Manufacturing assembly for soluble bead toy
Through the design of hinge connection, the existing production table for soluble bead toys is solved and the problem of troublesome manufacturing is caused, and the overall structure is easy to carry and manufacture, which improves the convenience of use.
Patent Information
- Application Number
- CN202420936325.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2023-05-01
- Filing Date
- 2024-04-30
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2034-04-30
AI Technical Summary
The workbench, liquid reservoir and pallet of the existing production table for soluble bead toys are split, which is troublesome in manufacturing process and is inconvenient to carry the storage shell.
A production table for soluble bead toys is designed, and a hinge is used to connect the storage shell, the first workbench, the second workbench and the third workbench, so that it can overlap each other by bending hinges to form an integral structure that is easy to carry and manufacture.
The ease of carrying and manufacturing of the soluble bead toy production table is realized, reducing manufacturing costs and improving the convenience of use.
Smart Images

Figure CN222818840U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a manufacturing assembly for a weldable bead toy. Background Art
[0002] A general assembly for making weldable bead toys comprises: a storage case for storing weldable bead toys; and a weldable bead toy making table, which can be removed before the assembly of weldable bead toys placed on the weldable bead toy making table is completely dried to make the next assembly of weldable bead toys. For example, Patent Document 1 discloses a weldable bead toy making table, which comprises: a workbench on which weldable bead toys are arranged and placed; a liquid reservoir, which is inverted together with the workbench and has a receiving surface for receiving the arranged weldable bead toys and moving and drying the weldable bead toys; and a tray, which receives excess water. The workbench, the liquid reservoir, and the tray are arranged in an overlapping manner.
[0003] Prior art literature
[0004] Patent Literature
[0005] Patent Document 1: Japanese Patent Application Publication No. 2018-191839
[0006] Technical problems to be solved by utility models
[0007] The workbench, liquid reservoir, and tray of the weldable bead toy production table disclosed in Patent Document 1 are separate. Therefore, in the manufacturing process of the weldable bead toy production table, the workbench, liquid reservoir, and tray cannot be manufactured at the same time, which sometimes makes the manufacturing very troublesome. In addition, a storage case for storing the weldable bead toys needs to be prepared separately, which is inconvenient to carry. Utility Model Content
[0008] The utility model aims to provide a manufacturing assembly for a weldable bead toy which is easy to carry and manufacture.
[0009] Technical means for solving technical problems
[0010] The utility model provides a production table for weldable bead toys, comprising: a storage shell, which can store the weldable bead toys; a first workbench, which has a plurality of through holes, formed so that the weldable bead toys can be placed on one side of the through-holes in the through-holes; a second workbench, which has a plurality of pins that can be inserted and pulled out of the through holes from the other side of the through-holes in the through-holes; and a third workbench, wherein the storage shell, the first workbench, the second workbench and the third workbench can be connected respectively via hinges, and can overlap each other by bending the hinges respectively.
[0011] Effect of utility model
[0012] According to the utility model, a production table for weldable bead toys which is easy to carry and manufacture can be provided. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a perspective view of a weldable bead toy production table (in a state where all are closed) according to an embodiment of the present invention as viewed from above.
[0014] Figure 2 It is a side view of the weldable bead toy production table (in a state where all are closed) according to the embodiment of the present invention.
[0015] Figure 3 This is a perspective view of a state where a weldable bead toy production table according to an embodiment of the present invention is opened one level as viewed from above.
[0016] Figure 4 This is a perspective view of a state where a weldable bead toy production table according to an embodiment of the present invention is opened one level as viewed from the front side.
[0017] Figure 5 This is a perspective view of a state where a weldable bead toy production table according to an embodiment of the present invention is opened in two stages as viewed from above.
[0018] Figure 6 This is a perspective view of a state in which a weldable bead toy production table according to an embodiment of the present invention is fully opened as viewed from above.
[0019] Figure 7 It is a cross-sectional view of the vicinity of the engaging holding portion of the weldable bead toy production table according to the embodiment of the present invention.
[0020] Figure 8 It is a cross-sectional view of a first hinge of the weldable bead toy production table according to the embodiment of the present invention.
