Storage box for soluble bead toys

By designing a production table including a rough surface and a loading surface in a fusible bead toy storage box, the problem of insufficient adhesion in the prior art is solved, rapid drying and movement of the aggregate are achieved, and playability and space utilization efficiency are improved.

CN223371679UActive Publication Date: 2025-09-23EPOCH COMPANY LTD
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Patent Information

Application Number
CN202422578487.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-10-24
Filing Date
2024-10-24
Publication Date
2025-09-23
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

In the existing fusible bead toy storage box, the first production table and the second production table are separated, which makes it difficult to move the insufficiently adhered assembly to the second production table, and it is not possible to ensure sufficient space for making the next assembly.

Method used

A storage box for weldable bead toys is designed, which has a production table including a rough surface and a loading surface arranged on the same outer side surface for drying weldable bead toy components, and a loading surface is arranged on the cover to facilitate rapid drying and movement of the assembly.

Benefits of technology

The playability is improved, the quick drying and movement of the soluble bead toys are ensured, the sticking is avoided, and the space utilization efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a storage box for soluble bead toys, which is excellent in game performance. The storage box for the solvable bead toys is provided with a setting part for setting a manufacturing table of the solvable bead toys and a carrying surface which comprises a rough surface and enables solvable bead toy assemblies to be dried on the same outer side surface.
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Description

Technical Field

[0001] The utility model relates to a storage box for weldable bead toys. Background Art

[0002] Storage boxes for storing weldable bead toys have been proposed. For example, Patent Document 1 discloses a storage box for weldable bead toys comprising a main body with a strap and a production table disposed within the main body, which is configured as a collection of weldable bead toys. The storage box includes a production table for weldable bead toys (a first production table) that can be attached and detached from the storage box, and a strip-shaped production table (a second production table) disposed on the side of the storage box.

[0003] [Prior art literature]

[0004] [Patent Document]

[0005] [Patent Document 1] Japanese Patent Application Laid-Open No. 2022-185209.

[0006] However, in the storage box of Patent Document 1, the first and second production tables are separated, making it difficult to move the above-mentioned assembly that has not been sufficiently adhered to the second production table. Therefore, it is necessary to place it on the first production table until the assembly is dried to a certain extent, and sometimes there is not enough space to prepare the next assembly on the production table. Utility Model Content

[0007] The purpose of the utility model is to provide a storage box for weldable bead toys with excellent playability.

[0008] The utility model relates to a storage box for a weldable bead toy having a setting portion and a placing surface on the same outer side surface. The setting portion is provided with a production table for the weldable bead toy, and the placing surface includes a rough surface and dries the weldable bead toy components.

[0009] [Effects of the utility model]

[0010] According to the present invention, a storage box for weldable bead toys with excellent playability can be provided. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 This is a top-down perspective view of the storage box.

[0012] Figure 2 It is a top perspective view of the box body.

[0013] Figure 3 It is a three-dimensional view of the bottom surface of the box body.

[0014] Figure 4 It is a bottom three-dimensional view of the cover.

[0015] Figure 5 This is an enlarged perspective view of the area around the engaging plate of the box body as viewed from the rear.

[0016] Figure 6 This is an enlarged view of the hollow portion of the box body.

[0017] Figure 7 This is a right side view of the storage box in the open state.

[0018] Figure 8 This is a top-down perspective view of the production table.

[0019] Figure 9 It is a figure which shows the usage example of a storage box.

[0020] Figure 10 This is a top perspective view of the storage box in the opened state that houses the production table.

[0021] [Explanation of symbols]

[0022] 1 Storage box, 2 Box body, 3 Cover, 3b Rear end grip, 5 Production table, 6 First workbench, 6R First workbench area, 6a Upper surface, 6a1 Inclined surface, 6b Lower surface, 7 Second workbench, 7R Second workbench area, 7a Upper surface, 7b Lower surface, 7b1 Guided portion, 11 Main body, 12 Handle, 21 Storage body, 22 Bottom plate, 23 (23a to 23d) Outer wall, 26 Second guide, 27 Limiting protrusion, 31 Top plate, 31a Outer side, 31b Protrusion, 32 Side plate, 32a Outer side, 33 Bead pen storage portion, 34 Sprayer storage portion, 35 Production Table storage portion, 36 first guided portion, 37 second guided portion, 38 weight reduction portion, 41 first storage chamber, 42 second storage chamber, 43 production table storage portion, 44 first guide portion, 51 discharge portion, 62 guide hole, 64 protrusion, 64B extension portion, 64B1 engagement protrusion, 65 first worktable side inclined surface, 66 through hole, 68 edge wall, 68a stepped protrusion, 68b stepped recess, 71 ear, 71a rib, 71b engagement extension, 71c ear side inclined surface, 72 upper surface first low wall portion, 72A plate guide, 72B guide plate spring, 74 upper surface second low wall portion, 74B Limiting plate spring, 74b guided portion, 76 pin, 134 second convex surface, 221 exterior portion, 221a convex surface, 221b decorative portion, 241 (241-1 to 241-3) partition wall, 241a, 241b supporting surface, 241b1 engaging protrusion, 242 supporting rib, 242a limiting edge portion, 242b inclined edge portion, 243 supporting rib, 243a limiting edge portion, 243b notch portion, 244 engaging plate, 244a engaging protrusion, 251 grounding portion, 252 grounding portion, 252a straight portion, 252b curved portion, 253 grounding portion, 261 edge rib, 262 (262A, 2 62B) engaging portion, 263 through-hole, 271 hollow portion, 272 rib, 311 setting portion, 311a guide portion, 312 loading surface, 313 first convex surface, 313a rough surface, 313b, 314b neck portion, 314 second convex surface, 314a smooth surface, 315 opening portion, 316 display surface, 321 cover portion, 331 inner wall, 332 upper partition wall, 333 grounding portion, 333a bent portion, 341 inner wall, 361 inclined portion, 371 protrusion, 372 (372A, 372B) engaged portion, 381 rib, H1 first hinge, H2 second hinge, P region, S gap. DETAILED DESCRIPTION

[0023] Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings. Figure 1This is an overall three-dimensional view of a storage box 1 for storing weldable bead toys. The storage box 1 imitates a generally flat-plate-shaped bag with thick walls as a whole, and comprises: a main body 11 having the function of storing weldable bead toys, and an arc-shaped (or arched) handle 12 connected to the main body 11. The storage box 1 has the function of storing weldable bead toys and weldable bead toy sets such as the production table 5 described later, a bead toy pen (not shown), and a sprayer (not shown), and the function of serving as a work tool for placing the production table 5 to produce a collection of weldable bead toys (weldable bead toy components). In addition, in the description of the storage box 1 of this embodiment, the lid 3 side of the storage box 1 is set as the top, the opposite box body 2 side is set as the bottom, the handle 12 side is set as the back, and the opposite side is set as the front. In addition, the side viewed from the lid 3 side of the storage box 1 is set as the bottom. Figure 1 The left side of is set as left, and the opposite side is set as right.

