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The specific gas permeability was estimated through measuring the coating gas flow rate with a home-made experimental setup.
The validation of the FEA (finite element analysis) model was carried out by measuring the coating surface temperature via an infrared imaging camera.
The corrosion tests were also performed for P91 steel and commercial Cr3C2-25(Nicoatingting for comparison and the corrosion loss was evaluated by measuring the coating thickness variation before and after hot corrosion test.
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Our results indicate that measuring the coat color of mice from only top-view photographs should be sufficient for most purposes.
Apart from the standardized Tensile Adhesive Test (TAT), more than 80 methods are reported to measure the coating adhesion.
Such characteristics can be established for any coating and assuming partial transparency at some wavelengths measured, should be able to measure the coating thickness after calibration.
It is of interest both directly after application and for in-situ assessment of cracks and delaminations to measure the coating layer thickness, to confirm the application procedure and to decide when repainting is needed.
Determine the refractive index of the coating by measuring the optical thickness of a coating reference of known thickness with OCT.
The main steps of the calibration procedure are described below (a-f): Step (a): Determine the refractive index of the coating by measuring the optical thickness of a coating reference of known thickness with OCT.
Adhesion tests were initially performed by the Tape Test method that assess the adhesion of a coating to a metallic solid support by applying and removing pressure-sensitive tape over cuts made in the film (ASTM D3359-09) and measuring the amount of the coating that was removed.
Practically, the results mean that it is sufficient to measure the top coat permeability and the base coat sorption isotherm to understand water transport kinetics in such systems.
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