Diorama assembly and diorama assembly kit
By adjusting the layer thicknesses of printing layers on plate members to create a larger gap, the inserted plate member moves smoothly and rattles, addressing the issue of jerky movement in stacked structures.
Patent Information
- Application Number
- JP2024003434
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-12
- Publication Date
- 2025-07-28
AI Technical Summary
In structures where three plate members cut from the same material are stacked, and one is inserted into an opening hole, the movement of the inserted plate member is jerky or not smooth due to identical plate thicknesses.
The solution involves adjusting the layer thickness of printing layers on the plate members to create a gap between the first and fourth plate members that is larger than the thickness of the third plate member, allowing it to move smoothly and rattle when shaken.
The adjusted layer thicknesses ensure that the third plate member moves smoothly and rattles within the opening hole, enhancing the kinetic experience of the diorama assembly.
Smart Images

Figure 2025109993000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a diorama assembly and a diorama assembly kit.
Background Art
[0002] Patent Document 1 discloses a technique related to a decorative body and a fastener. In this prior art, the decorative body has a front support, a frame body disposed on top of the front support, and a rear support disposed on top of the frame body. Further, the decorative body has a front support, a frame body, a locking plate disposed through the frame body, and a front retaining plate and a rear retaining plate provided at both ends of the locking plate for sandwiching the front support, the frame body, and the frame body.
[0003] Further, Non-Patent Document 1 discloses a shakashaka acrylic keychain (acrylic keyholder) with a moving interior. The shakashaka acrylic keychain has a three-layer structure formed by laminating three acrylic plates. By putting beads or sequins into the punched-out parts of the second layer, the beads or sequins move when shaken.
Prior Art Documents
Patent Documents
[0004]
Patent Document 1
Non-Patent Documents
[0005]
Non-Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0006] In the case of a structure in which three plate members cut from the same plate material are stacked, and a plate member cut from the same plate material is inserted into the opening hole of the second plate member, since the plate thicknesses of the respective plate members are the same, the plate member within the opening hole does not move jerkily or does not move smoothly.
[0007] In view of the above facts, an object of the present invention is to smoothly move the plate member within the opening hole jerkily even in the case of a structure in which three plate members cut from the same plate material are stacked, and a plate member cut from the same plate material is inserted into the opening hole of the second plate member.
Means for Solving the Problems
[0008] A first aspect includes a first plate member cut from a plate material having a printing layer formed on a plate surface, a second plate member cut from the plate material and having an opening hole, one or a plurality of third plate members cut from the plate material, a fourth plate member cut from the plate material, and the third plate member is inserted into the opening hole of the second plate member and cut from the plate material. In a state where the first plate member and the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member, a fixing plate member having a fixing hole into which the insertion portions of the first plate member, the second plate member, and the fourth plate member are inserted and erected and fixed, and the gap between the first plate member and the fourth plate member in the region covering the opening hole is larger than the thickness of the third plate member. A diorama assembly in which the layer thickness of the printing layer is adjusted.
[0009] In the diorama assembly of the first aspect, the first plate member, the second plate member, the third plate member, the fourth plate member, and the fixing plate member are cut from the same plate material with a printing layer formed on the plate surface. The third plate member is inserted into the opening hole of the second plate member, and in a state where the first plate member and the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member, the insertion portions of the first plate member, the second plate member, and the fourth plate member are inserted into the fixing holes of the fixing plate member and erected and fixed. The layer thickness of the printing layer is adjusted so that the gap between the first plate member and the fourth plate member in the region covering the opening hole is larger than the thickness of the third plate member. Therefore, compared with the case where the gap between the first plate member and the fourth plate member in the region covering the opening hole is the same as the thickness of the third plate member, when the diorama assembly is shaken, the third plate member moves smoothly and rattles in the opening hole.
[0010] In the second aspect, the printing layer is formed on one of the plate surfaces of the plate material, one of the plate surfaces of the first plate member and the other plate surface of the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member, and the sum of the layer thicknesses of the printing layer formed around the opening hole in the first plate member and the printing layer formed around the opening hole in the second plate member is larger than the layer thickness of the printing layer formed on the third plate member. The diorama assembly according to the first aspect.