[0024] Weldable beads are made from a water-soluble resin. Specifically, they are formed by mixing polyvinyl alcohol with a resin. The resin used to form the beads can be any of a variety of transparent, translucent, or opaque materials. Furthermore, the beads can be shaped in various forms, including spheres, polyhedrons, and stars.

[0025] The storage box 1 includes a box body 2 and a sliding cover 3 that opens and closes by moving relative to the box body 2 . Figure 2 This is a top perspective view of the box body 2. The box body 2 includes a storage body portion 21 as part of the main body portion 11. The storage body portion 21 has a bottom plate 22 and outer walls 23 (23a to 23d) extending from the front, rear, and left and right edges of the bottom plate 22. The storage body portion 21 is formed into a generally rectangular flat plate with an upper opening.

[0026] The storage body 21 has a plurality of storage chambers 41 and 42, the interior of which is divided by rib-shaped partitions 241. The rib-shaped partitions 241 are arranged in a plane direction including the top and bottom and the left and right directions. The storage chambers 41 and 42 are mainly formed into a cubic space that is roughly rectangular when viewed from above, and have the function of storing fusible bead toys. The storage chambers 41 and 42 include a first storage chamber 41 with a relatively shallow bottom and a second storage chamber 42 with a bottom deeper than the bottom of the first storage chamber 41, depending on the height of the partitions 241. The storage body 21 of this embodiment has 9 first storage chambers 41 and 22 second storage chambers 42. The upper ends of the partitions 241 forming the plurality of first storage chambers 41 located on the roughly central side of the storage body 21 are formed to be located on a roughly flat surface. The partition 241-1 of a portion of the first storage chamber 41 located on the front side is shared with the partition 241-1 of an adjacent portion of the second storage chamber 42.

[0027] The storage main body 21 is provided with a production table storage portion 43 on the opening side of the plurality of first storage chambers 41, i.e., above the storage portion. The production table storage portion 43 can store the production table 5 of the fusible bead toys described later so as to be loadable and detachable. The production table storage portion 43 has a plurality of supporting surfaces 241a, 241b and a plurality of supporting ribs 242, 243 for supporting the side surfaces of the production table 5. The supporting surface 241a of the partition wall 241-1 located on the front side of the box body 2 and the supporting surface 241b of the partition wall 241-2 located on the rear side of the box body 2 are arranged relative to each other in the front-to-back direction, thereby limiting the movement of the production table 5 in the front-to-back direction. In addition, the partition wall 241-2 separates the shallow-bottomed first storage chamber 41 in the front-to-back direction and is formed by a height substantially the same as that of the partition wall 241 of the second storage chamber 42.

[0028] A snap-fit ​​plate 244 is formed on a portion of the front support surface 241a. The snap-fit ​​plate 244 supports the production table 5 by pushing it in the front-to-back direction (i.e., the front-to-back width direction of the production table 5). The snap-fit ​​plate 244 is formed into a roughly rectangular leaf spring shape with the lower end as a fixed end and the upper end as a free end by providing two slits roughly parallel to each other from the upper end of the partition wall 241-1. Figure 5 As shown, an engaging protrusion 244a is formed on the support surface 241a side of the engaging plate 244 over the width direction (left-right direction) of the engaging plate 244. The engaging protrusion 244a has a generally triangular cross-sectional shape with a gentle slope on the free end side of the engaging plate 244 and a steep slope on the base end side.

[0029] In addition, if Figure 2 As shown, the support surface 241b of the rear partition wall 241-2 also has an engaging protrusion 241b1 extending across the width (left-right) of the partition wall 241-2. The engaging protrusion 241b1 has a generally triangular cross-sectional shape, with a gentle slope at the free end of the partition wall 241-2 and a steep slope at the base end. The front and rear engaging protrusions 244a and 241b1 are positioned at approximately the same height in the vertical direction.

[0030] The support ribs 242 and 243 are located adjacent to the workbench storage section 43, formed at the ends of the partitions 241-3 and 241-4 formed in the left-right direction, where portions of the partitions 241-3 and 241-4 are cut away from the workbench storage section 43. In other words, the support ribs 242 and 243 are formed by cutting out portions of the second storage chamber 42. The support ribs 242 and 243 are positioned opposite each other in the left-right direction, restricting the left-right movement of the workbench 5. The four support ribs 242 located on the front side of the box body 2 have vertically extending restricting edges 242a and C-chamfered angled edges 242b. Because the angled edges 242b are positioned opposite each other, the left-right width of the workbench storage section 43 increases as it moves upward. Therefore, when the user stores the workbench 5 in the workbench storage section 43, the inclined edges 242b guide it, making it easy to place it into the workbench storage section 43.

[0031] The two support ribs 243, located on the rear side of the box body 2, have vertically extending restriction edges 243a, similar to the aforementioned restriction edges 242a. The spacing between the left and right opposing restriction edges 243a is approximately the same as the spacing between the left and right opposing restriction edges 242a. Therefore, the left-right inner width of the workbench storage section 43 is determined by the spacing between the restriction edges 242a and the spacing between the restriction edges 243a. The support ribs 243 have rectangular cutouts 243b at their upper corners.

[0032] The box body 2 includes a first guide portion 44 formed by notching a portion of the outer wall 23b, which is a portion of the second storage chamber 42 on the rear side, into a substantially rectangular shape. The first guide portions 44 are provided at two locations, left and right. Furthermore, when viewed from the rear, the support ribs 242 and 243 are prevented from interfering with the opening area of ​​the first guide portion 44 by the notched portions 243b or the inclined edges 242b.

[0033] Figure 3 This is a three-dimensional view of the bottom surface of the box body 2. The outer covering 221 of the bottom plate 22 is generally flat, but is decorated with concave and convex shapes. Specifically, the outer covering 221 has convex surfaces 221a that appear rectangular when viewed from above and have a small height difference. Multiple convex surfaces 221a are arranged in the front-to-back and left-to-right directions. Furthermore, the outer covering 221 has decorative portions 221b that resemble a belt. These decorative portions 221b are located on both the left and right sides, extending across the front and back.

