Claims
- 1. A coating composition comprising: (a) a functionalized hydrogenated high molecular weight copolymer comprising 50%-85% at least one repeating unit derived from a conjugated diene monomer; and an active hydrogen-bearing, or ethylenic unsaturated or hydrolyzable group-bearing monomer, or graft-linked compound, or combinations thereof; said copolymer curable with either (b) heat or radiation or said coating composition contains (c) a curing component comprising at least one isocyanate group; or a carbodiimide compound; an aldehyde source, an amino resin, or combinations thereof optionally with heat; and (c) a carrier liquid.
- 2. A coating composition according to claim 1, wherein the conjugated diene monomer is 1,3-butadiene; 2,3-dimethylbutadiene; 1,3-pentadiene; 1,3-hexadiene; 2,4-hexadiene; 1,3-heptadiene; piperylene; or isoprene.
- 3. A coating composition according to claim 2, wherein the conjugated diene is 1,3-butadiene.
- 4. A coating composition according to claim 2, wherein said copolymer further comprises incorporated therein an unsaturated nitrile monomer corresponding to the following formula:
- 5. A coating composition according to claim 4, wherein the unsaturated nitrile is acrylonitrile or methacrylonitrile.
- 6. A coating composition according to claim 4, wherein the functionalized hydrogenated copolymer has an unsaturation level between about 0.1 and 20 mole percent.
- 7. A coating composition according to claim 6, wherein the unsaturation level is between about 3 and 7 mole percent.
- 8. A coating composition according to claim 1, wherein the carrier liquid is water, or an organic solvent, or a combination thereof.
- 9. A coating composition according to claim 8, wherein said organic solvent is methyl acetate, n-butyl acetate, t-butyl acetate, acetone, ethyl acetate, isopropyl acetate, isobutyl acetate, tetrahydrofuran, n-methyl pyrrolidone, heptane, dimethylformamide, diisobutyl ketone, methyl isoamyl ketone, monochlorotoluene, naphtha, hexane, xylene, toluene, MEK, or MIBK.
- 10. The coating composition according to claim 4, wherein said curing component is a diisocyanate, polyisocyanate, or a polyisocyanate prepolymer.
- 11. The coating composition according to claim 10, wherein said curing component is 1,6-hexamethylene diisocyanate; 1,8-octamethylene diisocyanate; 1,12-dodecamethylene diisocyanate;2,2,4-trimethylhexamethylene diisocyanate, and the like; 3,3′-diisocyanatodipropyl ether; 3-isocyanatomethyl-3,5,5′-trimethylcyclodexyl isocyanate; hexamethylene diisocyanate; 4,4′-methylenebis(cyclohexyl isocyanate); cyclopentalene-1,3-diisocyanate;cyclodexylene-1,4,-diisocyanate; methyl 2,6-diisocyanatocaprolate; bis-(2-isocyanatoethyl)-fumarate; 4-methyl-1,3-diisocyanatocyclohexane; trans-vinylene diisocyanate and similar unsaturated polyisocyanates; 4,4′-methylene-bis(cyclohexylisocyanate) methane diisocyanates; bis-(2-isocyanatoethyl) carbonate N,N′,N″-tris-(6-isocyanatohexamethylene)biuret, toluene diisocyanates; xylene diisocyanates;dianisidine diisocyanate; 4,4′-diphenylmethane diisocyanate; 1-ethoxy-2,4-diisocyanatobenzene; 1-chloro-2,4-diisocyanatobenzene; bis(4-isocyanatophenyl)methane; tris(4-isocyanatophenyl)methane; naphthalene diisocyanates; 4,4′-biphenyl diisocyanate; m-phenylene diisocyanate; p-phenylene diisocyanate; 3,3′-dimethyl-4,4′-biphenyl diisocyanate; p-isocyanatobenzoyl isocyanate; tetrachloro-1,3-phenylene diisocyanate; 2,4-toluene diisocyanate,2,6-toluene diisocyanate, 4,4′-isocyanate,bis-[isocyanatopheny]methane polymethylene poly(phenyl isocyanate), or isophrone diisocyanate, or mixtures thereof.
- 12. The coating composition according to claim 10, wherein said curing component is present at from about 3 to about 30 wt. parts per 100 wt. parts of said functionalized hydrogenated copolymer.
- 13. The coating composition according to claim 11, wherein said curing component is present at from about 8 to about 15 wt. parts per 100 wt. parts of said functionalized hydrogenated copolymer.