[0011] In the diorama assembly of the second aspect, since the sum of the layer thicknesses of the printing layer formed around the opening hole in the first plate member and the printing layer formed around the opening hole in the second plate member is larger than the layer thickness of the printing layer formed on the third plate member, a gap is formed between the first plate member, the fourth plate member, and the third plate member by the difference in layer thickness. Therefore, when the diorama assembly is shaken, the third plate member moves smoothly and rattles in the opening hole.
[0012] In the third aspect, at least one of the printing layer of the first plate member and the printing layer of the second plate member is a multi-layer including a color layer and a white layer, and the printing layer of the third plate member is a single layer of the color layer. The diorama assembly according to the second aspect.
[0013] In the diorama assembly of the third aspect, at least one of the printed layers of the first plate member and the second plate member is a multilayer including a color layer and a white layer, and by making the printed layer of the third plate member a single color layer, the layer thickness of the printed layer can be easily adjusted.
[0014] The fourth aspect is the diorama assembly according to any one of the first to third aspects, wherein the sum of the layer thicknesses of the printed layer formed around the opening hole on the plate surface on the second plate member side of the first plate member, the printed layer formed around the opening hole on the second plate member, and the printed layer formed around the opening hole on the plate surface on the second plate member side of the fourth plate member is larger than the layer thickness of the printed layer formed on the third plate member.
[0015] In the diorama assembly of the fourth aspect, since a printed layer is formed around the opening hole on the plate surface on the second plate member side of the fourth plate member, the distance between the first plate member and the fourth plate member becomes wider, and the third plate member moves smoothly with a rattling sound.
[0016] The fifth aspect is a diorama assembly kit composed of plate materials with printed layers formed on the plate surfaces. The plate materials include a first plate member, a second plate member having an opening hole, one or a plurality of third plate members having a dimensional shape that can be arranged in the opening hole, a fourth plate member, and a fixing plate member having a fixing hole into which the third plate member is inserted into the opening hole of the second plate member and which is inserted and erected and fixed in a state where the insertion portions of the first plate member, the second plate member, and the fourth plate member are overlapped. When the first plate member and the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member, the layer thickness of the printed layer is adjusted so that the gap between the first plate member and the fourth plate member in the region covering the opening hole is larger than the thickness of the third plate member.
[0017] In the diorama assembly kit of the fifth aspect, the first plate member, the second plate member, the third plate member, the fourth plate member, and the fixing plate member are cut from the same plate material with a printing layer formed on the plate surface, and the layer thickness of the printing layer is adjusted so that the gap between the first plate member and the fourth plate member in the region covering the opening hole is larger than the thickness of the third plate member. Therefore, compared with the case where the gap between the first plate member and the fourth plate member in the region covering the opening hole is the same as the thickness of the third plate member, when the diorama assembly is shaken, the third plate member moves smoothly with a rattling sound inside the opening hole.
[0018] The sixth aspect is the diorama assembly kit according to the fifth aspect, wherein the printing layer is formed on one of the plate surfaces of the plate material, and when one of the plate surfaces of the first plate member and the other plate surface of the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member, the sum of the layer thicknesses of the printing layer formed around the opening hole in the first plate member and the printing layer formed around the opening hole in the second plate member is larger than the layer thickness of the printing layer formed on the third plate member.
[0019] In the diorama assembly kit of the sixth aspect, since the sum of the layer thicknesses of the printing layer formed around the opening hole in the first plate member and the printing layer formed around the opening hole in the second plate member is larger than the layer thickness of the printing layer formed on the third plate member, a gap is formed between the first plate member, the fourth plate member, and the third plate member by the difference in layer thickness. Therefore, when the diorama assembly is shaken, the third plate member moves smoothly with a rattling sound inside the opening hole.
