Bouncing toy
By introducing a rotation mechanism of the accommodating part, a pedestal part and an operating part into the bounce toy, the movement of the toy is solved, and the problems of shorter game time and reduced designability in the prior art are improved, and the gameability and designability are improved.
Patent Information
- Application Number
- CN202510075218.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2024-01-19
- Filing Date
- 2025-01-17
- Publication Date
- 2025-07-22
AI Technical Summary
The existing bouncing toys have a shorter time to play in multiplayer games. Increasing the number of buttons will lead to the toy being larger and less designed.
By adopting the structural design of the accommodating part, the pedestal part and the plurality of operating parts, the movement of the accommodating part is controlled through the connection and abutment mechanism between the first rotating part and the second rotating part, the movement of the toy is realized by using the restricting part to release the restriction at a specific position.
It extends everyone's gaming time, avoids the size of toys, improves gameplay and design, and increases the randomness and stimulation of the game.
Smart Images

Figure CN120346541A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to a bouncing toy. Background Art
[0002] Patent Document 1 discloses a bouncing toy having a plurality of buttons configured such that the toy flies out when any one of the plurality of buttons is pressed.
[0003] Prior Art Documents
[0004] Patent Documents
[0005] Patent Document 1: Japanese Unexamined Patent Application Publication No. 2012-228494 Summary of the Invention
[0006] Technical Problem to be Solved by the Invention
[0007] For example, in the case of a game using the bouncing toy of Patent Document 1 with a relatively large number of people, until the end of the game, the playing time of each person becomes shorter. On the other hand, in order to extend the playing time of each person until the end of the game, considering increasing the number of buttons, in this case, since a plurality of buttons need to be provided, there is a possibility that the bouncing toy becomes larger in size, resulting in a decrease in design. Thus, in the bouncing toy of Patent Document 1, there is room for improvement from the viewpoints of playability and design.
[0008] An object of the present disclosure is to provide a bouncing toy having excellent playability and design.
[0009] Technical Solution for Solving the Technical Problem
[0010] A bouncing toy according to one aspect of the present disclosure includes: a housing portion that houses the toy; a pedestal portion that holds the housing portion in a state where the housing portion is movable; a plurality of operation portions, the pedestal portion having: at least one first rotation portion having a connecting portion and a non-connecting portion that rotates according to an operation of one of the plurality of operation portions; a second rotation portion that rotates according to the rotation of at least one first rotation portion when connected to the connecting portion, and on the other hand, does not rotate even when at least one first rotation portion rotates when in contact with the non-connecting portion; a restricting portion that restricts the movement of the housing portion in a predetermined direction in an initial state, and in a state where the second rotation portion is connected to the connecting portion, when the second rotation portion that rotates according to an operation of one operation portion reaches a predetermined position, releases the restriction of the restricting portion on the housing portion, and the housing portion moves in the predetermined direction.
[0011] Advantageous Effects of the Invention
[0012] According to the above structure, it is possible to provide a bouncing toy having excellent playability and design. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 FIG. 1 is a perspective view of a bouncing toy illustrating one embodiment of the present disclosure (hereinafter, also referred to as the present embodiment).
[0014] Figure 2 FIG. 2 is a partially enlarged perspective view of the bouncing toy with a part of the accommodating portion removed.
[0015] Figure 3 FIG. 3 is a view illustrating the engagement relationship between the first engaging joint portion and the first engaging portion and the engagement relationship between the second engaging joint portion and the second engaging portion.
[0016] Figure 4 FIG. 4 is a bottom view of the bouncing toy with the base member removed.
[0017] Figure 5 FIG. 5 is a view of the bouncing toy when viewed from below with the base member and the cover member removed.
[0018] Figure 6 FIG. 6 is a top perspective view of the bouncing toy with the accommodating portion, the cover member, and the operation portion removed.
[0019] Figure 7 FIG. 7 is a view of the vicinity of the restricting portion in the state where the accommodating portion, the cover member, and the operation portion are removed.
[0020] Figure 8 FIG. 8 is a top view of the bouncing toy with the accommodating portion and the cover member removed.
[0021] Figure 9 FIG. 9 is a top view of the bouncing toy with the accommodating portion and the cover member removed.
[0022] Figure 10 FIG. 10 is a side view of the bouncing toy with a part of the accommodating portion removed.
[0023] Figure 11 FIG. 11 is a perspective view of the connecting member.
[0024] Figure 12 FIG. 12 is a top view of the jumping toy in a state where one operation portion has been operated after the accommodating portion and the cover member have been removed.
[0025] Figure 13 FIG. 13 is a top view of the bouncing toy at the end of the game with the accommodating portion and the cover member removed.
[0026] Figure 14 FIG. 14 is a side view of the bouncing toy at the end of the game with a part of the accommodating portion removed.
[0027] Figure 15 Is a three-dimensional view of a bouncing toy at the end of the example game. Detailed implementation mode
[0028] Hereinafter, with reference to the accompanying drawings, a bouncing toy according to an embodiment of the present disclosure will be described in detail. It should be noted that in the description of this embodiment, for the sake of convenience of description, the "left-right direction", "up-down direction", and "front-back direction" are sometimes appropriately mentioned. These directions are relative directions set for Figure 1 the example bouncing toy 100. Here, the "left-right direction" is a direction including the "left direction" and the "right direction". The "up-down direction" is a direction including the "up direction" and the "down direction". The "front-back direction" is a direction including the "front direction" and the "back direction". In addition, in each figure, the symbol U shown in the figure represents the up direction. The symbol D represents the down direction. The symbol L represents the left direction. The symbol R represents the right direction. The symbol F represents the front direction. The symbol B represents the back direction.
[0029] (Overall structure)
[0030] First, with reference to Figures 1 to 11 the overall structure of the bouncing toy 100 will be described. As Figure 1 shown in the example, the bouncing toy 100 includes a housing portion 1, a pedestal portion 2, and a plurality of operation portions 3. In this embodiment, the bouncing toy 100 includes three operation portions 3A, 3B, and 3C. In addition, the operation portions 3 (3A, 3B, 3C) rotate respectively according to the user's operation. In this embodiment, the Figure 1 example state is called the initial state.
[0031] The housing portion 1 is configured to house the toy 200. It should be noted that in this embodiment, the toy 200 is a toy imitating a dinosaur. The housing portion 1 includes a placement portion 11 and an enclosing portion 12. In addition, in this embodiment, the toy 200 is connected to the placement portion 11 by a toy imitating a chain. However, the toy 200 may not be connected to the placement portion 11 by a toy imitating a chain. In addition, as will be described in detail later, the housing portion 1 can move backward and upward (an example of a specified direction) by the rotation of the placement portion 11.
[0032] The placement portion 11 is a plate-like member having a substantially rectangular parallelepiped shape. The toy 200 is placed on the placement portion 11. The placement portion 11 has a main body portion 111, an engaging mechanism 112, and a connecting portion 113.
[0033] As Figure 1 , Figure 2 and Figure 10As shown in the example, the main body portion 111 is a plate-like member. The main body portion 111 has an insertion hole 1111 for inserting a part of the surrounding portion 12, shaft portions 1112 extending in the front-rear direction from the four corners of the placement portion 11, a first through hole 1113, and a second through hole 1114. In addition, for the convenience of illustration, in Figure 1 only one insertion hole 1111 is shown, but in the present embodiment, the main body portion 111 has two insertion holes 1111. The insertion holes 1111 are provided on the left side surface and the right side surface of the main body portion 111. In addition, for the convenience of illustration, in Figure 1 only two shaft portions 1112 are shown, but in the present embodiment, the main body portion 111 has four shaft portions 1112. The shaft portions 1112 are provided at the front end portions and the rear end portions of the left side surface and the right side surface of the main body portion 111. As Figure 3 shown in the example, the first through hole 1113 and the second through hole 1114 are provided in the rear side portion of the main body portion 111.
