Claims
- 1. A heating device comprising:
- a heat generating element including a non-organic binder having dispersed therein and in electrically contacting state ceramic particles which have PTC characteristics, said element being formed by pulverizing ceramic sintered so as to have PTC characteristics, dispersing said PTC particles in said binder, and being incorporated at a temperature lower than the sintering temperature so as integrally to form the element while retaining the binder therein; and electrical means for applying a voltage across said heat generating element to cause heat generation without dissipation of the binder, wherein said heating device provides a substantially uniform heat distribution.
- 2. A device according to claim 1, wherein said particles have particle size of not more than 3 mm.
- 3. A device according to claim 2, wherein said particles have particle size of not less than 50.mu. but not more than 200.mu..
- 4. A device according to claim 1, wherein the inorganic binder is an insulating binder having, as a main component, alumina.
- 5. A device according to claim 1, wherein said inorganic binder is heat-resistive glass.
- 6. A heating device according to claim 1, wherein said heat generating element is a heat generating layer of a first roller and said device further includes a second roller for transporting a supporting member through a nip formed between said first and second rollers for fixing a toner image on the supporting member, and means for rotating at least one of said first and second rollers.
- 7. A device according to claim 6, wherein said second roller is provided with a heat generating layer including ceramic particles made from pulverized ceramic having PTC characteristics and a binder dispersing the ceramic particles therein.
- 8. A heating device according to claim 1, wherein said heat generating element is a heat generating layer of a first roller and wherein said device further includes:
- second and third rollers for transporting a supporting member through a nip formed therebetween, said second roller being heated by said first roller to fix a toner image on the supporting member; and
- means for rotating at least one of said first, second and third rollers.
- 9. A device according to claim 8, wherein at least one of said second and third rollers is provided with a heat generating layer including ceramic particles made from pulverized ceramic having PTC characteristics and a binder dispersing the ceramic particles therein.
- 10. A device according to claim 6 or 8, wherein said voltage applying means has electrodes for voltage application at the longitudinal ends of said first roller.
- 11. A device according to claim 6 or 8, wherein said voltage applying means includes electrodes at exterior and interior surfaces of said heat generating layer of said first roller.
- 12. A device according to claim 6 or 8, wherein said ceramic particles have particle size of not more than 3 mm.
- 13. A device according to claim 12, wherein said particles have particle size of not less than 50.mu., but not more than 200.mu..
- 14. A device according to claim 6 or 8, wherein the inorganic binder is an insulating binder having, as a main component, alumina.
- 15. A device according to claim 6 or 8, wherein said inorganic binder is heat-resistive glass.
- 16. A device according to claim 6 or 8, wherein said first roller has a top releasing layer.
- 17. A device according to claim 6 or 8, wherein said binder of the heat generating layer of the first roller is of a releasing nature.
- 18. A device according to claim 17, wherein the thermal conductivity of the binder is substantially the same as that of the ceramic particles.
- 19. A device according to claim 17, wherein the thermal conductivity of the binder is greater than that of the ceramic particles.
- 20. A heating device according to claim 1, wherein said heat generating element is a heat generating layer of a plate-like heating member for generating heat to fix a toner image on a supporting member.
- 21. A device according to claim 20, wherein said voltage applying means has electrodes for applying voltage or current across the thickness of the heat generating layer.
- 22. A device according to claim 20, wherein said voltage applying means has electrodes for applying voltage or current in a direction transversing the thickness of the heat generating layer.
- 23. A device according to claim 20, wherein said particles have particle size of not more than 3 mm.
- 24. A device according to claim 23, wherein said particles have particle size of not less than 50.mu. but not more than 200.mu..
- 25. A device according to claim 20, wherein the inorganic binder is an insulating binder having, as a main component, alumina.
- 26. A device according to claim 20, wherein said inorganic binder is heat-resistive glass.
- 27. A device according to claim 20, wherein said plate has a releasing layer on the side of said heat generating layer opposing the supporting member.
- 28. A device according to claim 20, wherein the binder of said heat generating layer has a releasing nature.
- 29. A device according to claims 1, 6, 8 or 20, wherein the thermal conductivity of the binder is substantially the same as that of the ceramic particles.
- 30. A device according to claim 1, 6, 8 or 20, wherein the thermal conductivity of the binder is greater than that of the ceramic particles.
- 31. A device according to claim 1, wherein said heat generating element is roller-shaped.
- 32. A device according to claim 1, wherein said heat generating element is plate-shaped.
Priority Claims (2)
Number |
Date |
Country |
Kind |
55-27064 |
Mar 1980 |
JPX |
|
55-27065 |
Mar 1980 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 238,565 filed Feb. 26, 1981, now abandoned.
US Referenced Citations (14)
Continuations (1)
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Number |
Date |
Country |
Parent |
238565 |
Feb 1981 |
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