- 14. The coating composition according to claim 1, wherein said curing component is an organosilane which contains an isocyanate group and another group capable of forming crosslinks.
- 15. The coating composition according to claim 14, wherein said another group capable of forming crosslinks is a halogen, hydroxy, alkoxy, or acyloxy group.
- 16. The coating composition according to claim 14, wherein said group capable of forming crosslinks is an epoxy-bearing group, a mercapto group, a mercapto-bearing group, a vinyl group, a vinyl-bearing group, another isocyanate group, an isocyanate-bearing group, an ureido group, an ureido-bearing group, an imidazole group or an imidazole-bearing group.
- 17. The coating composition according to claim 14, wherein said organosilane is an isocyanate-alkoxy silane.
- 18. The coating composition according to claim 1, wherein said conjugated diene is 1,3-butadiene; 2,3-dimethylbutadiene; 1,3-pentadiene; 1,3-hexadiene; 2,4-hexadiene; 1,3-heptadiene; piperylene; or isoprene or combinations thereof, and comprising an unsaturated nitrile corresponding to the following formula:
- 19. The coating composition according to claim 18, wherein said functional group containing monomer is present and is a carboxyl group-containing monomer, or a hydroxy acrylate monomer.
- 20. The coating composition according to claim 4, wherein said carrier liquid is an organic solvent selected from the group consisting of methyl acetate, n-butyl acetate, t-butyl acetate, acetone, isopropyl acetate, isobutyl acetate, tetrahydrofuran, n-methyl pyrrolidone, heptane, dimethylformamide, diisobutyl ketone, methyl isoamyl ketone, monochlorotoluene, parachlorobenzotrifluoride, or vm&p naphtha, and any combination thereof.
- 21. The coating composition according to claim 20, wherein said solvent is acetone, methyl acetate, or parachlorobenzotrifluoride, or any combination thereof.
- 22. The coating composition according to claim 4, wherein said curing component contains said at least one isocyanate group and is an aliphatic or aromatic diisocyanate, polyisocyanate, or polyisocyanate prepolymer.
- 23. The coating composition according to claim 1,wherein said functionalized hydrogenated copolymer comprises said at least one repeat unit derived from said conjugated diene, an unsaturated nitrile monomer and said graft-linked compound.
- 24. The coating composition according to claim 23, wherein said graft-linked compound is maleic anhydride or itaconic anhydride, or monomethylol resole.
- 25. The coating composition according to claim 1, wherein said coating composition includes at least one pigment.
- 26. The coating composition according to claim 4, wherein said coating composition includes at least one pigment.
- 27. The coating composition according to claim 10, wherein said coating composition includes at least one pigment.
- 28. The coating composition according to claim 18, wherein said coating composition includes at least one pigment.
- 29. The coating composition according to claim 21, wherein said coating composition includes at least one pigment.
- 30. A method for coating a substrate, comprising:
applying a coating composition to an elastomeric substrate, said coating comprising (a) a functionalized hydrogenated copolymer comprising at least one repeating unit derived from a conjugated diene monomer, and an active hydrogen-containing, or ethylenic unsaturated, or hydrolyzable functional group-containing monomer, or graft-linked compound, or combinations thereof, (b) heating or irradiating said coating or curing with (c) a curing component comprising at least one isocyanate group or a carbodiimide compound or an amino resin, aldehyde or a combination thereof, curing the coating composition by allowing said coating to dry at either ambient or elevated conditions or a combination thereof.
- 31. A method for coating a substrate according to claim 30, wherein the conjugated diene is 1,3-butadiene; 2,3-dimethylbutadiene; 1,3-pentadiene; 1,3-hexadiene; 2,4-hexadiene; 1,3-heptadiene; piperylene; or isoprene.
- 32. A method for coating a substrate according to claim 31, wherein the conjugated diene is 1,3-butadiene.
- 33. A method for coating a substrate according to claim 31, wherein the unsaturated nitrile corresponds to the following formula:
- 34. A method for coating a substrate according to claim 30, wherein the unsaturated nitrile is acrylonitrile or methacrylonitrile.
- 35. A method for coating a substrate according to claim 33, wherein the functionalized hydrogenated copolymer has an unsaturation level between about 0.1 and 20 mole percent.
- 36. A method for coating a substrate according to claim 35, wherein the unsaturation level is between about 3 and 7 mole percent.
