Claims
- 1. A layered material comprised of:
- (a) a base layer of a valve metal selected from the class consisting of aluminum, niobium, tantalum, titanium, or zirconium, alloys of two of more of such metals, and alloys of one or more of such metals together with one or more alloying metals selected from the class consisting of silicon, iron, copper, manganese, molybdenum, chromium, nickel, zinc, vanadium, titanium, boron, lithium and zirconium; and
- (b) a duplex layer comprised of:
- (i) an intermediate layer consisting essentially of a non-porous barrier layer type valve metal oxide attached to said base layer; and
- (ii) an acid resistant, functionalized layer of a monomeric phosphorus-containing compound chemically bonded to a surface of said oxide layer, the functionalized layer comprised of the reaction product of an acid selected from phosphonic and phosphinic acid and the valve metal oxide.
- 2. The layered material in accordance with claim 1 wherein the phosphonic acid is a monomeric phosphonic acid having the formula R.sub.m [PO(OH).sub.2 ].sub.n wherein R is one or more radicals having a total of 1-30 carbons; m is the number of radicals in the molecule and is in the range of 1-10; n is the number of phosphonic acid groups in the molecule and is in the range of 1-10.
- 3. The layered material in accordance with claim 2 wherein the phosphinic acid is a monomeric phosphinic acid having the formula R.sub.m R'.sub.o [PO(OH)].sub.n wherein R is one or more radicals having a total of 1-30 carbons; m is the number of R radicals in the molecule and is in the range of 1-10; R' may be hydrogen and may be comprised of 1-30 carbon-containing radicals; o is the number of R' radicals and is in the range of 1-10; n is the number of phosphinic acid groups in the molecule and is in the range of 1-10.
- 4. The layered material in accordance with claim 2 wherein R is in the range of 2-12.
- 5. The layered material in accordance with claim 3 wherein R is in the range of 2-12.
- 6. The layered material in accordance with claim 1 wherein the functionalized layer has a thickness of less than 200.ANG..
- 7. The layered material in accordance with claim 1 wherein the functionalized layer has a thickness of less than 100.ANG..
- 8. The layered material in accordance with claim 1 wherein the valve metal oxide has a phosphorus to valve metal ratio of 0.001 to 0.5.
- 9. A layered material comprised of:
- (a) a base layer of aluminum alloy; and
- (b) a duplex layer comprised of:
- (i) an intermediate layer consisting essentially of a non-porous barrier layer type aluminum oxide attached to said base layer; and
- (ii) an acid resistant, functionalized layer of an organic monomeric phosphorus-containing compound chemically bonded to a surface of said oxide layer.
- 10. The layered material in accordance with claim 1 wherein said duplex layer has an atomic weight ratio of phosphorus to aluminum of 0.001 to 0.5.
- 11. The layered material in accordance with claim 9 wherein said aluminum oxide layer is at least 90 wt. % aluminum oxide.
- 12. The layered material in accordance with claim 9 wherein said aluminum oxide layer is at least 95 wt. % aluminum oxide.
- 13. The layered material in accordance with claim 1 wherein said aluminum oxide layer is at least 98 wt. % aluminum oxide.
- 14. The layered material in accordance with claim 1 wherein said oxide layer results from anodization of said base layer.
- 15. The layered material in accordance with claim 1 wherein said oxide layer has a density of 2.8 to 3.2 gms/cc.
- 16. The layered material in accordance with claim 1 wherein said oxide layer has a thickness of 100 to 5000.ANG..
- 17. The layered material in accordance with claim 1 wherein said oxide layer has a thickness of 400 to 1000.ANG..
- 18. The layered material in accordance with claim 1 wherein said functionalized layer has a thickness of less than 200.ANG..
- 19. The layered material in accordance with claim 1 wherein said functionalized layer has a thickness of less than 100.ANG..
- 20. The layered material in accordance with claim 1 wherein said functionalized layer has a thickness of less than 30.ANG..
- 21. The layered material in accordance with claim 14 wherein said anodization is carried out in a water containing solution having a monomeric phosphorus-containing acid selected from phosphinic and phosphonic acids and mixtures thereof.
- 22. The layered material in accordance with claim 14 wherein said acid resistant functionalized layer protects said oxide layer from dissolution during said anodization.
- 23. The layered material in accordance with claim 1 wherein said duplex layer has an atomic weight ratio of phosphorus to aluminum of 0.02 to 0.2.
- 24. The layered material in accordance with claim 14 wherein said oxide layer is produced at a weight gain of less than 0.9 mg/coulomb.
