Claims
- 1. A process for providing a layer on a marking member comprising:
a) dissolving a fluoroelastomer; b) adding and reacting a nano-size zinc oxide and a crosslinking agent, to form a resulting homogeneous fluoroelastomer dispersion, wherein said nano-size zinc oxide has a particle size of from about 1 to about 250 nanometers; and c) subsequently providing at least one layer of the homogeneous fluoroelastomer dispersion to said marking member.
- 2. The process in accordance with claim 1, wherein said average particle size is from about 5 to about 150 nanometers.
- 3. The process in accordance with claim 2, wherein said average particle size is from about 24 to about 71 nanometers.
- 4. The process in accordance with claim 1, wherein said nano-size zinc oxide is added in an amount of from 1 to about 50 pph of the fluoroelastomer.
- 5. The process in accordance with claim 4, wherein said amount is from about 5 to about 10 pph of the fluoroelastomer.
- 6. The process in accordance with claim 1, wherein said fluoroelastomer is selected from the group consisting of a) copolymers of vinylidenefluoride, hexafluoropropylene, and tetrafluoroethylene, b) terpolymers of vinylidenefluoride, hexafluoropropylene and tetrafluoroethylene, and c) tetrapolymers of vinylidenefluoride, hexafluoropropylene, tetrafluoroethylene, and a cure site monomer.
- 7. The process in accordance with claim 6, wherein the fluoroelastomer comprises 35 weight percent of vinylidenefluoride, 34 weight percent of hexafluoropropylene, 29 weight percent of tetrafluoroethylene, and 2 weight percent cure site monomer.
- 8. The process in accordance with claim 1, wherein said crosslinking agent is added in an amount of from about 0.5 to about 20 pph.
- 9. The process in accordance with claim 8, wherein said crosslinking agent is added in an amount of from about 1 to about 10 pph.
- 10. The process in accordance with claim 1, wherein said crosslinking agent comprises a bisphenol material and a phosphonium salt.
- 11. The process in accordance with claim 10, wherein said crosslinking agent comprises a bisphenol material in an amount of from about 0 to about 90 percent by weight of total solids.
- 12. The process in accordance with claim 11, wherein said crosslinking agent comprises a bisphenol material in an amount of from about 10 to about 70 percent by weight of total solids.
- 13. The process in accordance with claim 10, wherein said crosslinking agent comprises a phosphonium salt in an amount of from about 10 to about 100 percent by weight of total solids.
- 14. The process in accordance with claim 13, wherein said crosslinking agent comprises a phosphonium salt in an amount of from about 20 to about 70 percent by weight of total solids.
- 15. The process in accordance with claim 10, wherein said phosphonium salt is a benzyltriphenyl phosphonium bisphenol salt.
- 16. The process in accordance with claim 1, wherein during a), said fluoroelastomer is dissolved in a solvent selected from the group consisting of methyl ethyl ketone and methyl isobutyl ketone.
- 17. The process in accordance with claim 1, wherein following c), the fluoroelastomer is heat cured.
- 18. The process in accordance with claim 1, wherein said at least one layer of the homogeneous fluoroelastomer dispersion to said marking member has a percent extractables of from about 0.1 to about 3 percent.
- 19. A process for providing a layer on a marking member comprising:
a) dissolving a fluoroelastomer; b) adding and reacting a nano-size zinc oxide and a crosslinking agent comprising a bisphenol material and a phosphonium salt, to form a resulting homogeneous fluoroelastomer dispersion, wherein said nano-size zinc oxide has a particle size of from about 1 to about 250 nanometers; and c) subsequently providing at least one layer of the homogeneous fluoroelastomer dispersion to said marking member.
- 20. A process for providing a layer on a marking member comprising:
a) dissolving a fluoroelastomer; b) adding and reacting a nano-size zinc oxide oxide in an amount of from about 1 to about 50 pph of the fluoroelastomer, and a crosslinking agent comprising a bisphenol material and a phosphonium salt, to form a resulting homogeneous fluoroelastomer dispersion, wherein said nano-size zinc oxide has a particle size of from about 1 to about 250 nanometers; and c) subsequently providing at least one layer of the homogeneous fluoroelastomer dispersion to said marking member.
- 21. A process for providing a layer on an offset printing member, wherein said offset printing member comprises a phase change ink component for applying a phase change ink in a phase change ink image, and an imaging member for accepting the phase change ink image from the phase change ink component, and transferring the phase change ink image from the imaging member to the print medium, the process comprising:
a) dissolving a fluoroelastomer; b) adding and reacting a nano-size zinc oxide and a crosslinking agent, to form a resulting homogeneous fluoroelastomer dispersion, wherein said nano-size zinc oxide has a particle size of from about 1 to about 250 nanometers; and c) subsequently providing at least one layer of the homogeneous fluoroelastomer dispersion to said imaging member.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] Reference is made to the following commonly assigned, copending patent application U.S. patent application Ser. No. ______ filed ______, entitled, “Phase Change Ink Imaging Component with Nano-Size Filler;” The disclosure of this patent application is hereby incorporated by reference in its entirety.