[0021] Explanation of symbols
[0022] 10 Components for making fusible bead toys
[0023] 20 Storage shell
[0024] 21 Handle
[0025] 22 outer wall
[0026] 23 Boundary Wall
[0027] 24 Snap-on wall
[0028] 24a Housing side retaining protrusion
[0029] 25 lattice wall
[0030] 25a First storage space
[0031] 25b Second storage space
[0032] 26 Inner wall
[0033] 26a Storage protrusion
[0034] 27 Connecting wall
[0035] 27a Second storage space
[0036] 30 First workbench
[0037] 30R First workbench area
[0038] 30a Upper surface
[0039] 30b Lower surface
[0040] 32 Guide hole
[0041] 34 Extension
[0042] 35 Inclined surface
[0043] 36 Through hole
[0044] 38 Edge Wall
[0045] 38a Step-shaped convex part
[0046] 38b Step-shaped recess
[0047] 40 Second workbench
[0048] 40R Second workbench area
[0049] 40a Upper surface
[0050] 40b Lower surface
[0051] 42A Plate guide
[0052] 42B Guide leaf spring
[0053] 44 Upper surface second lower wall portion
[0054] 44B Limit leaf spring
[0055] 44B1 Limiting protrusion
[0056] 44B2 Workbench side retaining protrusion
[0057] 46 Pins
[0058] 48A Paper retaining plate
[0059] 48B Paper retaining rib
[0060] 50 side workbench
[0061] 50a Upper surface
[0062] 50b Lower surface
[0063] 50b1 micro convex part
[0064] 52 Edge Wall
[0065] 54 convex part
[0066] 56 Edge Wall
[0067] 58 fitting wall
[0068] H1 First hinge
[0069] H1a Thin wall part
[0070] H1b Thick wall part
[0071] H2 Second hinge
[0072] H3 Third hinge
[0073] R1 area. DETAILED DESCRIPTION
[0074] The embodiments of the present invention are described with reference to the accompanying drawings. Figure 1 as well as Figure 2 As shown, the weldable bead toy making assembly 10 of the embodiment of the present invention comprises a storage case 20, a first workbench 30, a second workbench 40, and a pair of side workbench (third workbench) 50. The first workbench 30, the second workbench 40, and the pair of side workbench 50 are used as weldable bead toy making tables. The storage case 20, the pair of side workbench 50, the first workbench 30, and the second workbench 40 constituting the weldable bead toy making assembly 10 can be overlapped in sequence from the storage case 20 side. Figure 1 as well as Figure 2 , a state in which these components are overlapped is shown.
[0075] like Figure 6As shown, in the weldable bead toy manufacturing assembly 10, the second workbench 40 and the first workbench 30 are connected to each other via a pair of first hinges H1 so as to be bendable, the second workbench 40 and the storage case 20 are connected to each other via a second hinge H2 so as to be bendable, and the second workbench 40 and a pair of side workbench 50 are connected to each other via third hinges H3 so as to be bendable. The entire weldable bead toy manufacturing assembly 10 is integrally formed by injection molding of a transparent resin material (e.g., polypropylene) and manufactured.
[0076] Next, all the hinges are bent to overlap the storage case 20, the pair of side tables 50, the first table 30, and the second table 40 (see FIG. Figure 1 as well as Figure 2 ) is referred to as a "fully closed state". In addition, the storage housing 20 is separated from the second workbench 40, the first workbench 30, and the pair of side workbench 50 which overlap each other without bending the second hinge H2 (refer to Figure 3 as well as Figure 4 ) is referred to as "one-stage open state" or "one-stage closed state of the pair of side tables 50", and the pair of side tables 50 are separated from the overlapping second table 40 and the first table 30 without bending the third hinge H3 from the one-stage open state (refer to Figure 5 ) is referred to as "the state of opening the second stage" or "the state of closing the first workbench 30", and the state of separating the first workbench 30 from the second workbench 40 without bending the first hinge H1 from the state of opening the second stage (refer to Figure 6 ) is called the "all open state".
[0077] In addition, in the following, in the fully closed state, the side where the second workbench 40, the first workbench 30, and the pair of side workbench 50 overlap with respect to the storage case 20 is set as the upper side, and the opposite side thereof is set as the lower side, the side where the first hinge H1 is provided when the fusible bead toy manufacturing assembly 10 is observed from the upper side is set as the front side, and the opposite side thereof is set as the rear side, the right side when the fusible bead toy manufacturing assembly 10 is observed from the front side is set as the right side, and the opposite side thereof is set as the left side. Therefore, as Figure 6 As shown, in the fully opened state, the storage shell 20 is connected to the rear side of the second workbench 40 via the second hinge H2, the first workbench 30 is connected to the front side of the second workbench 40 via the first hinge H1, and a pair of side workbenches 50 are respectively connected to the left and right sides of the second workbench 40 via the third hinge H3.
