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The AlTiN coating exhibited the worst impact wear resistance among the three coatings, mainly due to adhesive wear; in contrast, the AlCrN coating exhibited a lower tendency for the coating to pick-up the ball counterface material, and accordingly demonstrated good impact wear resistance.
Among the three coatings, the higher the crystallinity of the coating, the lower its average friction coefficient was.
The single-layer TiN coating has demonstrated the best wear resistance among the three coatings.
It was illustrated that the FeCrAlTiCRE coating had the best high temperature oxidation resistance among the three coatings.
All three coatings protect the steel substrate by their localized corrosion leading to final coating perforation.
The results showed that: (1) all three coatings significantly improved the wear resistance and stamping performance; and (2) CrTiN coating out-performed the other two, owing to its high hardness, good adhesion and moderate friction coefficient.
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So, the ablation resistance of HfC-ZrC coating was worse than the other two coatings.
It can be observed that the potentiodynamic potentials of the two coatings are below 316 steel, and micro-nano WC-10Co4Cr coating possesses a higher value than the conventional one.
At 300 °C, the B0.05CNx coating shows the lowest friction coefficient (~ 0.1) among the four coatings, because the graphitized carbon transfer layer forms on the Si3N4 ball.
The Valspar Corporation and Lilly Industries, two coatings companies, are awaiting regulatory approval to merge.
The treatement consists of two coatings, each of which takes 30 minutes to dry.
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