Claims
- 1. An apparatus unit comprising
- an electrostatically chargeable member for supporting thereon an electrostatic image,
- a means for electrostatically charging the chargeable member, and
- a developing means for developing an electrostatic image supported on said chargeable member; wherein
- said developing means has a toner for developing an electrostatic image, comprising a styrene type binder resin and a coloring agent; wherein an aldehyde is contained in said toner in an amount of not more than 0.005% by weight based on a weight of the toner, and
- said charging means and developing means are integrally held together with said chargeable member to form a unit so that a single unit capable of being freely mounted on and detected from an apparatus main body is formed.
- 2. The apparatus unit according to claim 1, wherein said styrene type binder resin contains THF-insoluble matter.
- 3. The apparatus unit according to claim 1, wherein said styrene type binder resin comprises a cross-linked styrene polymer or styrene copolymer or a mixture thereof.
- 4. The apparatus unit according to claim 1, wherein said styrene type binder resin contains THF-insoluble matter and contains an aldehyde in an amount of not more than 0.1% by weight based on the weight of the styrene type binder resin.
- 5. The apparatus unit according to claim 4, wherein said styrene type binder resin comprises a cross-linked styrene resin and contains an aldehyde in an amount of not more than 0.005% by weight based on the weight of the styrene type binder resin.
- 6. The apparatus unit according to claim 5, wherein said aldehyde comprises benzaldehyde.
- 7. The apparatus unit according to claim 1, wherein said styrene type binder resin comprises a styrene polymer or styrene copolymer prepared by suspension polymerization, or a mixture thereof.
- 8. The apparatus unit according to claim 1, wherein said aldehyde is contained in an amount of not more than 0.004% by weight based on the weight of the toner.
- 9. The apparatus unit according to claim 1, wherein said coloring agent comprises a magnetic material.
- 10. The apparatus unit according to claim 9, wherein said magnetic material is contained in an amount of from 30 to 150 parts by weight based on 100 parts by weight of the binder resin.
- 11. The apparatus unit according to claim 9, wherein said magnetic material is contained in an amount of from 40 to 100 parts by weight based on 100 parts by weight of the binder resin.
- 12. The apparatus unit according to claim 1, wherein said coloring agent comprises at least one of a dye and a pigment.
- 13. The apparatus unit according to claim 12, wherein said coloring agent is contained in an amount of from 5 to 20% by weight based on the weight of the binder resin.
- 14. The apparatus unit according to claim 1, wherein said styrene type binder resin is cross-linked with divinylbenzene.
- 15. The apparatus unit according to claim 1, wherein said styrene type binder resin comprises a styrene/acrylate copolymer.
- 16. The apparatus unit according to claim 1, wherein said styrene type binder resin comprises a styrene/methacrylate copolymer.
- 17. The apparatus unit according to claim 1, wherein said styrene type binder resin contains from 10 to 70% by weight of a THF-insoluble matter.
- 18. The apparatus unit according to claim 1, wherein said styrene type binder resin contains from 10 to 60% by weight of THF-insoluble matter.
- 19. The apparatus unit according to claim 1, wherein said binder resin (i) has a weight average molecular weight/number average molecular weight (Mw/Mn) of .gtoreq.5, at least one peak in the region of a molecular weight of from 2,000 to 10,000 and at least one peak or shoulder in the region of a molecular weight of from 15,000 to 100,000 in the molecular weight distribution measured by gel permeation chromatography of a THF-soluble matter in the binder resin, and (ii) contains a component with a molecular weight of not more than 10,000 in an amount of from 10 to 50% by weight based on the THF-soluble resin composition.
- 20. The apparatus unit according to claim 19, wherein said binder resin contains from 10 to 70% by weight of a THF-insoluble matter.
- 21. The apparatus unit according to claim 19, wherein said binder resin contains from 10 to 60% by weight of a THF-insoluble matter.
- 22. The apparatus unit according to claim 19, wherein said binder resin comprises a styrene type binder resin cross-linked with a cross-linking agent the cross-linked styrene type binder resin is prepared by suspension polymerization.
- 23. The apparatus unit according to claim 1, wherein said binder resin comprises a styrene type binder resin containing coproduced benzaldehyde contaminant having an undesired odor, wherein said benzaldehyde is contained in said toner in an amount of not more than 0.005% by weight based on the weight of the toner.
- 24. The apparatus unit according to claim 1, wherein said styrene binder resin contains THF-insoluble matter, and contains benzaldehyde in an amount of not more than 0.01% by weight based on the weight of the styrene binder resin.