[0034] As Figure 1 and Figure 2 shown in the example, the engaging mechanism 112 has a frame portion 1121, a first engagement portion 1122, a second engagement portion 1123, a shaft member 1124, and a contact member 1125.
[0035] The frame portion 1121 is substantially rectangular parallelepiped-shaped. Inside the frame portion 1121, the first engagement portion 1122, the second engagement portion 1123, the shaft member 1124, and the contact member 1125 are accommodated.
[0036] The first engagement portion 1122 is substantially L-shaped in a side view. The first engagement portion 1122 has a hole portion 1122a. The left end portion of the shaft member 1124 is inserted into the hole portion 1122a.
[0037] The second engagement portion 1123 is substantially L-shaped in a side view. The second engagement portion 1123 has a hole portion 1123a. The right end portion of the shaft member 1124 is inserted into the hole portion 1123a.
[0038] The shaft member 1124 includes a main body portion 1124a and a pressing portion 1124b. The main body portion 1124a is substantially cylindrical. The pressing portion 1124b is provided at substantially the center of the main body portion 1124a. The pressing portion 1124b is provided so as to protrude rearward from the main body portion 1124a. The pressing portion 1124b is configured to press the contact member 1125.
[0039] The contact member 1125 is a plate-like member. The contact member 1125 is configured to contact the pressing portion 1124b of the shaft member 1124.
[0040] As Figure 1As shown in the example, the surrounding portion 12 has a shape imitating a cage. The surrounding portion 12 includes a first member 121 and a second member 122.
[0041] A hole portion 121a is provided at the lower end portion of the first member 121. It should be noted that for the convenience of illustration, only the hole portion 121a on the rear side of the first member 121 is shown in Figure 1 , but in the present embodiment, the hole portion 121a is provided not only on the rear side of the first member 121 but also on the front side of the first member 121. A hole portion 122a is provided at the lower end portion of the second member 122. It should be noted that for the convenience of illustration, only the hole portion 122a on the rear side of the second member 122 is shown in Figure 1 , but in the present embodiment, the hole portion 122a is provided not only on the rear side of the second member 122 but also on the front side of the second member 122. Shaft portions 1112 are respectively inserted into the hole portion 121a and the hole portion 122a. Therefore, the first member 121 and the second member 122 can rotate in a direction away from the main body portion 111 of the mounting portion 11 (outer direction) or in a direction approaching the main body portion 111 of the mounting portion 11 (inner direction).
[0042] As Figure 3 shown in the example, the first member 121 has a first engaging portion 1211. The first engaging portion 1211 is provided at the rear end portion of the first member 121. The first engaging portion 1211 is configured to be able to engage with the first engaging portion 1122. In addition, in the initial state, the first engaging portion 1211 is engaged with the first engaging portion 1122.
[0043] The second member 122 has a second engaging portion 1221. The second engaging portion 1221 is provided at the rear end portion of the second member 122. The second engaging portion 1221 is configured to be able to engage with the second engaging portion 1123. In addition, in the initial state, the second engaging portion 1221 is engaged with the second engaging portion 1123.
[0044] In the initial state, the first engaging portion 1211 is engaged with the first engaging portion 1122, and the second engaging portion 1221 is engaged with the second engaging portion 1123. Therefore, the state of the surrounding portion 12 is in a closed state in the initial state. The closed state means the state where the surrounding portion 12 surrounds the toy 200. As Figure 1As shown in the example, in the closed state (initial state), the first member 121 and the second member 122 are in contact. However, for example, when the main body portion 111 of the accommodating portion 1 moves backward and upward, the engagement relationship between the first engaging portion 1211 and the first engaging portion 1122 and the engagement relationship between the second engaging portion 1221 and the second engaging portion 1123 are released. At this time, the first member 121 and the second member 122 rotate away from the main body portion 111. As a result, the contact relationship between the first member 121 and the second member 122 is released, and the state of the surrounding portion 12 changes from the closed state to the open state.
[0045] As Figure 10 shown in the example, the connecting portion 113 is provided at the lower portion of the main body portion 111. The connecting portion 113 is configured to be connected to the connecting member 29 of the pedestal portion 2 described later.
[0046] As Figure 1 shown in the example, the pedestal portion 2 is disposed below the accommodating portion 1. The pedestal portion 2 is substantially T-shaped in plan view. As Figure 1 , Figure 2 , Figure 4 and Figure 6 shown in the example, the pedestal portion 2 includes a base member 21, a cover member 22, a first rotating portion 23, a second rotating portion 24, a third rotating body 25, a fourth rotating body 26, a restricting portion 27, a first pressing portion 28, and a connecting member 29. In addition, in the present embodiment, the pedestal portion 2 has three first rotating portions 23. That is, in the present embodiment, the pedestal portion 2 has a plurality of first rotating portions 23 corresponding to the plurality of operating portions 3.
[0047] As Figure 1 and Figure 6 shown in the example, the base member 21 includes a base main body portion 211, a first rod-shaped portion 212, and a second rod-shaped portion 213. The base main body portion 211 is substantially flat. The base main body portion 211 is substantially T-shaped in plan view. The base main body portion 211 constitutes the bottom surface of the bouncing toy 100. The first rod-shaped portion 212 is substantially cylindrical. The first rod-shaped portion 212 extends upward from the base main body portion 211. The first rod-shaped portion 212 is inserted into the operating portion 3. The second rod-shaped portion 213 is substantially cylindrical. The second rod-shaped portion 213 extends upward from the base main body portion 211. The second rod-shaped portion 213 is inserted into the first rotating body 241 of the second rotating portion 24 described later.
[0048] As Figure 1 shown in the example, the cover member 22 is disposed so as to cover the base member 21. The cover member 22 is substantially T-shaped in plan view. Three hole portions 221 are provided in the cover member 22. The hole portions 221 are substantially circular. The operating portion 3 projects upward from each of the hole portions 221.
[0049] Next, referring toFigures 4 to 6 The first rotating part 23 will be described. According to the rotation of one of the plurality of operating parts 3, the first rotating part 23 corresponding to the one operating part 3 rotates. The first rotating part 23 is arranged below the operating part 3. The first rotating part 23 is arranged outside the second rotating part 24. The first rotating part 23 is substantially circular in a top view. Each of the plurality of first rotating parts 23 has a hole part 231, a connecting part 232, a non-connecting part 233, a first fitting part 234, and an elastic body 235.
[0050] The hole part 231 is provided at substantially the center of the first rotating part 23. The first rod-shaped part 212 of the pedestal part 2 is inserted into the hole part 231.
[0051] The connecting part 232 has a plurality of tooth parts 232a. The tooth parts 232a extend outside the first rotating part 23 and in the plane direction of the first rotating part 23. The connecting part 232 is configured to be connected to the second rotating part 24.
[0052] The non-connecting part 233 is smooth. Therefore, unlike the connecting part 232, the non-connecting part 233 does not have tooth parts. The non-connecting part 233 is configured to abut against the second rotating part 24. In addition, in the present embodiment, the ratios of the connecting part 232 and the non-connecting part 233 each of the plurality of first rotating parts 23 has are equal, but this ratio may also be different for each first rotating part 23.
