Claims
- 1. A thermoformable polyoxetane-polyester polymer coating composition, comprising:
a) a polymer of at least one polyoxetane block having repeating units derived from polymerizing at least one oxetane monomer having at least one pendant —CH2—O—(CH2)n—Rf group, and at least one polyester block having a molecular weight above 100, wherein a hydroxyl group of said polyoxetane block is prereacted with a dicarboxylic acid having from about 3 to about 30 carbon atoms or an anhydride thereof to form an ester linkage and a carboxylic acid terminal group, and thereafter said terminal carboxylic acid group is reacted with ester forming monomers or a preformed polyester to form the polyoxetane-polyester polymer, and said Rf group, independently, on each repeating unit, being a linear or branched alkyl group of from 1 to about 20 carbon atoms with a minimum of 25% of the hydrogen atoms of said alkyl group being replaced by F, and optionally up to all of the remaining H atoms being replaced by I, Cl, or Br; and n being from 1 to about 5, and b) a lower alkyl etherified melamine-formaldehyde curing resin having lower alkyl groups etherified with melamine-formaldehyde.
- 2. The thermoformable coating composition of claim 1, wherein said etherified melamine formaldehyde comprises melamine formaldehyde etherified with at least three alkyl groups.
- 3. The thermoformable coating composition of claim 1, wherein the etherified melamine formaldehyde comprises a melamine-formaldehyde etherified with two or more different lower alkyl groups, and wherein the alkyl group contains from 1 to 6 carbon groups.
- 4. The thermoformable coating composition of claim 1, wherein said melamine formaldehyde is etherified with alkyl groups, independently, containing from 1 to 4 carbon atoms.
- 5. The thermoformable coating composition of claim 3, wherein the different alkyl groups differ by at least three carbon atoms.
- 6. The thermoformable coating composition of claim 1, wherein said composition is partially cured in a first stage at a low temperature, and wherein said partially cured composition is capable of being cured in a second stage at a higher temperature than 180° F.
- 7. The thermoformable coating composition according to claim 4, wherein said polyoxetane block has a DP of from about 6 to about 100, wherein n is 1 to about 3, wherein Rf, independently, has a minimum of 50% of the hydrogen atoms replaced by F; and wherein said dicarboxylic acid forming said ester linkage is oxalic acid, or malonic acid, or succinic acid, or glutaric acid, or adipic acid, or pimelic acid or, maleic acid, or fumaric acid, or cyclohexane diacid, or mixtures thereof.
- 8. The thermoforming coating composition of claim 7, wherein said polyoxetane block is a copolymer derived from copolymerization of said oxetane monomer and a cyclic ether comonomer having from 2 to about 4 carbon atoms in the ring, and wherein the amount of said cyclic ether comonomer is up to about 10% by weight based on the total weight of said comonomer and said oxetane monomer.
- 9. The thermoformable coating composition of claim 8, wherein said cyclic ether is tetrahydrofuran.
- 10. The thermoformable coating composition according to claim 9, wherein said amount of said alkyl etherified melamine-formaldehyde crosslinking resin is from about 20% to about 70% by weight based upon the total weight of said crosslinking resin and said polyoxetane-polyester block polymer, and wherein the amount of said polyoxetane prepolymer is from about 0.1 to about 10% by weight based upon the weight of said polyoxetane-polyester block polymer.
- 11. The thermoformable coating composition of claim 1, wherein the dicarboxylic acid prereacted with the polyoxetane block is adipic acid.
- 12. The thermoformable coating composition of claim 7, wherein the dicarboxylic acid prereacted with the polyoxetane block is adipic acid.
- 13. The thermoformable coating composition of claim 10, wherein the melamine formaldehyde is etherified with at least two different alkyl groups.
- 14. The thermoformable coating composition of claim 13, wherein said DP is from about 10 to about 50, wherein Rf is saturated alkyl and has a minimum of 75% of said H atoms replaced by F.
- 15. The thermoformable coating composition of claim 14, wherein the polyester block is formed from adipic acid, isophthalic acid or phthalic anhydride, or combinations thereof, and from 2,2-dimethyl-1,3-propanediol, trimethylol propane, and cyclohexane dimethanol.
- 16. The thermoformable coating composition of claim 7, wherein Rf is perfluorinated.
- 17. The thermoformable coating composition of claim 15, wherein Rf is perfluorinated.