[0078] In the manufacturing assembly 10 for the weldable bead toys, when the second stage is opened, a plurality of weldable bead toys can be placed on the upper surface 30a of the first workbench 30. The manufacturing assembly 10 for the weldable bead toys is a toy in which a plurality of weldable bead toys are arranged to match various patterns, etc., and the weldable bead toys are combined with each other by spraying water with a sprayer or the like to play. Four paper holding plates 48A and six paper holding ribs 48B for holding paper with patterns or the like recorded thereon are provided on the lower surface 40b of the second workbench 40 (see Figure 1 The pattern of the paper held by the paper holding plate 48A and the paper holding rib 48B can be seen from above the first workbench 30 through the second workbench 40 and the first workbench 30. Therefore, the user can arrange the fusible bead toy in accordance with the pattern of the paper held by the paper holding plate 48A and the paper holding rib 48B.
[0079] The fusible bead toy placed on the first workbench 30 is formed of a water-soluble resin. Specifically, polyvinyl alcohol is mixed with a resin and kneaded to form the fusible bead toy. In addition, the resin forming the fusible bead toy can be formed by appropriately selecting a transparent material, a light-transmitting material, or an opaque material. In addition, the fusible bead toy can be a spherical, polyhedral, or other fusible bead toy.
[0080] First, the structure of the storage housing 20 will be described. Figure 3 as well as Figure 4 As shown, the storage housing 20 has an outer shape imitating the shape of a handbag, and the outer edge is surrounded by an outer wall 22 to form a roughly box-shaped opening upward. In addition, the storage housing 20 is formed with a larger size than the first workbench 30, the second workbench 40, and the pair of side workbenches 50. A horizontally long and roughly annular handle portion 21 imitating the handle portion of a handbag is provided on the rear end side of the storage housing 20. The handle portion 21 and the space provided on the inner side of the upper surface of the storage housing 20 are separated by a boundary wall 23 having the same height as the outer wall 22.
[0081] The outer wall 22 of the front side of the storage housing 20 is open in the left-right direction, and one end of the second hinge H2 is connected thereto. An engaging wall 24 that stands higher than the outer wall 22 and the boundary wall 23 is provided in the left-right direction of the boundary wall 23. The wall surface of the engaging wall 24 faces the front-back direction, and a housing side retaining protrusion (engaging retaining portion) 24a that protrudes forward is provided on the wall surface of the front side at a position higher than the outer wall 22 and the boundary wall 23. As described later, the housing side retaining protrusion 24a engages with the second workbench 40 in a fully closed state.
[0082] A lattice-like wall portion 25 arranged in a lattice shape in the front-back, left-right directions is provided on the inner side of the upper surface of the storage shell 20. The outer wall portion of the lattice-like wall portion 25 is formed into a roughly square with R-shaped corners, and the height standing upward is lower than the outer wall 22 and the boundary wall 23. Through the lattice-like wall portion 25, a total of 16 spaces opening upward (in overlapping directions) are formed on the inner side of the lattice-like wall portion 25 in 4 rows along the front-back direction and 4 rows along the left-right direction (hereinafter referred to as "first storage spaces (first storage portions) 25a".). Each first storage space 25a is of approximately equal size and can store fusible bead toys therein. In addition, a concave wall portion recess 25b with a slightly lower wall height is provided in the central portion in the left-right direction of the lattice-like wall portion 25 (refer to Figure 4 ).
[0083] On the left and right outer sides of the lattice-shaped wall portion 25 in the inner side of the upper surface of the storage case 20, inner side wall portions 26 are respectively provided, which stand upward at a predetermined interval from the lattice-shaped wall portion 25. Each inner side wall portion 26 is provided along the front-to-back direction in a manner that it faces the substantially central portion in the front-to-back direction of the wall surface on the left and right outer sides of the lattice-shaped wall portion 25. A storage protrusion 26a that protrudes inward in the left and right direction is respectively provided at the standing front end portion of each inner side wall portion 26.
[0084] Connecting wall portions 27 are provided between each inner wall portion 26 and the lattice-shaped wall portion 25 to connect the front and rear ends of each inner wall portion 26 and the left and right outer wall surfaces of the lattice-shaped wall portion 25. The height of each connecting wall portion 27 standing upward is different on the left and right (the right side is higher than the left side), but all are lower than the lattice-shaped wall portion 25. The space provided between the lattice-shaped wall portion 25 and each inner wall portion 26 becomes a second storage space (second storage portion) 27a that can hold and store pens, sprayers, etc. used when making a collection of fusible bead toys using the storage protrusions 26a.
[0085] Next, the structure of the second workbench 40 will be described. Figure 6 As shown, in the second workbench 40, the left and right sides of the second workbench area 40R in a substantially square shape extend outward, and a pair of side workbenches 50 are respectively connected to the substantially central portion in the front-to-back direction of the outer edge of the extended portion via the third hinge H3. The overall size of the second workbench 40 is one size larger than the outer wall portion of the lattice-shaped wall portion 25 of the storage case 20.
