Toy

By designing components with material storage sections and hookable second parts into the toy, combined with retaining parts and fixing structures, the toy's fun and operational complexity are enhanced, solving the problem of the simple gameplay of existing toys.

CN121490408APending Publication Date: 2026-02-10BANDAI CO LTD +1
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Patent Information

Application Number
CN202511708737.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2025-03-26
Filing Date
2025-11-20
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

Existing toys are simple to play with and lack fun.

Method used

Design a toy comprising a first component having a material storage section and a second part capable of being connected to the material storage section, the second part being hooked by a hook-like component and connected to the first and second parts by a third part, the first part having a holding section for holding solid objects extending along the material storage section, the depth and width of the configuration section being greater than the linear section, and the second component being fixed to a mounting surface.

Benefits of technology

It enhances the fun of the toy, improves the gaming experience through various fishing simulation operations, and increases the complexity and challenge of the operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a toy with high interestingness. A toy (1) includes a first member (10) including: a first portion (11) capable of being disposed in a material accommodating portion (21) to which a liquid material is supplied to form a solid object formed by solidification of the material; and a second portion (12) capable of receiving an operation for separating the solid material formed in the material housing part (21) from the material housing part (21). The first member (10) has a first portion (11) which is disposed in a material housing section (21) to which a liquid material is supplied and which is capable of forming a solid object, can be connected to the solid object, and has a second portion (12) which is exposed from a cured image object. Therefore, the toy (1) can be provided, and the solidified solid object can be separated from the material storage part (21) through the first component (10).
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Description

Technical Field

[0001] This invention relates to a toy. Background Technology

[0002] Patent document 1 discloses an accessory-making toy that allows for the simple creation of accessories by allowing fluid material to flow into a mold.

[0003] Existing technical documents

[0004] Patent documents

[0005] Patent Document 1: Japanese Patent Application Publication No. 2017-42267 Summary of the Invention

[0006] The problem the invention aims to solve

[0007] The toy described in Patent Document 1 simply involves feeding material into a mold and removing the solidified material from the mold. Therefore, the gameplay is simple and not very fun as a toy.

[0008] The purpose of this invention is to provide a toy with high entertainment value.

[0009] Solution for solving the problem

[0010] One method of making a toy based on the technology disclosed herein is as follows. (1)

[0012] A toy comprising a first component, wherein,

[0013] The first component includes,

[0014] The first part is a material receiving section that can be disposed in connection with a liquid material to form a solidified product; and

[0015] The second part is capable of accepting operations for separating the solid material formed in the material receiving portion from the material receiving portion. (2)

[0017] According to the toy described in (1), wherein,

[0018] The second part is exposed from the material when the first part is disposed in the material storage section and the material is supplied to the material storage section. (3)

[0020] According to the toy described in (1) or (2), wherein,

[0021] The second part has a portion that can be hooked by other hook-like components. (4)

[0023] According to the toy described in (3), wherein,

[0024] The hookable part is ring-shaped. (5)

[0026] The toy according to any one of (1) to (4), wherein,

[0027] The toy has a third part that connects the first part to the second part. (6)

[0029] The toy according to any one of (1) to (5), wherein,

[0030] The first part has a holding part that can retain the solidified solid when the second part is operated. (7)

[0032] According to the toy described in (6), wherein

[0033] The retaining part is configured such that the material supplied to the material receiving part can enter. (8)

[0035] According to the toy described in (7), wherein,

[0036] The retaining portion has an extension that extends along the material receiving portion. (9)

[0038] The toy according to any one of (1) to (8), wherein,

[0039] The first part is configured such that the first member is self-supporting relative to the material receiving portion that does not receive the material. (10)

[0041] The toy according to any one of (1) to (9), wherein,

[0042] The toy includes a flat second component having the material storage portion. (11)

[0044] According to the toy described in (10), wherein,

[0045] The material receiving section includes: a shape section for forming a specified shape; a linear section connected to the shape section; and a placement section connected to the linear section for placing the first part of the first member. (12)

[0047] According to the toy described in (11), wherein,

[0048] The first part has a holding portion into which the material supplied to the material receiving portion enters. When the second part is lifted, the holding portion can hold the solidified material.

[0049] When the first part is disposed in the material receiving part with a predetermined orientation, the direction in which the linear part adjacent to the disposed part extends is consistent with the direction in which the material enters the holding part. (13)

[0051] According to the toy described in (11) or (12), wherein,

[0052] The depth of the configuration section is greater than the depth of the linear section. (14)

[0054] The toy according to any one of (11) to (13), wherein,

[0055] The width of the configuration section is greater than the width of the linear section. (15)

[0057] The toy according to any one of (10) to (14), wherein,

[0058] The toy includes multiple of the first components.

