On the Mechanism of Formation of Conversion Titanium-Containing Coatings

被引:16
作者
Abrashov, Aleksey [1 ]
Grigoryan, Nelya [1 ]
Vagramyan, Tigran [1 ]
Asnis, Naum [1 ]
机构
[1] Dmitry Mendeleev Univ Chem Technol Russia, Dept Innovat Mat & Corros Protect, Moscow 125047, Russia
关键词
corrosion protection; titanium-containing coatings; conversion coatings; hexafluorotitanic acid; passivation of metals; XPS; AES; FILMS; TI;
D O I
10.3390/coatings10040328
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The present work is devoted to the study of the mechanism of the process of formation of adhesive oxide-titanium coatings on steel, zinc, and aluminum surfaces. For the first time, the following hypothesis has been confirmed experimentally, namely, that nickel, being the first metal to be deposited on a steel substrate, creates active centers on which titanium oxides are formed, because the hydrolysis of hexafluorotitanic acid is adsorbed, which then form a continuous film. The data obtained, regarding the dependence of the coating thickness on the linear rate of the solution flow along the treated surface, indirectly confirm that the formation of insoluble titanium oxides occurs because of the alkalization of the solution adjacent to the surface. It has been established that in the presence of hexavalent molybdenum compounds in the solution as oxidizers, molybdenum is included in the coating in the form of oxides. It has been revealed that in the lower layers of the coating, molybdenum is contained in the form of compounds of molybdenum (V) and (VI), while in the upper layers, it is contained only in the form of the compound of molybdenum (VI).
引用
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页数:11
相关论文
共 33 条
[1]   Protective adhesive zirconium oxide coatings [J].
Abrashov, A. A. ;
Grigoryan, N. S. ;
Vagramyan, T. A. ;
Meshalkin, V. P. ;
Kotel'nikova, A. V. ;
Gribanova, A. A. .
PROTECTION OF METALS AND PHYSICAL CHEMISTRY OF SURFACES, 2016, 52 (07) :1170-1174
[2]   Protective Ceramic Titanium-Oxide Nanocoatings [J].
Abrashov, A. A. ;
Grigoryan, N. S. ;
Vagramyan, T. A. ;
Kolesnikov, A. V. ;
Zhilenko, D. Yu. .
GLASS AND CERAMICS, 2015, 71 (11-12) :392-395
[3]  
Abrashov A.A., 2019, Galvanotekhnika i Obrabotka Poverkhnosti, V27, P45
[4]  
ABRASHOV A.A., 2018, GALVANOTEKH OBR POV, V26, P44
[5]  
Abrashov A.A., 2016, Galvanotekhnika i Obrabotka Poverkhnosti, V24, P28
[6]  
Abrashov A.A., 2016, NON-FERROUS MET, P33, DOI [10.17580/nfm.2016.01.06, DOI 10.17580/NFM.2016.01.06]
[7]   AES AND XPS ANALYSIS OF THE INTERACTION OF TI WITH SI AND SIO2 DURING RTA [J].
BENDER, H ;
CHEN, WD ;
PORTILLO, J ;
VANDENHOVE, L ;
VANDERVORST, W .
APPLIED SURFACE SCIENCE, 1989, 38 (1-4) :37-47
[8]  
Cumpson PJ, 1997, SURF INTERFACE ANAL, V25, P430, DOI 10.1002/(SICI)1096-9918(199706)25:6<430::AID-SIA254>3.0.CO
[9]  
2-7
[10]   XPS STUDY OF COPPER ALUMINATE CATALYSTS [J].
ERTL, G ;
HIERL, R ;
KNOZINGER, H ;
THIELE, N ;
URBACH, HP .
APPLIED SURFACE SCIENCE, 1980, 5 (01) :49-64