FIELD: vacuum and reactor equipment, anodic treatment of titanium, niobium and their alloys using method of electrical arc oxidation. SUBSTANCE: aim is to increase electrical resistance of coatings in vacuum under temperature up to 800 C. Oxidation is exercised in electrolyte of composition, g/l: sodium phosphate 10 - 12; sodium aluminate 5 - 7; sodium oleate 0.2 -0.6; orthophosporic acid - up to pH 10.2 - 10,8. Increase of coatings electrical resistance in vacuum is achieved due to introduction of sodium oleate and orthophosphoric acid in oxidation electrolyte. EFFECT: increased electrical resistance of coatings. 1 tbl
Title | Year | Author | Number |
---|---|---|---|
ELECTROLYTE FOR ANODIZING TITANIUM AND ITS ALLOYS | 1983 |
|
SU1156409A1 |
METHOD OF APPLYING OXIDE COATINGS, MAINLY ON ARTICLES, MADE OF DIFFERENT TYPE TITANIUM ALLOYS | 1983 |
|
SU1156410A1 |
METHOD FOR OBTAINING PROTECTIVE COATING ON VALVE METALS AND THEIR ALLOYS | 1992 |
|
RU2049162C1 |
PROCESS OF MICROARC MANUFACTURE OF PROTECTIVE FILMS ON SURFACES OF METALS AND THEIR ALLOYS | 1991 |
|
RU2061107C1 |
METHOD OF PRODUCING OF PROTECTIVE COATINGS ON ALUMINUM AND ITS ALLOYS | 1996 |
|
RU2112087C1 |
ELECTROLYTE FOR DEPOSITION OF COATINGS ONTO VALVE METALS | 1992 |
|
RU2046156C1 |
ELECTROLYTE FOR MICROARC OXIDATION OF TITANIUM AND ITS ALLOYS | 1988 |
|
SU1788793A1 |
METHOD TO PRODUCE ANTIFRICTION COATINGS ON TITANIUM ALLOYS BEARING MOLYBDENUM | 1992 |
|
RU2065896C1 |
METHOD FOR APPLYING COATINGS ONTO SEMICONDUCTIVE METALS AND ALLOYS THEREOF | 1993 |
|
RU2077612C1 |
ELECTROLYTIC METHOD FOR APPLICATION OF PROTECTIVE AND ELECTROINSULATING COATS | 2008 |
|
RU2367727C1 |
Authors
Dates
1996-07-10—Published
1985-04-09—Filed