Claims
- 1. A process comprising steps of:
- (I) providing a precursor liquid mixture consisting essentially of water and:
- (A) a dissolved component selected from the group consisting of H.sub.2 TiF.sub.6, H.sub.2 ZrF.sub.6, H.sub.2 HfF.sub.6, H.sub.2 SiF.sub.6, H.sub.2 GeF.sub.6, H.sub.2 SnF.sub.6, HBF.sub.4, and mixtures thereof and
- (B) a dissolved, dispersed, or both dissolved and dispersed component selected from the group consisting of Ti, Zr, Hf, Al, Si, Ge, Sn, and B, the oxides, hydroxides, and carbonates of Ti, Zr, Hf, Al, Si, Ge, Sn, and B, and mixtures of any two or more of these elements, oxides, hydroxides, and carbonates,
- said precursor liquid mixture having at least one of the following characteristics: (i) it is not optically transparent in a thickness of 1 cm; (ii) it scatters visible light; or (iii) it undergoes visually detectable settling of a solid phase if maintained for at least 100 hours at a temperature between its freezing point and 20.degree. C.;
- (II) maintaining the precursor liquid mixture provided in step (I) for at least a sufficient time at a sufficient temperature to form a stabilized liquid mixture that is free from any visually observable evidence of phase separation, is transparent when viewed in a thickness of 1 cm, and is sufficiently stable that it would remain free from any visually observable evidence of phase separation during storage at temperature in the range from 20.degree. to 25.degree. C. for a period of at least 100 hours; and, optionally,
- (III) mixing at least one of (i) a water soluble or dispersible polymer or copolymer component (C) and (ii) a water soluble oxide, carbonate, or hydroxide of Ti, Zr, Hf, B, Al, Si, Ge, or Sn with the stabilized liquid mixture from the end of step (II) to form a mixture that is sufficiently stable that it would remain free from any visually observable evidence of phase separation during storage at temperature in the range from 20.degree. to 25.degree. C. for a period of at least 100 hours.
- 2. An aqueous liquid mixture made by a process according to claim 1.
- 3. A process according to claim 1 comprising an additional step (IV) selected from the group consisting of:
- (IV.1) coating a metal surface with a layer of the liquid composition from the end of step (III), said layer having a thickness such that it contains from 1 to 500 mg/m.sup.2 of the metal surface of the total amount of elements selected from the group consisting of Ti, Zr, B, Si, Ge, Sn, and drying said layer of the liquid composition from the end of step (III) into place on said metal surface, without intermediate rinsing;
- (IV.2) contacting a metal surface with the liquid composition from the end of step (III) at a temperature in the range from 25.degree. to 90.degree. C. for a time in the range from 1 to 1800 seconds; removing the metal surface from contact with said liquid composition from the end of step (III); rinsing said metal surface with water; optionally, contacting the thus rinsed metal surface with an aqueous composition comprising polymers and copolymers of one or more x-(N--R.sup.1 --N--R.sup.2 -aminomethyl)-4-hydroxy-styrenes, where x=2, 4, 5, or 6, R.sup.1 represents an alkyl group containing from 1 to 4 carbon atoms and R.sup.2 represents a substituent group conforming to the general formula H(CHOH).sub.n CH.sub.2 --, where n is an integer from 1 to 7; and drying the metal surface.
- 4. A process according to claim 1, wherein a water soluble or dispersible polymer or copolymer selected from the group consisting of (i) epoxy resins and (ii) polymers and copolymers of acrylic and methacrylic acids and their salts is used in step (III).
- 5. A process according to claim 4, wherein the water soluble or dispersible polymer or copolymer is selected from the group consisting of (i) polymers of the diglycidylether of bisphenol-A, optionally capped on the ends with non-polymerizable groups and optionally having some of the epoxy groups hydrolyzed to hydroxyl groups and (ii) polymers and copolymers of acrylic and methacrylic acids and their salts.
- 6. An aqueous liquid mixture made by a process according to claim 5.