[0053] The first fitting part 234 is provided along the circumferential direction of the first rotating part 23. The first fitting part 234 is substantially circular in a top view. The diameter of the first fitting part 234 is smaller than the diameter of the first rotating part 23. The first fitting part 234 has a plurality of tooth parts 234a. The plurality of tooth parts 234a are provided over the entire circumferential direction of the first fitting part 234. The tooth parts 234a extend upward with respect to the plane of the first rotating part 23. That is, the tooth parts 234a extend toward the operating part 3.
[0054] The elastic body 235 is, for example, a spring member. The elastic body 235 is arranged so as to cover the first rod-shaped part 212. The lower end part of the elastic body 235 contacts the upper side plane part of the first rotating part 23, and the upper end part of the elastic body 235 contacts the operating part 3. Therefore, the elastic body 235 applies an upward elastic force to the operating part 3.
[0055] The second rotating part 24 is arranged at a position closer to the inside of the base main body part 211 than the three first rotating parts 23. The second rotating part 24 includes a first rotating body 241 and a second rotating body 242. The first rotating body 241 is substantially circular in a top view. Each of the plurality of first rotating bodies 241 has a hole part 2411 and a tooth part 2412.
[0056] The hole portion 2411 is provided at approximately the center of the first rotating body 241. The second rod-shaped portion 213 of the pedestal portion 2 is inserted into the hole portion 2411.
[0057] The tooth portion 2412 is provided over the entire circumference of the first rotating body 241. The tooth portion 2412 extends in the outer direction of the first rotating body 241 and in the planar direction of the first rotating body 241. The tooth portion 2412 is configured to be connectable to the tooth portion 232a of the connecting portion 232. Accordingly, the first rotating body 241 can be connected to the connecting portion 232. In addition, the tooth portion 2412 can also be connected to the second rotating body 242. Accordingly, the first rotating body 241 can also be connected to the second rotating body 242. In this way, the first rotating body 241 can be connected to both the connecting portion 232 of the first rotating portion 23 and the second rotating body 242. That is, the second rotating portion 24 can be connected to the first rotating portion 23.
[0058] The tooth portion 2412 is respectively connected to the connecting portion 232 of the first rotating portion 23, or abuts against the non-connecting portion 233 of the first rotating portion 23. That is, the first rotating body 241 of the second rotating portion 24 is respectively connected to the connecting portion 232 of the first rotating portion 23, or abuts against the non-connecting portion 233 of the first rotating portion 23. Accordingly, when the first rotating body 241 is connected to the connecting portion 232 of the first rotating portion 23, it rotates corresponding to the rotation of the first rotating portion 23. On the other hand, when the first rotating body 241 abuts against the non-connecting portion 233 of the first rotating portion 23, it does not rotate even if the first rotating portion 23 rotates.
[0059] The second rotating body 242 rotates corresponding to the rotation of the first rotating body 241. Accordingly, when the first rotating body 241 is connected to the connecting portion 232 of the first rotating portion 23, the second rotating body 242 rotates corresponding to the rotation of the first rotating body 241. On the other hand, when the first rotating body 241 abuts against the non-connecting portion 233 of the first rotating portion 23, the second rotating body 242 does not rotate even if the first rotating portion 23 rotates. The second rotating body 242 has a main body portion 2421, a shaft portion 2422, an elastic body 2423, a rotating member 2424, and a fifth rotating body 2425.
[0060] The main body portion 2421 is substantially circular in plan view. The diameter of the main body portion 2421 is larger than the diameter of the first rotating portion 23 and the diameter of the first rotating body 241. As Figures 4 to 7 shown in the example, the main body portion 2421 has a plurality of tooth portions 2421a, a plurality of tooth portions 2421b, a cylindrical portion 2421c, and a second pressing portion 2421d. In addition, for the convenience of illustration, only one second pressing portion 2421d is shown in Figure 6 and Figure 7 , but in the present embodiment, the main body portion 2421 has two second pressing portions 2421d.
[0061] A plurality of tooth portions 2421a and a plurality of tooth portions 2421b are provided on the entire circumference of the main body portion 2421. The tooth portion 2421a extends in the outer direction of the second rotating body 242 and in the planar direction of the second rotating body 242. The tooth portion 2421a is connected to the tooth portion 232a of each connecting portion 232.
[0062] The tooth portion 2421b extends in the inner direction of the second rotating body 242 and in the planar direction of the second rotating body 242. The tooth portion 2421b is configured to be connected to the third rotating body 25.
[0063] The cylindrical portion 2421c is substantially cylindrical. A shaft portion 2422 is inserted into the cylindrical portion 2421c.
[0064] As Figure 6 and Figure 7 shown in the example, the second pressing portion 2421d extends from the cylindrical portion 2421c toward the outside of the cylindrical portion 2421c in the planar direction of the second rotating body 242. The second pressing portion 2421d is substantially I-shaped in a top view. Since the second pressing portion 2421d is provided on the main body portion 2421, when the main body portion 2421 rotates, the second pressing portion 2421d also rotates corresponding to the rotation of the main body portion 2421. The second pressing portion 2421d is configured to press at least a part (specifically, the rotating portion 273 of the restricting portion 27 described later) of the pressing restricting portion 27 when the second rotating portion 24 that rotates according to the operation of a user on one operation portion 3 reaches a specified position.
[0065] The shaft portion 2422 is substantially cylindrical. The diameter of the shaft portion 2422 is slightly shorter than the diameter of the cylindrical portion 2421c. An outer extension portion 2422a that is substantially circular in a top view is provided on the upper portion of the shaft portion 2422.
[0066] The elastic body 2423 is, for example, a spring member. The upper end portion of the elastic body 2423 contacts the outer extension portion 2422a of the shaft portion 2422, and the lower end portion of the elastic body 2423 contacts the upper planar portion of the rotating member 2424.
[0067] A hole portion (not shown) is provided substantially at the center of the rotating member 2424. The shaft portion 2422 is inserted into the hole portion. Therefore, when the main body portion 2421 rotates, the rotating member 2424 rotates corresponding to the rotation of the main body portion 2421. The rotating member 2424 has a fitting portion 2424a.
[0068] The fitting portion 2424a is provided at the lower end portion of the rotating member 2424. The fitting portion 2424a is provided so as to extend downward from the rotating member 2424.
[0069] The fifth rotating body 2425 is disposed between the main body portion 2421 and the rotating member 2424. A hole portion (not shown) is provided at substantially the center of the fifth rotating body 2425. The shaft portion 2422 is inserted into this hole portion. Therefore, when the main body portion 2421 rotates, the fifth rotating body 2425 rotates according to the rotation of the main body portion 2421. The fifth rotating body 2425 has a plurality of tooth portions 2425a and fitting portions 2425b.
[0070] The tooth portion 2425a extends in the outer direction of the fifth rotating body 2425 and in the planar direction of the fifth rotating body 2425. The tooth portion 2425a is configured to be connected to the fourth rotating body 26.
[0071] The fitting portion 2425b is provided to extend upward from the fifth rotating body 2425. The fitting portion 2425b is fitted with the fitting portion 2424a of the rotating member 2424.
[0072] The third rotating body 25 is substantially circular in plan view. The third rotating body 25 has a tooth portion (not shown) connected to the tooth portion 2421b of the main body portion 2421 and a tooth portion 251 connected to the fourth rotating body 26. Therefore, the third rotating body 25 rotates corresponding to the rotation of the main body portion 2421.