[0020] The seventh aspect is the diorama assembly kit according to the sixth aspect, wherein at least one of the printing layer of the first plate member and the printing layer of the second plate member is a multi-layer including a color layer and a white layer, and the printing layer of the third plate member is a single layer of the color layer.
[0021] In the diorama assembly kit according to the seventh aspect, at least one of the printed layers of the first plate member and the second plate member is formed as a multi-layer including a color layer and a white layer, and the printed layer of the third plate member is formed as one color layer, so that the layer thickness of the printed layer can be easily adjusted.
[0022] The eighth aspect is the diorama assembly kit according to any one of the fifth to seventh aspects, wherein the sum of the layer thicknesses of the printed layer formed around the opening hole on the plate surface on the second plate member side in the first plate member, the printed layer formed around the opening hole in the second plate member, and the printed layer formed around the opening hole on the plate surface on the second plate member side in the fourth plate member is larger than the layer thickness of the printed layer formed on the third plate member.
[0023] In the diorama assembly kit according to the eighth aspect, since a printed layer is formed around the opening hole on the plate surface on the second plate member side in the fourth plate member, the distance between the first plate member and the fourth plate member becomes wider, and the third plate member moves smoothly with a rattling sound.
Advantages of the Invention
[0024] According to the present invention, when a diorama assembly having a structure in which a first plate member, a second plate member, and a fourth plate member cut out from the same plate material are stacked on top of each other and a third plate member cut out from the same plate material is inserted into the opening hole of the second plate member as the second one is shaken, the third plate member in the opening hole moves smoothly with a rattling sound.
Brief Description of the Drawings
[0025]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
Figure 7
Figure 8
Figure 9
Mode for Carrying Out the Invention
[0026] <Embodiment> A diorama assembly and a diorama assembly kit according to an embodiment will be described. Here, two orthogonal horizontal directions are defined as the X direction and the Y direction, which are indicated by arrow X and arrow Y, respectively. The vertical direction orthogonal to the X direction and the Y direction is defined as the Z direction, which is indicated by arrow Z.
[0027] [Structure] The structures of the diorama assembly and the diorama assembly kit will be described. Note that the plate-shaped state before assembly is the diorama assembly kit 100 (see FIG. 7), and the state in which the first plate member 10, the second plate member 20, a plurality of third plate members 30, the fourth plate member 40, a plurality of character plate members 50, and the fixing plate member 60, which will be described later, are cut out from the diorama assembly kit 100 and assembled is the diorama assembly 200 (see FIGS. 1, 2, and 8).
[0028] When explaining the vertical direction, it is in the state of the assembled diorama assembly 200. Further, when the assembled diorama assembly 200 is decorated, the front side that becomes the front is the front (front) side, and the opposite rear side is the back side.
[0029] (Diorama Assembly Kit) First, the plate-shaped diorama assembly kit will be described.
[0030] The plate-shaped diorama assembly kit 100 shown in Fig. 7 has a decorative image 120 as an example of an image printed on the back surface 102B (see Fig. 4) of a transparent or translucent plate material 102. In the present embodiment, the plate material 102 is made of an acrylic resin, but it is not limited thereto. The plate material 102 may be partially transparent and partially translucent. Also, the printing method may be any method, but in the present embodiment, it is printed with a UV inkjet printer.
[0031] In the present embodiment, substantially the entire back surface 102B of the plate material 102 is printed, but there are regions that are not printed partially. The non-printed regions are transparent. And when the diorama assembly kit 100 is viewed from the front (front) surface 102A side, the decorative image 120 appears three-dimensionally. Although the actual decorative image 120 is shown in Fig. 7 and Fig. 8 described later, the actual decorative image 120 is not shown in other figures.
