Claims
- 1. A process for the preparation of toner comprising mixing a latex with a colorant mixture comprised of colorant, an ionic surfactant, and a polytetrafluoroethylene; adding a coagulant; heating the resulting mixture below about the glass transition temperature (Tg) of the latex resin; adding a stabilizer; heating above about the Tg of the latex resin; and optionally isolating the toner.
- 2. A process in accordance with claim 1 wherein said latex is a latex emulsion comprised of resin, water, and an ionic surfactant, and wherein said colorant mixture is a dispersion containing a colorant, water, and an ionic surfactant.
- 3. A process in accordance with claim 1 wherein said polytetrafluoroethylene is a copolymer of a size diameter of from about 30 to about 160 nanometers.
- 4. A process in accordance with claim 1 wherein said polytetrafluoroethylene is of a size diameter of from about 50 to about 120 nanometers.
- 5. A process in accordance with claim 1 wherein there is selected for said ionic surfactant a nonionic surfactant.
- 6. A process in accordance with claim 1 wherein said polytetrafluoroethylene is a colloidal dispersion of polytetrafluoroethylene resin particles dispersed in an ionic surfactant or a nonionic surfactant.
- 7. A process in accordance with claim 1 wherein said polytetrafluoroethylene is generated from the reaction of tetrafluoroethylene, hexafluoropropylene and vinylidene fluoride.
- 8. A process in accordance with claim 1 wherein said polytetrafluoroethylene is generated from the reaction of tetrafluoroethylene, hexafluoropropylene and vinylidene fluoride in an amount of from about 30 to about 70 weight percent of tetrafluoroethylene, about 10 to about 30 weight percent of hexafluoropropylene, and about 10 to about 50 weight percent of vinylidene fluoride; and wherein the total of said three components is about 100 percent.
- 9. A process in accordance with claim 1 wherein said polytetrafluoroethylene is generated from the reaction of tetrafluoroethylene, hexafluoropropylene and vinylidene fluoride in an amount of from about 40 to about 60 weight percent of tetrafluoroethylene, about 15 to about 25 weight percent of hexafluoropropylene, and about 20 to about 40 weight percent of vinylidene fluoride; and wherein the total of said three components is about 100 percent.
- 10. A process in accordance with claim 1 wherein said polytetrafluoroethylene is selected in an amount of from about 0.05 to about 30 percent by weight of said toner components.
- 11. A process in accordance with claim 1 wherein said polytetrafluoroethylene is selected in an amount of from about 1 to about 20 percent by weight of said toner components.
- 12. A process in accordance with claim 1 wherein said polytetrafluoroethylene is selected in an amount of from about 3 to about 10 percent by weight of said toner components.
- 13. A process in accordance with claim 2 wherein each of said surfactants is selected in an amount of from about 1 to about 10 weight percent based on the toner components amounts.
- 14. A process in accordance with claim 1 wherein there is added to said mixture a said second latex, and which latex is comprised of submicron resin particles suspended in an aqueous phase containing an ionic surfactant, and wherein said second latex is optionally selected in an amount of about 10 to about 40 percent by weight of the initial latex.
- 15. A process in accordance with claim 1 wherein said temperature about below said latex resin Tg is from about 40° C. to about 60° C., thereby resulting in toner aggregates, and said temperature above; about said latex resin Tg is from about 75° C. to about 97° C.
- 16. A process in accordance with claim 15 wherein the temperature at which the aggregation is accomplished controls the size of the aggregates, and wherein the toner isolated is from about 2 to about 15 microns in volume average diameter.
- 17. A process in accordance with claim 1 wherein the colorant is a pigment.