- 18. A process for producing a thermoformable coating for application to a substrate comprising the steps of:
providing a preformed hydroxyl terminated polyoxetane of polymerized oxetane monomers having one or two pendant ether side chains terminated with fluorocarbon groups, wherein said pendant ether side chain has the formula —CH2—O—(CH2)n—Rf, wherein said Rf group, independently, is a linear or branched alkyl group of from 1 to about 20 carbon atoms with a minimum of 25% of the hydrogen atoms of said alkyl group being replaced by F, and optionally up to all of the remaining H atoms being replaced by I, Cl, or Br; and n being from 1 to about 5; esterifying the hydroxyl terminated polyoxetane with a dicarboxylic acid reactant derived from at least one dicarboxylic acid or anhydride to form an acid end group and subsequently esterifying said acid end group with ester forming monomers or a preformed polyester to form a polyoxetane-polyester polymer; mixing the polyoxetane-polyester polymer with an alkyl etherified melamine-formaldehyde crosslinking resin, reacting the polyoxetane-polyester polymer and said alkyl etherified melamine-formaldehyde crosslinking resin at a first temperature to form a partially cured thermoformable coating, and curing said partially cured thermoformable coating at a temperature higher than said first temperature.
- 19. The process of claim 18, wherein said etherified melamine formaldehyde comprises melamine formaldehyde etherified with at least three alkyl groups.
- 20. The process of claim 18, wherein the etherified melamine-formaldehyde is etherified with six alkyl groups.
- 21. The process of claim 18, wherein the etherified melamine formaldehyde comprises a melamine-formaldehyde etherified with two or more different lower alkyl groups.
- 22. The process of claim 21, wherein the mixed alkyl groups have a differential of at least 3 carbon atoms.
- 23. A process for forming a partially cured thermoformable laminate, the laminate process steps comprising:
providing a thermoformable coating composition comprising a polyoxetane-polyester polymer of a hydroxyl functional polyoxetane prepolymer esterified with a dicarboxylic acid or anhydride to form an acid end group, and subsequently esterifying said acid end group with ester forming monomers or a preformed polyester to form the polyoxetane-polyester polymer, and reacting said polyoxetane-polyester polymer with a lower alkyl etherified melamine-formaldehyde, said polyoxetane prepolymer comprising a polyoxetane having repeat units derived from polymerizing oxetane monomers having at least one pendant —CH2—O—(CH2)n—Rf group, with each n being, independently, 1 to 5; and each Rf being, independently, saturated or unsaturated, a linear or branched alkyl group of from 1 to about 20 carbon atoms with a minimum of 25% of the hydrogen atoms of said alkyl group being replaced by F, mixing the polyoxetane-polyester polymer with an alkyl etherified melamine-formaldehyde crosslinking resin at a temperature of less than about 180° F. to form a partially cured thermoformable coating layer, and applying the thermoformable coating layer to a substrate and forming a thermoformable laminate.
- 24. The laminate process of claim 23, wherein the coating applied to the substrate is partially cured at a temperature between about 120° F. and 180° F. to form the thermoformable coating.
- 25. The laminate process of claim 24, wherein said etherified melamine formaldehyde comprises melamine formaldehyde etherified with at least three alkyl groups, and wherein said alkyl group contains from 1 to 6 carbon atoms.
- 26. The laminate process of claim 25, wherein the partially cured thermoformable coating has an elongation extensibility of at least about 150% at 180° F.
- 27. The laminate process of claim 26, wherein the partially crosslinked thermoformable coating layer is capable of being cured at a temperature of from about 190° F. to about 300° F., wherein said dicarboxylic acid or anhydride etherifying said hydroxyl functional polyoxetane prepolymer is oxalic acid, or malonic acid, or succinic acid, or glutaric acid, or adipic acid, or pimelic acid or, maleic acid, or fumaric acid, or cyclohexane diacid, or mixtures thereof, wherein the polyoxetane has a DP of from about 6 to about 100, wherein n is 1 to about 3, and wherein Rf, independently, has a minimum of 50% of the hydrogen atoms replaced by F.
- 28. The laminate process of claims 27, wherein said polyoxetane block has a DP of from about 10 to about 50, and wherein Rf, independently, has a minimum of 75% of the hydrogen atoms replaced by F.
