2020
DOI: 10.1108/acmm-06-2019-2149
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Titanium carbide’s effects on coatings formed on D16T aluminum alloy by plasma electrolytic oxidation

Abstract: Purpose The preferable concentration of titanium carbide was optimized and added as an additive to the micro-arc oxidation electrolyte to produce a high corrosion-resistant coating on D16T aluminum alloy. Design/methodology/approach Ceramic coatings were deposited on D16T aluminum alloy by plasma electrolytic oxidation in alkaline silicate electrolytes with micron titanium carbide particle suspending at different concentrations. Influences of additive concentration on morphology, elemental and phase composit… Show more

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Cited by 2 publications
(1 citation statement)
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“…The small surface energy indicates the hydrophilicity is poor and the hydrophobic property is good. Many scholars [47][48][49] improve the corrosion resistance of the materials by increasing the surface energy and enhancing the hydrophobicity of the coating. Therefore, the surface energy of G2 significantly reduces due to the addition of graphene, and the hydrophobicity of the coating is greatly increased.…”
Section: Wettability Properties Of Coatingsmentioning
confidence: 99%
“…The small surface energy indicates the hydrophilicity is poor and the hydrophobic property is good. Many scholars [47][48][49] improve the corrosion resistance of the materials by increasing the surface energy and enhancing the hydrophobicity of the coating. Therefore, the surface energy of G2 significantly reduces due to the addition of graphene, and the hydrophobicity of the coating is greatly increased.…”
Section: Wettability Properties Of Coatingsmentioning
confidence: 99%