铜
镍
冶金
材料科学
电镀(地质)
纺纱
腐蚀
木桶(钟表)
镀铜
复合材料
电镀
地质学
图层(电子)
地球物理学
作者
Ferry Budhi Susetyo,Yusuf Aji Widiyanto,Bambang Soegijono,Sigit Dwi Yudanto,Sri Ismarwanti,Rosika Kriswarini,Cahaya Rosyidan
出处
期刊:International journal of engineering. Transactions C: Aspects
[International Digital Organization for Scientific Information]
日期:2024-01-01
卷期号:37 (9): 1812-1820
标识
DOI:10.5829/ije.2024.37.09c.11
摘要
Nickel (Ni) is an interesting candidate for corrosion protection of copper (Cu) due to its present passive area. Ni films with larger passive areas have better corrosion protection than those with smaller ones. In the present research, Ni films were produced over Cu. A barreling apparatus was employed to support the produced films in the sulphate solution. Various spinning speeds (0, 50, and 100 rpm) were used on the barrel while it was being processed. Several investigations were conducted, such as deposition rate, current efficiency, surface morphology, phase, film thickness, crystallographic orientation, and electrochemical properties. Increased spinning speed resulted in a decrease in the deposition rate, current efficiency, grain size, thickness, crystallite size, and exchange current density. Compared to a higher spinning speed, the decrease in spinning speed caused an increase in the oxygen content, surface roughness, and micro-strain. The higher speed of the barrel apparatus resulted in a lower corrosion rate Ni film of 0.147 mmpy. Moreover, the lower speed of the barrel apparatus resulted in a higher exchange current density Ni film of 0.997 A/cm².
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