Claims
- 1. An electrophotographic apparatus comprising;
- an electrostatic image bearing member;
- a contact charging member to which a voltage is externally applied, which electrostatically charges said electrostatic image bearing member while being brought into contact with it;
- an electrostatic image forming means for forming an electrostatic image on the charged electrostatic image bearing member;
- a developing means for developing the electrostatic image thus formed; said developing means comprising a developer carrying member and a developer container that holds therein a developer; said developer comprising a toner, fine resin particles with a surface shape sphericity .psi. of from 0.90 to 0.50, and fine inorganic particles; and
- a transfer means for transferring the toner image formed on said electrostatic image bearing member to a transfer medium.
- 2. The electrophotographic apparatus according to claim 1, wherein said electrostatic image bearing member has an OPC photosensitive layer.
- 3. The electrophotographic apparatus according to claim 1, wherein said contact charging member is connected with a voltage applying means for applying a direct current voltage.
- 4. The electrophotographic apparatus according to claim 1, wherein said contact charging member is connected with a voltage applying means for applying an alternating current voltage.
- 5. The electrophotographic apparatus according to claim 1, wherein said contact charging member is connected with a voltage applying means for applying a direct current vol&age overlaid with an alternating current voltage.
- 6. The electrophotographic apparatus according to claim 1, wherein said contact charging member is roller-shaped.
- 7. The electrophotographic apparatus according to claim 6, wherein said contact charging member has a release film surface layer.
- 8. The electrophotographic apparatus according to claim 1, wherein said contact charging member is blade-shaped.
- 9. The electrophotographic apparatus according to claim 1, wherein said electrostatic image bearing member is provided with a cleaning means for cleaning a toner remaining after transfer.
- 10. The electrophotographic apparatus according to claim 9, wherein said cleaning means is provided with a cleaning blade.
- 11. The electrophotographic apparatus according to claim 1, wherein said fine resin particles have an average particle diameter smaller than the average particle diameter of said toner and larger than the average particle diameter of said fine inorganic powder.
- 12. The electrophotographic apparatus according to claim 1, wherein said fine resin particles have a primary average particle diameter of from 0.03 .mu. to 1.0 .mu..
- 13. The electrophotographic apparatus according to claim 1, wherein said fine resin particles have a primary average particle diameter of from 0.05 .mu. to 0.8 .mu..
- 14. The electrophotogrphic apparatus according to claim 1, wherein said fine resin particles have a triboelectric charge quantity of from -200 .mu.c/g to .dbd.50 .mu.c/g.
- 15. The electrophotographic apparatus according to claim 1, wherein said fine resin particles have a tirboelectric charge quantity of from -100 .mu.c/g to +30 .mu.c/g.
- 16. The electrophotographic apparatus according to claim 1, wherein said fine resin particles have a specific resistance from 10.sup.6 .OMEGA..multidot.cm to 10.sup.13 .OMEGA..multidot.cm.
- 17. The electrophotographic apparatus according to claim 1, wherein said fine resin particles comprise a styrene resin.
- 18. The electrophotographic apparatus according to claim 1, wherein said fine resin particles have not less than 51% by weight of styrene monomer units.
- 19. The electrophotographic apparatus according to claim 1, wherein said fine resin particles have a glass transition point of 80.degree. C. or above.
- 20. The electrophotogrphic apparatus according to claim 1, wherein said toner has a weight average particle diameter of from 3.5 .mu.m to 20 .mu.m, said fine resin particles have a primary average particle diameter of from 0.03 .mu. to 1.0 .mu., and said fine inorganic powder has a primary average particle diameter of from 0.002 .mu. to 0.2 .mu.; the primary average particle diameter of said fine inorganic powder being smaller than the primary average particle diameter of said fine resin particles.
- 21. The electrophotographic apparatus according to claim 20, wherein said toner phase a weight average particle diameter of from 3.5 .mu.m to 14 .mu.m.
- 22. The electrophotographic apparatus according to claim 20, wherein said toner has a weight average particle diameter of from 4 .mu.m to 8 .mu.m.
- 23. The electrophotographic apparatus according to claim 22, wherein said toner comprises toner particles containing a charge control agent.