- 25. The layered material in accordance with claim 14 wherein said oxide layer is in the range of 0.08 to 0.1 mg/coulomb.
- 26. The layered material in accordance with claim 14 wherein the functionalized layer is comprised of the reaction product of an acid selected from monomeric phosphonic and phosphinic acid with aluminum oxide.
- 27. The layered material in accordance with claim 26 wherein the functionalized layer is comprised of the reaction product of phosphonic acid and aluminum oxide and the phosphonic acid has the formula R.sub.m [PO(OH).sub.2 ].sub.n wherein R is one or more radicals having a total of 1-30 carbons; m is the number of radicals in the molecule and is in the range of 1-10; n is the number of phosphonic acid groups in the molecule and is in the range of 1-10.
- 28. The layered material in accordance with claim 26 wherein the functionalized layer is comprised of the reaction product of phosphinic acid and aluminum oxide and the phosphinic acid has the formula R.sub.m R'.sub.o [PO(OH)].sub.n wherein R is one or more radicals having a total of 1-30 carbons; m is the number of R radicals in the molecule and is in the range of 1-10; R' may be hydrogen and may be comprised of 1-30 carbon-containing radicals; o is the number of R' radicals and is in the range of 1-10; n is the number of phosphinic acid groups in the molecule and is in the range of 1-10.
- 29. The layered material in accordance with claim 1 wherein the aluminum alloy contains magnesium or manganese, or both.
- 30. The layered material in accordance with claim 29 wherein the aluminum alloy is selected from an aluminum alloy containing 4 to 5% Mg, 0.2 to 0.5% Mn, 0.2% max. Si, 0.35% max. Fe, 0.15% max. Cu, 0.1% max. Cr, 0.25% max. Zn, 0.1% max. Ti, the balance substantially aluminum and an alloy containing 2.2 to 2.8% Mg, silicon + iron not exceeding 0.45%, 0.1% max. Cu, 0.1% max. Mn, 0.1% max. Cr, 0.1% max. Zn, 0.1% max. Ti, balance substantially aluminum.
- 31. A layered material comprised of:
- (a) a base layer of aluminum or aluminum alloy; and
- (b) a duplex layer comprised of:
- (i) an intermediate layer consisting essentially of a non-porous barrier layer type aluminum oxide attached to said base layer having a density of 2.8 to 3.2 gms/cc, being greater than 95 wt. % aluminum oxide, having a thickness in the range of 100 to 5000.ANG. and resulting from the anodization of said base layer in a monomeric phosphorus-containing acid selected from phosphonic and phosphinic acid produced at 12 to 16.ANG. and at a weight gain of 0.03 to 0.2 mg/coulomb; and
- (ii) an acid resistant, functionalized layer of an organic monomeric phosphorus-containing compound chemically bonded to a surface of said oxide layer, the duplex layer having an atomic weight ratio of phosphorus to aluminum in the range of 0.001 to 0.5.
- 32. The layered material in accordance with claim 31 wherein the base layer is a flat rolled product.
- 33. The layered material in accordance with claim 32 wherein the flat rolled product is a sheet or foil product.
- 34. The layered material in accordance with claim 31 wherein the alloy is selected from substantially aluminum or an aluminum alloy containing magnesium or manganese, or both.
- 35. The layered material in accordance with claim 34 wherein the base layer is foil stock fabricated from aluminum or an aluminum alloy containing manganese.
- 36. The layered material in accordance with claim 34 wherein the base layer is sheet stock fabricated from an aluminum alloy selected from an alloy containing 4 to 5% Mg, 0.2 to 0.5% Mn, 0.2% max. Si, 0.35% max. Fe, 0.15% max. Cu, 0.1% max, Cr, 0.25% max. Zn, 0.1% max. Ti, the balance substantially aluminum, and an alloy containing 2.2 to 2.8% Mg, silicon + iron not exceeding 0.45%, 0.1% max. Cu, 0.1% max. Mn, 0.1% max. Cr, 0.1% max. Zn, 0.1% max. Ti, balance substantially aluminum.
- 37. Coated aluminum stock, the coating comprised of:
- (a) a layer of non-porous aluminum oxide bonded to a surface of said stock; and
- (b) a functionalized layer of an organic monomeric phosphorus-containing compound chemically bonded to a surface of said oxide layer.
- 38. The coated aluminum stock in accordance with claim 37 wherein said oxide and the functionalized layer have an atomic weight ratio of phosphorus to aluminum of 0.001 to 0.5.