[0086] On the left and right sides of the upper surface 40a of the second workbench area 40R, upper surface first low wall portions 42 with relatively low wall heights are provided along the front-to-back direction. In the upper surface first low wall portion 42, a plate guide 42A is provided along the upper surface first low wall portion 42. In the upper surface first low wall portions 42 of each of the two locations, two plate guides 42A are provided at predetermined intervals along the upper surface first low wall portion 42 in the front-to-back direction, and a total of four plate guides 42A are provided. The plate thickness of the plate guide 42A is formed to be slightly larger than the thickness of the upper surface first low wall portion 42. The inner wall surface of the plate guide 42A is continuous with the inner surface of the upper surface first low wall portion 42 and forms the same surface.
[0087] On the outside of each plate guide 42A, a guide leaf spring 42B is provided at a predetermined interval in the left-right direction from the plate guide 42A. The guide leaf spring 42B is provided in parallel with the plate guide 42A, and is formed to have a plate thickness substantially equal to the thickness of the upper surface first low wall portion 42. The guide leaf spring 42B is formed in a tapered shape in which the plate thickness gradually becomes thinner from the base end toward the upper side, and has elasticity. A spring protrusion (not shown) that slightly protrudes outward is provided on the upper portion of the outer surface of each guide leaf spring 42B.
[0088] On the upper surface 40a of the second workbench 40, two sides facing each other in the front-rear direction are provided with upper surface second low wall portions 44 with lower heights of the respective walls in the left-right direction. The height of the upper surface second low wall portion 44 is higher than the height of the upper surface first low wall portion 42, and lower than the height of the plate guide 42A and the guide plate spring 42B (refer to Figure 6 ). A restricting leaf spring 44B having an elastic and generally plate-like shape is provided at the substantially central portion in the left-right direction of each upper surface second low wall portion 44. Each restricting leaf spring 44B is provided along the left-right direction with both plate surfaces facing the front-back direction. A restricting protrusion 44B1 is provided on the upper portion of the inner surface of each restricting leaf spring 44B and slightly protrudes inward in a hook shape (see Figure 6 ).
[0089] A workbench-side retaining protrusion 44B2 protruding outward is provided on the outer wall of the limiting leaf spring 44B on the front side. A pair of first hinges H1 are provided at a predetermined interval in the left-right direction on the front side of the second workbench 40. Each first hinge H1 is connected to the outer wall of the second low wall portion 44 on the upper surface of the front side. In addition, a plurality of pins 46 standing upward are provided on the upper surface 40a of the second workbench 40. The rows and columns of the plurality of pins 46 are arranged in a houndstooth configuration. Each pin 46 is formed into a roughly truncated cone with a reduced diameter on the upper side.
[0090] Next, the structure of the first workbench 30 is described. By bending the first hinge H1, the first workbench 30 overlaps the upper side of the second workbench 40. In the fully opened state, the upper surface 30a of the first workbench 30 faces downward, and the lower surface 30b faces upward (see Figure 6 In the first workbench 30, the left and right sides of the substantially square first workbench region 30R extend outward, and guide holes 32 are respectively provided at the four corners of the extended portion. The guide holes are rectangular through holes that are long in the front-rear direction.
[0091] like Figure 5 As shown, an extension portion 34 is provided on the outer side of each guide hole 32, and the extension portion is erected upward in a wall shape, and is bent outward at a substantially right angle from the front end portion of the erection to slightly protrude in a substantially plate shape. The front end portion of each extension portion 34 is substantially arc-shaped. An inclined surface 35 is provided between two guide holes 32 arranged in the front-to-back direction among the four guide holes 32. Each inclined surface 35 is formed to incline from the upper surface 30a side of the first workbench 30 toward the lower surface 30b side toward the outside.
[0092] like Figure 6 As shown in FIG. 1 , a plurality of through holes 36 are provided in the first workbench 30, which are circularly opened and have the vertical direction as the through direction. When the first workbench 30 is closed, each through hole 36 is provided at a position overlapping with each pin 46 provided on the second workbench 40 in the vertical direction (see FIG. 1 ). Figure 5 ). Therefore, the rows and columns of the through holes 36 are arranged in a houndstooth configuration. Figure 7 As shown, the opening of each through hole 36 is sized to allow each pin 46 to be inserted. In other words, each pin 46 is formed to be insertable and removable in each through hole 36. In addition, the opening diameter of each through hole 36 is one circle smaller than the diameter of the fusible bead toy. Therefore, the fusible bead toy can be placed on the opening edge of each through hole 36.