[0059] The material storage section of the second component has a plurality of configuration sections capable of configuring the first portion of the first component. (16)

[0061] The toy according to any one of (10) to (15), wherein,

[0062] In the second component, a configuration portion capable of configuring the first part of the first component is provided at the end of the material receiving portion. (17)

[0064] According to any one of (10) to (16) the toy, wherein,

[0065] The second component has a mounting portion capable of mounting a third component, which can fix the second component to the mounting surface. (18)

[0067] According to the toy described in (17), wherein,

[0068] The mounting portion of the second component is located on the periphery of the second component. (19)

[0070] According to the toy described in (17) or (18),

[0071] The second component has a plurality of the aforementioned mounting portions. (20)

[0073] The toy according to any one of (1) to (19), wherein,

[0074] The toy includes a fourth component having a hook-like portion capable of hooking onto the second part. (twenty one)

[0076] According to the toy described in (20), wherein,

[0077] The fourth component has the hook-shaped portion, the handle portion, and the rope portion that connects the hook-shaped portion to the handle portion. (twenty two)

[0079] According to the toy described in (11), wherein,

[0080] The first part has a holding portion that can retain the solidified solid during operation of the second part.

[0081] The retaining portion has a raised wall that, when the first portion is disposed on the disposed portion, prevents the material from entering the upper part of the retaining portion on the side opposite to the linear portion. (twenty three)

[0083] According to the toy described in (22), wherein,

[0084] The raised wall is composed of a protruding wall that extends from the top. (twenty four)

[0086] According to the toy described in (22), wherein,

[0087] The raised wall is formed by the stepped shape on top. (25)

[0089] The toy according to any one of (22) to (24), wherein,

[0090] The standing wall is configured such that, when the first part is disposed in the configuration section, its upper end is located above the depth of the configuration section. (26)

[0092] The toy according to any one of (22) to (25), wherein,

[0093] The upright wall is configured to extend from one end of the upper part of the retaining part to the other end. (27)

[0095] The toy according to any one of (22) to (26), wherein,

[0096] The retaining portion has a protrusion on its lower surface, which is opposite to the bottom surface of the configuration portion when the first portion is disposed on the configuration portion. (28)

[0098] According to the toy described in (27), wherein,

[0099] The protrusion is composed of an extension that extends in a predetermined direction. (29)

[0101] According to the toy described in (28), wherein,

[0102] The protrusion is formed by the extensions that are generally parallel to each other. (30)

[0104] According to the toy described in (28) or (29), wherein,

[0105] The extension direction is the direction that intersects with the extension direction of the upright wall on the upper surface. (31)

[0107] The toy according to any one of (22) to (30), wherein,

[0108] The configuration unit is provided with at least one of a display that teaches the configuration direction of the first part configured in the configuration unit and a positioning unit that positions the configuration direction of the first part configured in the configuration unit.

[0109] The effects of the invention

[0110] According to the present invention, a toy with high entertainment value can be provided. Attached Figure Description

[0111] Figure 1 This is a perspective view of the various components in a toy according to one aspect of the present invention.

[0112] Figure 2 It means Figure 1 The image shows a 3D view of the toy in its initial stage of use.

[0113] Figure 3 yes Figure 2 An enlarged perspective view of the first component in its installation state.

[0114] Figure 4 It is along Figure 3 A sectional view of the portion along line AA.

[0115] Figure 5 This is a three-dimensional diagram illustrating an example of how a toy can be played.

[0116] Figure 6 This is a top view of the second component in the first variation of the toy.

[0117] Figure 7 This is a top view of the second component in the second variation of the toy.

[0118] Figure 8 This is a three-dimensional drawing of the first component in the third variation of the toy.

[0119] Figure 9 This is a three-dimensional drawing of the first component in the fourth variation of the toy.

[0120] Figure 10 This is a three-dimensional diagram of the first component in the fifth variation of the toy.

[0121] Figure 11 This is a three-dimensional diagram of the first component in the sixth variation of the toy.

[0122] Figure 12 This is a three-dimensional diagram of the first component in the seventh variation of the toy.

[0123] Figure 13 This is a three-dimensional diagram showing the hook-up state of the solid object in the seventh variation of the first component.

[0124] Figure 14 This is an enlarged perspective view showing the installed state of the first component of the eighth variation of the toy.

[0125] Figure 15 It is along Figure 14 A sectional view of the BB line portion.

[0126] Figure 16 This is a perspective view used to illustrate the method of setting the first component in the configuration section in Modification Example 8.

[0127] Figure 17 This is a three-dimensional drawing of the first component representing the ninth variation of the toy.

[0128] Explanation of reference numerals in the attached figures

[0129] 1. Toy; 10. First component; 11. First part; 11a. Holding part; 11b. Bottom extension (extension); 11c. Erecting extension (extension); 11g. Protruding extension (extension); 11t. Protruding wall; 11w. Erecting wall; 12. Second part; 13. Third part; 20. Second component; 21. Material storage part; 21e. End of material storage part; 23. Image part; 24. Linear part; 25. Arrangement part; 27. Peripheral part; 28. Mounting part; 30. Third component; 40. Fourth component; 41. Handle part; 42. Rope part; 43. Hook-shaped component; 50. Solid object; 50b. Material; 60. Placement surface. Detailed Implementation

[0130] Hereinafter, a toy according to one aspect of the present invention will be described with reference to the accompanying drawings.

