Setting apparatus, shaping system, setting method, and computer-readable recording medium
A technology of a setting device and a setting method, which is applied to printing devices, power transmission devices, typewriters, etc., can solve problems such as difficulty in heating large areas at one time
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Embodiment approach 1
[0030]
[0031] figure 1 The cross-sectional structure of the thermally expandable sheet 10 used to shape the molded object according to Embodiment 1 of the present invention is shown. The thermally expandable sheet 10 is a medium in which a molded object is formed by expanding a preselected portion by heating. A molded object refers to a three-dimensional object, and in a two-dimensional sheet, a part of the sheet expands in a direction perpendicular to the sheet to form a shape. Modeling objects are also called three-dimensional objects or three-dimensional images. The shape of the modeling object generally includes simple shapes, geometric shapes, characters and other shapes.
[0032] In other words, the shaped object of Embodiment 1 is an object having irregularities in a direction perpendicular to the two-dimensional surface based on a specific two-dimensional surface in a three-dimensional space. Such figures are included in stereoscopic (three-dimensional) images, ...
Embodiment approach 2
[0120] Next, Embodiment 2 of the present invention will be described. Description of the same configuration as in Embodiment 1 is omitted.
[0121] In Embodiment 1, the display control unit 311 displays, on the display unit 34 , at least two partial regions having different irradiation conditions of the laser beam among the plurality of partial regions 20 a to 20 f in different colors. On the other hand, in the second embodiment, the display control unit 311 displays images of different forms depending on the laser irradiation conditions in at least two of the plurality of partial regions 20 a to 20 f in which the laser irradiation conditions are different. multiple lines.
[0122] Figure 15 A display example of the partial regions 20 a and 20 b on the display unit 34 in the second embodiment is shown. Also, for ease of understanding, Figure 15 A state in which no irradiation conditions are set in the partial regions 20c to 20f is shown.
[0123] Such as Figure 15 As ...
Embodiment approach 3
[0130] Next, Embodiment 3 of the present invention will be described. Descriptions of the same configurations as those in Embodiments 1 and 2 are omitted.
[0131] In Embodiment 1, the input accepting section 33 accepts the input of the irradiation conditions of the laser beam in the irradiation area 20 , and the setting section 312 sets the plurality of partial areas 20 a of the irradiation area 20 according to the operation input received by the input accepting section 33 . The irradiation conditions of the laser light in each of ~20f. On the other hand, in Embodiment 3, the input accepting part 33 accepts the input of the surface form after expansion of the heat-expandable sheet 10 from the user, and the setting part 312 sets according to the input of the surface form accepted by the input accepting part 33. Determine the irradiation conditions of the laser.
[0132] Here, the expanded surface form of the heat-expandable sheet 10 refers to the form of the surface of the h...
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