[0093] like Figure 6 As shown in FIG. 1 , a wall-like edge wall 38 is provided on the lower surface 30b of the first workbench 30 and is erected downward along the outer edge of the first workbench region 30R. In the edge wall 38, substantially in the left-right direction central portion of the inner wall surface on both sides facing each other in the front and rear directions, a stepped convex portion 38a is provided, which forms a step between the lower surface 30b of the first workbench 30 and protrudes inward. In the upper surface 30a of the first workbench 30, portions corresponding to each stepped convex portion 38a are provided, respectively, with stepped and concave stepped concave portions 38b (see FIG. 1 ). Figure 5 The pair of first hinges H1 are connected to the outer edge portions of the upper surface of the first workbench 30 at both sides of a stepped recess 38b.
[0094] like Figure 5 As shown, by bending a pair of first hinges H1 so that the lower surface 30b of the first workbench 30 overlaps with the upper surface 40a of the second workbench 40, the guide leaf spring 42B and the plate guide 42A are inserted into the guide hole 32, so that the first workbench 30 and the second workbench 40 can be combined. The opening edge of the guide hole 32 is guided by approaching or contacting the inner side surface of the plate guide 42A and the outer side surface of the guide leaf spring 42B. In other words, the guide hole 32, the guide leaf spring 42B, and the plate guide 42A guide the first workbench 30 and the second workbench 40 so that they can approach and separate in the up and down directions.
[0095] The step-shaped recesses 38b are engaged with the restriction leaf springs 44B and abut against the restriction protrusions 44B1, thereby limiting the upward movement of the first workbench 30. In the first workbench 30, before the guide leaf springs 42B and the plate guide 42A are inserted into the guide holes 32 and the step-shaped recesses 38b abut against the restriction protrusions 44B1, the guide holes 32 are located above the spring protrusions of the guide leaf springs 42B. In this state, the spring protrusions abut against the edges of the guide holes 32, so that the first workbench 30 and the second workbench 40 are separated by a predetermined interval in the vertical direction, and the pins 46 are maintained in a state of being removed from the through holes 36.
[0096] Next, the structure of a pair of side workbenches 50 will be described. Each side workbench 50 is a workbench used to dry the soluble bead toys sprayed with water, and has the same structure that is symmetrical on both sides. By bending the third hinge H3, a pair of side workbenches 50 overlap with the upper side of the first workbench 30 that overlaps on the second workbench 40. Specifically, one side workbench 50 overlaps on the approximate right half of the first workbench 30, and the other side workbench 50 overlaps on the approximate left half of the first workbench 30. In the state where the two levels are opened and the state where they are fully opened, the upper surface 50a of each side workbench 50 faces downward, and the lower surface 50b faces upward (refer to Figure 5 as well as Figure 6 ).
[0097] like Figure 3 as well as Figure 4As shown, in the state where a pair of side workbenches 50 are closed, the upper surface 50a of each side workbench 50 overlaps on the first workbench 30 in a state adjacent to each other in the left-right direction, and has substantially the same shape and size as the first workbench 30 and the second workbench 40. The upper surface 50a of each side workbench 50 in a state adjacent to each other in the left-right direction is provided with a wall-like edge wall 52 erected upward along its outer edge. The size of the peripheral edge of the edge wall 52 is one circle larger than the size of the peripheral edge of the lattice-shaped wall portion 25 of the storage case 20. In addition, in the portion where the two side workbenches 50 are adjacent, a convex portion 54 extending in the front-to-back direction and substantially convex to the upper side is provided on the inner side edge portion of one side workbench 50. The convex portion 54 is overlapped and locked with the upper side of the inner side edge portion of the other side workbench 50.
[0098] like Figure 5 as well as Figure 6 As shown, in the state of opening two levels and the state of fully opening, the lower surface 50b of each side workbench 50 is connected to the third hinge H3 at the inner end in the left-right direction, and the outer end in the left-right direction is open. On the lower surface 50b of each side workbench 50, a group of two sides facing each other in the front-to-back direction are provided with edge walls 56 along the left-to-right direction. Most of the front side of each edge wall 56 is open. In the peripheral portion of the lower surface 50b of each side workbench 50, a position close to the third hinge H3 is provided, which is erected in the shape of a wall at a predetermined interval in the front-to-back direction. In the state of closing a pair of side workbenches 50, each of the embedded wall portions 58 enters and is embedded in the recess between the plate guide 42A and the guide plate spring 42B of the second workbench 40.
[0099] In addition, if Figure 6 As shown in the enlarged view E2, a drainage process consisting of a plurality of approximately circular micro-convex portions 50b1 is applied to the approximately rectangular region R1 of the lower surface 50b of each side workbench 50 except for the peripheral portion. Water generated from the fusible bead toys placed on each side workbench 50 falls between the micro-convex portions 50b1 and evaporates.
