Claims
- 1. A method of producing an article comprising the steps of:
- (a) contacting a substrate with a polymer to form a substrate/polymer combination, the polymer comprising (i) at least about 10 weight percent olefinically unsaturated, carboxylic acid ester monomers, (ii) a backbone and (iii) a plurality of pendant functional groups, the pendant functional groups having the formula selected from the group consisting of ##STR14## wherein R.sub.1 is a divalent radical; and
- R.sub.2 is selected from the group consisting of hydrogen and alkyl, arylalkyl, alkyloxy aryloxy, arylalkyloxy, alkenyl, alkenyloxy, alkynyl, alkynyloxy, and arylalkenyl radicals; and
- (b) curing the polymer by exposing the substrate/polymer combination to radiation having a wavelength within the range of about 10.sup.-3 to about 400 nm.
- 2. The method of claim 1 wherein the radiation is ultraviolet light.
- 3. The method of claim 2 wherein the ultraviolet light has a wavelength in the range of about 10 to about 300 nm.
- 4. The method of claim 2 wherein the ultraviolet light has a wavelength in the range of about 10 to about 250 nm.
- 5. The method of claim 2 wherein the ultraviolet light has a wavelength of about 10 to about 225 nm.
- 6. The method of claim 2 wherein the ultraviolet light has a wavelength of about 225 to about 265 nm.
- 7. The method of claim 1 wherein the substrate/polymer combination is exposed to the radiation for a period of time of up to about 15 minutes.
- 8. The method of claim 1 wherein the polymer is a constituent of a solution.
- 9. The method of claim 1 wherein the polymer is a constituent of a colloid.
- 10. The method of claim 9 wherein the colloid has a pH of about 2 to about 8.
- 11. The method of claim 1 wherein R.sub.2 is hydrogen or an alkyl group containing up to about 10 atoms in addition to any hydrogen atoms present in the alkyl group.
- 12. The method of claim 1 wherein pendant functional groups have the formula ##STR15## wherein Y is selected from the group consisting of O, S, and NR.sub.4 ;
- Z is selected from the group consisting of O, S, and NR.sub.4 :
- R.sub.3 is a divalent organic radical at least 2 atoms in length; and
- R.sub.4 is selected from the group consisting of H and hydrocarbyl radicals having up to 6 carbon atoms.
- 13. The method of claim 12 wherein Y is O.
- 14. The method of claim 12 wherein Z is O.
- 15. The method of claim 12 wherein R.sub.3 comprises up to about 40 atoms.
- 16. The method of claim 12 wherein R.sub.3 comprises up to about 20 atoms.
- 17. The method of claim 12 wherein R.sub.3 is selected from the group consisting of substituted and unsubstituted alkylenes, polyoxyalkylenes, polythiolalkylenes, and polyaminoalkylenes.
- 18. The method of claim 12 wherein R.sub.3 is selected from the group consisting of ##STR16## wherein m is 0 or 1;
- n is 0 or 1;
- R.sub.6 is a divalent organic radical at least one atom in length; and
- R.sub.7 is a divalent organic radical at least one atom in length.
- 19. The method of claim 1 wherein R.sub.2 contains up to about 6 carbon atoms.
- 20. The method of claim 19 wherein R.sub.2 is methyl.
- 21. The method of claim 1 wherein the substrate is a textile.
- 22. The method of claim 1 further comprising the step of forming the backbone by combining one or more olefinically unsaturated monomers.
- 23. The method of claim 22 wherein at least one of the olefinically unsaturated monomers has the formula ##STR17## wherein R.sub.9 and R.sub.10 are each independently selected from the group consisting of hydrogen, halo, thio, and monovalent organic radicals.
- 24. The method of claim 23 wherein at least one of the monomers is selected from the group consisting of (a) monocarboxylic acid esters, (b) polycarboxylic acid esters, (c) salts of (a) and (b), and (d) mixtures thereof.
- 25. The method of claim 23 wherein at least one of the monomers is selected from the group consisting of acrylic acid, itaconic acid, hydroxyethyl acrylate, acrylonitrile, and acrylamide.
- 26. The method of claim 1 wherein the polymer comprises at least about 0.5 weight percent of the pendant functional groups.
- 27. The method of claim 1 wherein the polymer comprises up to about 20 weight percent of the pendant functional groups.
