Claims
- 1. A bias charging member comprising:
- a) a conductive core,
- b) a biasing means and,
- c) an outer surface layer provided on said conductive core and comprising a fluorinated carbon filled fluoroelastomer, wherein the fluoroelastomer is selected from the group consisting of a) copolymers of vinylidenefluoride and hexafluoropropylene, b) terpolymers of vinylidenefluoride, hexafluoropropylene and tetrafluoroethylene, and c) volume grafted fluoroelastomers, wherein said bias charging member is capable of receiving a bias for contact charging a member to be charged, and wherein said fluorinated carbon is present in an amount of from about 5 to about 15 percent by weight based on the weight of total solids.
- 2. A bias charging member in accordance with claim 1, wherein the fluorinated carbon has a fluorine content of from about 1 to about 70 weight percent and a carbon content of from about 99 to about 30 weight percent.
- 3. A bias charging member in accordance with claim 2, wherein the fluorinated carbon has a fluorine content of from about 10 to about 30 weight percent and a carbon content of from about 90 to about 70 weight percent.
- 4. A bias charging member in accordance with claim 1, wherein the fluorinated carbon is of the formula CF.sub.x, wherein x is from about 0.02 to about 1.5.
- 5. A bias charging member in accordance with claim 4 wherein the fluorinated carbon is of the formula CF.sub.x, wherein x is from about 0.04 to about 1.4.
- 6. A bias charging member in accordance with claim 1, wherein said fluorinated carbon is selected from the group consisting of a fluorinated carbon having a fluorine content of 62 weight percent, a fluorinated carbon having a fluorine content of 11 weight percent, a fluorinated carbon having a fluorine content of 28 weight percent, and a fluorinated carbon having a weight content of 65 weight percent.
- 7. A bias charging member in accordance with claim 6, wherein the fluorinated carbon comprises from about 5 to about 10 percent by weight of a fluorinated carbon having a fluorine content of 28 weight percent, and from about 2 to about 3 percent by weight of a fluorinated carbon having a fluorine content of 11 weight percent, said weight percents based on the weight of total solids.
- 8. A bias charging member in accordance with claim 7, wherein the fluorinated carbon comprises from about 2 to about 3 percent by weight of a fluorinated carbon having a fluorine content of 28 weight percent, and from about 2.5 to about 3 percent by weight of a fluorinated carbon having a fluorine content of 11 weight percent, said weight percents based on the weight of total solids.
- 9. A bias charging member in accordance with claim 8, wherein the fluorinated carbon comprises from about 2 weight percent of a fluorinated carbon having a fluorine content of 28 weight percent, and 3 percent by weight of a fluorinated carbon having a fluorine content of 11 weight percent, said weight percents based on the weight of total solids.
- 10. A bias charging member in accordance with claim 1, wherein the fluoroelastomer is a copolymer of vinylidenefluoride and hexafluoropropylene.
- 11. A bias charging member in accordance with claim 1, wherein the fluoroelastomer is a terpolymer of vinylidenefluoride, hexafluoropropylene and tetrafluoroetheylene.
- 12. A bias charging member in accordance with claim 1, wherein the fluoroelastomer comprises 35 mole percent of vinylidenefluoride, 34 mole percent of hexafluoropropylene and 29 mole percent of tetrafluoroethylene.
- 13. A bias charging member in accordance with claim 12, wherein said terpolymer further comprises 2 mole percent cure site monomer.
- 14. A bias charging member in accordance with claim 1, wherein the fluoroelastomer is present in an amount of from about 70 to about 99 percent by weight of total solids.
- 15. A bias charging member in accordance with claim 1, wherein the outer layer is contained on said core and has a volume resistivity of from about 10.sup.3 to about 10.sup.12 ohm-cm.
- 16. A bias charging member in accordance with claim 15, wherein the outer layer is contained on said core and has a volume resistivity of from about 10.sup.4 to about 5.times.10.sup.8 ohm-cm.
- 17. A bias charging member in accordance with claim 1, wherein the outer layer has a hardness of from about 10 to about 50 Shore A durometer.
- 18. A bias charging member in accordance with claim 1, wherein the outer layer has a thickness of from about 0.5 to about 5 mm.
- 19. A bias charging member in accordance with claim 1, wherein the conductive core possesses an AC and a DC bias potential.
- 20. A bias charging member in accordance with claim 1, wherein the conductive core possesses a single DC bias potential.
- 21. A bias charging member in accordance with claim 1, further including at least one intermediate layer positioned between said conductive core and said outer layer.
- 22. A bias charging member in accordance with claim 21, wherein said intermediate layer is an adhesive layer or an elastomer layer.
- 23. A bias charging member in accordance with claim 21, wherein the intermediate layer is an elastomer layer comprising an elastomer selected from the group consisting of silicone rubbers, ethylene-propylene-diene monomer, epichlorohydrin, styrene-butadiene, fluorosilicone, polyurethane and copolymers thereof.
- 24. A bias charging member in accordance with claim 21, wherein the intermediate layer has a thickness of from about 1 to about 4 mm, and the outer layer has a thickness of from about 20 to about 100 micrometers.