[0100] Next, the structures of the first hinge H1 to the third hinge H3 are described. Figure 8 As shown, the first hinge H1 to the third hinge H3 are all formed into a corrugated shape in which the thin-walled portion H1a and the thick-walled portion H1b are alternately arranged in the connection direction. Here, the structure of the first hinge H1 is described. The first hinge H1 is a corrugated structure in which a plurality of thin-walled portions H1a and a plurality of thick-walled portions H1b are alternately arranged throughout its connection direction (front-back direction, direction connecting the first workbench 30 and the second workbench 40).
[0101] By adopting such a structure, the force (restoring force) for restoring the first hinge H1 (the second hinge H2 and the third hinge H3) to a straight line when it is bent is dispersed from each thin-walled portion H1a. Therefore, the first hinge H1 (the second hinge H2 and the third hinge H3) is less likely to return to a straight line when it is bent than when the structure is not provided in a corrugated shape.
[0102] Next, a method and steps for making a collection of weldable bead toys using the weldable bead toy making assembly 10 and then making the weldable bead toy making assembly 10 completely closed will be described. First, from the fully opened state (refer to Figure 6 ) and bend a pair of first hinges H1 to overlap the first workbench 30 on the second workbench 40, and the first workbench 30 and the second workbench 40 are separated at a predetermined interval in the vertical direction, and the pins 46 are in a state of being removed from the through holes 36. In this state, the paper holding plate 48A and the paper holding rib 48B of the second workbench 40 hold the paper on which an arbitrary pattern is recorded. Next, a plurality of fusible bead toys are placed on the through holes 36 of the first workbench 30 that correspond to the arbitrary pattern recorded on the paper (the through holes 36 that overlap with the pattern).
[0103] When the fusible bead toys are placed on the through-hole 36, the front end of the pin 46 is separated from the fusible bead toys without contact. After placing a plurality of fusible bead toys, water is sprayed on the plurality of fusible bead toys using a sprayer or the like. The water sprayed on the first workbench 30 is accumulated on the second workbench 40 through the through-hole 36 or the like, so that it hardly falls from the surface of the first workbench 30 to the outside of the fusible bead toy manufacturing assembly 10. The wetted unnecessary fusible bead toys can roll on the inclined surfaces 35 and the third hinges H3 from the left and right sides of the upper surface 30a of the first workbench 30 and move to the lower surface 50b of each side workbench 50, and can be effectively dried on the micro-convex portion 50b1 of each side workbench 50.
[0104] Next, if the extension portion 34 is pressed downward with both hands to press the first workbench 30 toward the second workbench 40, the first workbench 30 approaches the second workbench 40. At this time, the guide leaf spring 42B pops out and warps toward the plate guide 42A side at the edge of the guide hole 32 that abuts against the spring protrusion. As a result, the guide hole 32 is able to pass over the spring protrusion. If the guide hole 32 passes over the spring protrusion, the front end (lower end) of the edge wall 38 abuts against the upper surface 40a of the second workbench 40, limiting the downward movement of the first workbench 30. Furthermore, each step-shaped recess 38b engages with each limiting leaf spring 44B. As a result, the first workbench 30 is closed (refer to Figure 5 ).
[0105] In addition, the front end of the edge wall 38 abuts against the upper surface 40a of the second workbench 40, so that the front end of each pin 46 passes through each through hole 36 and abuts against the fusible bead toy from the bottom, and the fusible bead toy is relatively pushed up with respect to the upper opening edge of each through hole 36. The fusible bead toy is separated from the upper opening edge of each through hole 36 that supports it, and the support based on each through hole 36 is released. At this time, the plurality of fusible bead toys are connected to the extent that they can be held by hand, so the support based on each through hole 36 is released, and the plurality of fusible bead toys supported by the front end of each pin 46 are lifted by hand and removed from the fusible bead toy production assembly 10, and the production of the fusible bead toy assembly is completed.
[0106] When the assembly of the fusible bead toys is completed, the pair of third hinges H3 are bent respectively to overlap the side workbenches 50 on the first workbench 30, so that the convex portion 54 of one side workbench 50 overlaps the inner edge of the other side workbench 50, and the pair of side workbenches 50 are closed (refer to Figure 3 as well as Figure 4 ). As a result, the fitting wall portion 58 of each side table 50 enters and fits into the recess between the plate guide 42A and the guide plate spring 42B of the second table 40 .
[0107] In addition, if Figure 4 As shown, in this state, the edge wall 56 of the lower surface 50b of each side workbench 50 abuts against the second low wall portion 44 of the upper surface of the second workbench 40, restricting the downward movement of each side workbench 50. In addition, in this state, the front side and the rear side between the second workbench 40 and each side workbench 50 abutting against each other are open, and the connecting end of a pair of first hinges H1 is stored in the open part of the front side. In addition, the fusible bead toys that are no longer needed after the production of the assembly is completed are stored in the first storage space 25a of the storage shell 20 before the pair of side workbench 50 is closed. In addition, unnecessary pens, sprayers, etc. are also stored in the second storage space 27a of the storage shell 20.