[0073] The fourth rotating body 26 is substantially circular in plan view. The fourth rotating body 26 has a tooth portion 261 connected to the tooth portion 2425a of the fifth rotating body 2425 and a tooth portion (not shown) connected to the third rotating body 25. Therefore, the fourth rotating body 26 rotates corresponding to the rotation of the third rotating body 25. It should be noted that when the fourth rotating body 26 rotates, the fifth rotating body 2425 rotates. Therefore, if the main body portion 2421 rotates, the third rotating body 25, the fourth rotating body 26, and the fifth rotating body 2425 also rotate.
[0074] Next, with reference to Figures 6 to 8 the restricting portion 27 will be described. The restricting portion 27 is configured to restrict the movement of the accommodating portion 1 in a predetermined direction (in the present embodiment, the rear upper direction) in the initial state. The restricting portion 27 has a frame portion 271, a shaft portion 272, a rotating portion 273, a plate-like member 274, an elastic body 275, and a shaft member 276.
[0075] The frame portion 271 has a substantially rectangular parallelepiped shape. The lower side portion of the connecting member 29 (refer to Figure 2 ) is accommodated inside the frame portion 271. In addition, the shaft portion 272, the rotating portion 273, the plate-like member 274, the elastic body 275, and the shaft member 276 are accommodated inside the frame portion 271. The frame portion 271 is provided with a hole portion 2711.
[0076] The hole portion 2711 is a substantially circular hole. The hole portions 2711 are provided on the right side surface and the left side surface of the frame portion 271 respectively. A shaft member 276 is inserted into the hole portion 2711.
[0077] The shaft portion 272 is substantially cylindrical. The shaft portion 272 is provided so as to extend upward from the bottom surface of the frame portion 271.
[0078] The rotating portion 273 includes a main body portion 2731, a hole portion 2732, a contact portion 2733, and an engaging portion 2734. The main body portion 2731 is substantially I-shaped in plan view.
[0079] The hole portion 2732 is provided substantially at the center of the main body portion 2731. The shaft portion 272 is inserted into the hole portion 2732.
[0080] The contact portion 2733 is provided at the rear end portion of the main body portion 2731. The contact portion 2733 protrudes toward the outside direction (rearward) of the main body portion 2731. The contact portion 2733 can contact the second pressing portion 2421d of the second rotating body 242. When the contact portion 2733 is pressed by the second pressing portion 2421d, it moves in the pressing direction of the second pressing portion 2421d (right direction in this embodiment). Therefore, when the contact portion 2733 is pressed by the second pressing portion 2421d, the rotating portion 273 rotates counterclockwise about the shaft portion 272.
[0081] The engaging portion 2734 is provided at one end portion of the main body portion 2731 where the contact portion 2733 is not provided (i.e., the front end portion of the main body portion 2731). That is, the engaging portion 2734 is provided on the opposite side of the contact portion 2733. The engaging portion 2734 can engage with the engaging joint portion 293 of the connecting member 29 described later. In the initial state, the engaging portion 2734 is engaged with the engaging joint portion 293.
[0082] The plate-like member 274 is substantially I-shaped in plan view. The leg portions of the plate-like member 274 are received in the receiving holes (not shown) provided in the bottom surface of the frame portion 271. The upper surface of the plate-like member 274 contacts the lower end portion of the elastic body 275. The lower surface of the plate-like member 274 contacts the upper end portion of the shaft portion 272.
[0083] The elastic body 275 is, for example, a spring member. The lower end portion of the elastic body 275 contacts the upper surface of the plate-like member 274, and the upper end portion of the elastic body 275 is received inside the connecting member 29 (refer to Figure 2 ).
[0084] The shaft member 276 is substantially cylindrical. Both end portions of the shaft member 276 are inserted into the hole portion 2711 of the frame portion 271.
[0085] As Figure 9As shown in the example, the first pressing portion 28 is substantially T-shaped in plan view. The first pressing portion 28 presses the contact portion 33 of the operation portion 3 described below.
[0086] As Figure 10 shown in the example, the connecting member 29 is disposed between the mounting portion 11 of the accommodating portion 1 and the restricting portion 27. As Figure 11 shown in the example, the connecting member 29 includes a main body portion 291, a hole portion 292, and an engaging joint portion 293.
[0087] The main body portion 291 is substantially S-shaped in side view. The main body portion 291 is hollow. A part of the elastic body 275 (see Figure 6 ) of the restricting portion 27 is accommodated inside the main body portion 291. In addition, the elastic body 275 applies an upward elastic force to the main body portion 291. As Figure 10 shown in the example, the upper end portion of the main body portion 291 is connected to the connecting portion 113 of the mounting portion 11.
[0088] As Figure 11 shown in the example, the hole portion 292 is provided at the lower end portion of the main body portion 291. The shaft member 276 (see Figure 6 ) of the restricting portion 27 is inserted into the hole portion 292. Therefore, the lower end portion of the connecting member 29 is connected to the restricting portion 27 via the shaft member 276. In addition, since the lower end portion of the connecting member 29 is connected to the restricting portion 27, the connecting member 29 can rotate about the shaft member 276.
[0089] The engaging joint portion 293 is provided at the lower end portion of the main body portion 291. The engaging receiving portion 293 is substantially quadrangular pyramid-shaped. The engaging joint portion 293 can engage with the engaging portion 2734 of the rotating portion 273. In addition, in the initial state, the engaging joint portion 293 is engaged with the engaging portion 2734.
[0090] Before the user rotates the operation portion 3, since the engaging portion 2734 is engaged with the engaging joint portion 293, as Figure 10 shown in the example, the connecting member 29 does not rotate even when an upward elastic force is applied from the elastic body 275 of the restricting portion 27. However, when the second rotating body 242 rotates and the second pressing portion 2421d contacts the contact portion 2733 of the rotating portion 273, the second pressing portion 2421d presses the rotating portion 273. The rotating portion 273 rotates counterclockwise when pressed by the second pressing portion 2421d. When the rotating portion 273 rotates counterclockwise, the engagement relationship between the engaging portion 2734 and the engaging joint portion 293 is released. When the engagement relationship between the engaging portion 2734 and the engaging receiving portion 293 is released, the connecting member 29 rotates about the shaft member 276 by the upward elastic force from the elastic body 275.
[0091] As Figure 1 ,Figure 5 and Figure 9 As shown in the example, the operation unit 3 is, for example, a dial that is substantially circular when viewed from above. The operation unit 3 has a substantially cylindrical shape. The operation unit 3 can be rotated according to the operation of the user. The operation unit 3 has a hole portion 31, a second fitting portion 32, a plurality of contact portions 33, and a plurality of step portions 34.
[0092] The hole portion 31 is provided in a substantially central portion of the operation unit 3. The first rod-shaped portion 212 provided in the base member 21 is inserted into the hole portion 31. Therefore, for example, when the user rotates the operation unit 3 while holding the operation unit 3, the operation unit 3 rotates about the first rod-shaped portion 212 as the rotation axis. That is, for example, when the user rotates the operation unit 3 while holding the operation unit 3, the operation unit 3 rotates about the rotation axis AX1 (refer to Figure 9 ).
[0093] As Figure 5 shown in the example, the second fitting portion 32 is provided along the circumferential direction of the operation unit 3. The second fitting portion 32 is substantially circular when viewed from above. The diameter of the second fitting portion 32 is substantially equal to the diameter of the first fitting portion 234 of the first rotating portion 23. The second fitting portion 32 has a plurality of tooth portions 32a. The plurality of tooth portions 32a are provided over the entire circumferential direction of the second fitting portion 32. The tooth portions 32a extend downward with respect to the plane of the operation unit 3. That is, the tooth portions 32a extend toward the first fitting portion 234. In the initial state, the second fitting portion 32 is pushed upward by the elastic force of the elastic body 235, and thus does not engage with the first fitting portion 234. However, when a force in the opposite direction (downward in the present embodiment) of the direction of the elastic force of the elastic body 235 (upward in the present embodiment) is applied to the operation unit 3, the second fitting portion 32 descends and engages with the first fitting portion 234.