[0034] The box body 2 has rib-shaped grounding portions 251, 252, and 253 (first grounding portions) protruding downward at the four corners of the outer casing 221 and at two locations on the left and right inner sides of the front of the outer casing 221. The grounding portion 251 provided at the corner of the front of the outer casing 221 is formed into a flat plate extending in the left-right direction. The grounding portion 252 provided at the corner of the rear of the outer casing 221 includes a straight portion 252a and a curved portion 252b connected to one end of the straight portion 252a at a different angle. The straight portion 252a is formed so as to tilt backward from the inside toward the outside in the left-right direction of the box body 2.

[0035] At the front of the box body 2, two grounding portions 253 provided inside the grounding portion 251 are formed into flat plate shapes extending in the front-rear direction. The grounding portions 253 are arranged parallel to each other.

[0036] The box body 2 has a second guide portion 26 on the exterior of the left and right outer walls 23c and 23d. The second guide portion 26 is formed to extend forward and backward from the outer walls 23c and 23d in a rail-like shape. The second guide portion 26 is located near the upper edge of the outer walls 23c and 23d. Furthermore, the exterior of the outer walls 23c and 23d has an edge rib 261 extending downward from the front end of the second guide portion 26.

[0037] Each of the left and right second guide portions 26 has two engaging portions 262A, 262B (262) at a portion of the rear of the box body 2 (see also Figure 1 (Enlarged view of the AA section of the figure). The engaging portions 262A and 262B of this embodiment are engaging protrusions that protrude from the end surface of the second guide portion 26 opposite the second guided portion 37. In other words, the engaging portions 262A and 262B of the left second guide portion 26 protrude to the left, and the engaging portions 262A and 262B of the right second guide portion 26 protrude to the right. In addition, a slit-shaped through-hole 263 is provided in a portion of the second guide portion 26 on the base end side of the engaging portions 262A and 262B. Thus, the engaging portions 262A and 262B are supported by a double-support leaf spring-like base and are configured to be pushed in the protruding direction. The engaging portions 262A and 262B are formed so as to be able to overcome the elastic force and move toward the base side, that is, in the direction of immersion.

[0038] The engaging portion 262A engages with or disengages the engaging portion 372A on the side of the cover 3 when the cover 3 is restricted or released to the closed state. In addition, the engaging portion 262B engages with or disengages the engaging portion 372B on the side of the cover 3 when the cover 3 is restricted or released to the open state. The positional relationship between the engaging portion 372A and the engaging portion 372B is shown in FIG. Figure 4 shown.

[0039] Back to Figure 2The box body 2 has a quadrangular prism-shaped restriction protrusion 27 protruding upward at the front end. When the cover body 3 is slid forward relative to the box body 2, the restriction protrusion 27 restricts the movement of the cover body 3 forward.

[0040] In addition, the restricting protrusion 27 is formed into a hollow shape with an opening at the bottom. Figure 6 As shown, the hollow portion 271 of the restricting protrusion 27 is a rectangular parallelepiped space that is elongated horizontally. Multiple ribs 272 are provided within the hollow portion 271. The ribs 272 are arranged at approximately equal intervals in the horizontal direction, with the plate surface facing the horizontal direction. The spacing between the ribs 272 is set to be smaller than the diameter of the aforementioned adhesive beads. This prevents the adhesive beads from entering the hollow portion 271. For example, if the hollow portion 271 lacked ribs 272, a wet adhesive bead could enter a deep space like the hollow portion 271 and become stuck there. This would make it difficult for the user to remove the adhesive bead. In this embodiment, since the box body 2 has a plurality of ribs 272 arranged at intervals with a width smaller than that of the weldable bead toys in the hollow portion 271 formed in the externally exposed portion as a weight-reducing portion, the weldable bead toys can be prevented from entering the hollow portion 271. In addition, by making the limiting protrusion 27 hollow, the box body 2 can be made lighter, the material can be reduced, and the productivity can be improved.

[0041] The structure of the cover 3 is described in detail below. Figure 1 As shown, the cover 3 includes a top plate 31 that can be opened and closed to close the opening side of the box body 2, and side plates 32 extending downward from the left and right ends of the top plate 31. The top plate 31 has, on the same outer side surface 31a as the exposed surface, a setting portion 311 on which the production table 5 for the fusible bead toys is set, and a placing surface 312 including a rough surface 313a for drying the assembly of fusible bead toys.

[0042] The installation portion 311 has a guide portion 7b1 (see also Figure 9 (See the enlarged view of section C of the cover 3) for engaging with the guide portion 311a to position the production table 5. The guide portion 311a is a curved plate-shaped protrusion that projects upward from the outer side surface 31a of the cover 3. The guide portion 311a is arranged corresponding to the four corners of the rectangular flat plate-shaped production table 5.

[0043] The outer side surface 31a includes a plurality of first convex surfaces 313 with rough surfaces 313a and a plurality of second convex surfaces 314 with smooth surfaces 314a. The first convex surfaces 313 and the second convex surfaces 314 are convex surfaces that protrude in the normal direction (upward) of the outer side surface 31a, with their boundaries forming a concave portion. Furthermore, the first convex surfaces 313 and the second convex surfaces 314 are gently convexly curved at least in the left-right direction when viewed from above, and each has a substantially identical shape. The outer side surface 31a arranges the first convex surfaces 313 and the second convex surfaces 314 in a straight line relative to the front-to-back direction and the left-to-right direction of the storage box 1. The directions in which the first convex surfaces 313 and the second convex surfaces 314 are arranged in a straight line are the front-to-back direction and the oblique directions of the front-to-back and left-to-right directions. Furthermore, the outer side surface 31a arranges the first convex surfaces 313 and the second convex surfaces 314 in a straight line, while staggering them in the front-to-back direction. That is, in this embodiment, the first convex surfaces 313 and the second convex surfaces 314 are arranged in a 45-degree chimera pattern. Furthermore, the first convex surfaces 313 and the second convex surfaces 314 are continuously connected in the front-to-back direction via constricted portions 313b and 314b. Each constricted portion 313b and 314b is formed into a concavely curved shape. The constricted portion 313b connecting the first convex surfaces 313 is adjacent to the convexly curved portion of the second convex surface 314. Similarly, the constricted portion 314b connecting the second convex surfaces 314 is adjacent to the convexly curved portion of the first convex surface 313.

[0044] In this embodiment, the cover 3 is formed of resin. The smooth surface 314a is designed to reflect external light to a certain extent, giving it a glossy appearance. The rough surface 313a is finely contoured, suppressing specular reflection of external light compared to the smooth surface 314a and allowing for diffuse reflection, resulting in a matte finish. The rough surface 313a may also be a grained surface. The rough surface 313a prevents or reduces the risk of adhesive beads drying out and sticking, even when wet adhesive beads come into contact with the surface.