[0032] The decorative image 120 (see Fig. 7) of the present embodiment formed by the printing shown in Fig. 4 has a single-layer printing layer 150 composed of a color layer 152 and a multi-layer printing layer 160 composed of a color layer 152 and a white layer 162. The color layer 152 is formed with color inks such as cyan, magenta, yellow, and black. The white layer 162 is formed with white ink. Note that the color layer 152 is not a single color and varies depending on the design of the decorative image 120 and is composed of a plurality of colors. The single-layer printing layer 150 formed only with the color layer 152 is colored but is semi-transparent and can be seen through. The multi-layer printing layer 160 with the color layer 152 and the white layer 162 stacked thereon is opaque. In the present embodiment, the multi-layer printing layer 160 has a three-layer structure laminated in the order of the color layer 152, the white layer 162, and the color layer 152 from the back surface 102B side, but it is not limited thereto.
[0033] Note that Fig. 4 is a schematic illustration, and the ratios of the plate thickness, layer thickness, etc. do not match the actual ones. However, the plate thickness of the plate material 102 is larger than that of the single-layer printing layer 150 and the multi-layer printing layer 160. Also, the layer thickness of the white layer 162 is larger than that of the color layer 152. The description of the cutting groove 90 in the figure will be given later.
[0034] In this embodiment, the plate thickness of the plate material 102 is about 3 mm, the layer thickness of the color layer 152 (single-layer printing layer 150) is about 10 μm, the layer thickness of the white layer 162 is about 20 μm, and the layer thickness of the multi-layer printing layer 160 is about 40 μm, but it is not limited thereto. Note that the plate thickness of the plate material 102 is uniform within the range of manufacturing tolerance.
[0035] Also, the white part of the decorative image 120 in Fig. 3 is a non-printed transparent area, the light half-tone (light gray color) part indicates the area where the single-layer printing layer 150 (see Fig. 4) is formed, and the dark half-tone (dark gray color) part indicates the area where the multi-layer printing layer 160 (see Fig. 4) is formed.
[0036] Here, "transparent" means that it is transparent to such an extent that what is on the back surface 102B side can be visually recognized when looking at the plate material 102 (diorama assembly kit 100) from the front surface 102A side, and it is not limited to being completely transparent, that is, having a visible light transmittance of 100%. Similarly, "opaque" means that it is opaque to such an extent that what is on the back surface 102B side cannot be visually recognized when looking at the plate material 102 (diorama assembly kit 100) from the front surface 102A side, and it is not limited to being completely opaque, that is, having a visible light transmittance of 0%. Translucent is the intermediate visible light transmittance between transparent and opaque.
[0037] As shown in FIGS. 3 and 7, on the plate material 102, cutting grooves 90 (see FIG. 4) are formed along the outer shapes of the first plate member 10, the second plate member 20, the plurality of third plate members 30, the fourth plate member 40, the plurality of character plate members 50, and the fixing plate member 60. On the second plate member 20, cutting grooves 90 are also formed along the outer shape of an opening hole 22 to be described later. On the fixing plate member 60, cutting grooves 90 are also formed along the outer shapes of a first fixing hole 62 and two second fixing holes 64 to be described later. In the present embodiment, the cutting grooves 90 are formed by a laser cutter.
[0038] As shown in FIG. 4, in the present embodiment, the cutting grooves 90 are cut from the surface 102A side of the plate material 102 (the opening side is the surface 102A), but the present invention is not limited to this, and the cutting grooves 90 may be cut from the back surface 102B side (the opening side may be the back surface 102B). Also, the groove width of the cutting grooves 90 in the present embodiment is about 2.77 mm, and the plate thickness of the bottom 92 is about 0.23 mm, but the present invention is not limited to this.
[0039] Since the cutting grooves 90 have a narrow groove width and the plate thickness of the bottom 92 is as thin as a so-called burr in this way, a person can cut along the cutting grooves 90 and cut out the first plate member 10, the second plate member 20, the third plate members 30, the fourth plate member 40, the character plate members 50, and the fixing plate member 60 from the plate material 102 as shown in FIGS. 5 and 7. Also, the opening hole 22 can be formed by cutting along the cutting grooves 90 in the second plate member 20. Similarly, the first fixing hole 62 and the two second fixing holes 64 can be formed by cutting along the cutting grooves 90 in the fixing plate member 60.
