ZHANG Ergeng,WANG Linlin,LIANG Dandan,CHEN Qiang,ZHOU Qiong,HUANG Biao.Effect of Temperature on Corrosion Resistance and Passive Film Properties of TiAlCN Coatings[J],53(18):91-99, 191
Effect of Temperature on Corrosion Resistance and Passive Film Properties of TiAlCN Coatings
Received:September 22, 2023  Revised:January 25, 2024
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DOI:10.16490/j.cnki.issn.1001-3660.2024.18.007
KeyWord:TiAlCN coating  temperature  corrosion resistance  passive film  semiconducting properties  donor density
                 
AuthorInstitution
ZHANG Ergeng Shanghai Engineering Research Center of Physical Vapor Deposition PVD Superhard Coating and Equipment, Shanghai Institute of Technology, Shanghai , China
WANG Linlin Shanghai Engineering Research Center of Physical Vapor Deposition PVD Superhard Coating and Equipment, Shanghai Institute of Technology, Shanghai , China
LIANG Dandan Shanghai Engineering Research Center of Physical Vapor Deposition PVD Superhard Coating and Equipment, Shanghai Institute of Technology, Shanghai , China
CHEN Qiang Shanghai Engineering Research Center of Physical Vapor Deposition PVD Superhard Coating and Equipment, Shanghai Institute of Technology, Shanghai , China
ZHOU Qiong Shanghai Engineering Research Center of Physical Vapor Deposition PVD Superhard Coating and Equipment, Shanghai Institute of Technology, Shanghai , China
HUANG Biao Shanghai Engineering Research Center of Physical Vapor Deposition PVD Superhard Coating and Equipment, Shanghai Institute of Technology, Shanghai , China
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Abstract:
      Mechanical parts are easy to fail under the action of high temperature and corrosion environment, physical vapor deposition coatings can be used to improve the surface performance of these parts and increase their service life. The corrosion resistance of coatings is related to their passivation performance. Thereinto, the temperature plays a key role in the passivation performance of the materials, thus tuning their corrosion rate. This work studies the change of corrosion resistance of TiAlCN coatings in the 3.5 wt.% NaCl solution at various temperature and further reveals the mechanism that how the temperature affects the corrosion resistance and passive film properties.
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