[0045] Furthermore, each of the first convex surface 313 and the second convex surface 314 includes a substantially L-shaped protrusion 31b that curves near the center of each of the first convex surface 313 and the second convex surface 314. The protrusion 31b protrudes beyond the surface of each of the first convex surface 313 and the second convex surface 314. The protrusion 31b is provided at two locations on each of the first convex surface 313 and the second convex surface 314: one protrusion 31b extends forward and to the right, while the other protrusion 31b extends rearward and to the left.

[0046] The loading surface 312 is an area for drying the wetted aggregate. The loading surface 312 is provided on the left and right sides of the setting portion 311. In addition, the loading surface 312 has a first convex surface 313 including a rough surface 313a on the central side in the front-back direction relative to the setting portion 311. As described later, the production table 5 provided on the setting portion 311 has an aggregate discharge portion 51 on the left and right ends on the central side in the front-back direction. Therefore, the rough surface 313a of the loading surface 312 is provided on the discharge portion 51 provided on the production table 5 (by the first workbench side inclined surfaces 65 on the left and right sides of the first workbench 6 (refer to Figure 10 ) and the ears 71 in the expanded state are arranged continuously in a substantially flat manner. Therefore, the user can directly place the assembly produced on the production table 5 on the placement surface 312 by sliding it toward the right or left placement surface 312. On the other hand, the user can remove the assembly from the production table 5 without waiting for drying, so the production of the next assembly can be started quickly.

[0047] Furthermore, the assembly of adhesive beads is made relatively large, and when the assembly is placed on the mounting surface 312 across multiple protrusions 31b, contact between the assembly and the first convex surface 313 or the second convex surface 314 is prevented or reduced. Therefore, when a wet adhesive bead is placed on the mounting surface 312, it is possible to prevent or reduce the adhesive bead from drying out and sticking to the mounting surface 312. Furthermore, the surface of the protrusion 31b can be formed from either a smooth or rough surface, similar to the rough surface 313a and the smooth surface 314a.

[0048] The outer side surface 31a having the rough surface 313a has a larger area than other outer sides (eg, the outer side surface 32a of the side plate 32). Therefore, the cover 3 can ensure sufficient area for arranging the installation portion 311 and the placement surface 312 on the same outer side surface 31a.

[0049] In addition, the outer side surface 32a has a bottomed, generally hexagonal opening 315 on a portion of the second convex surface 314. This opening 315 allows for engagement and disengagement with a support member (not shown) that is connected to and supports the assembly. The opening 315 is formed in the second convex surface 314 within the area of ​​the mounting surface 312. Furthermore, the outer side surface 31a has a flat display surface 316 formed in a long strip in the left-right direction, spanning the first convex surface 313 and the second convex surface 314.

[0050] Figure 5This is a three-dimensional view of the bottom surface of the lid body 3. When the lid body 3 is in a closed state with the top plate 31 covering the box body 2, an upper partition wall 332 is provided at a position opposite the partition wall 241 of the first storage chamber 41 and the second storage chamber 42. The upper partition wall 332 extends primarily in the front-to-back direction and the left-to-right direction on the inner surface of the lid body 3 and is formed in a rib-like shape. When the lid body 3 is closed, the front, back, left, and right spaces of each storage chamber 41, 42 of the box body 2 are enclosed by the partition wall 241 and the upper partition wall 332. At this time, the gap between the partition wall 241 and the upper partition wall 332 is set to be smaller than the weldable bead toy. Therefore, each storage chamber 41, 42 can prevent the weldable bead toy from leaking out.

[0051] The cover 3 has a bead pen storage section 33 on the inside of the left side panel 32, which can accommodate a bead pen (not shown). Furthermore, the cover 3 has a sprayer storage section 34 on the inside of the right side panel 32, which can accommodate a sprayer (not shown). Both the bead pen storage section 33 and the sprayer storage section 34 are concave storage spaces that open downward.

[0052] In addition, the cover body 3 has a production table storage portion 35 on the central side in the left-right direction. The production table storage portion 35 of this embodiment functions as a cover covering the top of the folded production table 5. The cover body 3 has a first guided portion 36 on the side of the production table storage portion 35 on the inner surface of the top plate 31, which is engaged with the first guide portion 44 of the box body 2 in a slidable manner. The first guided portion 36 is formed in the shape of a flat plate rib protruding toward the first storage chamber 41 side and extending in the front-to-back direction. The left and right first guided portions 36 have an inclined portion 361 that is connected to the inner side of the cover body 3 in the left-right direction at the front end portion in the sliding direction of the cover body 3, that is, the front-to-back direction. The first guided portion 36 is formed into a plate shape with a bent front end by the inclined portion 361. The rear end corner of the first guided portion 36 is formed in an R chamfered shape.

[0053] The cover 3 has a second guided portion 37 on the inner side of the inner wall 331 of the bead pen storage portion 33 and the inner surface of the inner wall 341 of the sprayer storage portion 34, respectively, which is engaged with the second guide portion 26 in a slidable manner. Figure 3 Although the second guided portion 37 on the left inner wall 331 side is not shown, the second guided portion 37 on the inner wall 331 side is formed in a position and shape that is bilaterally symmetrical with the second guided portion 37 on the inner wall 341 side. The second guided portion 37 includes a plurality of protrusions 371 projecting in a facing manner on each inner wall 331, 341, and a recess formed on the inner surface of the top plate 31 of the cover body 3. The protrusions 371 are intermittently arranged in the front-to-back direction on the second guided portion 37.

[0054] Therefore, the first guide portion 44 and the second guide portion 26 are formed in a direction different from the opening direction of the storage chambers 41 and 42 (in this embodiment, the front-to-back direction) relative to the box body 2. In addition, the first guided portion 36 and the second guided portion 37 are also formed in a direction different from the opening direction of the storage chambers 41 and 42 relative to the box body 2.

[0055] The cover 3 has a portion on the front side of the second guided portion 37 that can be engaged and disengaged by crossing the engaging portion 262. The engaged portion 372 is a protrusion formed in the up-down direction in the recessed portion of the second guided portion 37. One of the engaged portions 372A is provided at the rear of the second guided portion 37 (see FIG. Figure 1 and Figure 4 The other engaged portion 372B is provided in front of the second guided portion 37 (see Figure 1 and Figure 10 ).