- 29. The laminate process of claim 28, wherein the polyoxetane prepolymer comprises a copolymer of said oxetane monomer and from 0.1% to 10% by weight cyclic ether having from 2 to 4 carbon atoms in the cyclic ring based on the total weight of said oxetane monomer and cyclic monomer, and wherein said amount of said alkyl etherified melamine-formaldehyde crosslinking resin is from about 10% to about 70% by weight based upon the total weight of said crosslinking resin and said polyoxetane-polyester polymer.
- 30. The laminate process of claim 29, wherein the cyclic monomer is tetrahydrofuran.
- 31. A laminate comprising:
a partially cured thermoformable coating applied to a substrate, the thermoformable coating comprising a polyoxetane-polyester polymer derived from a hydroxyl functional polyoxetane of polymerized oxetane monomers, the polyoxetane prereacted with a dicarxoylic acid or anhydride to form an ester linkage and a carboxylic acid end group, said acid end group subsequently esterified with ester forming monomers or a preformed polyester to form the polyoxetane-polyester polymer, the polyoxetane-polyester polymer being partially cured with a lower alkyl etherified melamine-formaldehyde crosslinker, wherein said oxetane monomer has a least one pendant —CH2—O—(CH2)n—Rf group, said Rf group, independently, on each repeating unit, being a linear or branched alkyl group of from 1 to about 20 carbon atoms with a minimum of 25% of the hydrogen atoms of said alkyl group being replaced by F, and optionally up to all of the remaining H atoms being replaced by I, Cl, or Br; and n being from 1 to about 5.
- 32. The laminate of claim 31, wherein said etherfied melamine formaldehyde comprises melamine formaldehyde etherfied with at least three alkyl groups wherein each alkyl group, independently, contains from 1 to 6 carbon atoms.
- 33. The laminate of claim 32, wherein wherein said polyoxetane block has a DP of from about 6 to about 100, wherein n is 1 to about 3, wherein Rf, independently, has a minimum of 50% of the hydrogen atoms replaced by F; and wherein said dicarboxylic acid forming said ester linkage is oxalic acid, or malonic acid, or succinic acid, or glutaric acid, or adipic acid, or pimelic acid or, maleic acid, or fumaric acid, or cyclohexane diacid, or mixtures thereof.
- 34. The laminate of claim 33, wherein said polyoxetane block is a copolymer derived from copolymerization of said oxetane monomer and a cyclic ether comonomer having from 2 to about 4 carbon atoms in the ring, and wherein the amount of said cyclic ether comonomer is up to about 10% by weight based on the total weight of said comonomer and said oxetane monomer.
- 35. The laminate of claim 34, wherein said amount of said alkyl etherified melamine-formaldehyde crosslinking resin is from about 10% to about 70% by weight based upon the total weight of said crosslinking resin and said polyoxetane-polyester polymer, and wherein the amount of said polyoxetane prepolymer is from about 0.1 to about 10% by weight based upon the weight of said polyoxetane-polyester polymer.
- 36. The laminate of claim 31, wherein the laminate is cured and is an article of furniture.
- 37. The laminate of claim 35, wherein the laminate is cured and is an article of furniture.
- 38. The laminate of claim 31, wherein the laminate is cured and is an article of cabinetry.
- 39. The laminate of claim 35, wherein the laminate is cured and is an article of cabinetry.
CROSS REFERENCE
[0001] This is a continuation-in-part of prior application Ser. No. 09/698,554, filed Oct. 27, 2000 entitled CURED POLYESTER CONTAINING FLUORINATED SIDE CHAINS, which in turn is a continuation-in-part of prior application Ser. No. 09/384,464, filed Aug. 27, 1999, entitled POLYESTER WITH PARTIALLY FLUORINATED SIDE CHAINS, which in turn is a continuation-in-part of prior application Ser. No. 09/244,711, filed Feb. 4, 1999, entitled EASILY CLEANABLE POLYMER LAMINATES, which in turn is a continuation in part of prior application Ser. No. 09/035,595, filed Mar. 05, 1998, entitled EASILY CLEANABLE POLYMER LAMINATES, all four of which are herein incorporated by reference.
Continuation in Parts (4)
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Number |
Date |
Country |
Parent |
09698554 |
Oct 2000 |
US |
Child |
10091754 |
Mar 2002 |
US |
Parent |
09384464 |
Aug 1999 |
US |
Child |
09698554 |
Oct 2000 |
US |
Parent |
09244711 |
Feb 1999 |
US |
Child |
09384464 |
Aug 1999 |
US |
Parent |
09035595 |
Mar 1998 |
US |
Child |
09244711 |
Feb 1999 |
US |