[0108] Next, the second hinge H2 is bent from the state where the pair of side workbenches 50 are closed, so that the pair of side workbenches 50, the second workbenches 40, and the first workbenches 30 overlap each other on the storage case 20, and the state of being completely closed is achieved (see Figure 1 as well as Figure 2 At this time, the periphery of the lattice wall portion 25 of the storage case 20 is embedded in the inner side of the periphery of the edge wall 52 of each side workbench 50. Thus, the overlapping pair of side workbenches 50, the second workbench 40, and the first workbench 30 are restricted from moving in the front-rear direction and the left-right direction relative to the storage case 20.
[0109] In addition, if Figure 7 As shown, in this state, the convex portion 54 of one side workbench 50 enters the wall recess 25b of the storage case 20, and the front end of the lattice-shaped wall portion 25 abuts against the upper surface 50a of each side workbench 50. Figure 7 as well as Figure 2 As shown in the enlarged view E1 of FIG. 1 , in this state, the workbench side retaining protrusion 44B2 of the second workbench 40 passes over the shell side retaining protrusion 24a of the storage case 20 and engages with the shell side retaining protrusion 24a. As a result, the pair of overlapping side workbenches 50, the second workbench 40, and the first workbench 30 are restricted from moving upward relative to the storage case 20 (returning to the state of opening one level).
[0110] Here, by becoming a completely closed state, the upper side of the first storage space 25a is covered by each side workbench 50. That is, each side workbench 50 realizes the function of a cover covering the upper side of the first storage space 25a. Therefore, the fusible bead toys stored in the first storage space 25a can be prevented from falling from the first storage space 25a.
[0111] Through the above steps, the fully opened state of the weldable bead toy making assembly 10 can be changed to the fully closed state. The pair of first hinges H1, the second hinge H2, and the pair of third hinges H3 bent in this process are difficult to return to a straight state from the bent state as described above. Therefore, the pair of overlapping side workbenches 50, the second workbench 40, and the first workbench 30 are difficult to return to the open state. In addition, in the fully closed state, the movement of the pair of side workbenches 50, the second workbench 40, and the first workbench 30 relative to the storage shell 20 is restricted as described above, and it is difficult to open. Therefore, by holding the handle 21, the weldable bead toy making assembly 10 in the fully closed state can be easily carried.
[0112] As described above, in the weldable bead toy manufacturing assembly 10 of the embodiment of the present invention, each component (storage case 20, first workbench 30, second workbench 40, a pair of side workbench 50, first hinge H1 to third hinge H3) constituting the weldable bead toy manufacturing assembly 10 is manufactured by integral molding. Therefore, the case for storing the weldable bead toy and the manufacturing table for manufacturing the assembly of the weldable bead toy can be manufactured at the same time, which can reduce the manufacturing cost.
[0113] According to the above-mentioned embodiment of this invention, the following aspects of the fusible bead toy manufacturing kit can be provided.
[0114] The first mode of the production assembly for a weldable bead toy comprises: a storage shell, which can store the weldable bead toy; a first workbench, which has a plurality of through holes, formed so that the weldable bead toy can be placed on one side of the through-direction of the through holes; a second workbench, which has a plurality of pins that can be inserted and pulled out of the through holes from the other side of the through-direction of the through holes; and a third workbench, wherein the storage shell, the first workbench, the second workbench, and the third workbench can be connected respectively via hinges, and can overlap with each other by bending the hinges respectively.
[0115] According to this structure, by overlapping the first workbench on the second workbench and placing the weldable bead toys on the through hole 36, a collection of weldable bead toys can be produced. In addition, the wetted weldable bead toys can be dried on the third workbench. In addition, the weldable bead toys that are no longer needed after production can be stored in the storage shell. In this way, the production table for producing the collection of weldable bead toys and the shell for storing the weldable bead toys are integrated in a manner that can overlap each other through a hinge connection, so these components can be manufactured together through integral molding and can be easily carried. Therefore, it is possible to provide a weldable bead toy production assembly that is easy to carry and easy to manufacture.
[0116] In the second mode of the production assembly for the fusible bead toys, the storage shell is connected to one side of the front-to-back direction of the second workbench via the hinge, the first workbench is connected to the other side of the front-to-back direction of the second workbench via the hinge, and a pair of the third workbench are connected to both sides of the left-to-right direction of the second workbench via the hinge.
