Information processing device, substrate processing device, and information processing method
US-2024302817-A1 · Sep 12, 2024 · US
US2026029773A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2026029773-A1 |
| Application number | US-202418786537-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 28, 2024 |
| Priority date | Jul 28, 2024 |
| Publication date | Jan 29, 2026 |
| Grant date | — |
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An additive manufacturing apparatus includes a processor and a memory storing program code. The program code is executable by a processor to receive object model data representing a geometry of an object and specifying a color value for a region of the object. The object is to be physically generated via additive manufacturing. The program code is executable by the processor to determine a dimensional compensation corresponding to the color value specified for the region of the object. The program code is executable by the processor to generate instructions for physically generating the object, based on the geometry of the object and the dimensional compensation, and such that the dimensional compensation is applied to just the region of the object for which the color value has been specified. The program code is executable by the processor to execute the instructions to physically generate the object.
Opening claim text (preview).
We claim: 1 . An additive manufacturing apparatus comprising: a processor; and a memory storing program code executable by a processor to: receive object model data representing a geometry of an object and specifying a color value for a region of the object, the object to be physically generated via additive manufacturing by the additive manufacturing apparatus; determine a dimensional compensation corresponding to the color value specified for the region of the object; generate instructions for physically generating the object, based on the geometry of the object and the determined dimensional compensation, such that the dimensional compensation is applied to just the region of the object for which the color has been specified; and execute the instructions to physically generate the object. 2 . The additive manufacturing apparatus of claim 1 , wherein the color value is employed just to specify the dimensional compensation to be applied to the region of the object. 3 . The additive manufacturing apparatus of claim 1 , wherein the color value comprises a plurality of color component values corresponding to different color components of a color represented by the color value, and wherein each color component value specifies the dimensional compensation to be applied to the region of the object along a corresponding directional axis. 4 . The additive manufacturing apparatus of claim 1 , wherein the dimensional compensation comprises either or both of an offset dimensional compensation and a scaling dimensional compensation. 5 . The additive manufacturing apparatus of claim 1 , wherein the color value comprises a first portion and a second portion, wherein the first portion specifies an offset dimensional compensation to be applied to the region, and the second portion specifies a scaling dimensional compensation to be applied to the region. 6 . The additive manufacturing apparatus of claim 1 , wherein the instructions are further generated such that an additive manufacturing apparatus-specific dimensional compensation that is not specific to the object is applied to the object as a whole before or after the dimensional compensation is applied to just the region for which the color value has been specified. 7 . The additive manufacturing apparatus of claim 1 , wherein the instructions are further generated such that a global dimensional compensation that is not specific to the object or to the additive manufacturing apparatus is applied to the object as a whole before or after the dimensional compensation is applied to just the region for which the color value has been specified. 8 . The additive manufacturing apparatus of claim 1 , wherein the dimensional compensation corresponding to the color value specified for the region of the object is determined by retrieving the dimensional compensation stored in a lookup table for the color value. 9 . The additive manufacturing apparatus of claim 8 , wherein the lookup table specifies the dimensional compensation for a range of color values, such that the color value specified for the region of the object is within the range. 10 . The additive manufacturing apparatus of claim 1 , wherein the dimensional compensation corresponding to the color specified for the region of the object is determined by: computing the dimensional compensation by applying a specified function to a color value of the color. 11 . The additive manufacturing apparatus of claim 1 , wherein the color value comprises a first portion and a second portion, wherein the first portion specifies the dimensional compensation to be applied to the region of the object, and the second portion specifies a color the region is to have when physically generated, wherein the instructions are generated such that the region has the color specified by the second portion of the color value when the object is physically generated, and wherein the color value is employed to both specify the dimensional compensation to be applied to the region of the object and the color of the region. 12 . The additive manufacturing apparatus of claim 1 , wherein the color for the region of the object is a first color for a first region of the object, and the dimensional compensation is a first dimensional compensation, wherein the object model data further specifies a second color for a second region of the object, the second color different than the first color, wherein the program code is executable by the processor to further determine a second dimensional compensation corresponding to the second color, the second dimensional compensation different than the first dimensional compensation, and wherein the instructions are further generated such that the second dimensional compensation is applied to just the second region of the object. 13 . A non-transitory computer-readable data storage medium storing program code executable by a processor to perform processing comprising: receiving object model data representing a geometry of an object to be physically generated via additive manufacturing by an additive manufacturing apparatus; receiving user selection of a region of the object, and user selection of a dimensional compensation to be applied to just the region of the object; modifying the object model data to specify a color value for the region, the color value corresponding to the dimensional compensation to be applied to just the region of the object; and sending the modified object model data to the additive manufacturing apparatus to physically generate the object such that the dimensional compensation is applied to just the region of the object. 14 . The non-transitory computer-readable data storage medium of claim 13 , wherein specification of the color value for the region by the modified object model data is employed just to notify the additive manufacturing apparatus of the dimensional compensation to be applied to just the region of the object. 15 . The non-transitory computer-readable data storage medium of claim 13 , wherein the geometry of the object is not modified in the received object model data based on the dimensional compensation during performance of the processing, and wherein the dimensional compensation is instead reflected in the modified object model data in that the color value corresponding to the dimensional compensation is specified for the region to which the dimensional compensation is to be applied. 16 . The non-transitory computer-readable data storage medium of claim 13 , wherein the color value for the region of the object is a first color value for a first region of the object, the dimensional compensation is a first dimensional compensation, and the processing further comprises: receiving user selection of a second region of the object, and user selection of a second dimensional compensation to be applied to just the second region, the second region different than the first region; and modifying the object model data to specify a second color value for the second region, the second color corresponding to the second dimensional compensation to be applied to just the second region of the object. 17 . A method comprising: generating, by a processor executing program code and with user interaction, a geometry of an object to be physically generated via additive manufacturing by an additive manufacturing apparatus; receiving, by the processor executing the program code, user selection of a region of the object, and user selection of a dimensional compensation to be applied to just the region of the object;
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