- 28. A method of producing an article comprising the steps of:
- (a) reacting one or more monomers with at least one polymerizable functional monomer to form a polymer, the polymer comprising at least about 10 weight percent olefinically unsaturated, carboxylic acid ester monomers, and the polymerizable functional monomer having the formula: ##STR18## wherein R.sub.1 is a divalent organic radical of at least 3 atoms in length;
- R.sub.2 is selected from the group consisting of hydrogen and alkyl, arylalkyl, alkyloxy, aryloxy, arylalkyloxy, alkenyl, alkenyloxy, alkynyl, alkynyloxy, and arylalkenyl radicals;
- R.sub.9 is selected from the group consisting of hydrogen, halo, thio, and monovalent organic radicals;
- R.sub.10 is selected from the group consisting of hydrogen, halo, thio, and monovalent organic radicals;
- (b) contacting the polymer with a substrate to form a substrate/polymer combination; and
- (c) curing the substrate/polymer combination by exposing the substrate/polymer combination to ultraviolet light.
- 29. The method of claim 28 wherein the polymerizable functional monomer has the formula ##STR19## wherein Y is selected from the group consisting of O, S, and NR.sub.4 ;
- Z is selected from the group consisting of O, S, and NR.sub.4 ;
- R.sub.3 is a divalent organic radical having at least two atoms; and
- R.sub.4 is selected from the group consisting of hydrogen and hydrocarbyl radicals containing up to about 6 carbon atoms.
- 30. The method of claim 28 wherein the polymerizable functional monomer has the formula selected from the group consisting of ##STR20##
- 31. A method of curing a polymer comprising the step of exposing the polymer to radiation having a wavelength within the range of about 10.sup.-3 to about 400 nm, the polymer comprising (i) a backbone, (ii) at least about 10 weight percent olefinically unsaturated, carboxylic acid ester monomers, and (iii) a plurality of pendant functional groups, the pendant functional groups having the formula selected from the group consisting of ##STR21## wherein R.sub.1 is a divalent radical; and
- R.sub.2 is selected from the group consisting of hydrogen and alkyl, arylalkyl, alkyloxy, aryloxy, arylalkyloxy, alkenyl, alkenyloxy, alkynyl, alkynyloxy, and arylalkenyl radicals.
- 32. The method of claim 31 wherein the radiation is ultraviolet light.
- 33. The method of claim 31 wherein R.sub.2 is hydrogen or an alkyl group containing up to about 10 atoms in addition to any hydrogen atoms present in the alkyl group.
- 34. The method of claim 31 wherein pendant functional groups have the formula ##STR22## wherein Y is selected from the group consisting of O, S, and NR.sub.4 ;
- Z is selected from the group consisting of O, S, and NR.sub.4 ;
- R.sub.3 is a divalent organic radical at least 2 atoms in length; and
- R.sub.4 is selected from the group consisting of H and hydrocarbyl radicals having up to 6 carbon atoms.
- 35. The method of claim 31 further comprising the step of forming the backbone by combining one or more olefinically unsaturated monomers.
- 36. The method of claim 35 wherein at least one of the olefinically unsaturated monomers has the formula ##STR23## wherein R.sub.9 and R.sub.10 are each independently selected from the group consisting of hydrogen, halo, thio, and monovalent organic radicals.
- 37. A method of curing a polymer comprising the step of exposing the polymer to radiation having a wavelength within the range of about 10.sup.-3 to about 400 nm, the polymer comprising at least about 10 weight percent olefinically unsaturated, carboxylic acid ester monomers, and being formed by reacting one or more monomers with at least one polymerizable functional monomer having the formula: ##STR24## wherein R.sub.1 is a divalent radical;
- R.sub.9 and R.sub.10 are each independently selected from the group consisting of hydrogen, halo, thio, and monovalent organic radicals; and
- R.sub.2 is selected from the group consisting of hydrogen and alkyl, arylalkyl, alkyloxy, aryloxy, arylalkyloxy, alkenyl, alkenyloxy, alkynyl, alkynyloxy, and arylalkenyl radicals.
- 38. The method of claim 37 wherein the polymerizable functional radical has the formula: ##STR25## wherein R.sub.2 is selected from the group consisting of hydrogen and alkyl groups containing up to about 10 atoms in addition to any hydrogen atoms present in the alkyl group.
- 39. The method of claim 37 wherein the polymerizable functional monomer has the formula ##STR26## wherein Y is selected from the group consisting of O, S, and NR.sub.4 ;
- Z is selected from the group consisting of O, S, and NR.sub.4 ;
- R.sub.3 is a divalent organic radical having at least two atoms; and
- R.sub.4 is selected from the group consisting of hydrogen and hydrocarbyl radicals containing up to about 6 carbon atoms.
- 40. The method of claim 37 wherein the polymerizable functional monomer has the formula selected from the group consisting of ##STR27##
- 41. The method of claim 37 wherein the polymer is exposed to radiation for a period of up to about 15 minutes.
