Image data generation method, structure formation method, structure formation apparatus, and computer-readable storage medium
US-2017195522-A1 · Jul 6, 2017 · US
US10166784B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10166784-B2 |
| Application number | US-201715656304-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 21, 2017 |
| Priority date | Aug 8, 2016 |
| Publication date | Jan 1, 2019 |
| Grant date | Jan 1, 2019 |
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A photothermal conversion image generating device that generates a photothermal conversion image for forming a three-dimensional image by causing a thermally expandable sheet having a thermally expandable layer on a base material to expand, the device including: a processor that allocates, based on a line width of a line forming the three-dimensional image, an image for forming the line to either a front surface of the thermally expandable sheet or a rear surface of the thermally expandable sheet.
Opening claim text (preview).
What is claimed is: 1. A photothermal conversion image generating device that generates a photothermal conversion image for forming a three-dimensional image by causing a thermally expandable sheet to expand, the device comprising: a processor that allocates, based on at least one of a pre-expansion or post-expansion line width and an expansion height of a line in the three-dimensional image, an image for forming said line to either a front surface of the thermally expandable sheet or a rear surface of the thermally expandable sheet, the processor causing the image so allocated to be printed on the allocated front or rear surface of the thermally expandable sheet, wherein the line in the three-dimensional image is a protruding line that will protrude after the thermally expandable sheet has expanded, and the processor performs said allocation based on the post-expansion line width of the protruding line. 2. The photothermal conversion image generating device according to claim 1 , wherein the processor performs said allocation based further on the expansion height of the line. 3. The photothermal conversion image generating device according to claim 1 , wherein the line in the three-dimensional image is provided in a plurality. 4. A photothermal conversion image generating device that generates a photothermal conversion image for forming a three-dimensional image by causing a thermally expandable sheet to expand, the device comprising: a processor that allocates, based on at least one of a pre-expansion or post-expansion line width and an expansion height of a line in the three-dimensional image, an image for forming said line to either a front surface of the thermally expandable sheet or a rear surface of the thermally expandable sheet, the processor causing the image so allocated to be printed on the allocated front or rear surface of the thermally expandable sheet, wherein the line in the three-dimensional image is provided in a plurality, and wherein, with respect to an intersection of respective lines of the plurality of lines in the three-dimensional image, the processor allocates the intersection to either the front surface of the thermally expandable sheet or the rear surface of the thermally expandable sheet based on the pre-expansion line widths and the expansion height of the respective lines forming the intersection and an expansion height of the intersection. 5. A photothermal conversion image generating device that generates a photothermal conversion image for forming a three-dimensional image by causing a thermally expandable sheet to expand, the device comprising: a processor that allocates, based on at least one of a pre-expansion or post-expansion line width and an expansion height of a line in the three-dimensional image, an image for forming said line to either a front surface of the thermally expandable sheet or a rear surface of the thermally expandable sheet, the processor causing the image so allocated to be printed on the allocated front or rear surface of the thermally expandable sheet, wherein the processor sets a density at which the image for forming the line is to be printed based on the pre-expansion or post-expansion line width of the line in the three-dimensional image and the expansion height of the line, wherein the photothermal conversion image generating device further comprises a storage unit that stores height data regarding the expansion height of the line in the three-dimensional image, data regarding the pre-expansion or post-expansion line width of the line, data regarding the density at which the image for forming the line is to be printed, and data regarding the surface on which the image for forming the line is to be printed, all of which are associated with each other, and wherein in setting the density of the image forming the line, the processor reads data regarding the density that is stored in the storage unit as corresponding to the pre-expansion or post-expansion line width and the expansion height of the line. 6. A photothermal image generating device that generates a photothermal conversion image for forming a three-dimensional image by causing a thermally expandable sheet to expand, the device comprising: a processor that allocates, based on at least one of a pre-expansion or post-expansion line width and an expansion height of a line in the three-dimensional image, an image for forming said line to either a front surface of the thermally expandable sheet or a rear surface of the thermally expandable sheet, the processor causing the image so allocated to be printed on the allocated front or rear surface of the thermally expandable sheet, wherein the line in the three-dimensional image is provided in a plurality, wherein, with respect to an intersection of respective lines of the plurality of lines in the three-dimensional image, the processor sets a density of an image for the intersection to be formed on the front surface and a density of an image for the intersection to be formed on the rear surface based on an expansion height of the intersection, wherein the photothermal image generating device further comprises a storage unit that stores height data of the line in the three-dimensional image, data regarding the pre-expansion or post-expansion line width of each of the respective lines forming the intersection, height data regarding the expansion height of the intersection of the respective lines, data regarding the density of the image for the intersection to be formed on the front surface and data regarding the density of the image for the intersection to be formed on the rear surface, all of which are associated with each other, and wherein in setting the density of the image for the intersection to be formed on the front surface and the density of the image for the intersection to be formed on the rear surface, the processor reads data regarding said respective densities that are stored in the storage unit as corresponding to the expansion height of the intersection. 7. A three-dimensional image forming system for forming a three-dimensional image by causing a thermally expandable sheet to expand, comprising: a photothermal conversion image generating device including a processor that allocates, based on at least one of a pre-expansion or post-expansion line width and an expansion height of each line in a three-dimensional image, an image for forming said line to either a front surface of the thermally expandable sheet or a rear surface of the thermally expandable sheet; an image forming device that forms the image of each line on the allocated front or rear surface of the thermally expandable sheet; and a light irradiation device that causes the thermally expandable sheet to expand by irradiating the image formed on the thermally expandable sheet with light, wherein the photothermal conversion image generating device sets a density at which the image is to be printed, and the image forming device prints the image at the density set by the photothermal conversion image generating device, wherein the three-dimensional image forming system further comprises a storage unit that stores height data regarding the expansion height of the line in the three-dimensional image, data regarding the pre-expansion or post-expansion line width of the line, data regarding the density at which the image for forming the line is to be printed, and data regarding the surface on which the image for forming the line is printed, all of which are associated with each other, and wherein in setting the density at which the line is printed, the photothermal conversion image generating device reads data regarding the density stored in the storage device as corresponding to the pre-expansion or post-expansion line width of the line and the
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