated temperature.
Special attention was given to the effect of particle surface treatment and/or moisture exposure on fracture toughness.
During this time samples were kept in a dry box at GSFC and in relatively dry storage facility of PPL to avoid moisture exposure.
Nevertheless, humidity did not passivate the trap-assisted radiative recombination centers (shallow-level defects), but increased them, and consequently the MWs PL redshifted upon moisture exposure.
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