- 24. The electrophotographic apparatus according to claim 1, wherein said toner comprises toner particles containing a negative charge control agent represented by the following Formula (I): ##STR4## wherein M represents Cr, Co, Ni, Mn or Fe having the coordination number of 6; Ar represents an aryl group which is substituted or unsubstituted; X, X', Y and Y' are the same or different and each represent --O--, --CO--, --NH--or --NR--, where R represents an alkyl group having 1 to 4 carbon atoms; and A.sym. represents a hydrogen ion, a sodium ion, a potassium ion, an ammonium ion or an aliphatic ammonium ion.
- 25. The electrophotographic apparatus according to claim 1, wherein said toner comprises a toner particles containing a wax having a ratio (Mw/Mn) of weight average molecular weight (Mw) to number average molecular weight (Mn) of not less than 5.
- 26. The electrophotographic apparatus according to claim 1, wherein said toner comprises toner particles having a binder resin containing not less than 15% of a component with a molecular weight of not more than 5,000 in a GPC chromatogram.
- 27. The electrophotographic apparatus according to claim 1, wherein said toner comprises toner particles having a binder resin containing from 15% to 35% of a component with a molecular weight of not more than 5,000 in a GPC chromatogram.
- 28. The electrophotographic apparatus according to claim 27, wherein said toner comprises toner particles having a binder resin comprising a styrene polymer, a styrene copolymer, or a mixture of these.
- 29. The electrophotographic apparatus according to claim 1, wherein said toner comprises magnetic toner particles.
- 30. The electrophotographic apparatus according to claim 1, wherein sad toner comprises insulating magnetic toner particles having a negative triboelectric chargeability.
- 31. An apparatus unit comprising:
- an electrostatic image bearing member;
- a contact charging member to which a voltage is externally applied, which electrostatically charges said electrostatic image bearing member while being brought into contact with it; and
- a developing means for developing an electrostatic image thus formed; said developing means comprising a developer carrying member and a developer container that holds therein a developer; said developer comprising a toner, fine resin particles with a surface shape sphericity .psi. of from 0.90 to 0.50, and fine inorganic particles;
- said contact charging means and said developing means being held as one unit together with said electrostatic image bearing member, and said unit forming a single unit detachably provided in the body of an electrophotographic apparatus.
- 32. The apparatus unit according to claim 31, wherein said electrostatic image bearing member has an OPC photosensitive layer.
- 33. The apparatus unit according to claim 31, wherein said contact charging member is roller-shaped.
- 34. The apparatus unit according to claim 33, wherein said contact charging member has a release film surface layer.
- 35. The apparatus unit according to claim 31, wherein said contact charging member is blade-shaped.
- 36. The apparatus unit according to claim 31, wherein said electrostatic image bearing member is provided with a cleaning means for cleaning a toner remaining on its surface.
- 37. The apparatus unit according to claim 36, wherein said cleaning means has a cleaning blade.
- 38. The apparatus unit according to claim 31, wherein said fine resin particles have an average particle diameter smaller than the average particle diameter of said toner and larger than the average particle diameter of said fine inorganic powder.
- 39. The apparatus unit according to claim 31, wherein said fine resin particles have a primary average particle diameter of from 0.03 .mu. to 1.0 .mu..
- 40. The apparatus unit according to claim 31, wherein said fine resin particles have a primary average particle diameter of from 0.05 .mu. to 0.8 .mu..
- 41. The apparatus unit according to claim 31, wherein said fine resin particles have a triboelectric charge quantity of from -200 .mu.c/g to +50 .mu.c/g.
- 42. The apparatus unit according to claim 31, wherein said fine resin particles have a triboelectric charge quantity of from -100 .mu.c/g to +30 .mu.c/g.
- 43. The apparatus unit according to claim 31, wherein said fine resin particles have a specific resistance of from 10.sup.6 .OMEGA..multidot.cm to 10.sup.13 .OMEGA..multidot.cm.
- 44. The apparatus unit according to claim 31, wherein said fine resin particles comprise a styrene resin.
- 45. The apparatus unit according to claim 31, wherein said fine resin particles have not less than 51% by weight of styrene monomer units.
- 46. The apparatus unit according to claim 31, wherein said fine resin particles have a glass transition point of 80.degree. C. or above.
