Claims
- 1. A method comprising:
mixing an acid acceptor, an emulsifier and water to form a dispersion; providing a non-amino polymeric based crosslinker selected from the group consisting of hydroxy silanes and epoxys; reacting a latex fluorocarbon elastomer with said dispersion and the non-amino polymeric based crosslinker to form a crosslinked fluorocarbon elastomer; and providing at least one layer of the crosslinked fluorocarbon elastomer onto a substrate having an outer surface.
- 2. A method in accordance with claim 1, further comprising heat curing the layer of crosslinked fluorocarbon elastomer on the outer surface of said substrate.
- 3. A method comprising:
mixing an acid acceptor, an emulsifier, water and a non-amino based crosslinker selected from the group consisting of hydroxy silanes and epoxys to form a dispersion; adding and reacting a latex fluorocarbon elastomer with said dispersion to form a crosslinked fluorocarbon elastomer; and providing at least one layer of the crosslinked fluorocarbon elastomer onto a fuser member supporting substrate.
- 4. A method in accordance with claim 3, wherein said crosslinker is selected from the group consisting of diepoxy and disilylalkoxy based crosslinkers and combinations thereof.
- 5. A method in accordance with claim 3, wherein the crosslinker is:
- 6. A method in accordance with claim 3, wherein said latex fluorocarbon elastomer is selected from the group consisting of a) copolymers of vinylidene fluoride and hexafluoropropylene; b) terpolymers of vinylidene fluoride, hexafluoropropylene and tetrafluoroethylene; and c) tetrapolymers of vinylidene fluoride, hexafluoropropylene, tetrafluoroethylene and cure site monomers.
- 7. A method in accordance with claim 6, wherein said latex fluorocarbon elastomer is a terpolymer of vinylidene fluoride, hexafluoropropylene, tetrafluoroethylene, and a cure site monomer.
- 8. A method in accordance with claim 3, wherein said acid acceptor is zinc oxide.
- 9. A method in accordance with claim 3, wherein said emulsifier is selected from the group consisting of octylphenoxpolyethoxy-ethanol-polyethylene glycol, sodium laurylsulphate, and ammonium laurylsulphate.
- 10. A method in accordance with claim 3, further comprising adding a metal oxide filler to said non-amino crosslinker dispersion.
- 11. A method in accordance with claim 10, wherein said filler is selected from the group consisting of copper oxide, iron oxide and aluminum oxide.
- 12. A method in accordance with claim 3, further comprising adding a pigment to said non-amino crosslinker dispersion.
- 13. A method in accordance with claim 12, wherein said pigment is selected from the group consisting of iron II oxide, iron III oxide, titanium dioxide and chromium oxides.
- 14. A method in accordance with claim 3, wherein said water is deionized water.
- 15. A method in accordance with claim 3, further comprising heat curing the layer of crosslinked fluorocarbon elastomer on the outer surface of said fuser member supporting substrate.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a divisional of U.S. application Ser. No. 10/040,135 filed Jan. 8, 2002 by the same inventors, and claims priority therefrom.
Divisions (2)
|
Number |
Date |
Country |
Parent |
10040135 |
Jan 2002 |
US |
Child |
10385978 |
Mar 2003 |
US |
Parent |
09416149 |
Oct 1999 |
US |
Child |
10040135 |
Jan 2002 |
US |