[0131] Figure 1 This is a perspective view of the various components in a toy 1 according to one aspect of the present invention.

[0132] Figure 1 The toy 1 shown is a fishing toy, configured to include, for example, a first component 10 mimicking a fishing float; a flat second component 20 capable of forming an image of a fish or similar object; a third component 30 that fixes the second component 20 to a mounting surface 60; and a fourth component 40 mimicking a fishing rod. Furthermore, the toy 1 is made of synthetic resin, and in particular, the fourth component 40 is preferably made of an elastic material.

[0133] The first component 10 imitates a float in fishing tackle, the details of which will be described later. It has a first part 11 in the shape of a disc that contacts the second component 20, a second part 12 in the shape of a ring that is hooked by the fourth component 40, and a third part 13 in the shape of a rod that connects the first part 11 and the second part 12.

[0134] The second component 20, when viewed from above, is rectangular in shape, with its periphery 27 contacting the mounting surface 60 at a predetermined width. Its inner pattern-forming surface 20a is a flat plate structure separated from the mounting surface 60. The pattern-forming surface 20a has a pattern 20d depicted on its surface. Additionally, it is constructed of a material 50b capable of containing liquid (see reference). Figure 4 The material receiving portion 21 is recessed from the surface in a manner that allows for the inclusion of: a material receiving portion 21, which has a shaped portion 23 that forms a defined image; a relatively thin, groove-shaped linear portion 24 connected to the shaped portion 23; and a placement portion 25 connected to the linear portion 24 and capable of arranging the first member 10. Furthermore, in this configuration, the placement portion 25 is located at the end 21e of the linear portion 24, which is connected to both the mouth side and tail side of the shark in the shaped portion 23.

[0135] Additionally, a shark pattern is depicted in the image portion 23 shown in the illustration. This pattern is drawn on the bottom surface of the recessed portion of image portion 23 using lines formed by raised and recessed lines, for example.

[0136] Here, the liquid material 50b will be described. The liquid material 50b referred to here is a liquid that is fluid at relatively high temperatures (above room temperature), such as when it is cooled to a low temperature using a refrigerator and solidifies into a solid 50 (see reference). Figure 5 Material 50b. This can be made of a substance with gelatin as the main component, such as gummy candy. In this case, the solid 50 has moderate adhesiveness and adheres to the material storage part 21 with moderate adhesive force. In the case of gummy candy, the solid 50 may be edible, but it may not be edible.

[0137] The third component 30 is a fixing component that secures the second component 20 to the mounting surface 60. For example, it has a suction cup-shaped adsorption portion 31 and a gripper portion 32 protruding from the central portion of the adsorption portion 31. Furthermore, a narrow portion 33, narrower than the width of the gripper portion 32, is provided on the protruding base end side of the gripper portion 32. On the other hand, a plurality of notch-shaped mounting portions 28 are provided at appropriate intervals in the circumferential direction on the peripheral portion 27 of the second component 20. By inserting the narrow portion 33 of the third component 30 into these mounting portions 28, the second component 20 can be reliably fixed to the mounting surface 60.

[0138] The fourth component 40 includes: a handle portion 41, which imitates the main body of a fishing rod; a hook-shaped component 43, which imitates a fishhook; and a rope portion 42, which imitates a fishing line connecting the hook-shaped component 43 and the handle portion 41. In the handle portion 41, a connecting loop portion 41t is provided at the top end on the side opposite to the handle side. On the other hand, in the rope portion 42, a connecting end portion 42t is provided on the side opposite to the hook-shaped component 43, which can be hooked to the connecting loop portion 41t.

[0139] Figure 2 It means Figure 1 A 3D diagram showing the initial state of toy 1 in use.

[0140] In the first component 10, the first part 11 is configured, for example, as a disk shape, with a flat bottom surface. Additionally, the placement part 25 is a recessed structure, for example, circular in shape when viewed from above, for the inflow of material 50b, with a flat bottom surface. Therefore, as... Figure 2 As shown, the first member 10 can be set in a self-standing state when the material 50b is not stored in the configuration section 25. For example, in the configuration section 25 where the first member 10 is set in two places, liquid material 50b is put into the material storage section 21.

[0141] Figure 3 yes Figure 2 An enlarged perspective view of the first component in its installation state.

[0142] The first part 11 of the first member 10 has: a bottom extension 11b, a pair of upright extensions 11c that rise from the bottom extension 11b along the third part 13, and a shaft 11d that extends upward from the central portion of the bottom extension 11b. The third part 13 is a rod-shaped portion extending along the extension line of the shaft 11d. Furthermore, an annular second part 12 with a through hole 12h is provided at the upper end of the third part 13. That is, the third part 13 is provided such that the thickness of the second part 12 is a predetermined value or greater. In addition, the width (W1) of the arrangement part 25 is configured to be larger than the width (W2) of the linear part 24.

[0143] The through hole 12h preferably extends in a direction substantially orthogonal to the extending direction of the bottom extension 11b. This allows for hooking up, for example, the hook-like member 43, in a direction along the line-like portion 24, resulting in good operability. Furthermore, while the width (W3) of the extended through hole 12h should at least be sufficient to hook up the hook-like member 43, it is even more preferable if this width (W3) is larger than the width (W2) of the line-like portion 24, as this improves hooking operability.