- 47. The apparatus unit according to claim 31, wherein said toner has a weight average particle diameter of from 3.5 .mu.m to 20 .mu.m, said fine resin particles have a primary average particle diameter of from 0.03 .mu. to 1.0 .mu., and said fine inorganic powder has a primary average particle diameter of from 0.002 .mu. to 0.2 .mu.; the primary average particle diameter of said fine inorganic powder being smaller than the primary average particle diameter of said fine resin particles.
- 48. The apparatus unit according to claim 47, wherein said toner has a weight average particle diameter of from 3.5 .mu.m to 14.mu.m.
- 49. The apparatus unit according to claim 47, wherein said toner has a weight average particle diameter of from 4 .mu.m to 8 .mu..
- 50. The apparatus unit according to claim 49, wherein said toner comprises toner particles containing a charge control agent.
- 51. The apparatus unit according to claim 49, wherein said toner comprises toner particles containing a negative charge control agent represented by the following ##STR5## wherein M represents Cr, Co, Ni, Mn or Fe having the coordination number of 6; Ar represents an aryl group which is substituted or unsubstituted; X, X', Y and Y' are the same or different and each represent --O--, --CO--, --NH--or --NR--, where R represents an alkyl group having 1 to 4 carbon atoms; and A.sym. represents a hydrogen ion, a sodium ion, a potassium ion, an ammonium or an aliphatic ammonium ion.
- 52. The apparatus unit according to claim 31, wherein said toner comprises toner particles containing a wax having a ratio (Mw/Mn) of weight average molecular weight (Mw) to number average molecular weight (Mn) of not less than 5.
- 53. The apparatus unit according to claim 31, wherein said toner comprises toner particles having a binder resin containing not less than 15% of a component with a molecular weight of not more than 5,000 in a GPC chromatogram.
- 54. The apparatus unit according to claim 31, wherein said toner comprises toner particles having a binder resin containing from 15% to 35% of a component with a molecular weight of not more than 5,000 in a GPC chromatogram.
- 55. The apparatus unit according to claim 54, wherein said toner comprises toner particles having a binder resin comprising a styrene polymer, a styrene copolymer, or a mixture of these.
- 56. The apparatus unit according to claim 31, wherein said toner comprises magnetic toner particles.
- 57. The apparatus unit according to claim 31, wherein said toner comprises insulating magnetic toner particles having a negative triboelectric chargeability.
- 58. A facsimile apparatus comprising an electrophotographic apparatus and a receiver means for receiving image information from a remote terminal;
- said electrophotographic apparatus comprising:
- an electrostatic image bearing member;
- a contact charging member to which a voltage is externally applied, which electrostatically charges said electrostatic image bearing member while being brought into contact with it;
- an electrostatic image forming means for forming an electrostatic image on the charged electrostatic image bearing member;
- a developing means for developing the electrostatic image thus formed; said developing means comprising a developer carrying member and a developer container that holds therein a developer; said developer comprising a toner, fine resin particles with a surface shape sphericity .psi. of from 0.90 to 0.50, and fine inorganic particles; and
- a transfer means for transferring the toner image formed on said electrostatic image bearing member to a transfer medium.
- 59. The facsimile apparatus according to claim 58, wherein said electrostatic image bearing member has an OPC photosensitive layer.
- 60. The facsimile apparatus according to claim 58, wherein said contact charging member is connected with a voltage applying means for applying a direct current voltage.
- 61. The facsimile apparatus according to claim 58, wherein said contact charging member is connected with a voltage applying means for applying an alternating current voltage.
- 62. The facsimile apparatus according to claim 58, wherein said contact charging member is connected with a voltage applying means for applying a direct current voltage overlaid with an alternating current voltage.
- 63. The facsimile apparatus according to claim 58, wherein said contact charging member is roller-shaped.
- 64. The facsimile apparatus according to claim 63, wherein said contact charging member has a release film surface layer.
- 65. The facsimile apparatus according to claim 58, wherein said contact charging member is blade-shaped.
- 66. The facsimile apparatus according to claim 58, wherein said electrostatic image bearing member is provided with a cleaning means for cleaning a toner remaining after transfer.
- 67. The facsimile apparatus according to claim 66, wherein said cleaning means is provided with a cleaning blade.
- 68. The facsimile apparatus according to claim 58, wherein said fine resin particles have an average particle diameter smaller than the average particle diameter of said toner and larger than the average particle diameter of said fine inorganic powder.
