Claims
- 1. An image-forming substrate comprising:
a base member; and a layer of microcapsules, coated over said base member, that contains at least one type of microcapsule filled with a dye, said at least one type of microcapsule exhibiting a pressure/temperature characteristic such that, when said at least one type of microcapsule is squashed and broken under a predetermined pressure at a predetermined temperature, said dye seeps from said squashed and broken microcapsule, wherein said at least one type of microcapsule is coated with a radiation absorbent material absorbing electromagnetic radiation, having a specific wavelength, so as to be heated to said predetermined temperature by irradiation with a beam of radiation having said specific wavelength.
- 2. An image-forming substrate as set forth in claim 1, wherein said at least one type of microcapsule has a shell wall composed of a resin which exhibits said pressure/temperature characteristic.
- 3. An image-forming substrate as set forth in claim 1, wherein said radiation absorbent material comprises an infrared absorbent pigment exhibiting one of a transparent pigmentation and a milky white pigmentation.
- 4. An image-forming system comprising:
an image-forming substrate including a base member; and a layer of microcapsules, coated over said base member, that contains at least one type of microcapsule filled with a dye, said at least one type of microcapsule exhibiting a pressure/temperature characteristic such that, when said at least one type of microcapsule is squashed and broken under a predetermined pressure at a predetermined temperature, said dye seeps from said squashed and broken microcapsule, said microcapsules being coated with a radiation absorbent material absorbing electromagnetic radiation having a specific wavelength; and an image-forming apparatus that forms an image on said image-forming substrate, said image-forming apparatus including a pressure application unit that exerts said predetermined pressure on said layer of microcapsules, and an irradiating unit that irradiates said layer of microcapsules with a beam of radiation having said specific wavelength, such that a portion of said layer of microcapsules, irradiated by said beam of radiation, are heated to said predetermined temperature.
- 5. An image-forming system as set forth in claim 4, wherein said at least one type of microcapsule has a shell wall composed of a resin which exhibits said pressure/temperature characteristic.
- 6. An image-forming system as set forth in claim 4, wherein said irradiating unit comprises an optical scanning system that includes a radiation beam emitter that emits said beam of radiation, and an optical deflector that deflects said beam of radiation so as to scan said layer of microcapsules with said deflected beam of radiation.
- 7. An image-forming system as set forth in claim 6, wherein said radiation beam emitter comprises an infrared source that emits an infrared beam as said beam of radiation.
- 8. An image-forming substrate comprising:
a base member; and a layer of microcapsules, coated over said base member, that contains a first type of microcapsule filled with a first dye, and a second type of microcapsule filled with a second dye, said first and second types of microcapsules exhibiting a pressure/temperature characteristic such that, when each of said first and second types of microcapsules is squashed and broken under a predetermined pressure at a predetermined temperature, said dye concerned seeps from said squashed and broken microcapsule, wherein said first type of microcapsule is coated with a first radiation absorbent material absorbing electromagnetic radiation having a first specific wavelength, so as to be heated to said first predetermined temperature by irradiation with a first beam of radiation having said first specific wavelength, and said second type of microcapsule is coated with a second radiation absorbent material absorbing electromagnetic radiation having a second specific wavelength, so as to be heated to said second predetermined temperature by irradiation with a second beam of radiation having said second specific wavelength.
- 9. An image-forming substrate as set forth in claim 8, wherein each of said first and second types of microcapsules has a shell wall composed of a resin which exhibits said pressure/temperature characteristic.
- 10. An image-forming substrate as set forth in claim 8, wherein said first radiation absorbent material comprises a first infrared absorbent pigment that exhibits one of a transparent pigmentation and a milky white pigmentation, and said second radiation absorbent material comprises a second infrared absorbent pigment that exhibits one of a transparent pigmentation and a milky white pigmentation.
- 11. An image-forming system comprising
an image-forming substrate including a base member, and a layer of microcapsules, coated over said base member, that contains a first type of microcapsule filled with a first dye, and a second type of microcapsule filled with a second dye, each of said first and second types of microcapsules exhibiting a pressure/temperature characteristic such that, when each of said first and second types of microcapsules is squashed and broken under a predetermined pressure at a predetermined temperature, said dye concerned seeps from said squashed and broken microcapsule, said first type of microcapsule being coated with a first radiation absorbent material absorbing electromagnetic radiation having a first specific wavelength, said second type of microcapsules being coated with a second radiation absorbent material absorbing electromagnetic radiation having a second specific wavelength; and an image-forming apparatus that forms an image on said image-forming substrate, said image-forming apparatus including a pressure application unit that exerts said predetermined pressure on said layer of microcapsules, and an irradiating unit that irradiates said layer of microcapsules with a first beam of radiation having said first specific wavelength, and a second beam of radiation having said second specific wavelength, such that a portion of said first and second types of microcapsules, irradiated by said first and second beams of radiation, are heated to said predetermined temperature.