[0056] The cover 3 has a plurality of ribs 381 arranged at intervals smaller than the width of the weldable bead toy on the weight-reducing portion 38 formed on the rear end gripping portion 3b, which is the portion exposed to the outside. The ribs 381 are arranged at approximately equal intervals in the left-right direction with the plate surface facing the left-right direction. The intervals between the ribs 381 are set to be smaller than the diameter of the weldable bead toy. Therefore, the weldable bead toy can be prevented from entering the weight-reducing portion 38. In addition, the intervals between the ribs 381 are set so that even if the user (or player) of the storage box 1 is a child, it is difficult for the fingers to enter the interior of the weight-reducing portion 38. Therefore, the cover 3 can be lightweight, the material can be reduced, and productivity can be improved. Moreover, even if the user places his hand on the rear end gripping portion 3b of the cover 3, it is easy to hold it, and the cover 3 can be easily opened or closed.

[0057] The cover 3 has a cover portion 321 at the rear end of the left and right side panels 32 on the side of the box body 2. The cover portion 321 is curved inward in the left and right directions of the cover 3 when viewed from the back to cover a portion of the sliding direction of the cover 3. Therefore, the cover 3 is formed so that the left and right width decreases as it moves toward the rear of the storage box 1. The cover portion 321 is formed in a position where a space (or gap) is provided between the cover 3 and the box body 2 when the cover 3 is in a closed state relative to the box body 2. When the cover 3 is in a closed state, the space (or gap) between the cover 321 and the box body 2 is set to be wider than the thickness of a child's finger, for example. The sliding direction of the cover 3 in this embodiment is a front-to-back direction that is different from the opening direction (up and down direction) of the storage chambers 41 and 42. Therefore, even when the cover 3 is moved to the movable end on the box body 2 side, it is possible to prevent fingers from being pinched and causing poor closing, etc. Furthermore, by providing the cover portion 321 , the corner of the storage box 1 on the handle portion 12 side can be rounded with a narrowed width, so that the storage box 1 can be formed in a shape having excellent design (or decorative properties) imitating a bag.

[0058] The cover body 3 has a convex arc-shaped grounding portion 333 (second grounding portion) at the lower portion of the front end and the rear end relative to the sliding direction of the cover body 3 (see also Figure 7 The grounding portion 333 is formed into a flat plate extending forward and backward with its surface facing left and right. Furthermore, the rear edge of each grounding portion 333 includes a curved portion 333a extending outward at a substantially right angle relative to the cover 3. Specifically, the curved portion 333a of the left grounding portion 333 extends leftward, while the curved portion 333a of the right grounding portion 333 extends rightward.

[0059] Furthermore, the ground ends of the ground portions 251 , 252 , and 253 (first ground portions) and the ground portion 333 (second ground portion) are on the same plane. Figure 7 This is a right side view of the storage box 1 in the open state. The grounding portions 251 and 253 are located near the front end of the box body 2, the grounding portion 333 is located near the rear end of the lid 3, and the grounding portion 252 is located near the rear end of the box body 2. Therefore, whether the lid 3 is closed or open, the storage box 1 can be stably placed on a surface such as a table.

[0060] Next, refer to Figure 8 The following describes an example of a production table 5 that can be used with the storage box 1 of this embodiment. The production table 5 is used to combine multiple fusible bead toys to create an assembly. The production table 5 includes a first workbench 6 and a second workbench 7. The first workbench 6 is connected to the second workbench 7 via a pair of first hinges H1. The production table 5 is formed by injection molding a resin material, and the first workbench 6 and the second workbench 7 are each formed into a roughly rectangular plate shape.

[0061] The first work table 6 has a substantially square first work table area 6R, and the second work table 7 has a substantially square second work table area 7R. The first work table 6 and the second work table 7 are formed to be substantially equal in size. Furthermore, the first work table area 6R and the second work table area 7R are also substantially equal in size. The first work table 6 is configured to be superimposed on the second work table 7 by being bent using a pair of first hinges H1.

[0062] Below, in Figure 8 In the description of the production table 5, the side where the first workbench 6 overlaps with the second workbench 7 is referred to as the upper side, and the opposite side is referred to as the lower side. The side where the first hinge H1 is provided when the production table 5 is observed from the upper side is referred to as the front side, and the opposite side is referred to as the rear side. The right side when the production table 5 is observed from the front side is referred to as the right side, and the opposite side is referred to as the left side.

[0063] On the upper surface 6a of the first workbench 6 (see Figure 10 (Enlarged view of the Q portion of the second workbench 7) can hold multiple weldable bead toys. The production table 5 is used to arrange multiple weldable bead toys with various patterns, and then to play with them by spraying water with a sprayer or other device to connect the weldable bead toys together. A paper holder (not shown) is located on the lower surface 7b of the second workbench 7 to hold paper with a pattern or the like. The pattern on the paper held by the paper holder can be seen from above the first workbench 6 through the overlapping second workbench 7 and first workbench 6. Therefore, the user can arrange the weldable bead toys to mimic the pattern on the paper.

[0064] First, the structure of the second workbench 7 will be described. Figure 8 As shown, the second workbench 7 has ears 71 formed so as to extend outward from the left and right sides of the generally square second workbench area 7R. The ears 71 are provided in a plate-like shape at the approximately center in the front-to-back direction of the outer edge of the extended portion, which can be bent upward in the front-to-back direction of the second workbench 7 via a thin-walled second hinge H2.

[0065] On the left and right sides of the upper surface 7a of the second workbench area 7R, a first lower wall portion 72 having a low wall height is provided along the front-to-back direction. Plate guides 72A are provided on the first lower wall portion 72. Two plate guides 72A are provided on each of the two first lower wall portions 72, spaced at predetermined intervals along the front-to-back direction, for a total of four plate guides.

[0066] A guide plate spring 72B is provided on the outside of each plate guide 72A, spaced a predetermined distance apart in the left-right direction. The guide plate spring 72B is provided parallel to the plate guide 72A. A spring protrusion (not shown) that slightly protrudes outward is provided on the upper portion of the outer surface of each guide plate spring 72B.

[0067] In the upper surface 7a of the second workbench area 7R, a set of two sides opposite to each other in the front-to-back direction are provided with upper surface second low wall portions 74 having a low wall height along the left-to-right direction. The height of the upper surface second low wall portion 74 is higher than the height of the upper surface first low wall portion 72, and lower than the height of the plate guide 72A and the guide plate spring 72B. A limiting plate spring 74B having elasticity is provided at the approximately central portion in the left-to-right direction of each upper surface second low wall portion 74. Each limiting plate spring 74B is provided along the left-to-right direction so that the two plate surfaces face the front-to-back direction. A limiting protrusion (details not shown) that protrudes slightly inward is provided on the upper portion of the inner surface of each limiting plate spring 74B.

