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Results on the thermal stability of coating on austenitic stainless steel are presented.
They remained 159° and ⩽1°, respectively, even after 3 months storage under indoor conditions (20 °C, 20% RH), demonstrating the long time stability of coating superhydrophobicity.
To monitor the stability of coating even at high temperature, the thermal expansion coefficient of glass and steel was observed separately.
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The goal of stability analysis of coating flows is to determine the region in the parameter space at which the flow is stable and therefore the coated layer uniform.
The pore dimension was tuned to accommodate the elastin coating and enhance the adhesion and stability of the coating by means of morphological cues.
Five samples showing the highest degree of restructuring were selected and spray coated with P25, a TiO2 photocatalyst, evaluating the mechanical stability of the coating with a standard tape test method.
The thermal stability of nanostructured coating was also investigated.
The thermal stability of the coating is evaluated, and it exhibits a good thermal stability in vacuum at 400 °C.
Thermal stability of the coating on the NiTi ZrO2 surface was evaluated, showing excellent stability up to 320 °C.
The chemical composition, structures and thermal stability of the coating were systematically investigated by SEM, EPMA, XRD, TEM, XPS and Raman.
This proved an excellent stability of the coating and good reproducibility was obtained for 5 interaction cycles.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com