[0117] According to this structure, the storage housing, the first workbench, and the pair of third workbench are connected to four directions around the second workbench via hinges. Furthermore, by bending the hinges around the second workbench in sequence, the storage housing, the first workbench, the second workbench, and the pair of third workbench can be made to overlap with each other. In this way, a specific connection method for each hinge can be provided.
[0118] In the third type of the manufacturing assembly for the weldable bead toys, the storage shell has a snap-fitting retaining portion, which snaps with the second workbench to retain the second workbench when the storage shell, the first workbench, the second workbench, and the pair of third workbench overlap with each other.
[0119] According to this structure, when the storage case, the first work table, the second work table, and the pair of third work tables are overlapped, the engagement holding portion engages with the second work table, thereby preventing the components from being accidentally opened and improving portability.
[0120] In the fourth mode of the production assembly for the weldable bead toy, the storage shell has a first storage portion, which is open in the overlapping direction and stores the weldable bead toy. By bending the hinges respectively, the storage shell, the first workbench, the second workbench, and the pair of third workbench overlap with each other, thereby covering one side of the opening of the first storage portion.
[0121] According to this structure, it is possible to provide a specific structure of the storage case for storing the weldable bead toy and a specific structure for preventing the weldable bead toy stored in the storage case from falling when the weldable bead toy manufacturing kit is carried.
[0122] In the weldable bead toy manufacturing kit of the fifth aspect, the storage case has a second storage portion outside the first storage portion.
[0123] According to this structure, a specific structure of the manufacturing kit for a weldable bead toy can be provided, which can accommodate a sprayer, a pen, etc. required for the weldable bead toy in the second storage part, and can be carried in a state where these components are stored.
[0124] In the weldable bead toy manufacturing kit of the sixth aspect, each of the hinges is formed in a corrugated shape in which thin-walled portions and thick-walled portions are alternately provided.
[0125] According to this structure, when the hinges are bent, the force to restore to a straight state is dispersed by the thin wall portion, so it is difficult to restore to a straight state compared to a structure in which the hinges are not formed into a corrugated shape. Therefore, it is difficult to restore the storage case, the first workbench, the second workbench, and the third workbench from the overlapping state to the open state, thereby improving the portability of the fusible bead toy manufacturing assembly.
[0126] In the weldable bead toy manufacturing kit of the seventh and eighth aspects, the storage case, the first workbench, the second workbench, and the third workbench are formed of an integrally molded resin.
[0127] According to this structure, compared with the manufacturing assembly for the fusible bead toy which consists of a workbench, a liquid reservoir, and a tray separately, it is possible to simplify the manufacturing process.
[0128] As mentioned above, although embodiment of this invention was described, this invention is not limited to the said embodiment, Unless it deviates from the summary, various changes can be made.
Claims
1. A manufacturing assembly for a weldable bead toy, characterized in that: have: A storage shell capable of storing a weldable bead toy; A first workbench having a plurality of through holes formed so that a fusible bead toy can be placed on one side of the through holes in a through direction; a second workbench having a plurality of pins formed to be insertable and removable in the through hole from the other side of the through hole in the through direction; as well as The third workbench, The storage case, the first workbench, the second workbench, and the third workbench can be connected via hinges, and can be overlapped with each other by bending the hinges.
2. The weldable bead toy making assembly according to claim 1, wherein: The storage housing is connected to one side of the second workbench in the front-rear direction via the hinge. The first workbench is connected to the other side of the second workbench in the front-rear direction via the hinge. The pair of third work tables is connected to both sides of the second work table in the left-right direction via the hinges.
3. The weldable bead toy making assembly according to claim 2, wherein: The storage case includes an engagement holding portion that engages with the second worktable to hold the second worktable when the storage case, the first worktable, the second worktable, and the pair of third worktables overlap each other.
4. The weldable bead toy manufacturing assembly according to claim 1, wherein: The storage housing has a first storage portion, which is open in the overlapping direction and stores the weldable bead toy. By bending the hinges, the storage case, the first work table, the second work table, and the pair of third work tables overlap with each other, so that one side of the opening of the first storage portion is covered.
5. The weldable bead toy manufacturing assembly according to claim 4, wherein: The storage case has a second storage portion outside the first storage portion.
6. The weldable bead toy making kit according to any one of claims 1 to 5, wherein: Each of the hinges is formed in a corrugated shape in which thin-walled portions and thick-walled portions are alternately provided.
7. The weldable bead toy making kit according to any one of claims 1 to 5, wherein: The storage case, the first workbench, the second workbench, and the third workbench are formed of an integrally molded resin.
8. The weldable bead toy manufacturing assembly according to claim 6, wherein: The storage case, the first workbench, the second workbench, and the third workbench are formed of an integrally molded resin.