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Process and electrolyte effects on the nitrogen-doped anodic plasma electrolytic saturation coating electrochemical performance: Simultaneous participation of the applied and breakdown voltages
被引:1
|作者:
Shakiba, Nazanin
[1
]
Khoei, Seyed Mohammad Mousavi
[1
]
机构:
[1] Amirkabir Univ Technol, Dept Mat & Met Engn, Tehran, Iran
来源:
关键词:
Anodic plasma electrolytic saturation (APES);
coating method;
Nitrogen-doped composite coating;
Applied voltage;
Potassium hydroxide;
Sodium nitrite;
Electrochemical impedance spectroscopy;
CORROSION-RESISTANCE;
INCREASING WEAR;
ALLOY;
BEHAVIOR;
POWDER;
D O I:
10.1016/j.surfcoat.2022.128183
中图分类号:
TB3 [工程材料学];
学科分类号:
0805 ;
080502 ;
摘要:
Anodic plasma electrolytic saturation (APES) is an eco-friendly method to deposit a composite coating for improving the performance of metal substrates. This study had investigated the corrosion behaviour of the nitrogen-doped Al(2)O(3 )layers deposited in alkaline-nitrite electrolytes at constant V-APES of 500 and 450 V. The results indicated that the coatings prepared at a lower V-APES had higher macro and microscopic qualities and electrochemical resistance than the higher V-APES. At the V-APES = 500 V, the best APES coating just had electrochemical resistance with 1.030 M omega.cm(2) values after 48 h of immersion in the 3.5 wt% sodium chloride medium. Based on this study's results, the vital delta V parameter is the coating driving force that depends on changes in the breakdown voltage (V-B.D.) and applied voltage value (VAPEP). This participation dependent parameter (delta V) significantly affects the macro and micro-quality of this nitrogen-doped composite coating and its corrosion behaviour. The APES coating deposited at a lower NaNO2 amount (1 g/L) and V-APEP of 450 V had the highest spinel and cubic nitrogenous phases and more closed pores than the best layer deposited at 500 V due to removing KOH and decreasing V-APEP and consequently declining the participation dependent parameter (delta V) value. Accordingly, this nitrogen-doped APEP coating with the best chemical-physical properties experienced the remarkably highest electrochemical resistance with the 353.500 M omega.cm(2) value compared to all studied samples and uncoated aluminium substrate after 48 h immersion time.
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页数:17
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