[0094] For example, in a state where the first fitting portion 234 of the first rotating portion 23 corresponding to the operation unit 3A and the second fitting portion 32 of the operation unit 3A are engaged, if the user rotates the operation unit 3A, the first rotating portion 23 rotates corresponding to the rotation of the operation unit 3A. If the first rotating portion 23 corresponding to the operation unit 3A rotates, the second rotating portion 24 (that is, the first rotating body 241 and the second rotating body 242) rotates. When the second rotating portion 24 rotates, the second pressing portion 2421d contacts the contact portion 2733 of the rotating portion 273. As a result, the restricting portion 27 is pressed by the second pressing portion 2421d. When the rotating portion 273 of the restricting portion 27 is pressed by the second pressing portion 2421d, the rotating portion 273 rotates, and as a result, the engagement relationship between the engaging portion 2734 and the engaging joint portion 293 is released, and the connecting member 29 rotates.
[0095] As Figure 9As shown in the example, the contact portion 33 is provided along the rotation direction of the operation portion 3. The contact portion 33 is smooth. The contact portion 33 is bent in a plan view. One of the plurality of contact portions 33 is pressed by the first pressing portion 28.
[0096] The stepped portion 34 is formed between the plurality of contact portions 33. Therefore, the number of the contact portions 33 is equal to the number of the stepped portions 34. In addition, in the present embodiment, the number of the contact portions 33 and the number of the stepped portions 34 are eight. The stepped portion 34 includes a first end portion 341 and a second end portion 342. The first end portion 341 is located at a position separated from the rotation axis AX1 of the operation portion 3 by a predetermined distance. The second end portion 342 is located at a position closer to the rotation axis AX1 of the operation portion 3 than the first end portion 341. For example, for the operation portion 3A, the first end portion 341A communicates with one contact portion 33A, and the second end portion 342A communicates with another contact portion 33B. In addition, the structures of the operation portion 3B and the operation portion 3C are the same as the structure of the operation portion 3A.
[0097] (Game method of the bouncing toy 100)
[0098] Next, with reference to Figure 9 、 Figure 10 and Figures 12 to 15 the game method of the bouncing toy 100 will be described. In the bouncing toy 100, a user of the game, for example, draws a card face down from a plurality of cards with numbers written thereon, and performs a rotation operation on the operation portion 3 for the number of times corresponding to the number written on the drawn card. However, the user can also use a dice instead of a card to determine the number of rotation operations on the operation portion 3. In this case, the user rolls the dice and performs a rotation operation on the operation portion 3 for the number shown on the dice. In addition, in the present embodiment, each rotation operation on the operation portion 3 does not mean rotating the operation portion 3 for one week, but rotating the operation portion 3 until a contact sound such as "click" described later is generated. In a state where the first pressing portion 28 presses the contact portion 33A of the operation portion 3A (that is, Figure 9 the state shown in the example), if the user rotates the operation portion 3A clockwise, as Figure 12 shown in the example, the portion pressed by the first pressing portion 28 changes from the contact portion 33A to the contact portion 33B. More specifically, in this case, corresponding to the rotation of the operation portion 3A, the first pressing portion 28 moves from one contact portion 33A among the plurality of contact portions 33 over the stepped portion 34A and contacts another contact portion 33B adjacent to the contact portion 33A.
[0099] When the first pressing portion 28 crosses the stepped portion 34A and contacts the contact portion 33B, a contact sound such as "click" is generated. When this contact sound is generated, one rotation operation is performed on the operation portion 3. That is, for example, when the number recorded on the card drawn from a plurality of cards is "3", the user performs a rotation operation on at least one operation portion 3 to generate three "click" contact sounds. In addition, at this time, the user can either rotate the same operation portion 3 three times, or perform a rotation operation on each of the operation portions 3A, 3B, and 3C once, or perform a rotation operation on the operation portion 3B once after performing two rotation operations on the operation portion 3A. Repeating this operation, a user who changes the state of the surrounding portion 12 from the closed state to the open state fails, for example. However, it can also be set that a user who changes the state of the surrounding portion 12 from the closed state to the open state wins.
[0100] For example, as a result of the number recorded on the card drawn from a plurality of cards being "6", the user performs 6 rotation operations on the operation portion 3A. In this case, the user applies a downward force to the operation portion 3A, and on the basis of engaging the first engaging portion 234 of the first rotating portion 23 corresponding to the operation portion 3A and the second engaging portion 32 of the operation portion 3A, rotates the operation portion 3A 6 times clockwise. When the first rotating body 241 of the second rotating portion 24 is connected to the connecting portion 232 of the first rotating portion 23 corresponding to the operation portion 3A, the second rotating portion 24 (the first rotating body 241 and the second rotating body 242) rotates corresponding to the rotation of the first rotating portion 23 corresponding to the operation portion 3A. On the other hand, when the first rotating body 241 of the second rotating portion 24 abuts against the non-connecting portion 233 of the first rotating portion 23 corresponding to the operation portion 3A, even if the first rotating portion 23 corresponding to the operation portion 3A rotates, the second rotating portion 24 (the first rotating body 241 and the second rotating body 242) does not rotate.
[0101] In the present embodiment, in the first and second rotation operations, the first rotating body 241 of the second rotating portion 24 abuts against the non-connecting portion 233, and in the third to sixth rotation operations, the first rotating body 241 of the second rotating portion 24 is connected to the connecting portion 232. That is, in the present embodiment, the second rotating portion 24 (the first rotating body 241 and the second rotating body 242) does not rotate in the first and second rotation operations, but rotates in the third to sixth rotation operations. In addition, before the user rotates the operation portion 3A, the engaging portion 2734 of the rotating portion 273 is engaged with the engaging joint portion 293 of the connecting member 29. Moreover, before the user rotates the operation portion 3A, the first engaging joint portion 1211 is engaged with the first engaging portion 1122, and the second engaging joint portion 1221 is engaged with the second engaging portion 1123. Therefore, before the user rotates the operation portion 3A, the state of the surrounding portion 12 is in the closed state in the initial state.
[0102] As Figure 10 shown in the example, before the user rotates the operation unit 3A, the engaging portion 2734 engages with the engagement receiving portion 293. Therefore, even if an elastic force is applied upward from the elastic body 275 of the restricting portion 27 (see Figure 6 ), the connecting member 29 does not rotate.
[0103] However, as Figure 13 shown in the example, when the second rotating body 242 rotates and the contact portion 2733 of the second pressing portion 2421d with the rotating portion 273 comes into contact, the second pressing portion 2421d presses the rotating portion 273. The rotating portion 273 rotates counterclockwise when pressed by the second pressing portion 2421d. When the rotating portion 273 rotates counterclockwise, the engagement relationship between the engaging portion 2734 and the engagement joint portion 293 is released.
[0104] When the engagement relationship between the engaging portion 2734 and the engagement joint portion 293 is released, as Figure 14 shown in the example, the connecting member 29 rotates backward and upward about the shaft member 276 of the restricting portion 27 by the upward elastic force of the elastic body 275. In addition, the main body portion 291 of the connecting member 29 is connected to the connecting portion 113 of the mounting portion 11. Therefore, when the connecting member 29 rotates, the accommodating portion 1 rotates backward and upward about the shaft member 1124 of the engaging mechanism 112. In addition, when the accommodating portion 1 rotates, the engagement relationship between the first engagement joint portion 1211 and the first engaging portion 1122 and the engagement relationship between the second engagement joint portion 1221 and the second engaging portion 1123 are released. At this time, the first member 121 and the second member 122 rotate in a direction away from the main body portion 111. As a result, as Figure 15 shown in the example, the abutting relationship between the first member 121 and the second member 122 is released, and the state of the surrounding portion 12 changes from the closed state to the open state. At this time, the toy 200 flies backward from the accommodating portion 1 due to the backward and upward rotation of the mounting portion 11. When the state of the surrounding portion 12 changes from the closed state to the open state, the winner is determined.