[0144] When the first component 10 is placed on the mounting section 25, such as Figure 3 As shown, the upright extension 11c of the first part 11 is placed vertically along the orientation of the linear part 24. That is, it is placed such that the inner surfaces of the pair of upright extensions 11c extend as left and right walls in the same direction (f) as the material 50b flowing from the linear part 24. In addition, the height of the bottom extension 11b of the first part 11 is approximately the same as or lower than the height of the bottom surface 24b of the linear part 24, and it becomes a bottom surface that extends in the same direction (f) as the material 50b (see reference). Figure 4 ).

[0145] Furthermore, the width (W4) of the groove portion constituting the holding part 11a is preferably smaller than the width (W2) of the linear portion 24. That is, if the width (W4) of the groove portion constituting the holding part 11a is larger, the amount of material 50b required increases, which is not ideal. In addition, if it is larger, the holding force of the solid 50 also increases, and the separation operation may become difficult.

[0146] The first part 11 thus constructed has a horizontally oriented bottom extension 11b along the flow direction of the material 50b and a generally vertically oriented upright extension 11c, forming an area for the material 50b to flow into (enter). That is, the first part 11 constitutes a portion of itself wrapped around the solidified solid 50 (see reference). Figure 5The retaining part 11a is also attached to the shaft part 11d. In addition, the shaft part 11d also has a solid material 50 attached around it, which functions as the retaining part 11a that generates the connecting force.

[0147] Figure 4 It is along Figure 3 A sectional view of the portion along line AA.

[0148] like Figure 4 As shown, in the first component 10, with the first portion 11 placed on the bottom surface 25b of the placement section 25, when the material 50b is supplied to the material receiving section 21, the second portion 12 and the third portion 13 are exposed from the material 50b. Furthermore, the depth of the placement section 25 is configured, as described above, to be deeper than the depth of the linear portion 24. For example, the bottom extension 11b of the first portion 11 is configured to be approximately the same height as the bottom 24b of the linear portion 14, thereby facilitating the entry of the material 50b into the placement section 25.

[0149] An example of how to play with toy 1 will be explained.

[0150] Figure 5 This is a three-dimensional diagram illustrating an example of how to play with toy 1.

[0151] Figure 5 The case shown is where a first component 10 is positioned on the side of the shark's mouth.

[0152] First, the connecting end 42t of the rope portion 42 is connected to the connecting loop portion 41t of the handle portion 41 by hooking, thus assembling the fourth component 40. Furthermore, the second component 20 is reliably fixed to the mounting surface 60 by means of the third component 30. Then, the handle portion 41 is held by hand 70, and the hook-shaped component 43 is hooked onto the second part 12 of the first component 10. During this hooking operation, by providing the third part 13, the height of the second part 12 is such that it is positioned away from the surface of the second component 20. Therefore, the second part 12 easily hooks onto the hook-shaped component 43.

[0153] Furthermore, when operating by holding the handle 41 to fish, the solid object 50 is pulled not only by its own weight but also by adhesive force. This causes the handle 41 to bend as if fishing, creating a simulated fishing experience. Additionally, because the line-like portion 24 is thinner than other parts, it stretches more easily and is more prone to breakage. In particular, when lifting the largest part, the image portion 23, the portion formed by the line-like portion 24 stretches considerably. This makes it difficult to focus intently to avoid breakage of the portion formed by the line-like portion 24.

[0154] Hereinafter, modifications 1 to 5 of the present invention will be described with reference to the accompanying drawings.

[0155] (First variation)

[0156] Figure 6 This is a top view of the second component 20 in the first variation of toy 1.

[0157] Figure 6 The second component 20 shown has two fishing targets, and each of the linear sections 24 has a first component 10. For example, the material storage section 21 is divided into two, with the largest image section 23 (shark) located at the end of the linear section 24, and multiple smaller image sections 23 (pufferfish, sea bream, etc.) located in the middle of the linear section. In addition, the linear section 14 is configured to be long and meandering, with bends 24k where the orientation of the linear section 24 changes at an acute angle.

[0158] This structure allows for multiple fishing attempts. However, because the line portion 24 is relatively long and has a bend 24k, the portion formed in the bend 24k is prone to breakage, making it difficult to fish out. Furthermore, by setting two fishing targets, a two-player game is possible. For example, in a two-player game, it can be used as a game where players start fishing simultaneously and compete to see who can catch the fish fastest.

[0159] (Second variation)

[0160] Figure 7 This is a top view of the second component 20 in the second variation of toy 1.

[0161] for Figure 7 The second component 20 shown is used to catch one fish, but it has a placement section 25 positioned in the center of the first component 10. Furthermore, the linear portion 24 is configured in a long spiral shape surrounding the placement section 25. Additionally, the image portion 23 is configured with multiple portions at the end points of the branches of the linear portion 24. In this configuration, the enjoyment of catching multiple fish at once can be experienced.