- 37. A method for coating a substrate according to claim 30, wherein the solvent is water, or an organic solvent, or a combination thereof.
- 38. A method for coating a substrate according to claim 37, wherein said organic solvent is methyl acetate, n-butyl acetate, t-butyl acetate, acetone, ethyl acetate, isopropyl acetate, isobutyl acetate, tetrahydrofuran, n-methyl pyrrolidone, heptane, dimethylformamide, diisobutyl ketone, methyl isoamyl ketone, monochlorotoluene, naphtha, hexane, xylene, toluene, MEK, or MIBK.
- 39. A method for coating a substrate according to claim 33, wherein said curing component is a diisocyanate, polyisocyanate, or a polyisocyanate prepolymer.
- 40. A method for coating a substrate according to claim 39, wherein said curing component is 1,6-hexamethylene diisocyanate;1,8-octamethylene diisocyanate;1,12-dodecamethylene diisocyanate;2,2,4-trimethylhexamethylene diisocyanate, and the like; 3,3′-diisocyanatodipropyl ether; 3-isocyanatomethyl-3,5,5′-trimethylcyclodexyl isocyanate; hexamethylene diisocyanate; 4,4′-methylenebis(cyclohexyl isocyanate); cyclopentalene-1,3-diisocyanate;cyclodexylene-1,4,-diisocyanate; methyl 2,6-diisocyanatocaprolate; bis-(2-isocyanatoethyl)-fumarate; 4-methyl-1,3-diisocyanatocyclohexane; trans-vinylene diisocyanate and similar unsaturated polyisocyanates; 4,4′-methylene-bis(cyclohexylisocyanate) methane diisocyanates; bis-(2-isocyanatoethyl) carbonate N,N′,N″-tris-(6-isocyanatohexamethylene)biuret, toluene diisocyanates; xylene diisocyanates;dianisidine diisocyanate; 4,4′-diphenylmethane diisocyanate; 1-ethoxy-2,4-diisocyanatobenzene;1-chloro-2,4-diisocyanatobenzene; bis(4-isocyanatophenyl)methane; tris(4-isocyanatophenyl)methane; naphthalene diisocyanates; 4,4′-biphenyl diisocyanate; m-phenylene diisocyanate; p-phenylene diisocyanate; 3,3′-dimethyl-4,4′-biphenyl 2diisocyanate; p-isocyanatobenzoyl isocyanate; tetrachloro-1,3-phenylene diisocyanate; 2,4-toluene diisocyanate,2,6-toluene diisocyanate, 4,4′-isocyanate,bis-[isocyanatopheny]methane polymethylene poly(phenyl isocyanate), or isophrone diisocyanate, or mixtures thereof.
- 41. A method for coating a substrate according to claim 39, wherein said curing component is present at from about 3 to about 30 wt. parts per 100 wt. parts of said functionalized hydrogenated copolymer.
- 42. A method for coating a substrate according to claim 40, wherein said curing component is present at from about 8 to about 15 wt. parts per 100 wt. parts of said functionalized hydrogenated copolymer.
- 43. A method for coating a substrate according to claim 30, wherein said curing component is an organosilane which contains an isocyanate group and another group capable of forming crosslinks.
- 44. A method for coating a substrate according to claim 43, wherein said another group capable of forming crosslinks is a halogen, hydroxy, alkoxy, or acyloxy group.
- 45. A method for coating a substrate according to claim 43, wherein said group capable of forming crosslinks is an epoxy-bearing group, a mercapto group, a mercapto-bearing group, a vinyl group, a vinyl-bearing group, another isocyanate group, an isocyanate-bearing group, an ureido group, an ureido-bearing group, an imidazole group or an imidazole-bearing group.
- 46. A method for coating a substrate according to claim 43, wherein said organosilane is an isocyanate-alkoxy silane.
- 47. A method for coating a substrate according to claim 30, wherein said conjugated diene is 1,3-butadiene; 2,3-dimethylbutadiene; 1,3-pentadiene; 1,3-hexadiene; 2,4-hexadiene; 1,3-heptadiene; piperylene; or isoprene, wherein said unsaturated nitrile corresponds to the following formula:
- 48. A method for coating a substrate according to claim 47, wherein said functional group containing monomer is utilized and is a carboxyl group containing monomer, or an acrylate containing monomer.