- 25. The apparatus unit according to claim 24, wherein said styrene binder resin comprises a cross-linked styrene resin and contains benzaldehyde in an amount of not more than 0.005% by weight based on the weight of the cross-linked styrene resin.
- 26. The apparatus unit according to claim 1, wherein said binder resin has a wight average molecular weight/number average molecular weight (Mw/Mn) of .gtoreq.5, at least one peak in the region of a molecular weight of from 2,000 to 10,000 and at least one peak or shoulder in the region of a molecular weight of from 15,000 to 100,000 in the molecular weight distribution measured by gel permeation chromatography of a THF-soluble matter in the binder resin.
- 27. The apparatus unit according to claim 1, wherein the means for electrostatically charging the chargeable member is a contact charging assembly.
- 28. The apparatus unit according to claim 1, wherein the means for electrostatically charging the chargeable member is a charging roller.
- 29. The apparatus unit according to claim 1, wherein the electrostatically chargeable member for supporting thereon an electrostatic image is a photosensitive drum and the means for electrostatically charging the chargeable member is a contact charging assembly.
- 30. The apparatus unit according to claim 1, wherein the electrostatically chargeable member for supporting thereon an electrostatic image is a photosensitive drum and the means for electrically charging the chargeable member is a charging roller.
- 31. A facsimile apparatus comprising an electrophotographic apparatus and a means for receiving image information from a remote terminal wherein said electrophotographic apparatus comprises:
- an electrostatically chargeable member for supporting thereon an electrostatic image,
- a means for electrostatically charging the chargeable member, and
- a developing means for developing an electrostatic image supported on said chargeable member; wherein
- said developing means has a toner for developing an electrostatic image comprising a styrene type binder resin and a coloring agent; wherein an aldehyde is contained in said toner in an amount of not more than 0.005% by weight based on a weight of the toner.
- 32. The facsimile apparatus according to claim 31, wherein said styrene type binder resin contains a THF-insoluble matter.
- 33. The facsimile apparatus according to claim 31, wherein said styrene type binder resin comprises a cross-linked styrene polymer or styrene copolymer, or a mixture thereof.
- 34. The facsimile apparatus according to claim 31, wherein said styrene type binder resin contains a THF-insoluble matter and contains an aldehyde in an amount of not more than 0.01% by weight based on the weight of the styrene-type binder resin.
- 35. The facsimile apparatus according to claim 34, wherein said styrene type binder resin comprises a cross-linked styrene resin and contains an aldehyde in an amount of not more than 0.005% by weight based on the weight of the styrene-type binder resin.
- 36. The facsimile apparatus according to claim 35, wherein said aldehyde comprises benzaldehyde.
- 37. The facsimile apparatus according to claim 31, wherein said styrene type binder resin comprises a styrene polymer or styrene copolymer prepared by suspension polymerization, or a mixture thereof.
- 38. The facsimile apparatus according to claim 31, wherein said aldehyde is contained in an amount of not more than 0.004% by weight based on the weight of the toner.
- 39. The facsimile apparatus according to claim 31, wherein said coloring agent comprises a magnetic material.
- 40. The facsimile apparatus according to claim 39, wherein said magnetic material is contained in an amount of from 30 to 150 parts by weight based on 100 parts by weight of the binder resin.
- 41. The facsimile apparatus according to claim 39, wherein said magnetic material is contained in an amount of from 40 to 100 parts by weight based on 100 parts by weight of the binder resin.
- 42. The facsimile apparatus according to claim 31, wherein said coloring agent comprises at least one of a dye and a pigment.
- 43. The facsimile apparatus according to claim 42, wherein said coloring agent is contained in an amount of from 5 to 20% by weight based on the weight of the binder resin.
- 44. The facsimile apparatus according to claim 31, wherein said styrene type binder resin is cross-linked with divinylbenzene.
- 45. The facsimile apparatus according to claim 31, wherein said styrene type binder resin comprises a styrene/acrylate copolymer.
- 46. The facsimile apparatus according to claim 31, wherein said styrene type binder resin comprises a styrene/methacrylate copolymer.
- 47. The facsimile apparatus according to claim 31, wherein said binder resin contains from 10 to 70% by weight of a THF-insoluble matter.
- 48. The facsimile apparatus according to claim 31, wherein said binder resin contains from 10 to 60% by weight of THF-insoluble matter.