[0105] In the case of determining the winner and starting the next game, the user can, for example, move the accommodating portion 1 forward while holding the accommodating portion 1 to return to the initial state. When the user moves the accommodating portion 1 forward, the mounting portion 11 and the connecting member 29 connected to the mounting portion 11 rotate forward and downward. When the connecting member 29 rotates, the engagement joint portion 293 of the connecting member 29 comes into contact with the engaging portion 2734 of the rotating portion 273. As a result, the engaging portion 2734 returns to the position in the initial state.
[0106] However, in the case where a relatively large number of people play a game using a conventional bouncing toy, the playing time of each person until the end of the game is often short. On the other hand, in order to extend the playing time of each person until the end of the game, considering increasing the number of buttons, but in this case, multiple buttons need to be provided, which may cause the bouncing toy to become larger and result in a decrease in design. Thus, in the conventional bouncing toy, there is room for improvement from the viewpoints of gameplay and design.
[0107] According to the above structure, only when connected to the connecting portion 232 of the first rotating portion 23, the first rotating body 241 of the second rotating portion 24 rotates corresponding to the rotation of the first rotating portion 23. Therefore, even without excessively increasing the number of operation portions 3, it is possible to extend, for example, the playing time of each person until the end of the game. In addition, in the bouncing toy 100, when the accommodating portion 1 is moved in a predetermined direction (in this embodiment, the upper rear) by the rotation of the second rotating portion 24, the game ends. Also, in the bouncing toy 100, the number of operation portions 3 does not need to be excessively increased, so it is possible to prevent the bouncing toy 100 from becoming larger and the design from deteriorating. Thus, according to the bouncing toy 100, the gameplay and design can be improved.
[0108] In addition, according to the above structure, a force in the direction opposite to the direction of the elastic force (in this embodiment, upward) exerted by the elastic body 235 of the first rotating portion 23 on the operation portion 3 (in this embodiment, downward) is applied to the operation portion 3, whereby the second engaging portion 32 of the operation portion 3 engages with the first engaging portion 234. Moreover, by operating the operation portion 3 in a state where the first engaging portion 234 and the second engaging portion 32 are engaged, the first rotating portion 23 rotates. That is, although the first rotating portion 23 does not rotate in a state where the first engaging portion 234 and the second engaging portion 32 are not engaged, it rotates in a state where the first engaging portion 234 and the second engaging portion 32 are engaged. Therefore, according to this bouncing toy 100, for example, only the operation portion 3 operated by the user moves, and the other operation portions 3 do not move. Therefore, it is impossible to know which operation portion 3 the first rotating portion 23 corresponding to is in a connected state or a non-connected state with the first rotating body 241 of the second rotating portion 24.
[0109] In addition, according to the above structure, the first pressing portion 28 provided in the pedestal portion 2 contacts another contact portion 33B adjacent to one contact portion 33A across the step portion 34A as the operation portion 3 rotates from one contact portion 33A among the plurality of contact portions 33. When the first pressing portion 28 contacts another contact portion 33B across the step portion 24A, a contact sound is generated. Therefore, when the first pressing portion 28 contacts another contact portion 33B, the user can recognize the situation where the operation portion 3 is properly rotated by perceiving the contact sound. In addition, for example, when playing with the bouncing toy 100, in the case of a rotational operation of drawing a card or rolling a die on the operation portion 3 to display a number, not only the user who rotates the operation portion 3 but also other users can perceive that a rotational operation has been performed on the operation portion 3 by the generation of the contact sound.
[0110] In addition, according to the above structure, the first end portion 341A located at a position a predetermined distance away from the rotation axis AX1 of the operation portion 3 communicates with one contact portion 33A, and the second end portion 342A located at a position closer to the rotation axis AX1 of the operation portion 3 than the first end portion 341A communicates with another contact portion 33B adjacent to the one contact portion 33A. Therefore, although the position where the first pressing portion 28 contacts the contact portion 33 can change from the position where it contacts one contact portion 33A to the position where it contacts another contact portion 33B adjacent to the one contact portion 33A, it cannot change from the position where it contacts the other contact portion 33B to the position where it contacts the one contact portion 33A. Therefore, the user can only rotate the operation portion 3 in a predetermined direction, that is, the direction in which the position where the first pressing portion 28 contacts the contact portion 33 changes from the position where it contacts one contact portion 33A to the position where it contacts another contact portion 33B. Therefore, according to the bouncing toy 100, it is possible to prevent the user from accidentally rotating the operation portion 3 in a direction opposite to the predetermined direction.
[0111] In addition, according to the above structure, in the initial state, the first engaging portion 1122 of the placing portion 11 engages with the first engaging joint portion 1211 of the first member 121 of the surrounding portion 12, and the second engaging portion 1123 of the placing portion 11 engages with the second engaging joint portion 1221 of the second member 122 of the surrounding portion 12. However, when the accommodating portion 1 moves in a specified direction (in this embodiment, it is the upper rear direction), the engaging relationship between the first engaging portion 1122 and the first engaging joint portion 1211 and the engaging relationship between the second engaging portion 1123 and the second engaging joint portion 1221 are released, and the state of the surrounding portion 12 changes from the closed state to the open state. Thus, according to the bouncing toy 100, it is possible to change the state of the surrounding portion 12 from the closed state to the open state with a simple structure when the accommodating portion 1 moves from the position in the initial state to the specified direction. In addition, the surrounding portion 12 is configured to surround the toy 200 accommodated in the accommodating portion 1 in the initial state. Therefore, according to the bouncing toy 100, when the accommodating portion 1 moves from the position in the initial state to the specified direction, it is also possible to demonstrate to the user the release of the toy 200 from the accommodating portion 1.
[0112] In addition, according to the above structure, the pedestal portion 2 has a plurality of first rotating portions 23 corresponding to the plurality of operating portions 3, and the plurality of first rotating portions 23 each have a connecting portion 232 and a non-connecting portion 233. Therefore, according to the bouncing toy 100, even when a user operates one of the plurality of operating portions 3, there may be a case where the second rotating portion 24 does not rotate, and the randomness and excitement of the game can be enhanced.
[0113] In addition, according to the above structure, when the second rotating body 242 of the second rotating portion 24 that rotates according to the operation of one operating portion 3 reaches a specified position, the second pressing portion 2421d presses the rotating portion 273 of the restricting portion 27. And when the rotating portion 273 is pressed by the second pressing portion 2421d, the restriction of the restricting portion 27 on the accommodating portion 1 is released, and the accommodating portion 1 moves in a specified direction (in this embodiment, it is the upper rear direction). Thus, according to the bouncing toy 100, the restriction of the restricting portion 27 on the accommodating portion 1 can be released only by pressing the rotating portion 273 of the restricting portion 27 by the second pressing portion 2421d.
[0114] In addition, according to the above structure, the rotating portion 273 of the restricting portion 27 rotates by the pressing of the second pressing portion 2421d, whereby the restriction of the restricting portion 27 on the accommodating portion 1 is released, and the accommodating portion 1 moves in a specified direction (in this embodiment, it is the upper rear direction). Thus, according to the bouncing toy 100, the structure of the restricting portion 27 can be made relatively simple.
