Claims
- 1. A coating composition for forming a titanium oxide film, comprising (A) a titanium-containing aqueous liquid obtained by mixing at least one titanium compound selected from the group consisting of hydrolyzable titanium compounds, low condensates of hydrolyzable titanium compounds, titanium hydroxide and low condensates of titanium hydroxide with aqueous hydrogen peroxide, and (B) at least one halide selected from the group consisting of titanium halides, titanium halide salts, zirconium halides, zirconium halide salts, silicon halides and silicon halide salts.
- 2. A coating composition according to claim 1, wherein the titanium-containing aqueous liquid (A) is an aqueous peroxo titanic acid solution obtained by mixing a hydrolyzable titanium compound and/or its low condensate with aqueous hydrogen peroxide.
- 3. A coating composition according to claim 2, wherein the hydrolyzable titanium compound is a tetraalkoxytitanium represented by the formulaTi(OR)4 (1) wherein Rs may be the same or different and each represent C1 to C5 alkyl.
- 4. A coating composition according to claim 2, wherein the low condensate of a hydrolyzable titanium compound is a compound having a condensation degree of 2 to 30 and obtained by self-condensation of tetraalkoxytitanium(s) represented by the formulaTi(OR)4 (1) wherein Rs may be the same or different and each represent C1 to C5 alkyl.
- 5. A coating composition according to claim 2, wherein the proportion of the aqueous hydrogen peroxide is 0.1 to 100 parts by weight calculated as hydrogen peroxide, per 10 parts by weight of the hydrolyzable titanium compound and/or its low condensate.
- 6. A coating composition according to claim 2, wherein the titanium-containing aqueous liquid (A) is an aqueous peroxo titanic acid solution obtained by mixing a hydrolyzable titanium compound and/or its low condensate with aqueous hydrogen peroxide in the presence of a titanium oxide sol.
- 7. A coating composition according to claim 6, wherein the titanium oxide sol is an aqueous dispersion of anatase titanium oxide.
- 8. A coating composition according to claim 6, wherein the proportion of the titanium oxide sol is 0.01 to 10 parts by weight as solids, per 1 part by weight of the hydrolyzable titanium compound and/or its low condensate.
- 9. A coating composition according to claim 1, wherein the halide (B) is at least one member selected from the group consisting of titanium hydrofluoric acid, titanium potassium fluoride, titanium ammonium fluoride, zirconium hydrofluoric acid, zirconium ammonium fluoride, zirconium potassium fluoride, hydrosilicofluoric acid, sodium silicofluoride, ammonium silicofluoride and potassium silicofluoride.
- 10. A coating composition according to claim 1, wherein the proportion of the halide (B) is 10 to 300 parts by weight per 100 parts by weight of the solids in the titanium-containing aqueous liquid (A).
- 11. A coating composition according to claim 1, which has a pH of 2 to 10.
- 12. A process for forming a titanium oxide film, comprising applying a coating composition according to claim 1 to a metal substrate and drying the resulting coat.
- 13. An undercoating material for a metal substrate, which is a coating composition according to claim 1.
- 14. An undercoating material according to claim 13, wherein the metal substrate is a steel sheet.
- 15. A coated steel sheet comprising a film of an undercoating material according to claim 14 formed on a steel sheet surface.
- 16. A coated steel sheet according to claim 15, wherein the film is 0.05 to 10 μm thick.
- 17. An undercoating material according to claim 13, wherein the metal substrate is made of aluminum or aluminum alloy.
- 18. A coated substrate comprising a film of an undercoating material according to claim 17 formed on a surface of an aluminum substrate or an aluminum alloy substrate.
- 19. A coated substrate according to claim 18, wherein the film is 0.001 to 10 μm thick.
- 20. A heat exchanger fin comprising an aluminum substrate or an aluminum alloy substrate, a film of an undercoating material according to claim 17 formed on the substrate, and a hydrophilizing coat formed on the film.
- 21. A fin according to claim 20, wherein the film of the undercoating material is 0.001 to 10 μm thick, and the hydrophilizing coat is 0.3 to 5 μm thick.
- 22. A post-treating agent for phosphate undercoats on metal substrates, which is a coating composition according to claim 1.
- 23. A post-treating agent according to claim 22, wherein the metal substrate is a steel sheet.
- 24. A coated substrate comprising a film of a post-treating agent according to claim 22 formed on a surface of a phosphate undercoat on a metal substrate.
- 25. A coated substrate according to claim 24, wherein the weight of the film of the post-treating agent is 0.05 to 3.0 g/m2.
Priority Claims (4)
Number |
Date |
Country |
Kind |
2000-224533 |
Jul 2000 |
JP |
|
2000-240610 |
Aug 2000 |
JP |
|
2000-240611 |
Aug 2000 |
JP |
|
2001-152444 |
May 2001 |
JP |
|
Parent Case Info
This is a 371 of PCT/JP01/06320 filed Jul. 23, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP01/06320 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO02/08490 |
1/31/2002 |
WO |
A |
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5091009 |
Nogami et al. |
Feb 1992 |
A |
Foreign Referenced Citations (3)
Number |
Date |
Country |
53-5039 |
Jan 1978 |
JP |
54-24232 |
Feb 1979 |
JP |
10-67516 |
Mar 1998 |
JP |