- 12. An image-forming system as set forth in claim 11, wherein each of said first and second types of microcapsules has a shell wall composed of a resin which exhibits said pressure/temperature characteristic.
- 13. An image-forming system as set forth in claim 11, wherein said irradiating unit comprises an optical scanning system that includes a first radiation beam emitter that emits said beam of radiation, a second radiation beam emitter that emits said second beam of radiation, and an optical deflector that deflects said respective first and second beams of radiation so as to scan said layer of microcapsules with said deflected first and second beams of radiation.
- 14. An image-forming system as set forth in claim 13, wherein said first radiation beam emitter comprises a first infrared source that emits a first infrared beam as said first beam of radiation, and said second radiation beam emitter comprises a second infrared source that emits a second infrared beam as said second beam of radiation.
- 15. An image-forming substrate comprising:
a base member; a layer of microcapsules, coated over said base member, that contains at least a first type of microcapsule filled with a first dye, said first type of microcapsule exhibiting a first pressure/temperature characteristic such that, when said first type of microcapsule is squashed and broken under a first predetermined pressure at a first predetermined temperature, said first dye seeps from said squashed and broken microcapsule; and a sheet of transparent film, covering said layer of microcapsules, that contains a radiation absorbent material absorbing electromagnetic radiation having a specific wavelength, so as to be heated to said first predetermined temperature by irradiation with a first beam of radiation having said specific wavelength.
- 16. An image-forming substrate as set forth in claim 15, wherein said first type of microcapsule has a shell wall composed of a resin which exhibits said first pressure/temperature characteristic.
- 17. An image-forming substrate as set forth in claim 15, wherein said radiation absorbent material comprises an infrared absorbent pigment that exhibits one of a transparent pigmentation and a milky white pigmentation.
- 18. An image-forming substrate as set forth in claim 15, wherein said layer of microcapsules further contains a second type of microcapsule filled with a second dye, said second type of microcapsule exhibiting a second pressure/temperature characteristic such that, when said second type of microcapsule is squashed and broken under a second predetermined pressure at a second predetermined temperature, said second dye seeps from said squashed and broken microcapsule, with said sheet of transparent film being heated to said second predetermined temperature by irradiation with a second beam of radiation having said specific wavelength due to said radiation absorbent material contained therein.
- 19. An image-forming substrate as set forth in claim 18, wherein said second type of microcapsule has a shell wall composed of a resin which exhibits said second pressure/temperature characteristic.
- 20. An image-forming substrate as set forth in claim 18, wherein said radiation absorbent material, contained in said sheet of transparent film, comprises an infrared absorbent pigment that exhibits one of a transparent pigmentation and a milky white pigmentation.
- 21. An image-forming system comprising:
an image-forming substrate including a base member, and a layer of microcapsules, coated over said base member, that contains at least a first type of microcapsule filled with a first dye, said first type of microcapsule exhibiting a first pressure/temperature characteristic such that, when said first type of microcapsule is squashed and broken under a first predetermined pressure at a first predetermined temperature, said first dye seeps from said squashed and broken microcapsule, said image-forming substrate further including a sheet of transparent film, covering said layer of microcapsules, that contains a radiation absorbent material absorbing electromagnetic radiation having a specific wavelength; and an image-forming apparatus that forms an image on said image-forming substrate, said image-forming apparatus including a first pressure application unit that exerts said first predetermined pressure on said layer of microcapsules, and an irradiating unit that irradiates said layer of microcapsules with a first beam of radiation having said specific wavelength, such that a plurality of said first type of microcapsules, encompassed by a local area of said sheet of transparent film irradiated by said first beam of radiation, is heated to said first predetermined temperature.
- 22. An image-forming system as set forth in claim 21, wherein said first type of microcapsule has a shell wall composed of a resin which exhibits said first pressure/temperature characteristic.
- 23. An image-forming system as set forth in claim 21, wherein said irradiating unit comprises an optical scanning system that includes a first radiation beam emitter that emits said first beam of radiation, and an optical deflector that deflects said first beam of radiation so as to scan said sheet of transparent film with said deflected beam of radiation.
- 24. An image-forming system as set forth in claim 23, wherein said radiation beam emitter comprises a first infrared source that emits an infrared beam as said first beam of radiation.