- 18. A process in accordance with claim 1 wherein the latex contains a resin selected from the group consisting of poly(styrene-butadiene), poly(methylstyrene-butadiene), poly(methyl methacrylate-butadiene), poly(ethyl methacrylate-butadiene), poly(propyl methacrylate-butadiene), poly(butyl methacrylate-butadiene), poly(methyl acrylate-butadiene), poly(ethyl acrylate-butadiene), poly(propyl acrylate-butadiene), poly(butyl acrylate-butadiene), poly(styrene-isoprene), poly(methylstyrene-isoprene), poly(methyl methacrylate-isoprene), poly(ethyl methacrylate-isoprene), poly(propyl methacrylate-isoprene), poly(butyl methacrylate-isoprene), poly(methyl acrylate-isoprene), poly(ethyl acrylate-isoprene), poly(propyl acrylate-isoprene), poly(butyl acrylate-isoprene); poly(styrene-propyl acrylate), poly(styrene-butyl acrylate), poly(styrene-butadiene-acrylic acid), poly(styrene-butadiene-methacrylic acid), poly(styrene-butadiene-acrylonitrile-acrylic acid), poly(styrene-butyl acrylate-acrylic acid), poly(styrene-butyl acrylate-methacrylic acid), poly(styrene-butyl acrylate-acrylononitrile), and poly(styrene-butyl acrylate-acrylononitrile-acrylic acid).
- 19. A process in accordance with claim 1 wherein the colorant is carbon black, cyan, yellow, magenta, or mixtures thereof, and the toner isolated is from about 2 to about 25 microns in volume average diameter, and the particle size distribution thereof is optionally from about 1.15 to about 1.30; and wherein there is added to the surface of the formed toner metal salts, metal salts of fatty acids, silicas, metal oxides, or mixtures thereof, each in an amount of from about 0.1 to about 10 weight percent of the obtained toner.
- 20. A process in accordance with claim 1 wherein said coagulant is a polyaluminum chloride, a polyaluminum sulfo silicate, a metal halide, a metal sulfate, a cationic surfactant, or mixtures thereof.
- 21. A process in accordance with claim 20 wherein said metal is selected from the group consisting of calcium, magnesium, aluminum, zinc, and barium.
- 22. A process in accordance with claim 1 wherein said stabilizer is a base.
- 23. A process in accordance with claim 22 wherein the base is selected from the group consisting of sodium hydroxide, potassium hydroxide, and ammonium hydroxide.
- 24. A process in accordance with claim 1 wherein said stabilizer is a surfactant.
- 25. A process in accordance with claim 24 wherein said surfactant is an anionic surfactant or a nonionic surfactant.
- 26. A process for the preparation of toner comprising admixing a latex and a colorant, and wherein said colorant is comprised of
(i) colorant, water, an ionic surfactant, a nonionic surfactant or mixtures of an ionic surfactant, and a nonionic surfactant; and said latex is a latex emulsion; and wherein said (ii) colorant dispersion is blended with said latex emulsion comprised of resin, a nonionic surfactant, a polytetrafluoroethylene, and an ionic surfactant, and optionally adding a wax dispersion comprised of submicron particles in the diameter size range of about 0.1 to about 0.4 micron dispersed in an ionic surfactant of the same charge polarity as that of the ionic surfactant in said colorant dispersion or latex emulsion; (iii) adding to the resulting blend containing the latex and colorant a coagulant to thereby initiate aggregation of the resin latex and colorant particles; (iv) heating the resulting mixture below the glass transition temperature (Tg) of the latex resin; (v) optionally adding a second latex comprised of resin particles suspended in an aqueous phase adding to a stabilizer; (vi) heating above the Tg of the latex resin; and isolating the toner.
- 27. A process in accordance with claim 1 wherein there is added to said mixture a wax dispersion comprised of submicron particles in the size diameter range of about 0.1 to about 0.5 micron dispersed in an anionic surfactant of the same charge polarity as that of the ionic surfactant in the latex emulsion.
- 28. A process comprising mixing a latex with a colorant comprised of colorant and a polytetrafluoroethylene; adding a coagulant; heating the resulting mixture below about the glass transition temperature (Tg) of the latex resin; and heating above about the Tg of the latex resin.
- 29. A process in accordance with claim 28 wherein said colorant contains a surfactant, and which surfactant is an ionic surfactant, and wherein there results a toner.
- 30. A process in accordance with claim 28 wherein said surfactant is a nonionic surfactant, and wherein there results a toner.
Parent Case Info
[0001] This is a divisional of U.S. application Ser. No. 09/960,425, filed Sep. 24, 2001 by the same inventors, and claims priority therefrom.
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09960425 |
Sep 2001 |
US |
| Child |
10393635 |
Mar 2003 |
US |