Claims
- 1. A printer device comprising:
a printer portion to print an image on a transferring layer of an intermediate transfer medium; a transferring portion to transfer the image onto an image receiving medium together with the transferring layer of the intermediate transfer medium by heating and pressurizing the image receiving medium and the intermediate transfer medium having the image printed by the printer portion; a reserving portion to temporarily reserve the intermediate transfer medium and the image receiving medium pass through the transferring portion in the closely fitted state; and a separation mechanism to separate the intermediate transfer medium from the image receiving medium reserved in the reserving portion.
- 2. The printer device according to claim 1, wherein the separation mechanism includes a separation member provided at a position distant from the transferring portion in a distance in excess of the length of the transferring layer transferred on the image receiving medium to separate the intermediate transfer medium from the image receiving medium.
- 3. The printer device according to claim 1, wherein the reserving portion includes a detector to detect a temperature of the transferring layer transferred on the reserved image receiving medium, and
the separation mechanism separates the intermediate transfer medium from the image receiving medium when the temperature detected by the detector becomes lower than a prescribed temperature.
- 4. A printer device comprising:
a conveying mechanism to convey an image receiving medium along a conveying path; a running mechanism equipped with a take-up shaft to take up a ribbon shaped intermediate transfer medium having a transferring layer on a surface thereof and to run the intermediate transfer medium along the conveying path by taking up the intermediate transfer medium by rotating the take-up shaft; a printer portion to print an image on the transferring layer of the intermediate transfer medium; a transferring portion to heat, pressurize the image receiving medium conveyed through the conveying path and the intermediate transfer medium having the image printed by the printing portion and run by the running mechanism and transfer the image together with the transferring layer onto the image receiving medium; a reserving portion to temporarily stop and reserve the intermediate transfer medium and the image receiving medium passed through the transferring portion in the closely fit state; a controller to control a rotating speed of the take-up shaft according to a wound diameter so that the running speed of the intermediate transfer medium becomes the same as the conveying speed of the image receiving medium by detecting the wound diameter of the intermediate transfer medium; and a separation mechanism to separate the intermediate transfer medium from the image receiving medium by changing the running direction of the intermediate transfer medium that is running based on the control by the controller in a direction differing from the direction of the image receiving medium that is temporarily reserved by the reserving portion.
- 5. The printer device according to claim 4, wherein the separation mechanism includes a separation member at a position distant from the transferring portion in a distance exceeding the length of the transferring layer printed on the image receiving medium for making the running direction of the intermediate transfer medium different from the conveying direction of the image receiving medium.
- 6. The printer device according to claim 4, wherein the reserving portion includes a pair of maintain rollers to maintain the intermediate transfer medium and the image receiving medium in the closely fit state.
- 7. The printer device according to claim 4, wherein the reserving portion includes a detector to detect a temperature of the transferring layer transferred on the reserved image receiving medium, and
the separation mechanism separates the intermediate transfer medium from the image receiving medium when the temperature detected by the detector is below a prescribed temperature.
- 8. A printing method comprising:
printing an image on a transferring layer of an intermediate transfer medium; transferring the image onto an image receiving medium together with the transferring layer of the intermediate transfer medium by heating and pressurizing the image receiving medium and the intermediate transfer medium having the image printed in the printing step; temporarily reserving the intermediate transfer medium and the image receiving medium on which the image is transferred in the closely fitted state; and separating the intermediate transfer medium from the image receiving medium reserved in the reserving step.
- 9. The printing method according to claim 8, further comprising:
detecting a temperature of the transferring layer transferred on the image receiving medium that is kept reserved, wherein the separation step separates the intermediate transfer medium from the image receiving medium when the temperature detected in the detecting step becomes lower than a prescribed temperature.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-298310 |
Sep 2001 |
JP |
|
2001-375015 |
Sep 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a Divisional Application of U.S. application Ser. No. 10/232,670, filed Sep. 3, 2002, which is based upon and claims the benefit of priority from the prior Japanese Patent Application No. 2001-298310, filed on Sep. 27, 2001 and Japanese Patent Application No. 2001-375015, filed on Sep. 29, 2001: the entire contents of which are incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10232670 |
Sep 2002 |
US |
Child |
10864378 |
Jun 2004 |
US |