Drying device and recording medium drying system
US-2016273832-A1 · Sep 22, 2016 · US
US10150306B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10150306-B2 |
| Application number | US-201715652478-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 18, 2017 |
| Priority date | Jul 20, 2016 |
| Publication date | Dec 11, 2018 |
| Grant date | Dec 11, 2018 |
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A drying device includes a roller, and the drying device is for drying a recording medium conveyed by rotation of the roller. The drying device includes a first heating source and second heating source included inside the roller; first and second temperature detectors for respectively detecting a temperature of a first region on a surface of the roller and a temperature of a second region on the surface of the roller; and a heating controller that controls heating and termination of the heating by the first heating source and/or the second heating source, wherein, upon detecting that a temperature of one region of the first region and the second region is higher than or equal to a predetermined temperature, the heating controller terminates heating by one heating source corresponding to the other region.
Opening claim text (preview).
What is claimed is: 1. A drying device provided with a roller, wherein the drying device is for drying a recording medium conveyed by rotation of the roller, the drying device comprising: a first heating source and second heating source that are included inside the roller; a first temperature detector configured to detect a temperature of a first region on a surface of the roller, wherein the first region is in a vicinity of the first heating source, and the first region is heated by the first heating source; a second temperature detector configured to detect a temperature of a second region on the surface of the roller, wherein the second region is in a vicinity of the second heating source, and the second region is heated by the second heating source; and a heating controller configured to control heating and termination of the heating by the first heating source and/or the second heating source, wherein, in a direction of an axis of the roller, a shortest distance between the first temperature detector and the first heating source is less than a shortest distance between the first temperature detector and the second heating source, wherein, in the direction of the axis of the roller, a shortest distance between the second temperature detector and the second heating source is less than a shortest distance between the second temperature detector and the first heating source, wherein, upon detecting that a temperature of the first region is higher than or equal to a predetermined temperature while heating by the first heating source is terminated, the heating controller is configured to terminate heating by the second heating source, and wherein, upon detecting that a temperature of the second region is higher than or equal to the predetermined temperature while heating by the second heating source is terminated, the heating controller is configured to terminate heating by the first heating source. 2. The drying device according to claim 1 , wherein the first heating source and the second heating source are arranged so that a width from one of end parts of a first light emitting region of the first heating source farthest from the second heating source to one of end parts of a second light emitting region of the second heating source farthest from the first heating source is greater than or equal to a maximum width of the recording medium. 3. The drying device according to claim 1 , wherein the drying device includes a plurality of sets, each of the plurality of sets including the roller, the first temperature detector, and the second temperature detector, the first heating source and the second heating source being included inside the roller. 4. The drying device according to claim 1 , wherein upon detecting that the temperature of the one region of the first region and the second region is higher than or equal to a target temperature, the target temperature being lower than the predetermined temperature, the heating controller is configured to terminate heating or to reduce a quantity of heat generated by the other heating source of the first heating source and the second heating source, the other heating source corresponding to the one region. 5. The drying device according to claim 1 , wherein the drying device includes a plurality of the rollers arranged in an order from an upstream side in a direction of conveyance of the recording medium, wherein, upon detecting that the temperature of the one region of the first region and the second region is higher than or equal to the predetermined temperature, for a predetermined number of the rollers of the plurality of rollers in the order from the upstream side in the direction of the conveyance of the recording medium, the heating controller is configured to terminate heating by the one heating source of the first heating source and the second heating source, the one heating source corresponding to the other region. 6. The drying device according to claim 5 , wherein the plurality of the rollers are configured so that quantities of heat that can be supplied by the respective plurality of heating rollers are sequentially reduced in the order from the upstream side in the direction of the conveyance of the recording medium. 7. The drying device according to claim 1 , wherein the first heating source overlaps the second heating source in the direction of the axis of the roller. 8. A control device for controlling a drying device including a roller, a first heating source and a second heating source being included inside the roller, wherein the drying device is for drying a recording medium conveyed by rotation of the roller, the control device comprising: a temperature obtaining unit configured to obtain a temperature of a first region and a temperature of a second region, wherein the temperature obtaining unit is configured to obtain the temperature of the first region from a first temperature detector configured to detect the temperature of the first region on a surface of the roller, wherein the first region is in a vicinity of the first heating source, and the first region is heated by the first heating source, and wherein the temperature obtaining unit is configured to obtain the temperature of the second region from a second temperature detector configured to detect the temperature of the second region on the surface of the roller, wherein the second region is in a vicinity of the second heating source, and the second region is heated by the second heating source; and a heating controller, wherein, in a direction of an axis of the roller, a shortest distance between the first temperature detector and the first heating source is less than a shortest distance between the first temperature detector and the second heating source, wherein, in the direction of the axis of the roller, a shortest distance between the second temperature detector and the second heating source is less than a shortest distance between the second temperature detector and the first heating source, wherein, upon detecting that a temperature of the first region is higher than or equal to a predetermined temperature while heating by the first heating source is terminated, the heating controller is configured to terminate heating by the second heating source, and wherein, upon detecting that a temperature of the second region is higher than or equal to the predetermined temperature while heating by the second heating source is terminated, the heating controller is configured to terminate heating by the first heating source. 9. A drying method executed in a drying device, wherein the drying device includes a roller, a first heating source and a second heating source being included inside the roller, wherein the drying device is for drying a recording medium conveyed by rotation of the roller, the drying method comprising: obtaining, by the drying device, a temperature of a first region and a temperature of a second region, wherein the temperature of the first region is obtained from a first temperature detector for detecting the temperature of the first region on a surface of the roller, wherein the first region is in a vicinity of the first heating source, and the first region is heated by the first heating source, and wherein the temperature of the second region is obtained from a second temperature detector for detecting the temperature of the second region on the surface of the roller, wherein the second region is in a vicinity of the second heating source, and the second region is heated by the second heating source, wherein, in a direction of an axis of the roller, a shortest distance between the first temperature detector and the first heating source is less than a shortest distance between the first temperature de
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