[0040] As shown in FIG. 7, the outer shapes of the first plate member 10, the second plate member 20, and the fourth plate member 40 of the present embodiment are the same (see FIGS. 1 and 2). The first plate member 10, the second plate member 20, and the fourth plate member 40 are substantially circular, and rectangular first insertion portions 11, 21, 41 that protrude downward are formed at the lower portion. An opening hole 22 having a substantially semicircular shape (see FIGS. 1 and 2) can be formed on the upper side inside the second plate member 20. The plurality of third plate members 30 have a dimensional shape that can be disposed within the opening hole 22. The outer shape of the third plate member 30 of the present embodiment is heart-shaped (see FIGS. 1 and 2), but is not limited thereto.
[0041] The character plate member 50 has the outer shape of each character, and a rectangular second insertion portion 51 having the same shape and protruding downward is formed at the lower portion. The fixing plate member 60 can be formed with a rectangular first fixing hole 62 and two rectangular second fixing holes 64. The first fixing hole 62 is formed at the center in the left-right direction on the rear side, and the second fixing holes 64 are formed on both sides in the left-right direction on the front side.
[0042] The first fixing hole 62 has a dimensional shape such that the first insertion portions 11, 21, 41 in a state where the first plate member 10, the second plate member 20, and the fourth plate member 40 are stacked can be inserted, and the first plate member 10, the second plate member 20, and the fourth plate member 40 can be fixed (see FIGS. 1, 2, and 8). The second fixing hole 64 has a dimensional shape such that the second insertion portion 51 of each character plate member 50 can be inserted, and the character plate member 50 can be fixed in a standing state (see FIGS. 1, 2, and 8).
[0043] As shown in FIG. 7, a multilayer printing layer 160 is formed in an arc shape and a band shape on the outer peripheral portion that contacts the periphery of the opening hole 22 of the second plate member 20 in a state where the second plate member 20 is fixed upright on the back surface of the first plate member 10 with the fixing plate member 60 stacked thereon. The multilayer printing layer 160 on the outer peripheral portion of the first plate member 10 is defined as the first printing layer 18 (see FIG. 2). Further, a single-layer printing layer 150 and a multilayer printing layer 160 are partially formed in a region that overlaps the opening hole 22 inside the first printing layer 18 (multilayer printing layer 160) on the outer peripheral portion of the back surface of the first plate member 10.
[0044] Around the opening hole 22 in the second plate member 20, an arc-shaped and strip-shaped single-layer printing layer 150 is formed. Note that the single-layer printing layer 150 of the second plate member 20 is referred to as the second printing layer 28 (see FIG. 2).
[0045] On the back surface of the third plate member 30, single-layer printing layers 150 are respectively formed. Note that the single-layer printing layer 150 of the third plate member 30 is referred to as the third printing layer 38 (see FIG. 2). Also, in this embodiment, the third printing layer 38 is composed of one color, but each third plate member 30 has a different color.
[0046] An arc-shaped and strip-shaped multi-layer printing layer 160 is formed on the outer peripheral portion that contacts the periphery of the opening hole 22 of the second plate member 20 in a state where the second plate member 20 is vertically fixed to the fixed plate member 60 on the back surface of the fourth plate member 40. Also, a single-layer printing layer 150 is formed in a region that overlaps the opening hole 22 inside the multi-layer printing layer 160 on the outer peripheral portion of the back surface of the fourth plate member 40.
[0047] On the back surface of the character plate member 50, multi-layer printing layers 160 with characters (see FIG. 7) drawn are respectively formed. On the back surface of the fixed plate member 60, a single-layer printing layer 150 and a multi-layer printing layer 160 are formed.
[0048] (Diorama assembly) Next, the diorama assembly will be described.
[0049] As described above, the state in which the first plate member 10, the second plate member 20, a plurality of third plate members 30, the fourth plate member 40, a plurality of character plate members 50, and the fixed plate member 60 are cut out and assembled from the plate-shaped diorama assembly kit 100 in FIG. 7 is the diorama assembly 200 shown in FIGS. 1, 2, and 8.