- 42. A method for producing an article comprising the steps of:
- (a) contacting a substrate with a polymer to form a substrate/polymer combination, the polymer comprising a backbone and a plurality of pendant functional groups, the pendant functional groups having the formula selected from the group consisting of ##STR28## wherein R.sub.1 is a divalent radical; and
- R.sub.2 is selected from the group consisting of hydrogen and alkyl, arylalkyl, alkyloxy, aryloxy, arylalkyloxy, alkenyl, alkenyloxy, alkynyl, alkynyloxy, and arylalkenyl radicals; and
- (b) curing the polymer by exposing the substrate/polymer combination to radiation having a wavelength within the range of about 10.sup.-3 to about 400 nm.
- 43. The method of claim 42 wherein R.sub.2 is hydrogen or an alkyl group containing up to about 10 atoms in addition to any hydrogen atoms present in the alkyl group.
- 44. The method of claim 42 wherein R.sub.2 is hydrogen or an alkyl group comprising up to about 6 carbon atoms.
- 45. The method of claim 42 wherein R.sub.2 is methyl.
- 46. The method of claim 42 wherein pendant functional groups have the formula ##STR29## wherein Y is selected from the group consisting of O, S, and NR.sub.4 ;
- Z is selected from the group consisting of O, S, and NR.sub.4 ;
- R.sub.3 is a divalent organic radical at least 2 atoms in length; and
- R.sub.4 is selected from the group consisting of H and hydrocarbyl radicals having up to 6 carbon atoms.
- 47. The method of claim 46 wherein R.sub.2 is selected from the group consisting of hydrogen or an alkyl group containing up to about 10 atoms in addition to any hydrogen atoms present in the alkyl group.
- 48. The method of claim 46 wherein R.sub.2 is hydrogen or an alkyl group comprising up to about 6 carbon atoms.
- 49. The method of claim 46 wherein R.sub.2 is methyl.
- 50. A method of producing an article comprising the steps of:
- (a) reacting one or more monomers with at least one polymerizable functional monomer to form a polymer, the polymerizable functional monomer having the formula: ##STR30## wherein R.sub.1 is a divalent organic radical of at least 3 atoms in length;
- R.sub.2 is selected from the group consisting of hydrogen and alkyl, arylalkyl, alkyloxy, aryloxy, arylalkyloxy, alkenyl, alkenyloxy, alkynyl, alkynyloxy, and arylalkenyl radicals;
- R.sub.9 is selected from the group consisting of hydrogen, halo, thio, and monovalent organic radicals;
- R.sub.10 is selected from the group consisting of hydrogen, halo, thio, and monovalent organic radicals;
- (b) contacting the polymer with a substrate to form a substrate/polymer combination; and
- (c) curing the substrate/polymer combination by exposing the substrate/polymer combination to ultraviolet light.
- 51. A method for curing a polymer comprising the step of exposing the polymer to radiation having a wavelength within the range of about 10.sup.-3 to about 400 nm, the polymer comprising a backbone and a plurality of pendant functional groups, the pendant functional groups having the formula selected from the group consisting of: ##STR31## wherein R.sub.1 is a divalent radical; and
- R.sub.2 is selected from the group consisting of hydrogen and alkyl, arylalkyl, alkyloxy, aryloxy, arylalkyloxy, alkenyl, alkenyloxy, alkynyl, alkynyloxy, and arylalkenyl radicals.
- 52. A method for curing a polymer comprising the step of exposing the polymer to radiation having a wavelength within the range of about 10.sup.-3 to about 400 nm, the polymer being formed by reacting one or more monomers with at least one polymerizable functional monomer having the formula: ##STR32## wherein R.sub.1 is a divalent organic radical;
- R.sub.2 is selected from the group consisting of hydrogen and alkyl arylalkyl, alkyloxy, aryloxy, arylalkyloxy, alkenyl, alkenyloxy, alkynyl, alkynyloxy, and arylalkenyl radicals; and
- R.sub.9 and R.sub.10 are each independently selected from the group consisting of hydrogen, halo, thio, and monovalent organic radicals.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of application Ser. No. 838,532, filed Mar. 11, 1986, the application being incorporated herein by reference.
US Referenced Citations (30)
Foreign Referenced Citations (3)
| Number |
Date |
Country |
| 1144486 |
Mar 1969 |
GBX |
| 1504950 |
Mar 1978 |
GBX |
| 1541909 |
Mar 1979 |
GBX |
Non-Patent Literature Citations (3)
| Entry |
| Koral et al., "Thermosetting Acrylic Emulsions Based on Hexakis(Methoxymethyl) Melamine," pp. 34-38. |
| Bufkin et al., J. of Coatings Technology, 50 (641): 41-55 (1978). |
| Upson, J. of Polymer Science: Polymer Symposium 72, 45-54 (1985). |
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
838532 |
Mar 1986 |
|