Claims
- 1. A composition comprising unsaturated fatty acid solutions of one or more poly alpha (hydroxy)aliphatic acids, and/or their interaction product(s) and less than 10 weight % of one or more multifunctional (meth)acrylate esters, vinyl ethers, or combinations thereof.
- 2. The composition of claim 1, further comprising 0.4 to 4 weight % of one or more organic zirconium(4) compounds.
- 3. The composition of claim 1, further comprising one or more inorganic salts of peracids.
- 4. The composition of claim 1, further comprising 0.4 to 4 weight % of one or more organic zirconium(4) compounds, and one or more inorganic salts of peracids.
- 5. The composition of claim 1 comprising 2 to 15 weight percent of drying oil derived fatty acid solutions of 10-35 wt % of poly alpha (hydroxy)aliphatic acid(s), and/or their interaction product(s), 0.4 to 4 weight % of one or more organic zirconium(4) compounds, 1 to 7 weight % of one or more multifunctional (meth)acrylate esters, vinyl ethers, or combinations thereof, and catalytic proportions of one or more inorganic salts of peracids.
- 6. The composition of claim 1, further comprising catalytic proportions of organic (hydro)peroxides.
- 7. A method of printing comprising using an ink comprising the composition of claim 1.
- 8. The method of claim 7, wherein the printing comprises applying the ink to a press.
- 9. The method of claim 7, wherein the printing is lithographic printing.
- 10. The method of claim 7, wherein the printing comprises printing on paper.
- 11. A method of printing comprising using an ink vehicle or varnish comprising the composition of claim 1.
- 12. The method of claim 11, wherein the ink vehicle or varnish is mixed with a fountain solution.
- 13. A printing ink or printing ink varnish comprising the composition of claim 1 and one or more organic zirconium(4) compounds.
- 14. The printing ink or printing ink varnish of claim 13, wherein the organic zirconium(4) compounds comprise 0.4 to 4 weight % of the total solution.
- 15. A method of printing comprising mixing the printing ink or printing ink varnish of claim 13 with a fountain solution.
- 16. The method of claim 15, wherein the ink vehicle or varnish comprises 2 to 15 weight percent of drying oil derived fatty acid solutions of 10-35 wt % of poly alpha (hydroxy)aliphatic acid(s).
- 17. The method of claim 16, wherein the ink vehicle or varnish further comprises 1 to 7 weight % of one or more multifunctional (meth)acrylates, and/or vinyl esters.
- 18. The method of claim 16, wherein the fountain solution further comprises an organic (hydro)peroxides or an inorganic salt of a peracid.
- 19. The method of claim 15, wherein the ink vehicle or varnish comprises solids, alkyds, polyesters or polyamides.
- 20. The composition of claim 1, further comprising one or more additional ink vehicle or varnish components.
- 21. The composition of claim 20, wherein the additional ink vehicle or varnish components are solids, alkyds, polyesters or polyamides.
- 22. The composition of claim 2, wherein the organozirconium compound is any of
zirconium(4) tetrakis octanolato, adduct 2 moles of (bis tridecyl) phosphite; zirconium(4) tetrakis i-decanolato, adduct 2 moles of (tris lauryl) phosphite; oxo zirconium(4) bis i-pentadecanoate; zirconium(4) 2-propanolato, tris (bis butyl)phosphato-O; zirconium(4) neodecanolato, tris (phenyl) sulfonato-O; zirconium(4) t-butanolato, tris (ethyl, benzyl) phosphito; zirconium(4) bis iso-hexanolato, cyclo (bis allyl) diphosphato-O,O; ethylenediolato zirconium(4) cyclo (bis allyl) diphosphato-O,O; 1,3-propylendiolato zirconium(4) linolenate, myristate; or Bis 1,4-butene-2 diolato zirconium(4) adduct 1 mole of tris (bis oleyl) phosphite.