- 49. A method for coating a substrate according to claim 43, wherein said solvent is methyl acetate, n-butyl acetate, t-butyl acetate, acetone, isopropyl acetate, isobutyl acetate, tetrahydrofuran, n-methyl pyrrolidone, heptane, dimethylformamide, diisobutyl ketone, methyl isoamyl ketone, monochlorotoluene, parachlorobenzotrifluoride, or vmnp naphtha, or any combination thereof.
- 50. A method for coating a substrate according to claim 49, wherein said solvent is acetone, methyl acetate, or parachlorobenzotrifluoride, or any combination thereof.
- 51. A method for coating a substrate according to claim 33 wherein said curing component contains said at least one isocyanate group and is an aliphatic or aromatic diisocyanate, polyisocyanate, or polyisocyanate prepolymer.
- 52. A method for coating a substrate according to claim 30, wherein said functionalized hydrogenated copolymer comprises said at least one repeat unit derived from said conjugated diene, said unsaturated nitrile monomer and said graft-linked compound.
- 53. A method for coating a substrate according to claim 52, wherein said graft-linked compound is maleic anhydride or itaconic anhydride.
- 54. A method for coating a substrate according to claim 30, wherein said coating composition includes at least one pigment.
- 55. A method for coating a substrate according to claim 33, wherein said coating composition includes at least one pigment.
- 56. A method for coating a substrate according to claim 39, wherein said coating composition includes at least one pigment.
- 57. A method for coating a substrate according to claim 47, wherein said coating composition includes at least one pigment.
- 58. A method for coating a substrate according to claim 50, wherein said coating composition includes at least one pigment.
- 59. A method for coating a substrate according to claim 30, wherein said rubber substrate has been cured.
- 60. A method for coating a substrate according to claim 30, wherein said rubber substrate is uncured.
- 61. A coated elastomer substrate, comprising:
said substrate having a surface; and a coating on at least a portion of said substrate surface, said coating derived from a coating composition comprising (a) a functionalized hydrogenated copolymer comprising at least one repeating unit derived from a conjugated diene monomer; and a functional group containing monomer, or graft-linked compound, or combination thereof, (b) a curing component comprising at least one isocyanate group or a carbodiimide compound or an aldehyde or an amino resin, or a combination thereof, and (c) a solvent.
- 62. A coated substrate according to claim 61, wherein said substrate is a tire, bumper, wiper blade, vibration isolator, rubber mount, rail track pad fastener, helicopter rotor bearing, chassis mount, gasket, heel, shoe sole, printing roll, belt, hose, or fuel tank.
- 63. A coated substrate according to claim 61, wherein said substrate is an elastomer, an elastomer bonded to metal, a thermoplastic, a thermoset, ceramic, or a combination thereof.
- 64. A coated substrate according to claim 63, wherein said substrate is an elastomer bonded to metal.
- 65. A coated substrate according to claim 63, wherein said substrate is an elastomer.
- 66. A coated substrate according to claim 61, wherein said coating composition is colored.
- 67. A coated substrate according to claim 61, wherein said coating composition is colored due to the presence of at least one pigment therein.
- 68. A coated substrate according to claim 67, wherein said color is black, tan, brown, green, yellow, blue, red, or shades or combinations thereof.
- 69. A coated substrate according to claim 61, wherein said coating composition has a solid color, or a random pattern of color.
- 70. A coated substrate according to claim 61, wherein said coating composition has a gloss level of from about 3% to about 70% at a 60 degree angle when measured according to ASTMD-523 or ASTMD-2457.
- 71. A coated substrate according to claim 61, wherein said substrate is a tire and wherein said at least one portion of said tire surface is at least a portion of a sidewall or a tread, or combinations thereof.
- 72. A coated substrate according to claim 61, wherein said conjugated diene is 1,3-butadiene; 2,3-dimethylbutadiene; 1,3-pentadiene; 1,3-hexadiene; 2,4-hexadiene; 1,3-heptadiene; piperylene; or isoprene or combinations thereof, wherein said unsaturated nitrile corresponds to the following formula:
- 73. A coated substrate according to claim 72, wherein said functional group containing monomer is present and is a carboxyl group containing monomer, or an acrylate containing monomer.
CROSS REFERENCE
[0001] This application is a continuation-in-part of U.S. Ser. No. 10/007,268, filed on Nov. 9, 2001, entitled “Room Temperature Curable X-HNBR Coating.”
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10007268 |
Nov 2001 |
US |
Child |
10094203 |
Mar 2002 |
US |