Printing system and method of printing a multilayer structure using radiation curable ink
US-9469135-B2 · Oct 18, 2016 · US
US10535128B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10535128-B2 |
| Application number | US-201715842657-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 14, 2017 |
| Priority date | Dec 16, 2016 |
| Publication date | Jan 14, 2020 |
| Grant date | Jan 14, 2020 |
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A three-dimensional image data reviewing device includes a processor that obtains first distension data for causing a thermally distensible layer of a thermally distensible sheet to distend from one of a front surface and a rear surface of the thermally distensible sheet and that obtains second distension data for causing the thermally distensible layer to distend from another of the front surface and the rear surface, a display unit connected to the processor, wherein the processor causes the display unit to display, on a preview screen, an appearance of the thermally distensible sheet after the thermally distensible layer is caused to distend in accordance with the first distension data and the second distension data, the processor also causing the display unit to identifiably display, in a prescribed manner, an abnormal region of the thermally distensible layer where the thermally distensible layer is predicted to distend abnormally.
Opening claim text (preview).
What is claimed is: 1. A three-dimensional image data reviewing device, comprising: a processor that obtains first distension data for causing a thermally distensible layer of a thermally distensible sheet to distend from one of a front surface and a rear surface of the thermally distensible sheet and that obtains second distension data for causing the thermally distensible layer to distend from another of the front surface and the rear surface of the thermally distensible sheet, and a display unit connected to the processor, wherein the processor causes the display unit to display, on a preview screen, an appearance of the thermally distensible sheet after the thermally distensible layer is caused to distend in accordance with the first distension data and the second distension data, the processor also causing the display unit to identifiably display, in a prescribed manner, an abnormal region of the thermally distensible layer where the thermally distensible layer is predicted to distend abnormally. 2. The three-dimensional image data reviewing device according to claim 1 , wherein the processor identifies the abnormal region where the thermally distensible layer is predicted to distend abnormally on the basis of the first distension data and the second distension data that were obtained. 3. The three-dimensional image data reviewing device according to claim 2 , wherein, for each of a plurality of predefined divided regions of an image to be printed on the thermally distensible sheet, the processor calculates a distension value by adding an integrated image density value of the second distension data for the divided region to a value obtained by multiplying an integrated image density value of the first distension data for the divided region by a prescribed coefficient, and when the calculated distension value for the region exceeds a threshold value, the processor identifies said region as the abnormal region where the thermally distensible layer is predicted to distend abnormally, where the prescribed coefficient is a ratio of a distension amount by which the thermally distensible layer would distend by the first distension data to a distension amount by which the thermally distensible layer would distend by the second distension data. 4. The three-dimensional image data reviewing device according to claim 2 , wherein, for the abnormal region, the processor modifies at least one of the first distension data and the second distension data for the abnormal region so that the thermally distensible layer will not distend abnormally. 5. The three-dimensional image data reviewing device according to claim 4 , wherein the processor reduces an image density of said at least one of the first distension data and the second distension data for the abnormal region so that the thermally distensible layer will not distend abnormally. 6. The three-dimensional image data reviewing device according to claim 1 , wherein the processor causes the display unit to display the abnormal region where the distension layer is predicted to distend abnormally with color, hatching, or a flashing pattern. 7. The three-dimensional image data reviewing device according to claim 6 , wherein the processor causes the display unit to display a three-dimensional model of the thermally distensible sheet that would be created after the thermally distensible layer is caused to distend in accordance with the first distension data and the second distension data, and maps the abnormal region on the three-dimensional model. 8. The three-dimensional image data reviewing device according to claim 2 , wherein upon identifying the abnormal region where the distension layer is predicted to distend abnormally, the processor causes the display unit to display a warning message on the preview screen. 9. A three-dimensional image data creation device, comprising: a processor that receives image data having prescribed gradation levels and allocates the image data into a plurality of density layers that, when printed on a thermally distensible sheet, respectively cause a thermally distensible layer of the thermally distensible sheet to distend to different respective distension heights, the processor generating distension data by combining the plurality of density layers and determining whether abnormal distension will occur in the thermally distensible sheet including the thermally distensible layer, the processor outputting the determination result. 10. The three-dimensional image data creation device according to claim 9 , wherein the processor creates a layer that has a region for which the processor determined that abnormal distension will occur. 11. The three-dimensional image data creation device according to claim 9 , wherein the processor changes a prescribed region in a first density layer among the plurality of density layers to a second density layer so as to modify the plurality of density layers, and wherein the processor reevaluates whether abnormal distension will occur for the modified plurality of density layers. 12. The three-dimensional image data creation device according to claim 11 , wherein the plurality of density layers is fewer in number than the prescribed gradation levels of the image data. 13. A computer-readable non-transitory storage medium having stored thereon a program executable by a computer, the program causing the computer, which controls a three-dimensional image data creation device, to perform the following: dividing image data having prescribed gradation levels into a plurality of density layers that, when printed on a thermally distensible sheet, respectively cause a thermally distensible layer of the thermally distensible sheet to distend from one of a front surface and a rear surface of the thermally distensible sheet to different respective distension heights, on the basis of gradation values at each pixel, the plurality of density layers being fewer in number than the prescribed gradation levels of the image data; generating distention data by combining the plurality of density layers; determining, from the distension data, whether abnormal distension will occur in the thermally distensible sheet having the thermally distensible layer; moving at least one region of a density layer among the plurality of density layers to a density layer that causes the thermally distensible layer of the thermally distensible sheet to distend from another of the front surface and the rear surface of the thermally distensible sheet; and thereafter, reevaluating whether the abnormal distension will occur. 14. The storage medium according to claim 13 , wherein when it is determined in the determining that the abnormal distension will occur, a new density layer is created separate from the plurality of density layers.
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