[0115] According to the embodiment of the present disclosure as described above, a game board in the following manner can be provided.
[0116] The bouncing toy of the first mode includes: a receiving part that receives the toy; a pedestal part that holds the receiving part in a movable state; and a plurality of operating parts. The pedestal part has: at least one first rotating part that has a connecting part and a non-connecting part and rotates according to the operation of one of the plurality of operating parts; a second rotating part that rotates corresponding to the rotation of at least one first rotating part when connected to the connecting part, and on the other hand, does not rotate even when at least one first rotating part rotates when abutting against the non-connecting part; a restricting part that restricts the movement of the receiving part in a specified direction in the initial state, and when the second rotating part that rotates according to the operation of one operating part comes to a specified position in the state where the second rotating part is connected to the connecting part, releases the restriction of the restricting part on the receiving part, and the receiving part moves in the specified direction.
[0117] According to this structure, only when connected to the connecting part of the first rotating part, the second rotating part rotates corresponding to the rotation of the first rotating part. Therefore, even without excessively increasing the number of operating parts, it is possible to extend the playing time of each person until the game ends. In addition, in the bouncing toy with the above structure, when the receiving part moves in a specified direction by the rotation of the second rotating part, the game ends. Also, in the bouncing toy with the above structure, it is possible not to excessively increase the number of operating parts, so it is possible to prevent the bouncing toy from becoming large-sized and the design from deteriorating. Thus, according to the bouncing toy with the above structure, the playability and design can be improved.
[0118] In the bouncing toy of the second mode, the first rotating part has a first fitting part and an elastic body that applies an elastic force to the operating part, and the operating part has a second fitting part that fits with the first fitting part by applying a force in a direction opposite to the direction of the elastic force to the operating part. In the state where the first fitting part and the second fitting part are fitted, the first rotating part rotates according to the operation of the operating part.
[0119] According to this structure, by applying a force in a direction opposite to the elastic force applied by the elastic body of the first rotating part to the operating part to the operating part, the second fitting part of the operating part fits with the first fitting part. Moreover, by operating the operating part in the state where the first fitting part and the second fitting part are fitted, the first rotating part rotates. That is, the first rotating part does not rotate in the state where the first fitting part and the second fitting part are not fitted, but rotates in the state where the first fitting part and the second fitting part are fitted. Therefore, in the bouncing toy with the above structure, for example, only the operating part operated by the user moves, and the other operating parts do not move. Thus, it is possible not to know which first rotating part and second rotating part corresponding to which operating part are in a connected state or a non-connected state.
[0120] In the bouncing toy of the third mode, the operation part can rotate according to the operation. The operation part includes: a plurality of contact parts arranged along the rotation direction of the operation part; a plurality of step parts formed between the plurality of contact parts. The pedestal part has a first pressing part for pressing the contact parts. The first pressing part contacts another contact part adjacent to one contact part across the step part from one contact part among the plurality of contact parts corresponding to the rotation of the operation part.
[0121] According to this structure, the first pressing part of the pedestal part contacts another contact part adjacent to one contact part across the step part from one contact part among the plurality of contact parts corresponding to the rotation of the operation part. When the first pressing part crosses the step part and contacts another contact part, a contact sound is generated. Therefore, when the first pressing part contacts another contact part, the user can recognize the situation where the operation part rotates appropriately by perceiving the contact sound. In addition, for example, when playing a game with this bouncing toy, in the case of a rotation operation of drawing a card or rolling a die to display a number on the operation part, by generating this contact sound, not only the user who rotates the operation part but also other users can perceive that the operation part has been rotated.
[0122] In the bouncing toy of the fourth mode, the step part includes a first end part located at a position at a predetermined distance from the rotation axis of the operation part and a second end part located at a position closer to the rotation axis of the operation part than the first end part. The first end part communicates with the one contact part, and the second end part communicates with the other contact part.
[0123] According to this structure, the first end part located at a position at a predetermined distance from the rotation axis of the operation part communicates with the one contact part, and the second end part located at a position closer to the rotation axis of the operation part than the first end part communicates with the other contact part adjacent to the one contact part. Therefore, although the position where the first pressing part contacts the contact part can change from the position of contacting the one contact part to the position of contacting the other contact part adjacent to the one contact part, it cannot change from the position of contacting the other contact part to the position of contacting the one contact part. Therefore, the user can only rotate the operation part in a predetermined direction, that is, the direction in which the position where the first pressing part contacts the contact part changes from the position of contacting the one contact part to the position of contacting the other contact part. Therefore, according to the bouncing toy with the above structure, it is possible to prevent the user from accidentally rotating the operation part in the direction opposite to the predetermined direction.
[0124] In the bouncing toy of the fifth mode, the accommodating portion includes: a placing portion for placing the toy; an enclosing portion which is in a closed state enclosing the toy in the initial state. The placing portion has an engaging portion, and the enclosing portion has an engaging and joining portion that engages with the engaging portion in the initial state. When the accommodating portion moves in the specified direction, the engaging relationship between the engaging portion and the engaging and joining portion is released, and the state of the enclosing portion changes from the closed state to the open state.
[0125] According to this structure, in the initial state, the engaging portion of the placing portion engages with the engaging and joining portion of the enclosing portion. On the other hand, if the accommodating portion moves in the specified direction, the engaging relationship between the engaging portion and the engaging and joining portion is released, and the state of the enclosing portion changes from the closed state to the open state. Thus, in the bouncing toy according to the above structure, when the accommodating portion moves from the position in the initial state to the specified direction, the state of the enclosing portion can be changed from the closed state to the open state with a simple structure. In addition, the enclosing portion is configured to enclose the toy accommodated in the accommodating portion in the initial state. Therefore, in the bouncing toy according to the above structure, when the accommodating portion moves from the position in the initial state to the specified direction, it is also possible to demonstrate to the user to release the toy from the accommodating portion.
[0126] In the bouncing toy of the sixth mode, the pedestal portion has a plurality of the first rotating portions corresponding to the plurality of the operating portions, and each of the plurality of the first rotating portions has the connecting portion and the non-connecting portion.
[0127] According to this structure, the pedestal portion has a plurality of the first rotating portions corresponding to the plurality of the operating portions, and each of the plurality of the first rotating portions has the connecting portion and the non-connecting portion. Therefore, in the bouncing toy according to the above structure, even when a user operates one of the plurality of the operating portions, there is a case where the second rotating portion does not rotate, and the randomness and excitement of the game can be improved.
[0128] In the bouncing toy of the seventh mode, the second rotating portion has a second pressing portion which presses at least a part of the restricting portion when the second rotating portion that rotates according to the operation of one of the operating portions reaches the specified position. When at least a part of the restricting portion is pressed by the second pressing portion, the restriction of the restricting portion on the accommodating portion is released, and the accommodating portion moves in the specified direction.
[0129] According to this structure, when the second rotating part that rotates according to the operation of an operation part reaches a specified position, the second pressing part presses at least a part of the restricting part. Moreover, when at least a part of the restricting part is pressed by the second pressing part, the restriction of the accommodating part by the restricting part is released, and the accommodating part moves in a specified direction. Thus, in the bouncing toy according to the above structure, the restriction of the accommodating part by the restricting part can be released only by pressing at least a part of the restricting part by the second pressing part.
[0130] In the bouncing toy of the eighth mode, the restricting part has a shaft part and a rotating part that can rotate around the shaft part by the pressing of the second pressing part. The rotating part rotates by the pressing of the second pressing part, thereby releasing the restriction of the accommodating part by the restricting part.