[0050] As shown in FIGS. 1 and 2, the first plate member 10, the second plate member 20, a plurality of third plate members 30, the fourth plate member 40, a plurality of character plate members 50, and the fixing plate member 60 are cut out from the plate-shaped diorama assembly kit 100 (see FIG. 7) along the cutting groove 90 (see FIGS. 5 and 7). Further, the opening hole 22 of the second plate member 20, the first fixing hole 62, and the second fixing hole 64 of the fixing plate member 60 are formed. In FIG. 2, only the first printing layer 18, the second printing layer 28, and the third printing layer 38 are shown.
[0051] One or a plurality of third plate members 30 are inserted into the opening hole 22 of the second plate member 20, and in a state where the first plate member 10 and the fourth plate member 40 are overlapped so as to cover the opening hole 22 from both sides of the second plate member 20, the first insertion portions 11, 21, 41 of the first plate member 10, the second plate member 20, and the fourth plate member 40 are inserted into the first fixing hole 62 of the fixing plate member 60 placed on a flat surface such as a desk or a table, whereby the first plate member 10, the second plate member 20, and the fourth plate member 40 are erected and fixed to the fixing plate member 60 (see also FIG. 8).
[0052] Also, the front sides of the first plate member 10, the second plate member 20, and the third plate member 30 are all overlapped with the front surface 102A, and the rear sides are overlapped with the back surface 102B. Further, two of the plurality of character plate members 50 are inserted into the second fixing hole 64 and erected and fixed (see also FIG. 8). All of the character plate members 50 are also erected and fixed with the front side as the front surface 102A and the rear side as the back surface 102B (see also FIG. 5).
[0053] <Function> Next, the function of this embodiment will be described.
[0054] FIG. 5 is a cross-sectional view schematically showing a cross-section along the Y direction in the vicinity of the opening hole 22 in a state where the first plate member 10, the second plate member 20, the third plate member 30, and the fourth plate member 40 are overlapped in the diorama assembly 200. In FIG. 5, for easy understanding, gaps are provided between the plate members. Also, like FIG. 4, FIG. 5 is also schematically illustrated, and the ratios of the plate thickness and the layer thickness do not match the actual ones.
[0055] As shown in FIG. 5, a strip-shaped first printing layer 18 (multilayer printing layer 160) is formed around the opening hole 22 of the second plate member 20 on the back surface of the first plate member 10, and it is not printed in the region covering the opening hole 22 of the second plate member 20. A second printing layer 28 (single-layer printing layer 150) is formed around the opening hole 22 on the back surface of the second plate member 20. And a third printing layer 38 (single-layer printing layer 150) is formed on the back surface of the third plate member 30.
[0056] As described above, the multilayer printing layer 160 has a larger layer thickness than the single-layer printing layer 150. Therefore, the sum of the layer thickness of the first printing layer 18 (multilayer printing layer 160) printed around the opening hole 22 in the first plate member 10 and the layer thickness of the second printing layer 28 (single-layer printing layer 150) printed around the opening hole 22 in the second plate member 20 is larger than the layer thickness of the third printing layer 38 (single-layer printing layer 150) printed on the third plate member 30. Also, the plate thicknesses of the transparent plate materials 102 constituting the first plate member 10, the second plate member 20, and the third plate member 30 are the same.
[0057] Therefore, the thickness T including the third printing layer 38 (single-layer printing layer 150) of the third plate member 30 entering the opening hole 22 of the second plate member 20 is smaller than the gap S between the first plate member 10 and the fourth plate member 40 at the opening hole 22. Thus, when a person shakes the diorama assembly 200, the third plate member 30 smoothly moves rattle in the opening hole 22.
