Claims
- 1. An apparatus for developing an electrostatic image, comprising:
a photoconductor drum; a magnetic brush contacting said photoconductor drum, said magnetic brush comprising a mixture of toner and hard magnetic carriers.
- 2. The apparatus of claim 1, wherein said hard magnetic carriers have a coercivity of at least 300 gauss and exhibit an induced magnetic moment of at least 20 EMU/gm when in an applied field of 1000 gauss.
- 3. The apparatus of claim 1, wherein said magnetic brush is registered to said drum.
- 4. The apparatus of claim 1, wherein said magnetic brush comprises a magnetic core within a shell having a center of rotation, and said core is offset relative to said center of rotation toward said drum.
- 5. The apparatus of claim 4, further comprising a skive adjacent said shell at an apogee where said shell is furthest from said core.
- 6. The apparatus of claim 4, wherein said shell is closest to said core at a perigee, said drum has a direction of rotation, and said drum is closest to said shell at a location offset from said perigee in a direction opposite said direction of rotation.
- 7. The apparatus of claim 4, further comprising a skive adjacent said shell at an apogee where said shell is furthest from said core,
and wherein said shell is closest to said core at a perigee, said drum has a direction of rotation, and said drum is closest to said shell at a location offset from said perigee in a direction opposite said direction of rotation.
- 8. The apparatus of claim 4, further comprising a skive adjacent said shell at an apogee where said shell is furthest from said core,
and wherein said shell is closest to said core at a perigee, said drum has a direction of rotation, and said drum is closest to said shell at a location offset from said perigee in a direction opposite said direction of rotation, and the two are 180° apart.
- 9. The apparatus of claim 4, further comprising a skive adjacent said shell at an apogee where said shell is furthest from said core,
and wherein said shell is closest to said core at a perigee, said drum has a direction of rotation, and said drum is closest to said shell at a location offset from said perigee in a direction opposite said direction of rotation, and a line drawn from said perigee to said metering skive is horizontal.
- 10. The apparatus of claim 1, further comprising a metering skive adjacent said magnetic brush having wings at both ends that locally reduce the flow of said toner/carrier mixture proximate opposing ends of said drum.
- 11. An apparatus for developing an electrostatic image, comprising:
a photoconductor drum; a magnetic brush contacting said photoconductor drum, said magnetic brush comprising a mixture of toner and hard magnetic carriers, said magnetic brush comprising a rotatable magnetic core within a shell.
- 12. An apparatus for developing an electrostatic image, comprising:
a photoconductor drum; a magnetic brush contacting said photoconductor drum, said magnetic brush comprising a mixture of toner and hard magnetic carriers, said magnetic brush comprising a rotatable magnetic core within a rotatable shell.
- 13. An apparatus for developing an electrostatic image, comprising:
a photoconductor drum; a magnetic brush contacting said photoconductor drum, said magnetic brush comprising a mixture of toner and hard magnetic carriers, said magnetic brush comprising a magnetic core within a rotatable shell, said magnetic core being rotatable in a direction of rotation and said shell being rotatable in a direction
- 14. The apparatus of claim 13, wherein said drum has a direction of rotation that is opposite said direction of rotation of said shell.
- 15. The apparatus of claim 13, wherein said drum has a direction of rotation that is co-directional with said direction of rotation of said magnetic core.
- 16. The apparatus of claim 13, wherein said drum has a direction of rotation that is opposite said direction of rotation of said shell, and
said drum has a direction of rotation that is co-directional with said direction of rotation of said magnetic core.
- 17. A method for developing an electrostatic image, comprising:
applying a mixture of toner and hard magnetic carriers to a photoconductor drum with a magnetic brush.
- 18. The method of claim 17, wherein said hard magnetic carriers have a coercivity of at least 300 gauss and exhibit an induced magnetic moment of at least 20 EMU/gm when in an applied field of 1000 gauss.
- 19. The method of claim 17, further comprising registering said magnetic brush to said drum.
- 20. The method of claim 17, further comprising a metering said mixture of toner and hard magnetic carriers with a skive adjacent said magnetic brush having wings at both ends that locally reduce the flow of said toner/carrier mixture proximate opposing ends of said drum.
- 21. A method for developing an electrostatic image, comprising:
applying a mixture of toner and hard magnetic carriers to a photoconductor drum with a magnetic brush comprising a magnetic core within a shell having a center of rotation, and said magnetic core is offset relative to said center of rotation toward said drum.
- 22. The method of claim 21, further comprising metering said toner/carrier mixture with a skive adjacent said shell at an apogee where said shell is furthest from said core.
- 23. The method of claim 21, wherein said drum has a direction of rotation and further comprising applying said toner/carrier mixture to said drum at a location offset in a direction opposite said direction of rotation from a perigee where said shell is closest to said core.
- 24. The method of claim 21, further comprising metering said toner/carrier mixture with a skive adjacent said shell at an apogee where said shell is furthest from said core, and
wherein said drum has a direction of rotation and further comprising applying said toner/carrier mixture to said drum at a location offset in a direction opposite said direction of rotation from a perigee where said shell is closest to said core.
- 25. The method of claim 21, further comprising metering said toner/carrier mixture with a skive adjacent said shell at an apogee where said shell is furthest from said core, and
wherein said drum has a direction of rotation and further comprising applying said toner/carrier mixture to said drum at a location offset in a direction opposite said direction of rotation from a perigee where said shell is closest to said core, and said skive and said perigee are 180° apart.
- 26. The method of claim 21, further comprising metering said toner/carrier mixture with a skive adjacent said shell at an apogee where said shell is furthest from said core, and
wherein said drum has a direction of rotation and further comprising applying said toner/carrier mixture to said drum at a location offset in a direction opposite said direction of rotation from a perigee where said shell is closest to said core, and a line from said perigee to said metering, skive is horizontal.
- 27. A method for developing an electrostatic image, comprising:
applying magnetic brush to a drum photoconductor, said magnetic brush comprising a mixture of toner and hard magnetic carriers with a mass flow rate; and limiting said mass flow rate of said mixture to be less than a limiting mass flow rate for which roll-back occurs.
- 28. The method of claim 27, further where said magnet brush comprises a shell and further comprising a skive adjacent said shell that controls said mass flow rate, and further comprising adjusting the distance between said skive and said shell to achieve a predetermined mass flow rate.
- 29. The method of claim 27, further comprising determining effects on said mass flow rate by experimental observation and measurement.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/204,881, filed May 17, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60204881 |
May 2000 |
US |