FIELD: different technique ranges at anodizing articles of titanium and its alloys. SUBSTANCE: electrolyte for anodizing titanium and its alloys in a microarc mode, including sodium aluminate, also includes sodium phosphate and potassium iodate at next component ratio, (g/1): sodium aluminate (2-5), sodium phosphate (10-15), potassium iodate (0.5-3.0). Such content provides enhanced electroinsulation and corrosion resistant properties of coatings. EFFECT: enhanced properties of coating with use of such electrolyte.
Title | Year | Author | Number |
---|---|---|---|
METHOD OF APPLYING OXIDE COATINGS, MAINLY ON ARTICLES, MADE OF DIFFERENT TYPE TITANIUM ALLOYS | 1983 |
|
SU1156410A1 |
ELECTROLYTE FOR METALS OXIDATION | 1985 |
|
SU1292393A1 |
ELECTROLYTE FOR MICROARC OXIDATION OF TITANIUM AND ITS ALLOYS | 1988 |
|
SU1788793A1 |
METHOD OF OBTAINING PROTECTIVE COATING ON MAGNESIUM AND ITS ALLOYS | 2015 |
|
RU2620224C2 |
PROCESS OF MICROARC MANUFACTURE OF PROTECTIVE FILMS ON SURFACES OF METALS AND THEIR ALLOYS | 1991 |
|
RU2061107C1 |
METHOD OF MAKING PROTECTIVE COATS ON SURFACES OF ARTICLES MADE FROM MAGNESIUM AND MAGNESIUM-BASED ALLOYS | 2004 |
|
RU2260078C1 |
ELECTROLYTE FOR DEPOSITION OF COATINGS ONTO VALVE METALS | 1992 |
|
RU2046156C1 |
METHOD OF MAKING COATINGS | 2004 |
|
RU2252277C1 |
METHOD FOR APPLYING COATINGS ONTO SEMICONDUCTIVE METALS AND ALLOYS THEREOF | 1993 |
|
RU2077612C1 |
ELECTROLYTE FOR COATING VALVE METALS AND ALLOYS THEREOF, METHOD OF COATING AND COATING OBTAINED BY THIS METHOD | 2016 |
|
RU2671311C2 |
Authors
Dates
1996-06-10—Published
1983-08-01—Filed