- 7. A process according to claim 5 comprising an additional step (IV) selected from the group consisting of: (IV.1) coating a metal surface with a layer of the liquid composition from the end of step (III), said layer having a thickness such that it contains from 5 to 100 mg/m.sup.2 of the metal surface of the total amount of elements selected from the group consisting of Ti, Zr, B, Si, Ge, Sn, and drying said layer of the liquid composition from the end of step (III) into place on said metal surface, without intermediate rinsing, within a time in the range from 2 to 50 seconds after coating is completed; and
- (IV.2) contacting a metal surface with the liquid composition from the end of step (III) at a temperature in the range from 30.degree. to 60.degree. C. for a time in the range from 3 to 30 seconds; removing the metal surface from contact with said liquid composition from the end of step (III); rinsing said metal surface with water; optionally, contacting the thus rinsed metal surface with an aqueous composition comprising polymers and copolymers of one or more x-(N--R.sup.1 --N--R.sup.2 -aminomethyl)-4-hydroxy-styrenes, where x=2, 4, 5, or 6, R.sup.1 represents a methyl group, and R.sup.2 represents a substituent group conforming to the general formula H(CHOH).sub.n CH.sub.2 --, where n is an integer from 3 to 5; and drying the rinsed metal surface within a time from 2 to 50 seconds after rinsing is completed.
- 8. A process according to claim 7, wherein (i) the mixture provided in step (I) contains a total amount in the range from 0.01 to 7.0M of material selected from the group consisting of H.sub.2 TiF.sub.6, H.sub.2 ZrF.sub.6, H.sub.2 HfF.sub.6, H.sub.2 SiF.sub.6, HBF.sub.4, and mixtures thereof and has a ratio of moles of component (A) to equivalents of component (B) in the range from 1:1 to 50:1; (ii) if step (IV.1) is used, during step (II) the mixture is maintained at a temperature in the range from 25.degree. to 100.degree. C. for a time in the range from 3 to 480 minutes; and (iii) component (C) is used in step (III) and comprises a total amount of water soluble and water dispersible polymers and copolymers such that the ratio by weight of said water soluble and water dispersible polymers and copolymers to the total weight of component (A) is in the range from 0.1:1 to 3:1.
- 9. A process according to claim 8, wherein (i) the mixture provided in step (I) contains a total amount in the range from 0.1 to 6.0M of material selected from the group consisting of H.sub.2 TiF.sub.6, H.sub.2 ZrF.sub.6, H.sub.2 SiF.sub.6, and mixtures thereof; has a ratio of moles of component (A) to total equivalents of oxides, hydroxides, and carbonates of silicon, zirconium, and aluminum in the range from 1.5:1.0 to 20:1; and has a pH value in the range from 0 to 4; (ii) if step (IV.1) is used, during step (II) the mixture is maintained at a temperature in the range from 30.degree. to 80.degree. C. for a time in the range from 5 to 90 minutes; and (iii) component (C) is used and comprises a total amount of water soluble and water dispersible polymers and copolymers such that the ratio by weight of said water soluble and water dispersible polymers and copolymers to the total weight of component (A) is in the range from 0.2:1 to 2:1.
- 10. An aqueous liquid mixture made by a process according to claim 5, wherein in said process (i) the mixture provided in step (I) contains a total amount in the range from 0.1 to 6.0M of material selected from the group consisting of H.sub.2 TiF.sub.6, H.sub.2 ZrF.sub.6, H.sub.2 SiF.sub.6, and mixtures thereof; has a ratio of moles of component (A) to total equivalents of oxides, hydroxides, and carbonates of silicon, zirconium, and aluminum in the range from 1.5:1.0 to 20:1; and has a pH value in the range from 0 to 4; (ii) during step (II) the mixture is maintained at a temperature in the range from 30.degree. to 80.degree. C. for a time in the range from 5 to 90 minutes; and (iii) component (C) is used and comprises a total amount of water soluble and water dispersible polymers and copolymers such that the ratio by weight of said water soluble and water dispersible polymers and copolymers to the total weight of component (A) is in the range from 0.2:1 to 2:1.