[0068] The first hinges H1 are arranged at predetermined intervals in the left-right direction on the front side of the second workbench 7. Each first hinge H1 is connected to the outer wall surface of the second low wall portion 74 on the upper surface of the front side. Each first hinge H1 is formed into a roughly rectangular sheet with thin-walled portions and thick-walled portions alternately arranged in the connection direction, and has flexibility. In addition, a plurality of pins 76 are provided on the upper surface 7a of the second workbench 7 so as to stand upright. The plurality of pins 76 are arranged in rows and columns in a plover-like arrangement. Each pin 76 is formed into a roughly truncated cone with a slightly tapered upper side.

[0069] On each ear portion 71 of the second workbench 7, a plurality of ribs 71a extending linearly in the left-right direction are provided at equal intervals in the front-to-back direction. In addition, a snap-on extension portion 71b that slightly extends outward is provided at the front and rear ends of each ear portion 71. When the ear portions 71 are not bent (in the open state), the upper surface of each ear portion 71 becomes an ear-side inclined surface (inclined surface) 71c that is inclined from the area of ​​the second workbench 7 where the plurality of pins 76 are provided toward the installation surface where the second workbench 7 is provided. When the first workbench 6 and the second workbench 7 overlap, the ear-side inclined surface 71c and the first workbench-side inclined surface 65 together constitute the discharge portion 51.

[0070] Next, the structure of the first workbench 6 will be described. The first workbench 6 is in the closed state (see also Figure 9 ) The upper surface 6a is the upper surface. Therefore, when the first workbench 6 is opened, Figure 8 In this state, the upper surface 6a of the first workbench 6 faces downward, and the lower surface 6b faces upward. In the first workbench 6, the left and right sides of the first workbench region 6R, which is substantially square, extend outward, and guide holes 62, which are rectangular through-holes elongated in the front-to-back direction, are provided at the four corners of the extended portion.

[0071] On the outside of each guide hole 62, there is a Figure 8Each protrusion 64 has a flat plate-shaped protrusion 64 that protrudes (below in the figure). Each protrusion 64 has a rising portion (details not shown) that raises the plate surface in the left and right directions, and a protrusion 64B that bends approximately at a right angle toward the outside from the top of the rising portion and protrudes in a generally plate-like shape. That is, the protrusion 64 is formed into a generally L-shape that bends outward to the left and right when viewed from the front or rear. The top edge of each protrusion 64B is formed into a generally arc-shaped shape. In addition, the top portion of each protrusion 64B is provided with an engaging protrusion 64B1 that protrudes inward in the front and rear directions and engages with the ear portion 71 of the second workbench 7.

[0072] A first worktable-side inclined surface 65 is provided between two guide holes 62 aligned in the front-to-back direction among the four guide holes 62. Each first worktable-side inclined surface 65 is formed to slope outward from the upper surface 6a of the first worktable 6 toward the lower surface 6b. When the first worktable 6 is superimposed on the second worktable 7, with the ears 71 unbent, the first worktable-side inclined surfaces 65 and the ear-side inclined surfaces 71c form an inclined surface (discharge portion 51) that extends continuously from the installation surface of the production table 5 to the left and right sides.

[0073] The first workbench 6 is provided with a plurality of through holes 66, which are circular openings and have the vertical direction (plate thickness direction) as the through direction. Each through hole 66 is provided at a position that overlaps with each pin 76 provided on the second workbench 7 in the vertical direction when the first workbench 6 is closed (see Figure 8 Therefore, the rows and columns of through-holes 66 are arranged in a plover pattern. The openings of each through-hole 66 are sized to allow the pins 76 to pass through. In other words, each pin 76 is designed to be insertable and removable from each through-hole 66. Furthermore, the opening diameter of each through-hole 66 is slightly smaller than the diameter of the fusible bead. Therefore, the fusible bead can be placed on the edge of the opening of each through-hole 66.

[0074] The lower surface 6b of the first workbench 6 is provided with a wall-like edge wall 68 extending downward along the outer edge of the first workbench region 6R. In the approximately left-right center of the inner wall surfaces on the front and rear opposing sides of the edge wall 68, stepped protrusions 68a are provided, each protruding inward to provide a step between the lower surface 6b of the first workbench 6. In the upper surface 6a of the first workbench 6, corresponding portions of the stepped protrusions 68a are provided, each recessed to form a step. The pair of first hinges H1 are connected to the outer edge of the upper surface of the first workbench 6 on either side of the stepped recess 68b.

[0075] The first table 6 and the second table 7 can be assembled by bending a pair of first hinges H1 so that the lower surface 6b of the first table 6 overlaps the upper surface 7a of the second table 7 and inserting the guide plate spring 72B and the plate guide 72A through the guide hole 62 (see Figure 9 The opening edge of the guide hole 62 is guided by being in proximity or contact with the inner side surface of the plate guide 72A and the outer side surface of the guide plate spring 72B. In other words, the guide hole 62, the guide plate spring 72B, and the plate guide 72A guide the first worktable 6 and the second worktable 7 in the vertical direction, allowing them to approach or move away from each other.

[0076] The first worktable 6 is restricted from upward movement by the engagement of the stepped recesses 68b with the restriction protrusions of the restriction leaf springs 74B. When the guide leaf springs 72B and the plate guide 72A are inserted through the guide holes 62, and before the stepped recesses 68b engage the restriction leaf springs 74B, the guide holes 62 are positioned above the spring protrusions that protrude outward from the guide leaf springs 72B. In this state, the abutment between the spring protrusions and the edges of the guide holes 62 allows the first and second worktables 6 and 7 to be separated vertically by a predetermined distance, while the pins 76 remain released from the through-holes 66.

[0077] Next, a method for making a collection of fusible bead toys using the production table 5 and an example of using the storage box 1 will be described. First, the user prepares the production table 5 as follows: The first work table 6 is superimposed on the second work table 7, with the first and second work tables 6 and 7 separated or lightly touching in the vertical direction by a predetermined distance, and each pin 76 is removed from each through-hole 66. In this state, the paper retaining plate on the second work table 7 holds paper with a desired pattern. This allows the user to visually recognize the pattern from the first work table 6 side. Next, the production table 5, with the first work table 6 superimposed on the second work table 7, is placed on the mounting portion 311 of the cover 3. At this point, the guide portions 311a engage with the concave guided portions 74b provided at the four corners of the lower surface 7b of the second work table 7, restricting the forward, backward, and left and right movement of the production table 5 relative to the cover 3.

