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For a given film thickness and sphere radius, the cohesive strength increases with increasing coat thickness and then tends to a constant when the coat thickness is up to a critical value.
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The test results showed that the anti-corrosion properties of the PEO coatings increased with increasing coating thickness.
In the presence of residual stresses in the coatings, adhesion-strength decreases with increasing coating thickness.
By increasing coating level of polymeric layer decreased the drug release.
Increasing coating solution feed rate and decreasing fluidizing air temperature were found to increase drug release rates.
Nanoidentation results showed an increasing coating hardness from 16 GPa to 20 GPa with decreasing bilayer thickness.
The microhardness of CPEO coating increased with increasing coating thickness, and its maximum microhardness was up to 1335 HV.
The reduction of the top/bond coat thermal expansion mismatch aimed at increasing coating durability can be achieved by embedding alumina particles in the bond coat.
The increasing coating surface roughness is beneficial to promote the emissivity.
The reaction rate constant is found to decrease with increasing coating thickness.
The energy-release-rate criterion has been used to predict adhesion-strength with increasing coating thickness.
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