- 39. The coated aluminum stock in accordance with claim 37 wherein said aluminum oxide layer is at least 98 wt. % aluminum oxide.
- 40. The coated aluminum stock in accordance with claim 37 wherein said oxide layer results from anodization of said base layer.
- 41. The coated aluminum stock in accordance with claim 37 wherein said oxide layer has a thickness of 100 to 5000 .ANG..
- 42. The coated aluminum stock in accordance with claim 37 wherein said oxide layer has a thickness of 200 to 1000 .ANG..
- 43. The coated aluminum stock in accordance with claim "wherein said functionalized layer has a thickness of less than 200.ANG..
- 44. The coated aluminum stock in accordance with claim 37 wherein said functionalized layer has a thickness of less than 100.ANG..
- 45. The coated aluminum stock in accordance with claim 37 wherein said functionalized layer has a thickness of less than 30.ANG..
- 46. The coated aluminum stock in accordance with claim 37 wherein said oxide and the functionalized layer have an atomic weight ratio of phosphorus to aluminum of 0.02 to 0.2.
- 47. The coated aluminum stock in accordance with claim 40 wherein said oxide layer is produced in a range of 13.8 to 14.2 .ANG./V.
- 48. The coated aluminum stock in accordance with claim 40 wherein the functionalized layer is comprised of the reaction product of an acid selected from monomeric phosphonic and phosphinic acid with aluminum oxide.
- 49. The coated aluminum stock in accordance with claim 37 wherein the aluminum substrate is sheet stock fabricated from an aluminum alloy containing magnesium or manganese, or both.
- 50. The coated aluminum stock in accordance with claim 49 wherein the sheet stock is selected from an alloy containing 4 to 5% Mg, 0.2 to 0.5% Mn, 0.2% max. Si, 0.35% max. Fe, 0.15% max. Cu, 0.1% max. Cr, 0.25% max. Zn, 0.1% max. Ti, the balance substantially aluminum, and an alloy containing 2.2 to 2.8% Mg, silicon + iron not exceeding 0.45%, 0.1% max. Cu, max. Cu, 0.1% max. Mn, 0.1% max. Cr, 0.1% max. Zn, 0.1% max. Ti, balance substantially aluminum and formed into ends for beverage containers.
- 51. A coated aluminum sheet and foil stock suitable for food and beverage container ends, the coating on said stock comprised of a layer of a non-porous aluminum oxide thereon, said porous layer having chemically bonded to a surface thereof, a functionalized layer of an organic monomeric phosphorus-containing compound.
- 52. The coated aluminum stock in accordance with claim 51 wherein said coating has an atomic weight ratio of phosphorus to aluminum of 0.001 to 0.5.
- 53. The coated aluminum stock in accordance with claim 51 wherein said aluminum oxide layer is at least 90 wt. % aluminum oxide.
- 54. The coated aluminum stock in accordance with claim 51 wherein said aluminum oxide layer is at least 95 wt. % aluminum oxide.
- 55. The coated aluminum stock in accordance with claim 51 wherein said oxide layer results from anodization of said sheet or foil stock.
- 56. The coated aluminum stock in accordance with claim 51 wherein said oxide layer has a density of 2.8 to 3.2 gms/cc.
- 57. The coated aluminum stock in accordance with claim 51 wherein said oxide layer has a thickness of 100 to 5000.ANG..
- 58. The coated aluminum stock in accordance with claim 51 wherein said oxide layer has a thickness of 400 to 1000.ANG..
- 59. The coated aluminum stock in accordance with claim 51 wherein said functionalized layer has a thickness of less than 200.ANG..
- 60. The coated aluminum stock in accordance with claim 51 wherein said functionalized layer has a thickness of less than 100.ANG..
- 61. The coated aluminum stock in accordance with claim 51 wherein said functionalized layer has a thickness of less than 30.ANG..
- 62. The coated aluminum stock in accordance with claim 55 wherein said anodization is carried out in a water containing solution having a monomeric phosphorus-containing acid selected from phosphinic and phosphonic acids and mixtures thereof.
- 63. The coated aluminum stock in accordance with claim 55 wherein said acid resistant functionalized layer which protects said oxide layer from dissolution during said anodization.
- 64. The coated aluminum stock in accordance with claim 51 wherein said coating has an atomic weight ratio of phosphorus to aluminum of 0.02 to 0.2.
- 65. The coated aluminum stock in accordance with claim 55 wherein said oxide layer is produced at less than 25 .ANG./V.