- 49. The facsimile apparatus according to claim 31, wherein said binder resin (i) has a weight average molecular weight/number average molecular weight (Mw/Mn) of .gtoreq.5, at least one peak in the region of a molecular weight of from 2,000 to 10,000 and at least one peak or shoulder in the region of a molecular weight of from 15,000 to 100,000 in the molecular weight distribution measured by gel permeation chromatography of a THF-soluble matter in the binder resin, and (ii) contains a component with a molecular weight of not more than 10,000 in an amount of from 10 to 50% by weight based on the THF-soluble resin composition.
- 50. The facsimile apparatus according to claim 49, wherein said binder resin contains from 10 to 70% by weight of a THF-insoluble matter.
- 51. The facsimile apparatus according to claim 49, wherein said binder resin contains from 10 to 60% by weight of a THF-insoluble matter.
- 52. The facsimile apparatus according to claim 49, wherein said binder resin comprises a styrene type binder resin cross-linked with a cross-linking agent and the cross-linked styrene type binder resin is prepared by suspension polymerization.
- 53. The facsimile apparatus according to claim 31, wherein said binder resin comprises a styrene type binder resin containing coproduced benzaldehyde contaminant having an undesired odor, wherein said benzaldehyde is contained in said toner in an amount of not more than 0.005% by weight based on the weight of the toner.
- 54. The facsimile apparatus according to claim 31, wherein said styrene binder resin contains THF-insoluble matter and contains benzaldehyde in an amount of not more than 0.01% by weight based on the weight of the styrene binder resin.
- 55. The facsimile apparatus according to claim 54, wherein said styrene binder resin comprises a cross-linked styrene resin and contains benzaldehyde in an amount of nor more than 0.005% by weight based on the weight of the cross-linked styrene resin.
- 56. The facsimile apparatus according to claim 31, wherein said binder resin has a weight average molecular weight/number average molecular weight (Mw/Mn) of .gtoreq.5, at least one peak in the region of a molecular weight of from 2,000 to 10,000 and at least one peak or shoulder in the region of a molecular weight of from 15,000 to 100,000 in the molecular weight distribution measured by gel permeation chromatography of a THF-soluble matter in the binder resin.
- 57. The facsimile apparatus according to claim 31, wherein the means for electrostatically charging the chargeable member is a contact charging assembly.
- 58. The facsimile apparatus according to claim 31, wherein the means for electrostatically charging the chargeable member is a charging roller.
- 59. The facsimile apparatus according to claim 31, wherein the electrostatically chargeable member for supporting thereon an electrostatic image is a photosensitive drum and the means for electrostatically charging the chargeable member is a charging assembly.
- 60. The facsimile apparatus according to claim 31, wherein the electrostatically chargeable member for supporting thereon an electrostatic image is a photosensitive drum and the means for electrostatically charging the chargeable member is a charging roller.
- 61. An image forming method comprising the steps of:
- electrostatically charging a chargeable member for supporting thereon an electrostatic image;
- forming an electrostatic image on the chargeable member;
- forming the electrostatic image on the chargeable member to form a toner image with a toner comprising a styrene binder resin and a coloring agent, wherein an aldehyde is contained in said toner in an amount of not more than 0.005% by weight based on a weight of the toner;
- transferring the toner image to a transfer paper; and
- fixing the toner image on the transfer paper by applying heat and pressure to the toner image.
- 62. The image forming method according to claim 16, including the step of employing a contact charging assembly to electrostatically charge the chargeable member.
- 63. The image forming method according to claim 62, including the step of employing a contact charging roller to electrostatically charge the chargeable member.
- 64. The image forming method according to claim 62, including the step of employing a photosensitive drum as the chargeable member for supporting thereon an electrostatic image and a contact charging assembly to electrostatically charge the chargeable member.
- 65. The image forming method according to claim 62, including the step of employing a photosensitive drum as the chargeable member for supporting thereon an electrostatic image and a contact charging roller to electrostatically charge the chargeable member.
- 66. The image forming method according to claim 62, including the step of fixing the toner image on the transfer paper employing a heat-pressure roller fixing unit.
- 67. The image forming method according to claim 61, wherein said styrene binder resin contains THF-insoluble matter.
- 68. The image forming method according to claim 66, wherein said styrene binder resin comprises a cross-linked styrene polymer or styrene copolymer or a mixture thereof.
- 69. The image forming method according to claim 61, wherein said styrene binder resin contains THF-insoluble matter and contains an aldehyde in an amount of not more than 0.01% by weight based on the weight of the styrene binder resin.