- 25. A bias charging member in accordance with claim 21, wherein the intermediate layer further comprises a filler selected from the group consisting of carbon black, graphite, titanium oxide, zinc oxide, tin oxide, antimony oxide, indium oxide, indium tin oxide, and mixtures thereof.
- 26. A bias charging member in accordance with claim 25, wherein the filler is carbon black.
- 27. A bias charging member in accordance with claim 21, wherein the intermediate layer has a volume resistivity of from about less than 5.times.10.sup.8 ohm-cm and the outer layer has a volume resisitivity of from about 10.sup.5 to about 10.sup.12 ohm-cm.
- 28. A bias charging member in accordance with claim 27, wherein said intermediate layer has a volume resistivity of from about 10.sup.2 to about 10.sup.7 ohm-cm and the outer layer has a volume resistivity of from about 10.sup.7 to about 10.sup.11 ohm-cm.
- 29. A bias charging member in accordance with claim 21, wherein said intermediate layer has a hardness of from about 20 to about 50 Shore A, and the outer layer has a hardness of from about 10 to about 70 Shore A durometer.
- 30. A bias charging member in accordance with claim 21, wherein the conductive core possesses an AC and a DC bias potential.
- 31. A bias charging member in accordance with claim 21, wherein the conductive core possesses a single DC bias potential.
- 32. A bias charging member in accordance with claim 21, wherein the conductive core having said outer layer is in the form of a solid cylindrical shaft comprised of a compound selected from the group consisting of aluminum and stainless steel.
- 33. A bias charging member in accordance with claim 1, wherein the conductive core with said outer layer is in the form of an endless belt.
- 34. A bias charging member in accordance with claim 1, wherein the conductive core having said outer layer is in the form of a solid cylindrical shaft comprised of a compound selected from the group consisting of aluminum and stainless steel.
- 35. A bias charging member in accordance with claim 1, wherein the fluoroelastomer is a terpolymer of vinylidenefluoride, hexafluoropropylene and tetrafluoroethylene, and further comprises a cure site monomer.
- 36. A bias charging member in accordance with claim 1, wherein said fluorinated carbon is a mixture of a first fluorinated carbon CF.sub.x and a second fluorinated carbon CF.sub.x, wherein x for the first fluorinated carbon is different from x for the second fluorinated carbon.
- 37. A bias charging member in accordance with claim 36, wherein said first fluorinated carbon CF.sub.x has a value of x such that the first fluorinated carbon has a fluorine content of about 28 percent by weight and said second fluorinated carbon CF.sub.x has a value of x such that the second fluorinated carbon has a fluorine content of about 11 percent by weight.
- 38. A bias charging member in accordance with claim 36, wherein said first fluorinated carbon CF.sub.x has a value of x such that the first fluorinated carbon has a fluorine content of about 62 percent by weight and said second fluorinated carbon CF.sub.x has a value of x such that the second fluorinated carbon has a fluorine content of about 65 percent by weight.
- 39. A bias charging member comprising:
- a) a conductive core;
- b) a biasing means; and
- c) an outer surface layer provided on said conductive core and comprising a fluorinated carbon filled fluoroelastomer, wherein the fluorinated carbon is of the formula CF.sub.x, wherein x represents the number of fluorine atoms and is from about 0.02 to about 1.5 and said fluoroelastomer is selected from the group consisting of 1) copolymers of vinylidenefluoride and hexafluoropropylene, and 2) terpolymers of vinylidenefluoride, hexafluoropropylene and tetrafluoroethylene, wherein said bias charging member is capable of receiving a bias for contact charging a member to be charged.
- 40. A bias charging member comprising:
- a) a conductive core;
- b) a biasing means;
- c) an intermediate layer provided on the conductive core, said intermediate layer comprising an elastomer selected from the group consisting of silicone rubbers, ethylene-propylene-diene monomer, epichlorohydrin, styrene-butadiene, fluorosilicone, polyurethane elastomers and copolymers thereof; and
- d) an outer surface layer provided on said intermediate layer and comprising a fluorinated carbon filled fluoroelastomer, wherein the fluorinated carbon is of the formula CF.sub.x, wherein x represents the number of fluorine atoms and is from about 0.02 to about 1.5 and said fluoroelastomer is selected from the group consisting of 1) copolymers of vinylidenefluoride and hexafluoropropylene, and 2) terpolymers of vinylidenefluoride, hexafluoropropylene and tetrafluoroethylene, wherein said bias charging member is capable of receiving a bias for contact charging a member to be charged.
CROSS REFERENCE TO RELATED APPLICATIONS
Attention is directed to the following copending applications assigned to the assignee of the present application: U.S. application Ser. No. 08/635,356 filed Apr. 19, 1996, entitled, "Biasable System Members;" U.S. application Ser. No. 08/706,387 filed Aug. 30, 1996, entitled, "On Fuser System Members;" U.S. application Ser. No. 08/779,287, filed Jan. 21, 1997, entitled, "Liquid Developer Intermediate Transfer Members;" U.S. application Ser. No. 08/706,057 filed Aug. 30, 1996, entitled "Fixing Apparatus and Film;" and U.S. application Ser. No. 08/786,614, filed Jan. 21, 1997, entitled "Ohmic Contact-Providing Compositions". The disclosures of each of these applications are hereby incorporated by reference in their entirety.
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