[0078] Next, a plurality of fusible bead toys are placed on the through holes 66 of the first workbench 6 that correspond to the arbitrary pattern written on the paper (the through holes 66 that overlap with the pattern). Figure 9The storage box 1 shown allows for assembly work to be performed from the rear (backward) side. Specifically, from the player's perspective, the assembly table 5 is positioned in front, and the storage chambers 41 and 42 for the weldable bead toys, which serve as components, are positioned further back than the assembly table 5. This positioning makes assembly work easier for the player to remove the weldable bead toys and place them on the assembly table 5. Furthermore, from the player's perspective, the box body 2, equipped with multiple storage chambers 41 and 42, can be placed behind the assembly table 5, improving visibility of the various weldable bead toys. Furthermore, once the assembly is placed and wetted with water, the placement surface 312 is positioned to the left or right of the player's field of view, making it easy to remove the assembly from the assembly table 5. Furthermore, because the rear side of the lid 3 is concavely curved, the placement surface 312 is positioned around the player's body, ensuring a wide working area.

[0079] When the fusible bead toy is placed on the through-hole 66, the tip of the pin 76 is in light contact with the fusible bead toy or separated from it without contact. After placing only the necessary number of fusible bead toys, the user sprays water onto the fusible bead toys using a sprayer or the like to wet them. Excess water sprayed onto the first workbench 6 is accumulated on the second workbench 7 through the through-hole 66 or the like. The wetted aggregate can slide on the first workbench side inclined surface 65 and the ear side inclined surface 71c (discharge portion 51) and move onto the loading surface 312. Therefore, it is possible to effectively dry the setting surface. The ear 71 is constructed so that the rib 71a provided on the ear side inclined surface 71c makes it easy for the wetted aggregate to slide on the ear side inclined surface 71c while moving.

[0080] Next, by pressing the extension 64B downward with both hands, for example, to push the first table 6 toward the second table 7, the first table 6 approaches the second table 7. At this point, the guide plate spring 72B is pushed toward the plate guide 72A by the inner edge of the guide hole 62, which abuts the outward-projecting spring protrusion, while simultaneously deflecting. This allows the guide hole 62 to pass over the spring protrusion, allowing the guide plate spring 72B to be inserted deeper into the guide hole 62. When the guide hole 62 passes over the spring protrusion, the top end (lower end) of the edge wall 68 abuts the upper surface 7a of the second table 7, restricting the second table 7 from moving toward the first table 6.

[0081] Furthermore, as the top end of the edge wall 68 abuts the upper surface 7a of the second workbench 7, the top end of each pin 76 penetrates each through-hole 66, abutting against the weldable bead toys placed on the through-holes 66 from below. This pushes the weldable bead toys upward relative to the upper opening edges of each through-hole 66. The weldable bead toys disengage from the upper opening edges of each through-hole 66, releasing the support provided by each through-hole 66. At this point, the multiple weldable bead toys in the assembly are combined to a level that allows them to be held in the hand. This allows the user to remove the assembly from the production table 5.

[0082] The assembly removed from the through-hole 66 is moved by the user by sliding it along the ear-side inclined surface 71c and placed on the placement surface 312. The placement surface 312 has relatively widely spaced irregularities on the outer side 31a, thanks to the first and second convex surfaces 313, 314. Furthermore, protrusions 31b are formed on the first and second convex surfaces 313, 314. Therefore, in situations where the overall spacing between the irregularities of the assembly is greater than that of the first and second convex surfaces 313, 314, the contact area with the rough surface 313a or smooth surface 314a can be reduced. This prevents the assembly from accidentally sticking to the outer side 31a of the cover 3, even when the assembly is wet. Furthermore, even if the assembly is placed on the placement surface 312 while in contact with the first convex surface 313, the roughness of the first convex surface 313a prevents sticking to the outer side 31a. In addition, although the adhesion strength of the smooth surface 314a is higher than that of the rough surface 313a, even if the aggregate contacts the smooth surface 314a, since the aggregate is usually made larger than a continuous area of ​​the smooth surface 314a, it will not adhere to the smooth surface 314a and will be difficult to detach from the outer surface 31a.

[0083] An example of use in which the storage box 1 stores the fusible bead toys and the production table 5 will be described. Figure 10 1 is a top perspective view of the storage box 1 in the opened state in which the production table 5 is stored. Figure 10 In the figure, the through-holes 66 of the production table 5 and the pins 76 inserted therethrough are simplified. Region P is where the through-holes 66 are located. As shown in the enlarged view of section Q, multiple through-holes 66 are located within region P. In the open state of the storage box 1, as shown in the enlarged view of the cross section taken along line BB, the engaged portion 372B moves from the bottom of the figure upward over the engaging portion 262B, and the lid 3 moves to the open position.

[0084] The production table 5 is stored in the production table storage portion 43 in a state where the first workbench 6 is folded to overlap with the second workbench 7 by the first hinge H1, and the ear portion 71 is also bent toward the first workbench 6. The side opposite to the ear portion 71 of the production table 5 is supported from the left and right directions by the support ribs 242. The side of the production table 5 adjacent to the ear portion 71 (i.e., the side opposite to the limiting plate spring 74B) is supported from the front and back directions by the support surfaces 241a and 241b. In addition, the engaging protrusion 244a on the front side of the production table storage portion 43 (refer to Figure 5 ) is formed on the support surface 241a of the snap-fit ​​plate 244, which can be pushed forward and backward. Therefore, when the workbench 5 is stored in the workbench storage section 43, the front side of the workbench 5 can overcome the elastic force by the support surface 241a and flex forward, thereby passing over the snap-fit ​​protrusion 244a and moving into the workbench storage section 43 below. On the other hand, the support surface 241b on the rear side of the workbench 5 is generally fixed, but the support surface 241a of the front snap-fit ​​plate 244 flexes forward, allowing the rear side of the workbench 5 to pass over the snap-fit ​​protrusion 241b1.

[0085] Thus, the left-right movement of the production table 5 housed in the production table storage section 43 is restricted by the support ribs 242, and the front-back movement is restricted by the support surfaces 241a and 241b. The lower surface of the production table 5 is supported by the upper edge of the partition wall 241 of the first storage chamber 41 within the production table storage section 43. Furthermore, upward movement of the production table 5 is restricted by the support ribs 242 or the support surfaces 241a and 241b clamping the side of the production table 5, or by the engagement of the engaging protrusions 241b1 and 244a with the upper edge of the production table 5. The exposed surface of the production table 5 housed in the production table storage section 43 is lower than the upper ends of the partition walls of the plurality of second storage chambers 42 and is arranged approximately parallel to these upper ends.

