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The microstructural evolution of the substrate after coating and the fatigue behavior of the coated structure have been studied.
The friction and the wear behavior of the coated surfaces were evaluated under dry sliding conditions, with a "WCo" coating used as a reference coated surface.
This study aims to study thermal shock behavior of the coated composites.
Microstructural characteristics and fatigue behavior of the coated structure have been surveyed through experimental tests.
The fundamental design for a gas-cooled reactor relies on the safe behavior of the coated particle fuel.
The effects of Al2O3 contents and oxidation temperatures on the oxidation behavior of the coated C/C were investigated.
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The isothermal and cyclic oxidation behaviors of the coated alloy were investigated at 650 °C and 750 °C in air.
Potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) in the 3.5 wt.% NaCl solution were used to evaluate the corrosion behaviors of the coated samples.
Deposition of Ca and P-contained products on the surface of coated samples during the incubation in the SBF solution confirmed the bioactivity behavior of the forsterite coated samples.
The surface microstructure, interface construction and high temperature oxidation behavior of the prepared coated C/C composites were investigated.
After 400 rounds firing test, the ablation behavior of the NiCrAlY coated muzzle brake in gunpowder gas was investigated.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com