- 11. A process according to claim 1 comprising an additional step (IV) selected from the group consisting of:
- (IV. 1) coating a metal surface with a layer of the liquid composition from the end of step (III), said layer having a thickness such that it contains from 5 to 100 mg/m.sup.2 of the metal surface of the total amount of active ingredients from components (A), (B), and (C), and drying said layer of the liquid composition from the end of step (III) into place on said metal surface, without intermediate rinsing, within a time in the range from 2 to 50 seconds after coating is completed; and
- (IV.2) contacting a metal surface with the liquid composition from the end of step (III) at a temperature in the range from 30.degree. to 60.degree. C. for a time in the range from 3 to 30 seconds; removing the metal surface from contact with said liquid composition from the end of step (III); rinsing said metal surface with water; optionally, contacting the thus rinsed metal surface with an aqueous composition comprising polymers or copolymers of one or more x-(N--R.sup.1 --N--R.sup.2 -aminomethyl)-4-hydroxy-styrenes, where x=2, 4, 5, or 6, R.sup.1 represents a methyl group, and R.sup.2 represents a substituent group conforming to the general formula H(CHOH).sub.n CH.sub.2 --, where n is an integer from 3 to 5; and drying the rinsed metal surface within a time from 2 to 50 seconds after rinsing and any subsequent contacting of the rinsed surface with an aqueous polymer composition is completed.
- 12. A process according to claim 1, wherein (i) the mixture provided in step (I) contains a total amount in the range from 0.01 to 7.0M of material selected from the group consisting of H.sub.2 TiF.sub.6, H.sub.2 ZrF.sub.6, H.sub.2 HfF.sub.6, H.sub.2 SiF.sub.6, HBF.sub.4, and mixtures thereof and has a ratio of moles of component (A) to equivalents of component (B) in the range from 1:1 to 50:1; (ii) during step (II) the mixture is maintained at a temperature in the range from 25.degree. to 100.degree. C. for a time in the range from 3 to 480 minutes; and (iii) component (C) comprises a total amount of water soluble and water dispersible polymers and copolymers such that the ratio by weight of said water soluble and water dispersible polymers and copolymers to the total weight of component (A) is in the range from 0.1:1 to 3: 1.
- 13. A process according to claim 12, wherein (i) the mixture provided in step (I) contains a total amount in the range from 0.1 to 6.0M of material selected from the group consisting of H.sub.2 TiF.sub.6, H.sub.2 ZrF.sub.6, H.sub.2 SiF.sub.6, and mixtures thereof; has a ratio of moles of component (A) to total equivalents of oxides, hydroxides, and carbonates of silicon, zirconium, and aluminum in the range from 1.5:1.0 to 5:1; and has a pH value in the range from 0 to 2; (ii) during step (II) the mixture is maintained at a temperature in the range from 30.degree. to 80.degree. C. for a time in the range from 10 to 30 minutes; and (iii) component (C) comprises a total amount of water soluble and water dispersible polymers and copolymers such that the ratio by weight of said water soluble and water dispersible polymers and copolymers to the total weight of component (A) is in the range from 0.20:1 to 1.6:1.
- 14. An aqueous liquid mixture made by a process according to claim 13.
- 15. A process according to claim 13 comprising an additional step (IV) selected from the group consisting of:
- (IV.1) coating a metal surface with a layer of the liquid composition from the end of step (III), said layer having a thickness such that it contains from 5 to 300 mg/m.sup.2 of the metal surface of the total of the active ingredients of components (A), (B), and (C), and drying said layer of the liquid composition from the end of step (III) into place on said metal surface, without intermediate rinsing; and
- (IV.2) contacting a metal surface with the liquid composition from the end of step (III) at a temperature in the range from 30.degree. to 85.degree. C. for a time in the range from 1 to 300 seconds; removing the metal surface from contact with said liquid composition from the end of step (III); rinsing said metal surface with water; optionally, contacting the thus rinsed metal surface with an aqueous composition comprising polymers and copolymers of one or more x-(N--R.sup.1 --N--R.sup.2 -aminomethyl)-4-hydroxy-styrenes, where x=2, 4, 5, or 6, R.sup.1 represents a methyl group, and R.sup.2 represents a substituent group conforming to the general formula H(CHOH).sub.n CH.sub.2 --, where n is an integer from 3 to 5; and drying the metal surface.