[0086] When the production table 5 is stored in the production table storage portion 43 , the openings of the first storage chambers 41 are covered and sealed, thereby preventing the fusible bead toys stored in the first storage chambers 41 from leaking out.

[0087] Furthermore, a gap S is provided between the ear portion 71 of the production table 5 and the inclined edge portion 242b of the support rib 242. This gap S is provided on an extension line in the front-to-back direction of the first guide portion 44. Therefore, the gap S also functions as a portion of the first guide portion 44 that guides the first guided portion 36.

[0088] After the production table 5 is stored in the production table storage portion 43, if the user moves the cover 3 relatively toward the box body 2, as shown in FIG. Figure 1 As shown in the AA cross-sectional view of FIG, the engaged portion 372A passes over the engaging portion 262A from the upper side to the lower side of the figure, and the cover body 3 moves to the closed state position.

[0089] According to the embodiment of the present invention described above, the storage box for the fusible bead toy of the following aspect can be provided.

[0090] A storage box for weldable bead toys according to a first aspect includes a setting portion and a placement surface on the same outer side surface. The setting portion is provided with a production table for weldable bead toys, and the placement surface includes a rough surface and is provided to place an assembly of weldable bead toys.

[0091] This method allows for easy transfer of the aggregate awaiting drying from the production table to the loading surface, preventing accidental damage to the aggregate. Furthermore, since the aggregate can be moved from the production table at an earlier timing, a larger number of aggregates can be produced in a shorter time. The roughened loading surface prevents adhesion of the aggregate during drying. Furthermore, the storage box can also accommodate both the weldable bead toys and the production table. This provides a storage box for weldable bead toys that offers excellent playability.

[0092] In the storage box for a fusible bead toy according to the second aspect, the outer side surface includes a plurality of first convex surfaces having the rough surface and a plurality of second convex surfaces having a smooth surface.

[0093] According to this aspect, when the assembly is placed on a placement surface, adhesion of the assembly to the placement surface can be prevented, and the smooth surface having a glossier feel than a rough surface can provide the storage box with an outer surface having a more decorative appearance.

[0094] In the storage box for the fusible bead toy according to the third aspect, the rough surface of the placement surface is provided on the outlet side of the discharge portion provided on the production table.

[0095] According to this aspect, the assembly can be easily moved from the production table to the placement surface without damaging the assembly while sliding the assembly on the discharge portion.

[0096] In the storage box for the fusible bead toy according to the fourth aspect, the outer side surface has one of the first convex surface and the second convex surface arranged in a straight line, or the first convex surface and the second convex surface arranged alternately in a straight line.

[0097] According to this embodiment, the aggregate can be placed on the first convex surface including the rough surface regardless of the position of the placement surface on which the aggregate is placed. Therefore, the placement surface can prevent the aggregate from adhering to the placement surface and function as a drying portion.

[0098] In the storage box for the fusible bead toy according to the fifth aspect, the outer side surface having the rough surface has a larger area than the other outer side surfaces.

[0099] According to this method, since the area for configuring the production table for producing the assembly and the area for the placement surface for drying the assembly can be configured on the same surface, the overall size (capacity or volume) of the storage box can be suppressed, and a storage box with good operability can be provided.

[0100] In the storage box for weldable bead toys according to the sixth aspect, the setting portion includes a guide portion that engages with a guided portion of the production table to position the production table.

[0101] According to this aspect, the production table can be easily and stably arranged on the outer side surface of the cover.

[0102] The seventh type of storage box for weldable bead toys, wherein the outer surface arranges one of the first convex surface and the second convex surface in a straight line, or arranges the first convex surface and the second convex surface alternately in a straight line, the outer surface having the rough surface has a larger area than the other outer surfaces, and the setting portion has a guide portion, which engages with the guided portion of the production table to position the production table.

[0103] According to this method, regardless of the position of the mounting surface on which the assembly is mounted, the assembly can be placed on the first convex surface including the rough surface. Therefore, the mounting surface prevents adhesion of the assembly to the mounting surface, thereby functioning as a drying section. Furthermore, since the area where the assembly production table is located and the area on the mounting surface used for drying the assembly can be arranged on the same surface, the overall size (volume) of the storage box can be reduced, and a storage box with good operability can be provided. Furthermore, the production table can be easily and stably placed on the outer side of the lid.

[0104] For example, the outer side surface 31a may also arrange one of the first convex surface 313 and the second convex surface 314 in a straight line relative to the front-back direction and the left-right direction of the storage box 1.

[0105] In addition, in the storage main body 21 of this embodiment, the bottom of the second storage chamber 42 is deeper than the bottom of the first storage chamber 41. Therefore, by making the opening surface of the first storage chamber 41 when viewed from above larger than the opening surface of the second storage chamber 42 when viewed from above, the difference in storage volume between the first storage chamber 41 and the second storage chamber 42 can be reduced.

Claims

1. A storage box for weldable bead toys, characterized in that: The same outer surface comprises a setting portion and a placing surface. The setting portion is provided with a production table for the fusible bead toys. The placing surface includes a rough surface and is provided with an assembly of the fusible bead toys.

2. The storage box for the fusible bead toys according to claim 1, characterized in that: The outer side surface includes a plurality of first convex surfaces having the rough surface and a plurality of second convex surfaces having a smooth surface.

3. The storage box for the fusible bead toys according to claim 2, characterized in that: The rough surface of the placement surface is provided on the outlet side of a discharge portion provided on the production table.

4. The storage box for the fusible bead toys according to claim 2 or 3, characterized in that: The outer surface has one of the first convex surface and the second convex surface arranged in a straight line, or has the first convex surface and the second convex surface arranged alternately in a straight line.

5. The storage box for weldable bead toys according to claim 1, characterized in that: The outer side surface having the rough surface has a larger area than the other outer side surfaces.

6. The storage box for the fusible bead toys according to claim 1, characterized in that: The installation portion includes a guide portion that engages with a guided portion of the production table to position the production table.

7. The storage box for the fusible bead toys according to claim 3, characterized in that: The outer surface arranges one of the first convex surface and the second convex surface in a straight line, or arranges the first convex surface and the second convex surface alternately in a straight line. The outer side surface having the rough surface has a larger area than the other outer side surfaces, The installation portion includes a guide portion that engages with a guided portion of the production table to position the production table.

Citation Information

Patent Citations

  • Storage case for weldable bead toy

    JP2022185209A