- 23. The fountain solution of claim 13, wherein the organozirconium compound is any of:
zirconium(4) tetrakis octanolato, adduct 2 moles of (bis tridecyl) phosphite; zirconium(4) tetrakis i-decanolato, adduct 2 moles of (tris lauryl) phosphite; oxo zirconium(4) bis i-pentadecanoate; zirconium(4) 2-propanolato, tris (bis butyl)phosphato-O; zirconium(4) neodecanolato, tris (phenyl) sulfonato-O; zirconium(4) t-butanolato, tris (ethyl, benzyl) phosphito; zirconium(4) bis iso-hexanolato, cyclo (bis allyl) diphosphato-O,O; ethylenediolato zirconium(4) cyclo (bis allyl) diphosphato-O,O; 1,3-propylendiolato zirconium(4) linolenate, myristate; or Bis 1,4-butene-2 diolato zirconium(4) adduct 1 mole of tris (bis oleyl) phosphite.
- 24. The method of claim 7, wherein the organozirconium compound is any of;
zirconium(4) tetrakis octanolato, adduct 2 moles of (bis tridecyl) phosphite; zirconium(4) tetrakis i-decanolato, adduct 2 moles of (tris lauryl) phosphite; oxo zirconium(4) bis i-pentadecanoate; zirconium(4) 2-propanolato, tris (bis butyl)phosphato-O; zirconium(4) neodecanolato, tris (phenyl) sulfonato-O; zirconium(4) t-butanolato, tris (ethyl, benzyl) phosphito; zirconium(4) bis iso-hexanolato, cyclo (bis allyl) diphosphato-O,O; ethylenediolato zirconium(4) cyclo (bis allyl) diphosphato-O,O; 1,3-propylendiolato zirconium(4) linolenate, myristate; or Bis 1,4-butene-2 diolato zirconium(4) adduct 1 mole of tris (bis oleyl) phosphite.
- 25. The method of claim 15, wherein the organozirconium compound is any of:
zirconium(4) tetrakis octanolato, adduct 2 moles of (bis tridecyl) phosphite; zirconium(4) tetrakis i-decanolato, adduct 2 moles of (tris lauryl) phosphite; oxo zirconium(4) bis i-pentadecanoate; zirconium(4) 2-propanolato, tris (bis butyl)phosphato-O; zirconium(4) neodecanolato, tris (phenyl) sulfonato-O; zirconium(4) t-butanolato, tris (ethyl, benzyl) phosphito; zirconium(4) bis iso-hexanolato, cyclo (bis allyl) diphosphato-O,O; ethylenediolato zirconium(4) cyclo (bis allyl) diphosphato-O,O; 1,3-propylendiolato zirconium(4) linolenate, myristate; or Bis 1,4-butene-2 diolato zirconium(4) adduct 1 mole of tris (bis oleyl) phosphite.
- 26. The composition of claim 1, wherein the poly alpha (hydroxy)aliphatic acid(s) is any of:
hydroxy acetic acid; 2-hydroxy propionic acid; 2-hydroxy-2-methyl 3-butenoic acid; 2 hydroxy butyric acid; 2-hydroxy-6-caprolactone; ethyl 2 hydroxy propanoate; methyl 2-hydroxy (2-methyl)-3-butenoate; hydroxy acetic acid, 3-hydroxy i-pentanoic acid; 2-hydroxy-3-methoxy-isobutyric acid; or 2 hydroxy-4-butyrolactone, 2-hydroxy propionic acid, 2-hydroxy 4-pentenoic acid.
- 27. The composition of claim 1, wherein the multifunctional (meth)acrylate ester is any of:
Tris methylol propane tris acrylate; pentaerythritol trimethacrylate; sorbitol tetrakis acrylate; tetrakis 1,2-propylene glycol acrylate, methacrylate; terphthalic acid bis 2-methacrylatoethyl ester; ethoxylated(3) bisphenol A dimetacrylate; acrylate terminated polybutadiene(12); Bis trimethylol propane bis acrylate, bis allyl ether; zinc bis methacrylate; or 60% castor oil tris acrylate, 40% 1,4-cyclhexane bis methacrylate.
- 28. A composition made by the process of combining 2 to 15 weight percent of drying oil derived fatty acid solutions of 10-35 wt % of poly alpha (hydroxy)aliphatic acid(s), 0.4 to 4 weight % of one or more organic zirconium(4) compounds, 1 to 7 weight % of one or more multifunctional (meth)acrylate esters, and catalytic proportions of one or more inorganic salts of peracids.
- 29. The composition of claim 27, further comprising combining water.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit of U.S. Application Serial No. 60/408,638, filed Sep. 5, 2002, which is incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60408638 |
Sep 2002 |
US |