- 16. A process according to claim 5, wherein (i) the mixture provided in step (I) contains a total amount in the range from 0.1 to 6.0M of H.sub.2 TiF.sub.6 ; has a ratio of moles of H.sub.2 TiF.sub.6 to total equivalents of silicon dioxide in the range from 1.5:1.0 to 5:1; and has a pH value in the range from 0.0 to 1.0; (ii) if step (IV.1) is used, during step (II) the mixture is maintained at a temperature in the range from 30.degree. to 80.degree. C. for a time in the range from 10 to 30 minutes; and (iii) component (C) is used and comprises a total amount of water soluble and water dispersible polymers and copolymers such that the ratio by weight of said water soluble and water dispersible polymers and copolymers to the total weight of H.sub.2 TiF6 is in the range from 0.20:1 to 1.6:1.
- 17. An aqueous liquid mixture made by a process according to claim 16.
- 18. A process according to claim 16 comprising an additional step (IV) selected from the group consisting of:
- (IV.1) coating a metal surface with a layer of the liquid composition from the end of step (III), said layer having a thickness such that it contains from 5 to 150 mg/m.sup.2 of the metal surface of the total of the active ingredients of components (A), (B), and (C), and drying said layer of the liquid composition from the end of step (III) into place on said metal surface, without intermediate rinsing; and
- (IV.2) contacting a metal surface with the liquid composition from the end of step (III) at a temperature in the range from 30.degree. to 85.degree. C. for a time in the range from 1 to 300 seconds; removing the metal surface from contact with said liquid composition from the end of step (III); rinsing said metal surface with water; optionally contacting the thus rinsed metal surface with an aqueous composition comprising polymers and copolymers of one or more x-(N--R.sup.1 --N--R.sup.2 -aminomethyl)-4-hydroxy-styrenes, where x=2, 4, 5, or 6, R.sup.1 represents a methyl group, and R.sup.2 represents a substituent group conforming to the general formula H(CHOH).sub.n CH.sub.2 --, where n is an integer from 3 to 5; and drying the metal surface, so as to deposit on the metal surface from 1 to 500 mg/m.sup.2 of the total of active ingredients of components (A), (B), and (C).
- 19. A process according to claim 18 comprising an additional step (IV.l) consisting of: coating a metal surface with a layer of the liquid composition from the end of step (III), said layer having a thickness such that it contains from 5 to 150 mg/m.sup.2 of the metal surface of the total of the active ingredients of components (A), (B), and (C), and drying said layer of the liquid composition from the end of step (III) into place on said metal surface, without intermediate rinsing, within a time in the range from 2 to 10 seconds after coating is completed, while bringing the maximum metal temperature during drying to a value between 30.degree. and 75.degree. C.
- 20. A process according to claim 18 comprising an additional step (IV.2) consisting of: contacting a metal surface with the liquid composition from the end of step (III) at a temperature in the range from 30.degree. to 60.degree.0 C. for a time in the range from 3 to 30 seconds; removing the metal surface from contact with said liquid composition from the end of step (III); rinsing said metal surface with water; optionally, contacting the thus rinsed metal surface with an aqueous composition comprising polymers and copolymers of one or more x-(N--R.sup.1 --N--R.sup.2 -aminomethyl)-4-hydroxy-styrenes, where x=2, 4, 5, or 6, R.sup.1 represents a methyl group, and R.sup.2 represents a substituent group conforming to the general formula H(CHOH).sub.n CH.sub.2 --, where n is an integer from 3 to 5; and drying the rinsed metal surface within a time from 2 to 10 seconds after rinsing or contact with an aqueous composition comprising polymers is completed, while bringing the maximum metal temperature during drying to a value between 30.degree. and 75.degree. C., so as to deposit on the metal surface from 1 to 150 mg/m.sup.2 of the total of active ingredients of components (A), (B), and (C).
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of copending application Ser. No. 862,012 filed on Apr. 1, 1992, now U.S. Pat. No. 5,281,282.
US Referenced Citations (7)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0273698 |
Jun 1988 |
EPX |
Non-Patent Literature Citations (1)
Entry |
S. M. Thomsen, "High-Silica Fluosilic Acids: Specific Reactions and the Equilibrium with Silica:", Jour. Amer. Chem. Soc. 74; 1690-93 (1952). |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
862012 |
Apr 1992 |
|