[0058] Here, as shown in FIG. 3, precisely in the region covering the opening hole 22 of the second plate member 20 on the back surface of the first plate member 10, a single-layer printing layer 150 and a multi-layer printing layer 160 are printed as the decorative image 120. However, the region where the single-layer printing layer 150 exists is partial, and moreover, in the region where the single-layer printing layer 150 exists, the gap S between the first plate member 10 and the fourth plate member 40 is larger than the thickness T of the third plate member 30. Therefore, even in this region, the third plate member 30 moves smoothly within the opening hole 22 without getting stuck. Also, the gap S between the first plate member 10 and the fourth plate member 40 in the region where the multi-layer printing layer 160 exists is approximately the same as the thickness T of the third plate member 30. However, since there are only a few multi-layer printing layers 160 in a dot pattern, even if the third plate member 30 gets caught on the multi-layer printing layer 160, it still moves smoothly within the opening hole 22 without getting stuck.
[0059] <Others> Note that the present invention is not limited to the above-described embodiments.
[0060] For example, in the above-described embodiment, as shown in FIG. 5, a strip-shaped first printing layer 18 (multi-layer printing layer 160) is formed around the opening hole 22 of the second plate member 20 on the back surface of the first plate member 10 and is not printed in the region covering the opening hole 22 of the second plate member 20. And a second printing layer 28 (single-layer printing layer 150) is formed around the opening hole 22 on the back surface of the second plate member 20, and a third printing layer 38 (single-layer printing layer 150) is formed on the back surface of the third plate member 30. However, the present invention is not limited to such a configuration.
[0061] For example, as shown in FIG. 6, a first printing layer 18 (single-layer printing layer 150) may be formed around and in the region covering the opening hole 22 of the second plate member 20 on the back surface of the first plate member 10, and a second printing layer 28 (multi-layer printing layer 160) may be formed on the back surface of the second plate member 20. Note that FIG. 6 is schematically illustrated in the same way as FIG. 5, and the ratios of the plate thickness and layer thickness do not match the actual ones. Also, there are gaps between the respective plate members.
[0062] Also, for example, as shown in FIG. 9, a first printing layer 18 (single-layer printing layer 150) is formed around the opening hole 22 of the second plate member 20 and in the region covering the opening hole 22 on the back surface of the first plate member 10, a second printing layer 28 (single-layer printing layer 150) is formed on both the front and back surfaces of the second plate member 20, and a fourth printing layer 48 (multi-layer printing layer 160) may be formed around the opening hole 22 of the second plate member 20 on the front surface of the fourth plate member 40. Note that FIG. 9 is schematically illustrated as in FIG. 5, and the ratios of the plate thickness and layer thickness do not match the actual ones. Also, there are gaps between the plate members.
[0063] Also, the printing layer in the region covering the opening hole 22 in the first plate member 10 does not necessarily have a constant layer thickness. There may be a portion where the gap S between the first plate member 10 and the fourth plate member 40 is the same as or larger than the thickness T of the third plate member 30. However, as long as the dimensional shape of the region other than the portion where the gap S between the first plate member 10 and the fourth plate member 40 is the same as or larger than the thickness T of the third plate member 30 allows the third plate member 30 to move smoothly within the opening hole 22.
[0064] In short, as long as the region of the gap S between the first plate member 10 and the fourth plate member 40 in the opening hole 22 that is larger than the thickness T of the third plate member 30 including the printing layer has a dimensional shape that allows the third plate member 30 to move smoothly.
[0065] Also, for example, in the above embodiment, the plate material 102 was transparent or translucent, but it is not limited thereto. The plate material 102 may be opaque on the whole or in part.
[0066] Also, for example, in the above embodiment, a decorative image 120 is printed on the plate material 102, but it is not limited thereto. On the plate material 102, only a predetermined color (for example, yellow) may be printed in addition to the decorative image.
[0067] Also, for example, in the above-described embodiment, ink is sprayed and printed on the plate material 102 using a UV inkjet printer (printed by inkjet printing), but it is not limited thereto, and for example, silk printing may be used.
[0068] Furthermore, it can be implemented in various modes without departing from the gist of the present invention. Embodiments, modifications, etc. can be implemented in combination as appropriate.
