Improved corrosion resistance of pulse plated nickel through crystallisation control
When electrodeposition of Ni is used for corrosion protection of steel two aspects are important: the porosity of the coating and the resistance against corrosion provided by the coating itself. Using simple pulsed current plating, the size of the deposited crystals can be significantly smaller, the...
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Published in | Journal of applied electrochemistry Vol. 25; no. 4; pp. 347 - 352 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Heidelberg
Springer
01.04.1995
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Subjects | |
Online Access | Get full text |
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Abstract | When electrodeposition of Ni is used for corrosion protection of steel two aspects are important: the porosity of the coating and the resistance against corrosion provided by the coating itself. Using simple pulsed current plating, the size of the deposited crystals can be significantly smaller, thereby reducing porosity correspondingly. This usually also leads to improved hardness of the coating. Introducing pulse reversal plating, the most active crystals are continuously dissolved during the anodic pulse, providing a coating with improved subsequent corrosion resistance in almost any corrosive environment. This correlation between film texture and corrosion resistance is discussed. |
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AbstractList | When electrodeposition of Ni is used for corrosion protection of steel two aspects are important: the porosity of the coating and the resistance against corrosion provided by the coating itself. Using simple pulsed current plating, the size of the deposited crystals can be significantly smaller, thereby reducing porosity correspondingly. This usually also leads to improved hardness of the coating. Introducing pulse reversal plating, the most active crystals are continuously dissolved during the anodic pulse, providing a coating with improved subsequent corrosion resistance in almost any corrosive environment. This correlation between film texture and corrosion resistance is discussed. |
Author | TANG, P. T BECH-NIELSEN, G WATANABE, T ANDERSEN, J. E. T |
Author_xml | – sequence: 1 givenname: P. T surname: TANG fullname: TANG, P. T organization: Tech. univ. Denmark, cent. advanced electroplating (CAG), 2800 Lyngby, Denmark – sequence: 2 givenname: T surname: WATANABE fullname: WATANABE, T organization: Tech. univ. Denmark, cent. advanced electroplating (CAG), 2800 Lyngby, Denmark – sequence: 3 givenname: J. E. T surname: ANDERSEN fullname: ANDERSEN, J. E. T organization: Tech. univ. Denmark, cent. advanced electroplating (CAG), 2800 Lyngby, Denmark – sequence: 4 givenname: G surname: BECH-NIELSEN fullname: BECH-NIELSEN, G organization: Tech. univ. Denmark, cent. advanced electroplating (CAG), 2800 Lyngby, Denmark |
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Keywords | Corrosion resistance Pulsed current Metal coating Acid corrosion Nickel Porosity Hardness Electroplating Corrosion protection Texture Surface treatment |
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Title | Improved corrosion resistance of pulse plated nickel through crystallisation control |
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