- 69. The facsimile apparatus according to claim 58, wherein said fine resin particles have a primary average particle diameter of from 0.03 .mu. to 1.0 .mu..
- 70. The facsimile apparatus according to claim 58, wherein said fine resin particles have a primary average particle diameter of from 0.05 .mu. to 0.8 .mu..
- 71. The facsimile apparatus according to claim 58, wherein said fine resin particles have a triboelectric charge quantity of from -200 .mu.c/g to +50 .mu.c/g.
- 72. The facsimile apparatus according to claim 58, wherein said fine resin particles have a triboelectric charge quantity of from -100 .mu.c/g to +30 .mu.c/g.
- 73. The facsimile apparatus according to claim 58, wherein said fine resin particles have a specific resistance of from 10.sup.6 .OMEGA..multidot.cm to 10.sup.13 .OMEGA..multidot.cm.
- 74. The facsimile apparatus according to claim 58, wherein said fine resin particles comprise a styrene resin.
- 75. The facsimile apparatus according to claim 58, wherein said fine resin particles have not less than 51% by weight of styrene monomer units.
- 76. The facsimile apparatus according to claim 58, wherein said fine resin particles have a glass transition point of 802 C. or above.
- 77. The facsimile apparatus according to claim 58, wherein said toner has a weight average particle diameter of from 3.5 .mu.m to 20 .mu.m, said fine resin particles have a primary average particle diameter of from 0.03 .mu. to 1.0 .mu., and said fine inorganic powder has a primary average particle diameter of from 0.002 .mu. to 0.2 .mu.; the primary average particle diameter of said fine inorganic powder being smaller than the primary average particle diameter of said fine resin particles.
- 78. The facsimile apparatus according to claim 77, wherein said toner has a weight average particle diameter of from 3.5 .mu.m to 14 .mu.m.
- 79. The facsimile apparatus according to claim 77, wherein said toner has a weight average particle diameter of from 4 .mu.m to 8 .mu.m.
- 80. The facsimile apparatus according to claim 79, wherein said toner comprises toner particles containing a charge control agent.
- 81. The facsimile apparatus according to claim 58, wherein said toner comprises toner particles containing a negative charge control agent represented by the following Formula (I): ##STR6## wherein M represents Cr, Co, Ni, Mn or Fe having the coordination number of 6; Ar represents an aryl group which is substituted or unsubstituted; X, X', Y and Y' are the same or different and each represent --O--, --CO--, --NH--or --NR--, where R represents an alkyl group having 1 to 4 carbon atoms; and A.sym. represents a hydrogen ion, a sodium ion, a potassium ion, an ammonium ion or an aliphatic ammonium ion.
- 82. The facsimile apparatus according to claim 58, wherein sad toner comprises toner particles containing a wax having a ratio (Mw/Mn) of weight average molecular weight (Mw) to number average molecular weight (Mn) of not less than 5.
- 83. The facsimile apparatus according to claim 58, wherein sad toner comprises toner particles having a binder resin containing not less than 15% of a component with a molecular weight of not more than 5,000 in a GPC chromatogram.
- 84. The facsimile apparatus according to claim 58, wherein said toner comprises toner particles having a binder resin containing from 15% to 35% of a component with a molecular weight of not more than 5,000 in a GPC chromatogram.
- 85. The facsimile apparatus according to claim 84, wherein said toner comprises toner particles having a binder resin comprising a styrene polymer, a styrene copolymer, or a mixture of these.
- 86. The facsimile apparatus according to claim 58, wherein said toner comprises magnetic toner particles.
- 87. The facsimile apparatus according to claim 58, wherein said toner comprises insulating magnetic toner particles having a negative triboelectric chargeability.
Priority Claims (4)
Number |
Date |
Country |
Kind |
2-287158 |
Oct 1990 |
JPX |
|
3-036165 |
Mar 1991 |
JPX |
|
3-036166 |
Mar 1991 |
JPX |
|
3-036180 |
Mar 1991 |
JPX |
|
Parent Case Info
This application is a division of application Ser. No. 07/783,185 filed Oct. 28, 1991, now U.S. Pat. No. 5,270,143.
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Divisions (1)
|
Number |
Date |
Country |
Parent |
783185 |
Oct 1991 |
|