Explanation of Signs
[0069] 10 First plate member 11 First insertion part 18 First printing layer (an example of a printing layer) 20 Second plate member 21 First insertion part 22 Opening hole 28 Second printing layer (an example of a printing layer) 30 Third plate member 38 Third printing layer (an example of a printing layer) 40 Fourth plate member 41 First insertion part 48 Fourth printing layer (an example of a printing layer) 60 Fixing plate member 62 First fixing hole 100 Diorama assembly kit 102 Plate material 102A Surface (an example of the other plate surface) 102B Back surface (an example of one plate surface) 120 Decorative image (an example of an image) 150 Single-layer printing layer 152 Color layer 160 Multi-layer printing layer 162 White layer 200 Diorama assembly S Gap T Thickness
Claims
1. A first plate member cut from a plate material having a printed layer formed on a plate surface, A second plate member cut from the plate material and having an opening hole, One or more third plate members cut from the plate material, A fourth plate member cut from the plate material, The third plate member is inserted into the opening hole of the second plate member, and the first plate member and the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member. A fixing plate member having a fixing hole into which the insertion portions of the first plate member, the second plate member, and the fourth plate member are inserted and erected and fixed, Comprising, The layer thickness of the printed layer is adjusted so that the gap between the first plate member and the fourth plate member in the region covering the opening hole is larger than the thickness of the third plate member. Diorama assembly.
2. The printed layer is formed on one of the plate surfaces of the plate material, One of the plate surfaces of the first plate member and the other plate surface of the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member, The sum of the layer thicknesses of the printed layer formed around the opening hole in the first plate member and the printed layer formed around the opening hole in the second plate member is larger than the layer thickness of the printed layer formed on the third plate member. The diorama assembly according to claim 1.
3. At least one of the printed layer of the first plate member and the printed layer of the second plate member is a multi-layer including a color layer and a white layer, The printed layer of the third plate member is a single layer of a color layer, The diorama assembly according to claim 2.
4. The sum of the layer thicknesses of the printed layer formed around the opening hole on the plate surface on the second plate member side of the first plate member, the printed layer formed around the opening hole in the second plate member, and the printed layer formed around the opening hole on the plate surface on the second plate member side of the fourth plate member is larger than the layer thickness of the printed layer formed on the third plate member. The diorama assembly according to claim 1.
5. A diorama assembly kit composed of a plate material having a printed layer formed on a plate surface, In the plate material, A first plate member, A second plate member having an opening hole, One or more third plate members having a dimensional shape that can be arranged in the opening hole, A fourth plate member, A fixing plate member having a fixing hole into which the insertion portions of the first plate member, the second plate member, and the fourth plate member are inserted and erected and fixed in a state where they are overlapped; is formed so as to be cuttable, When the first plate member and the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member, the layer thickness of the printing layer is adjusted so that the gap between the first plate member and the fourth plate member in the region covering the opening hole is larger than the thickness of the third plate member. Diorama assembly kit.
6. The printing layer is formed on one of the plate surfaces of the plate material, When one of the plate surfaces of the first plate member and the other plate surface of the fourth plate member are overlapped so as to cover the opening hole from both sides of the second plate member, The total layer thickness of the layer thickness of the printing layer formed around the opening hole in the first plate member and the layer thickness of the printing layer formed around the opening hole in the second plate member is larger than the layer thickness of the printing layer formed on the third plate member. The diorama assembly kit according to claim 5.
7. At least one of the printing layer of the first plate member and the printing layer of the second plate member is a multi-layer including a color layer and a white layer, The printing layer of the third plate member is a single layer of a color layer. The diorama assembly kit according to claim 6.
8. The total layer thickness of the layer thickness of the printing layer formed around the opening hole on the plate surface on the second plate member side of the first plate member, the layer thickness of the printing layer formed around the opening hole in the second plate member, and the layer thickness of the printing layer formed around the opening hole on the plate surface on the second plate member side of the fourth plate member is larger than the layer thickness of the printing layer formed on the third plate member. The diorama assembly kit according to claim 5.
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Patent Citations
Decorations and fasteners
JP3228751U