- 70. The image forming method according to claim 69, wherein said styrene binder resin comprises a cross-linked styrene resin and contains an aldehyde in an amount of not more than 0.005% by weight based on the weight of the styrene binder resin.
- 71. The image forming method according to claim 70, wherein said aldehyde comprises benzaldehyde.
- 72. The image forming method according to claim 61, wherein said styrene binder resin comprises a styrene polymer or a styrene copolymer prepared by suspension polymerization or a mixture thereof.
- 73. The image forming method according to claim 61, wherein said aldehyde is contained in an amount of not more than 0.004% by weight based on the weight of the toner.
- 74. The image forming method according to claim 61, wherein said coloring agent comprises a magnetic material.
- 75. The image forming method according to claim 74, wherein said magnetic material is present in an amount of from 30 to 150 parts by weight based on 100 parts by weight of the binder resin.
- 76. The image forming method according to claim 74, wherein said magnetic material is present in an amount of from 40 to 100 parts by weight based on 100 parts by weight of the binder resin.
- 77. The image forming method according to claim 61, wherein said coloring agent comprises at least one of a dye a pigment.
- 78. The image forming method according to claim 77, wherein said coloring agent is present in an amount of from 5 to 20% by weight based on the weight of the binder resin.
- 79. The image forming method according to claim 61, wherein said styrene binder resin is cross-linked with divinylbenzene.
- 80. The image forming method according to claim 16, wherein said styrene binder resin comprises a styrene-acrylate copolymer.
- 81. The image forming method according to claim 61, wherein said styrene binder resin comprises a styrene-methacrylate copolymer.
- 82. The image forming method according to claim 61, wherein said styrene binder resin contains from 10 to 70% by weight of THF-insoluble matter.
- 83. The image forming method according to claim 61, wherein said styrene binder resin contains from 10 to 60% by weight of a THF-insoluble matter.
- 84. The image forming method according to claim 61, wherein said binder resin (i) has a weight average molecular weight/number average molecular weight (Mw/Mn) of .gtoreq.5, at least one peak in the region of a molecular weight of from 2,000 to 10,000 and at least the peak or shoulder in the region of a molecular weight of from 15,000 to 100,000 in the molecular weight distribution measured by gel permeation chromatography of a THF-soluble matter in the binder resin, and (ii) contains a component with a molecular weight of not more than 10,000 in an amount of from 10 to 50% by weight based on the THF-soluble resin composition.
- 85. The image forming method according to claim 84, wherein said binder resin contains from 10 to 70% by weight of a THF-insoluble matter.
- 86. The image forming method according to claim 84, wherein said binder resin contains from 10 to 60% by weight of a THF-insoluble matter.
- 87. The image forming method according to claim 84, wherein said binder resin comprises a styrene binder resin cross-linked with a cross-linking agent and the cross-linked styrene binder resin is prepared by suspension polymerization.
- 88. The image forming method according to claim 61, wherein said binder resin comprises a styrene binder resin containing coproduced benzaldehyde contaminant having an undesired odor, wherein said benzaldehyde is present in said toner in an amount of not more than 0.005% by weight based on the weight of the toner.
- 89. The image forming method according to claim 61, wherein said binder resin contains THF-insoluble matter and contains benzaldehyde in an amount of not more than 0.1% by weight based on the weight of the styrene binder resin.
- 90. The image forming method according to claim 89, wherein said styrene binder resin comprises a cross-linked styrene resin and contains benzaldehyde in an amount of not more than 0.005% by weight based on the weight of the cross-linked styrene resin.
- 91. The image forming method according to claim 61 wherein said binder resin has a weight average molecular weight/number average molecular weight (Mw/Mn) of .gtoreq.5, at least one peak in a region of a molecular weight of from 2,000 to 10,000 and at least one peak or shoulder in a region of a molecular weight of from 15,000 to 10,000 in the molecular weight distribution measured by gel permeation chromatography of a THF-soluble matter in the binder resin.
Priority Claims (2)
Number |
Date |
Country |
Kind |
1-239298 |
Sep 1989 |
JPX |
|
1-239299 |
Sep 1989 |
JPX |
|
Parent Case Info
This application is a division of application Ser. No. 07/582,328 filed Sep. 14, 1990, now U.S. Pat. No. 5,126,224.
US Referenced Citations (9)
Divisions (1)
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Number |
Date |
Country |
Parent |
582328 |
Sep 1990 |
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