[0162] (Third variation)

[0163] Figure 8 This is a three-dimensional view of the first component 10 in the third variation of toy 1.

[0164] Figure 8 The structure of the first component 10 shown is similar to Figure 3 The structure shown differs from that of the first part 11. Figure 8 The structure shown has a transversely extending, for example, circular opening 11h in the thick cylindrical shaft portion 11d. In this case, the inner wall surface of the opening 11h functions as a bottom extension 11b and an upright extension 11c.

[0165] (Fourth variation)

[0166] Figure 9 This is a three-dimensional view of the first component 10 in the fourth variation of toy 1.

[0167] Figure 9 The structure of the first component 10 shown is similar to Figure 3 The structure shown differs from that of the first part 11. Figure 9 In the structure shown, the first part 11 is provided with a flat, upright extension 11c and a frame-shaped shaft 11d. The upright extension 11c forms a side surface along the flow direction (arrow f) of the material 50b, and an opening 11h is formed between the upright portion and the bottom portion of the shaft 11d. Therefore, in this structure, compared with the winding method of the solid 50... Figure 3 The structure shown is more complex, thus forming a more robust retaining part 11a.

[0168] (Fifth variation)

[0169] Figure 10 This is a three-dimensional view of the first component 10 in the fifth variation of toy 1.

[0170] Figure 10 The structure of the first component 10 shown is similar to Figure 3 The structure shown differs from that of the first part 11. Figure 10 In the structure shown, a disc-shaped bottom extension 11b and a flat, upright extension 11c / shaft 11d extending along the diameter of the bottom extension 11b are provided. Furthermore, an opening 11h is provided in the upright extension 11c / shaft 11d. Therefore, the upright extension 11c / shaft 11d can flow along the direction of material 50b (arrow f), and the material 50b enters the opening 11h and solidifies. Therefore, in this structure, compared to the winding method of the solid material 50... Figure 3 The structure shown is more complex, thus enabling the formation of a more robust retaining part 11a. Furthermore, in Figure 10 In the example, it could also be that the second part 12 is set with an orientation rotated 90 degrees when viewed from above.

[0171] (Sixth variation)

[0172] Figure 11 This is a three-dimensional view of the first component 10 in the sixth variation of toy 1.

[0173] Figure 11 The structure of the first component 10 shown is similar to Figure 3 Compared to the structures shown, the shapes of the first part 11, the second part 12, and the third part 13 are completely different. Figure 11In the structure shown, a disc-shaped bottom extension 11b and a cylindrical upright extension 11c / shaft 11d are provided on the bottom extension 11b. Furthermore, a cylindrical opening 11ch is provided in the upright extension 11c / shaft 11d. Therefore, the upright extension 11c / shaft 11d can flow along the direction of material 50b (arrow f), and the material 50b enters and solidifies inside and outside the opening 11ch. Therefore, in this structure, the winding method with the solid 50 is also more efficient than... Figure 3 The structure shown is more complex, thus forming a more robust retaining part 11a.

[0174] Part 2, 12 is not Figure 3 Instead of being a ring shape, it is constructed as a hook shape. In addition, the third part 13 is not a rod shape but a spherical shape, which represents a shape closer to that of an actual float.

[0175] (Seventh variation)

[0176] Figure 12 This is a three-dimensional view of the first component 10 in the seventh variation of Toy 1.

[0177] Figure 12 The structure of the first component 10 shown is similar to that of the sixth modified example, and the overall shape is the same as... Figure 3 The structures shown are different. The second part 12 is hook-shaped, and the third part 13 is cylindrical. The structure of the first part 11 is quite different from the above structures. For example, the first part 11 has a disc-shaped bottom extension 11b, for example, 6 shafts 11d, and a disc-shaped upper extension 11e, which is the same as the disc-shaped bottom extension 11b.

[0178] In the first part 11 configured in this way, the material 50b can be inserted from all directions. Therefore, there is no particular restriction on the orientation of the first member 10 placed in the mounting section 25; it can be set to any orientation, making it easy to place. Furthermore, in this structure, the winding method with the solid object 50 is also more... Figure 3 The structure shown is more complex, thus forming a more robust retaining part 11a.

[0179] Figure 13 This is a perspective view showing the hooked-up state of the solid object 50 in the seventh variation of the first component 10.

[0180] In the case of the structure of the first component 10 shown in the seventh variation, when the solid 50 is lifted after solidification, as Figure 13As shown, the solid 50 is wound around the six shaft portions 11d and supported from below by the bottom extension portion 11b. In this configuration, the upper extension portion 11e can be exposed from the solid 50. Thus, the solid 50 is held vertically by the upper extension portion 11e and the bottom extension portion 11b, and laterally by the shaft portions 11d, thereby increasing the holding force.

[0181] (Eighth variation)

[0182] Figure 14 This is an enlarged perspective view showing the installed state of the first component 10 in the eighth variation of toy 1. Additionally, Figure 15 It is along Figure 14 A sectional view of the BB line section. Figure 16 This is a perspective view showing the arrangement method of the first component 10 in the configuration section 25 in Modified Example 8.