- 25. An image-forming system as set forth in claim 21, wherein said layer of microcapsules further contains a second type of microcapsule filled with a second dye, said second type of microcapsule exhibiting a second pressure/temperature characteristic such that, when said second type of microcapsule is squashed and broken under a second predetermined pressure at a second predetermined temperature, said second dye seeps from said squashed and broken microcapsule, and
wherein said image-forming apparatus further includes a second pressure application unit that exerts said second predetermined pressure on said layer of microcapsules, and said irradiating unit further irradiates said layer of microcapsules with a second beam of radiation having said specific wavelength, such that a plurality of said second type of microcapsules, encompassed by a local area of said sheet of transparent film irradiated by said second beam of radiation, is heated to said second predetermined temperature.
- 26. An image-forming system as set forth in claim 25, wherein said second type of microcapsule has a shell wall composed of a resin which exhibits said second pressure/temperature characteristic.
- 27. An image-forming system as set forth in claim 25, wherein said irradiating unit comprises an optical scanning system that includes a first radiation beam emitter that emits said first beam of radiation, a second radiation beam emitter that emits said second beam of radiation, and an optical deflector that deflects said first and second beams of radiation so as to scan said sheet of transparent film with said deflected first and second beams of radiation.
- 28. An image-forming system as set forth in claim 27, wherein said first radiation beam emitter comprises a first infrared source that emits an infrared beam as said first beam of radiation, and said second radiation beam emitter comprises a second infrared source that emits an infrared beam as said second beam of radiation.
- 29. An image-forming system comprising:
an image-forming substrate including a base member, and a layer of microcapsules, coated over said base member, that contains at least one type of microcapsule filled with a dye, said at least one type of microcapsule exhibiting a pressure/temperature characteristic such that, when said at least one type of microcapsule is squashed and broken under a predetermined pressure at a predetermined temperature, said dye seeps from said squashed and broken microcapsule; an image-forming apparatus that forms an image on said image-forming substrate, said image-forming apparatus including a pressure application unit that exerts said predetermined pressure on said layer of microcapsules, said pressure application unit including a transparent plate member, a layer of radiation absorbent material coated over a surface of said transparent plate member, and a platen member elastically pressed against said layer of radiation absorbent material at said predetermined pressure, with said image-forming substrate being interposed between said platen member and said layer of radiation absorbent material, said image-forming apparatus further including an irradiating unit that irradiates said layer of radiation absorbent material with a beam of radiation, such that a portion of said layer of microcapsules, encompassed by a local area of said layer of radiation absorbent material irradiated by said beam of radiation, is heated to said predetermined temperature.
- 30. An image-forming system as set forth in claim 29, wherein said at least one type of microcapsule has a shell wall composed of a resin which exhibits said pressure/temperature characteristic.
- 31. An image-forming system comprising:
an image-forming substrate including a base member, a layer of microcapsules, coated over said base member, that contains a first type of microcapsule filled with a first dye, and a second type of microcapsule filled with a second dye, said first type of microcapsule exhibiting a first pressure/temperature characteristic such that, when said first type of microcapsule is squashed and broken under a first predetermined pressure at a first predetermined temperature, said first dye seeps from said squashed and broken microcapsule, said second type of microcapsule exhibiting a second pressure/temperature characteristic such that, when said second type of microcapsule is squashed and broken under a second predetermined pressure at a second predetermined temperature, said second dye seeps from said squashed and broken microcapsule; and an image-forming apparatus that forms an image on said image-forming substrate, said image-forming apparatus including a pressure application unit that exerts said first and second predetermined pressures on said layer of microcapsules, said pressure application unit including a transparent plate member, a layer of radiation absorbent material coated over a surface of said transparent plate member, a first platen member elastically pressed against said layer of radiation absorbent material at said first predetermined pressure, and a second platen member elastically pressed against said layer of radiation absorbent material at said second predetermined pressure, with said image-forming substrate being interposed between said first and second platen members and said layer of radiation absorbent material, said image-forming apparatus further including an irradiating unit that irradiates said layer of radiation absorbent material with a first beam of radiation and a second beam of radiation, such that two portions of said layer of microcapsules, encompassed by two local areas of said layer of radiation absorbent material irradiated by said first and second beams of radiation, are heated to said first and second predetermined temperatures.
- 32. An image-forming system as set forth in claim 31, wherein said respective first and second types of microcapsules have shell walls composed of resins which exhibit said first and second pressure/temperature characteristics.
Priority Claims (2)
Number |
Date |
Country |
Kind |
P10-012134 |
Jan 1998 |
JP |
|
P10-012135 |
Jan 1998 |
JP |
|
Parent Case Info
[0001] This is a divisional of U.S. application Ser. No. 09/221,574, filed Dec. 29, 1998, the contents of which are expressly incorporated by reference herein in their entireties.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09221574 |
Dec 1998 |
US |
Child |
10080541 |
Feb 2002 |
US |