Identification of factors affecting the aqueous corrosion properties of (Ti, Al) N-coated steel
Carbides, borides and nitrides of transition metals are increasingly used as coating materials because of their high hardnesses and excellent wear resistances. However, these coatings can also potentially be used in applications requiring corrosion resistance because of their inherent stability unde...
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Published in | Surface & coatings technology Vol. 49; no. 1; pp. 353 - 358 |
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Main Authors | , , , |
Format | Journal Article Conference Proceeding |
Language | English |
Published |
Lausanne
Elsevier B.V
01.01.1991
Elsevier |
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Abstract | Carbides, borides and nitrides of transition metals are increasingly used as coating materials because of their high hardnesses and excellent wear resistances. However, these coatings can also potentially be used in applications requiring corrosion resistance because of their inherent stability under a variety of aqueous conditions. Thin film coatings based on these materials are generally produced by physical vapour deposition (PVD) methods. Such coatings often exhibit porosity which usually is thought to result from pinholes formed during deposition. If local defects form a direct path between the corrosive environment and the base material, the corrosion protection is lost. In this work the influence of different factors on the corrosion resistance of PVD (Ti, Al) N coatings on type ASP 23 high speed steel was studied. The factors evaluated were the thickness of the coating, the thickness and the type of the intermediate layer, the titanium-to-aluminium ratio of the coating and the number of heterogeneities in the coating. Electrochemical porosity measurements which are essential for the estimation of the corrosion resistance of coated components were made in 1 N sulphuric acid solution at ambient temperature. In these conditions, corrosion of a coated steel part occurs mainly in the base material. The corrosion resistance was also evaluated with immersion tests. The results of this work suggest the dominating role of the inhomogeneities on the corrosion resistance of the PVD (Ti, Al) N and TiN coatings. Preliminary analysis of the nature of the inhomogeneities is made and their possible source is discussed. |
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AbstractList | Thin film coatings produced by PVD methods often exhibit porosity thought to result from pinholes formed during deposition. If local defects form direct path between corrosive environment and base material, corrosion protection is lost. Influence of different factors on corrosion resistance of PVD (Ti, Al)N coatings on type ASP 23 high speed steel was studied. Factors evaluated were coating thickness, thickness and type of intermediate layer, Ti:Al ratio of coating and number of heterogeneities. Electrochem. porosity measurements essential for estimation of corrosion resistance of coated components were made in 1 N H2SO4 soln. at ambient temp. Corrosion of coated steel part occurs mainly in base material. Carbides, borides and nitrides of transition metals are increasingly used as coating materials because of their high hardnesses and excellent wear resistances. However, these coatings can also potentially be used in applications requiring corrosion resistance because of their inherent stability under a variety of aqueous conditions. Thin film coatings based on these materials are generally produced by physical vapour deposition (PVD) methods. Such coatings often exhibit porosity which usually is thought to result from pinholes formed during deposition. If local defects form a direct path between the corrosive environment and the base material, the corrosion protection is lost. The influence of different factors on the corrosion resistance of PVD (Ti,Al)N coatings on type ASP 23 high speed steel was studied. The factors evaluated were the thickness of the coating, the thickness and the type of the intermediate layer, the Ti:Al ratio of the coating and the number of heterogeneities in the coating. Electrochemical porosity measurements which are essential for the estimation of the corrosion resistance of coated components were made in 1N sulphuric acid solution at ambient temperature. In these conditions, corrosion of a coated steel part occurs mainly in the base material. The corrosion resistance was also evaluated with immersion tests. The results of this work suggest the dominating role of the inhomogeneities on the corrosion resistance of the PVD (Ti,Al)N and titanium nitride coatings. Preliminary analysis of the nature of the inhomogeneities is made and their possible source is discussed. Carbides, borides and nitrides of transition metals are increasingly used as coating materials because of their high hardnesses and excellent wear resistances. However, these coatings can also potentially be used in applications requiring corrosion resistance because of their inherent stability under a variety of aqueous conditions. Thin film coatings based on these materials are generally produced by physical vapour deposition (PVD) methods. Such coatings often exhibit porosity which usually is thought to result from pinholes formed during deposition. If local defects form a direct path between the corrosive environment and the base material, the corrosion protection is lost. In this work the influence of different factors on the corrosion resistance of PVD (Ti, Al) N coatings on type ASP 23 high speed steel was studied. The factors evaluated were the thickness of the coating, the thickness and the type of the intermediate layer, the titanium-to-aluminium ratio of the coating and the number of heterogeneities in the coating. Electrochemical porosity measurements which are essential for the estimation of the corrosion resistance of coated components were made in 1 N sulphuric acid solution at ambient temperature. In these conditions, corrosion of a coated steel part occurs mainly in the base material. The corrosion resistance was also evaluated with immersion tests. The results of this work suggest the dominating role of the inhomogeneities on the corrosion resistance of the PVD (Ti, Al) N and TiN coatings. Preliminary analysis of the nature of the inhomogeneities is made and their possible source is discussed. |
Author | Aromaa, J. Mahiout, A. Hannula, S.-P. Ronkainen, H. |
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Keywords | Water corrosion Corrosion resistance Aluminium Titanium Nitrides Thin coatings Stability Physcial vapor deposition Wear resistance Non metal coating Surface treatment |
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Title | Identification of factors affecting the aqueous corrosion properties of (Ti, Al) N-coated steel |
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