[0183] exist Figures 14 to 16 In the case of this modified example shown, in relation to Figure 10 A protruding wall 11t extending along the diameter of the bottom extension 11b is provided on the upper surface 11bu of the disc-shaped bottom extension 11b shown. The protruding wall 11t is configured with a rectangular cross-section, forming a wall structure that rises vertically from the upper surface 11bu, supporting the third part 13 at its upper end 11tu. In this protruding wall 11t, its upright wall 11w (in...) Figure 14 The wall surface on the front side (in the middle) is set at a height approximately perpendicular to the extending direction of the linear portion 24 and as specified later. Furthermore, the extending direction of the protruding wall 11t is the same as the orientation of the annular plane of the second portion 12 of the hook-shaped member 43.

[0184] Furthermore, the protruding wall 11t is configured such that the upright wall 11w extends from one end 11ua of the upper 11bu to the other end 11ub. That is, the left and right ends 11te of the protruding wall 11t are arranged to contact or approach the inner peripheral surface 25is of the arrangement part 25. Thus, the recessed space of the arrangement part 25 is divided by the protruding wall 11t into a front side space SP1 and a rear side space SP2. In addition, the shape of the left and right ends 11te can also be formed as a curved surface along the inner peripheral surface 25is.

[0185] The first component 10 is disposed in the configuration section 25. Figure 14 In the state shown, when material 50b in a flow state flows in, as Figure 15As shown, the material 50b is suppressed from flowing into the rearward space SP2 by the protruding wall 11t. This is because when the material 50b flows in from the linear portion 24 side, the upright wall 11w of the protruding wall 11t blocks the material 50b, preventing the material 50b from flowing into the rearward space SP2. In addition, the upright wall 11w is configured such that, with the first portion 11 disposed in the placement portion 25, its upper end 11tu is located above the depth (H) of the placement portion 25. That is, the upper end 11tu is configured to be at a height above the top of the second member 20 (pattern forming surface 20a).

[0186] Additionally, material 50b flows in from the underside of the bottom extension 11b. For example, as... Figure 16 As shown, the bottom extension 11b has two protruding extensions 11g, for example, radially extending along the bottom extension 11b. These protruding extensions 11g form a predetermined gap between themselves and the bottom surface 25b of the configuration portion 25, allowing the material 50b to flow.

[0187] like Figure 16 As shown, the extending direction of the protruding extension 11g of the lower part 11bd of the bottom extension 11b is approximately orthogonal to the protruding wall 11t of the upper part 11bu. Alternatively, a protruding extension 25bg along the extending direction of the linear portion 24 may be provided on the bottom surface 25b of the placement portion 25, extending approximately through its center. This protruding extension 25bg is sized to fit between the two protruding extensions 11g of the bottom extension 11b. Thus, when the first member 10 is placed in the placement portion 25, the protruding extensions 25bg and the protruding extensions 11g are fitted together. That is, the protruding extensions 25bg and the protruding extensions 11g function as positioning portions that determine the orientation when the first member 10 is placed. Furthermore, the protruding extension 25bg extends along the direction in which the material 50 flows, allowing the material 50b to easily enter the lower side of the bottom extension 11b.

[0188] Alternatively, the bottom surface 25b may not have a protruding extension 25bg. In this case, a mark that runs through approximately the center and along the extension direction of the linear portion 24 may be indicated on the bottom 25b as a guide when arranging the first member 10.

[0189] Here, after the first component 10 is installed, when the material 50b flows in and the material 50b has solidified, it is possible to form a state in which the solid 50 is less attached to the upper side of the rear side space SP2 of the arrangement part 25 or almost not attached to the upper side (see reference). Figure 15 ).

[0190] As a game method for fishing out the solid object 50, since the figurative part 23 is fished out by peeling it from the second member 20, it becomes an upward pull operation orientation that pulls it up along the extension direction of the linear part 24 and toward the figurative part 23. According to this upward pull operation orientation, the second part 12 on the upper end side of the first member 10 is subjected to a force in the direction of tilting toward the linear part 24. As a result, the first member 10 is subjected to the lower end 11bf of the leading edge of the trailing edge 11br and the bottom surface extension 11b on the side of the linear part 24 (see reference). Figure 15 The force that allows a vessel to float, with a fulcrum as its buoyancy.

[0191] When subjected to a pulling force such as the rear edge 11br buoyancy, the upper side of the rear side space SP2 is free of solid material 50, thus allowing the rear edge 11br to float easily. On the other hand, the solid material 50 is firmly attached to the front side space SP1 of the bottom extension 11b and the retaining part 11a formed on the lower side, thereby holding the first member 10. In this way, when fishing with the hook-shaped member 43, the peeling resistance during the initial lifting of the first member 10 can be reduced.

[0192] (Ninth variation)

[0193] Figure 17 This is a perspective view of the first component 10 of the ninth variation of toy 1.