- 66. The coated aluminum stock in accordance with claim 55 wherein said oxide layer is produced in a range of 12 to 16 .ANG./V.
- 67. The coated aluminum stock in accordance with claim 55 wherein said oxide layer is produced in a range of 13.8 to 14.2 .ANG./V.
- 68. The coated aluminum stock in accordance with claim 55 wherein said oxide layer is produced at a weight gain of less than 0.9 mg/coulomb.
- 69. The coated aluminum stock in accordance with claim 55 wherein said oxide layer is less than 0.9 mg/coulomb.
- 70. The coated aluminum stock in accordance with claim 55 wherein said oxide layer is in the range of 0.03 to 0.2 mg/coulomb.
- 71. The coated aluminum stock in accordance with claim 55 wherein said oxide layer is in the range of 0.08 to 0.01 mg/coulomb.
- 72. The coated aluminum stock in accordance with claim 55 wherein the functionalized layer is comprised of the reaction product of an acid selected from monomeric phosphonic and phosphinic acid with aluminum oxide.
- 73. The coated aluminum stock in accordance with claim 72 wherein the functionalized layer is comprised of the reaction product of phosphonic acid and aluminum oxide and the phosphonic acid has the formula RPO(OH).sub.2 where R is a 2-30 carbon-containing monomeric radical.
- 74. The coated aluminum stock in accordance with claim 72 wherein the functionalized layer is comprised of the reaction product of phosphinic acid and aluminum oxide and the phosphinic acid has the formula RR'PO(OH) where R' may be hydrogen and both R and R' may each be comprised of 2-30 carbon-containing monomeric radicals.
- 75. The coated aluminum stock in accordance with claim 51 wherein the aluminum substrate is sheet stock fabricated from an aluminum alloy containing magnesium or manganese, or both.
- 76. The coated aluminum stock in accordance with claim 51 wherein the sheet stock is selected from an alloy containing 4 to 5% Mg, 0.2 to 0.5% Mn, 0.2% max. Si, 0.35% max. Fe, 0.15% max. Cu, 0.1% max. Cr, 0.25% max. Zn, 0.1% max. Ti, the balance substantially aluminum, and an alloy containing 2.2 to 2.8% Mg, silicon + iron not exceeding 0.45%, 0.1% max. Cu, max. Cu, 0.1% max. Mn, 0.1% max. Cr, 0.1% max. Zn, 0.1% max. Ti, balance substantially aluminum and formed into ends for beverage containers.
- 77. Coated aluminum stock, the coating comprised of:
- (a) a layer of non-porous aluminum oxide bonded to a surface of said stock, the oxide layer having a density of 2.8 to 3.2 gms/cc, a thickness in the range of 100 to 5000.ANG., being greater than 95 wt. % aluminum oxide, the oxide layer resulting from anodization in a monomeric phosphorus-containing acid selected from phosphonic and phosphinic acid produced at 12 to 16.ANG./V and at a weight gain of 0.03 to 0.2 mg/coulomb; and
- (b) a functionalized layer of an organic monomeric phosphorus-containing compound chemically bonded to a surface of said oxide layer, the oxide layer and the functionalized layer having a ratio of phosphorus to aluminum in the range of 0.01 to 0.5.
- 78. The coated stock in accordance with claim 77 wherein the aluminum stock is selected from essentially, aluminum and an aluminum alloy containing magnesium or manganese, or both.
- 79. The coated stock in accordance with claim 78 wherein sheet stock fabricated from an aluminum alloy selected from an alloy containing 4 to 5% Mg, 0.2 to 0.5% M, 0.2% max. Si, 0.35% max. Fe, 0.15% max. Cu, 0.1% max. Cr, 0.25% max. Zn, 0.1% max. Ti, the balance substantially aluminum, and an alloy containing 2.2 to 2.8% Mg, silicon + iron not exceeding 0.45%, 0.1% max. Cu, 0.1% max. Mn, 0.1% max. Cr. 0.1% max. Zn, 0.1% max. Ti, balance substantially aluminum.
Parent Case Info
This application is a division of application Ser. No. 07/397,281, filed Aug. 23, 1989, now U.S. Pat. No. 5,032,237.
US Referenced Citations (11)
Foreign Referenced Citations (2)
Number |
Date |
Country |
3305354 |
Aug 1984 |
DEX |
83006639 |
Feb 1983 |
JPX |
Non-Patent Literature Citations (1)
Entry |
Application Ser. No. 07/624,793, Weiserman et al. |
Divisions (1)
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Number |
Date |
Country |
Parent |
397281 |
Aug 1989 |
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