[0194] Figure 17 The first member 10 shown has a different construction from the upright wall 11w described in the eighth variation. In this case, it is constructed by changing the thickness of the bottom extension 11b of the first member 10. For example, as Figure 17 As shown, a thick-walled portion 11wu is formed, wherein the thickness of the upper portion 11bu increases in a stepped manner relative to the side with a thinner thickness than the bottom extension 11b. This thick-walled portion 11wu and... Figure 15 Similarly, the upper end 11tu of the protruding wall 11t shown is configured to be positioned higher than the upper part of the second member 20.

[0195] Regarding the orientation of the upright wall 11w when the first member 10 is installed, it may not be based on the orientation determined by the fitting of the concave and convex shapes as described above. For example, it may be possible to provide a display or marking near the placement section 25 to indicate the installation orientation or teaching orientation of the first member 10.

[0196] As described above, in the toy 1 of this method, the first component 10 has a first portion 11 disposed in a material storage portion 21 that is supplied with liquid material 50b and is capable of forming a solid 50 and can be connected to the solid 50, and has a second portion 12 exposed from the solid 50, thereby providing a toy 1 in which the solid 50 can be separated from the material storage portion 21 by means of the first component 10.

[0197] In the toy 1 of this method, the second part 12 is shaped to be hooked by the hook-shaped member 43, so that it can be fished out using the hook-shaped member 43. In addition, the first member 10 has a third part 13 that connects the first part 11 and the second part 12, thereby making it easy for the hook-shaped member 43 to access the second part 12.

[0198] In the toy 1 of this method, by having an extension in the first part 11 that extends along the inflow direction (f) of the linear part 24 connected to the configuration part 25 along the material 50b, the ease with which the material 50b enters the configuration part 25 can be ensured.

[0199] In the toy 1 of this method, the first part 11 is configured such that the first component 10 can stand independently relative to the placement part 25 of the uncollected material 50b, so the first component 10 can be placed easily.

[0200] In the toy 1 of this method, by making the second component 20, which has a material storage section 21, into a flat plate shape, it is possible to form a large-area figure section 23 in a flat plate shape using less material.

[0201] In the toy 1 of this method, the material storage section 21 has a figure section 23 for forming a specified figure, so the figure can be formed simply by the inflow of material 50b.

[0202] In the toy 1 of this method, by providing a first member 10 at the end of a relatively slender line-like portion 24 connected to the figurine portion 23, the figurine portion 23 can be lifted by means of the line-like portion 24 when it is lifted. As a result, when the figurine portion 23 is in the "fished" state, the line-like portion 24 is in an extended state, which can reproduce the state as if the figurine is being pulled up with a fishing line, and can generate a simulated experience of fishing.

[0203] In addition, the toy 1 using this method has an extension in the first part 11 of the first component 10. The extension extends in the same direction as the linear part 24 adjacent to the configuration part 25 (the flow direction (f) of the material 50b). Therefore, the material 50b can flow easily to the configuration part 25.

[0204] In the toy 1 of this method, since the width (W1) of the configuration part 25 is larger than the width (W2) of the linear part 24, more solid material 50 can be attached to and solidified relative to the first part 11 of the first member 10, and can be connected and maintained more reliably.

[0205] Furthermore, by configuring the depth of the arrangement section 25 to be deeper than the depth of the linear section 24, the height of the bottom surface of the first part 11 can be configured to be the same as or lower than the bottom surface 24b of the linear section 24, which allows for good flow of material 50b. By increasing the depth of the arrangement section 25, the amount of solid material 50 adhering to the first part 11 can be increased, enabling more reliable bonding and retention.

[0206] According to the toy 1 of this method, by providing the first part 11 of the first member 10 in the second member 20 at the end 21e of the line-shaped part 24, the length of the line-shaped part 24 can be maximized when the figure part 23 is lifted, and the fishing operation can be enjoyed when the line-shaped part 24 is slender and extended.

[0207] Furthermore, with the configuration unit 25 located in multiple parts of a material storage unit 21, one can enjoy different ways of catching fish from different positions.

[0208] In the toy 1 of this method, the flat second component 20 has a mounting portion 28 on its periphery 27 for mounting a third component 30 (suction cup component, etc.), so that the second component 20 can be reliably mounted by placing it on the mounting surface without moving it.

[0209] In the toy 1 of this method, the fourth component 40 is in the form of a fishing tackle having a hook-shaped component 43 that can hook the top side of the second part 12, a handle part 41, and a rope part 42 that connects the hook-shaped component 43 and the handle part 41, so that the fourth component 40 can be used to enjoy the game of fishing up fish-shaped objects made of candy or the like.

[0210] In this toy 1, a raised wall 11w is provided in the first component 10 to prevent material 50b from flowing into the rear side space SP2 on the side opposite to the linear portion 24, thereby reducing the adhesion force on the rear side in the pulling direction during the fishing operation of the figure portion 23. As a result, peeling at the start of the fishing operation becomes easier, and good operability is achieved.

[0211] The present invention has been described above in one aspect, but the invention can be appropriately modified within the scope of its technical concept. For example, in the above-described aspect, the fourth member 40 is used to lift the solid object 50, but it can also be lifted and enjoyed by pinching the second part 12 of the first member 10 with one's fingers.

[0212] In addition, in the above-described manner, the top view shape of the configuration section 25 is circular, and the bottom shape of the first part 11 of the first member 10 is also circular. However, the shapes of the configuration section 25 and the first part 11 are not limited to circular; for example, they can also be polygonal.

[0213] Furthermore, the convex extension 11g shown in the eighth variation is a protruding strip structure, but it is not limited to this structure. As long as the structure can determine the orientation of the upright wall 11w, it can be any shape. Moreover, the structure of the positioning part that determines the orientation of the first member 10 is not limited to a concave or convex shape, an indication of the setting orientation, or a display for teaching. For example, it can also be determined by the top view shape of the positioning part 25.

Claims

1. A toy comprising a first component, wherein, The first component includes: The first part is a material receiving section that can be disposed in connection with a liquid material to form a solidified product; and The second part is capable of accepting operations for separating the solid material formed in the material receiving portion from the material receiving portion.

2. The toy according to claim 1, wherein, The second part is exposed from the material when the first part is disposed in the material storage section and the material is supplied to the material storage section.

3. The toy according to claim 1, wherein, The second part has a portion that can be hooked by other hook-like components.

4. The toy according to claim 3, wherein, The hookable part is ring-shaped.

5. The toy according to claim 1, wherein, The toy has a third part that connects the first part to the second part.

6. The toy according to claim 1, wherein, The first part has a holding part that can retain the solidified solid when the second part is operated.

7. The toy according to claim 6, wherein, The retaining part is configured such that the material supplied to the material receiving part can enter.

8. The toy according to claim 7, wherein, The retaining portion has an extension that extends along the material receiving portion.

9. The toy according to claim 1, wherein, The first part is configured such that the first member is self-supporting relative to the material receiving portion that does not receive the material.

10. The toy according to claim 1, wherein, The toy includes a flat second component having the material storage portion.

11. The toy according to claim 10, wherein, The material receiving section includes: a shape section for forming a specified shape; a linear section connected to the shape section; and a placement section connected to the linear section for placing the first part of the first member.

12. The toy according to claim 11, wherein, The first part has a holding portion into which the material supplied to the material receiving portion enters. When the second part is lifted, the holding portion can hold the solidified material. When the first part is disposed in the material receiving part with a predetermined orientation, the direction in which the linear part adjacent to the disposed part extends is consistent with the direction in which the material enters the holding part.

13. The toy according to claim 11, wherein, The depth of the configuration section is greater than the depth of the linear section.

14. The toy according to claim 11, wherein, The width of the configuration section is greater than the width of the linear section.

15. The toy according to claim 10, wherein, The toy includes multiple of the first components. The material storage section of the second component has a plurality of configuration sections capable of configuring the first portion of the first component.

16. The toy according to claim 10, wherein, In the second component, a configuration portion capable of configuring the first part of the first component is provided at the end of the material receiving portion.

17. The toy according to claim 10, wherein, The second component has a mounting portion capable of mounting a third component, which can fix the second component to the mounting surface.

18. The toy according to claim 17, wherein, The mounting portion of the second component is located on the periphery of the second component.

19. The toy according to claim 17, wherein, The second component has a plurality of the aforementioned mounting portions.

20. The toy according to any one of claims 1-19, wherein, The toy includes a fourth component having a hook-like portion capable of hooking onto the second part.

21. The toy according to claim 20, wherein, The fourth component has the hook-shaped portion, the handle portion, and the rope portion that connects the hook-shaped portion to the handle portion.

22. The toy according to claim 11, wherein, The first part has a holding portion that can retain the solidified solid during operation of the second part. The retaining portion has a raised wall that, when the first portion is disposed in the disposed portion, prevents the material from entering the upper part of the retaining portion on the side opposite to the linear portion.

23. The toy according to claim 22, wherein, The raised wall is composed of a protruding wall that extends from the top.

24. The toy according to claim 22, wherein, The raised wall is formed by the stepped shape on top.

25. The toy according to claim 22, wherein, The standing wall is configured such that, when the first part is disposed in the configuration section, its upper end is located above the depth of the configuration section.

26. The toy according to claim 22, wherein, The upright wall is configured to extend from one end of the upper part of the retaining part to the other end.

27. The toy according to claim 22, wherein, The retaining portion has a protrusion on its lower surface, which is opposite to the bottom surface of the configuration portion when the first portion is disposed on the configuration portion.

28. The toy according to claim 27, wherein, The protrusion is composed of an extension that extends in a predetermined direction.

29. The toy according to claim 28, wherein, The protrusion is formed by the extensions that are generally parallel to each other.

30. The toy according to claim 28, wherein, The extension direction is the direction that intersects with the extension direction of the upright wall on the upper surface.

31. The toy according to any one of claims 22-30, wherein, The configuration unit is provided with at least one of a display that teaches the configuration direction of the first part configured in the configuration unit and a positioning unit that positions the configuration direction of the first part configured in the configuration unit.

Citation Information

Patent Citations

  • Accessory making toy

    JP2017042267A