[0131] According to this structure, the rotating part of the restricting part rotates by the pressing of the second pressing part, thereby releasing the restriction of the accommodating part by the restricting part, and the accommodating part moves in a specified direction. Thus, in the bouncing toy according to the above structure, the structure of the restricting part can be made relatively simple.
[0132] The above embodiments are for easy understanding of the present disclosure and do not limit the present disclosure. The present disclosure can be changed and improved without departing from its gist.
[0133] In the above embodiment, the bouncing toy 100 includes three operation parts 3A, 3B, and 3C, but the number of operation parts 3 included in the bouncing toy 100 may be two or more, and is not limited to three.
[0134] In the above embodiment, the shape of the pedestal part 2 is substantially T-shaped, but it may also be substantially circular, for example. That is, in the above embodiment, the shapes of the base member 21 and the cover member 22 are substantially T-shaped, but they may also be substantially circular, for example.
[0135] In the above embodiment, the pedestal part 2 has three first rotating parts 23, but it may also have two first rotating parts 23, or may also have four or more first rotating parts 23.
[0136] In the above embodiment, the toy 200 is a toy imitating a dinosaur, but it may also not be a toy imitating a dinosaur. The toy 200 may also be a toy imitating a human, for example.
[0137] In the above embodiment, the second rotating part 24 includes a first rotating body 241 and a second rotating body 242, but it may also not include the first rotating body 241. In this case, the connecting part 232 of the first rotating part 23 is connected to the second rotating body 242.
[0138] In the above embodiment, the operation part 3 is a dial, but it may also be a button or a lever, for example.
[0139] In the above-described embodiment, the number of the contact portions 33 and the number of the stepped portions 34 are eight, but as long as they are two or more, they are not limited to eight.
[0140] Explanation of Reference Numerals
[0141] 1: Accommodating portion
[0142] 2: Base portion
[0143] 3 (3A, 3B, 3C): Operating portion
[0144] 11: Placing portion
[0145] 12: Enclosing portion
[0146] 21: Base member
[0147] 22: Cover member
[0148] 23: First rotating portion
[0149] 24: Second rotating portion
[0150] 24A: Stepped portion
[0151] 25: Third rotating body
[0152] 26: Fourth rotating body
[0153] 27: Restricting portion
[0154] 28: First pressing portion
[0155] 29: Connecting member
[0156] 31: Hole portion
[0157] 32: Second fitting portion
[0158] 32a: Tooth portion
[0159] 33 (33A, 33B): Contact portion
[0160] 34 (34A): Stepped portion
[0161] 100: Toy
[0162] 111: Main body portion
[0163] 112: Engaging mechanism
[0164] 113: Connecting portion
[0165] 121: First member
[0166] 121a: Hole portion
[0167] 122: Second component
[0168] 122a: Hole part
[0169] 200: Toy
[0170] 211: Base main body part
[0171] 212: First rod-shaped part
[0172] 213: Second rod-shaped part
[0173] 221: Hole part
[0174] 231: Hole part
[0175] 232: Connecting part
[0176] 232a: Tooth part
[0177] 233: Non-connecting part
[0178] 234: First fitting part
[0179] 234a: Tooth part
[0180] 235: Elastomer
[0181] 241: First rotating body
[0182] 242: Second rotating body
[0183] 251: Tooth part
[0184] 261: Tooth part
[0185] 271: Frame part
[0186] 272: Shaft part
[0187] 273: Rotating part
[0188] 274: Plate-shaped component
[0189] 275: Elastomer
[0190] 276: Shaft component
[0191] 291: Main body part
[0192] 292: Hole part
[0193] 293: Engaging joint part
[0194] 341: First end part
[0195] 341A: First end part
[0196] 342: Second end part
[0197] 342A: Second End
[0198] 1111: Insertion Hole
[0199] 1112: Shaft Portion
[0200] 1113: First Through-Hole
[0201] 1114: Second Through-Hole
[0202] 1121: Frame Portion
[0203] 1122: First Engaging Portion
[0204] 1122a: Hole Portion
[0205] 1123: Second Engaging Portion
[0206] 1123a: Hole Portion
[0207] 1124: Shaft Component
[0208] 1124a: Main Body Portion
[0209] 1124b: Pressing Portion
[0210] 1125: Contact Component
[0211] 1211: First Engaging and Joining Portion
[0212] 1221: Second Engaging and Joining Portion
[0213] 2411: Hole Portion
[0214] 2412: Tooth Portion
[0215] 2421: Main Body Portion
[0216] 2421a: Tooth Portion
[0217] 2421b: Tooth Portion
[0218] 2421c: Cylindrical Portion
[0219] 2421d: Second Pressing Portion
[0220] 2422: Shaft Portion
[0221] 2422a: Extended Portion
[0222] 2423: Elastomer
[0223] 2424: Rotating Component
[0224] 2424a: Fitting Portion
[0225] 2425: Fifth Rotating Body
[0226] 2425a: Tooth part
[0227] 2425b: Fitting part
[0228] 2711: Hole part
[0229] 2731: Main body part
[0230] 2732: Hole part
[0231] 2733: Contact part
[0232] 2734: Engaging part
Claims
1. A bouncing toy, characterized in that, Comprising: A receiving part for receiving a toy; A pedestal part for holding the receiving part in a movable state; A plurality of operating parts; The pedestal part has: At least one first rotating part having a connecting part and a non-connecting part, which rotates according to the operation of one of the plurality of operating parts; A second rotating part which rotates corresponding to the rotation of at least one of the first rotating parts when connected to the connecting part, and on the other hand, does not rotate even when at least one of the first rotating parts rotates when abutting against the non-connecting part; A restricting part which restricts the movement of the receiving part in a specified direction in an initial state, In a state where the second rotating part is connected to the connecting part, when the second rotating part that rotates according to the operation of one of the operating parts reaches a specified position, the restriction of the restricting part on the receiving part is released, and the receiving part moves in the specified direction.
2. The bouncing toy according to claim 1, characterized in that The first rotating part has a first fitting part and an elastic body that applies an elastic force to the operating part, The operating part has a second fitting part which fits with the first fitting part by applying a force in a direction opposite to the direction of the elastic force to the operating part, In a state where the first fitting part and the second fitting part are fitted, the first rotating part rotates according to the operation of the operating part.
3. The bouncing toy according to claim 1 or 2, characterized in that The operating part can rotate according to the operation, The operating part includes: a plurality of contact parts provided along the rotation direction of the operating part; a plurality of stepped parts formed between the plurality of contact parts, The pedestal part has a first pressing part for pressing the contact part, The first pressing part contacts another contact part adjacent to one contact part across the stepped part from one of the plurality of contact parts corresponding to the rotation of the operating part.
4. The bouncing toy according to claim 3, characterized in that The stepped part includes a first end portion located at a position at a specified distance from the rotation axis of the operating part and a second end portion located at a position closer to the rotation axis of the operating part than the first end portion, The first end portion communicates with the one contact part, The second end portion communicates with the other contact part.
5. The bouncing toy according to claim 1 or 2, characterized in that The receiving part has a placing part for placing the toy and an enclosing part that is in a closed state enclosing the toy in the initial state, The placing part has an engaging part, The enclosing part has an engaging joint part that engages with the engaging part in the initial state, When the receiving part moves in the specified direction, the engaging relationship between the engaging part and the engaging joint part is released, and the state of the enclosing part changes from the closed state to the open state.
6. The bouncing toy according to claim 1 or 2, characterized in that The pedestal part has a plurality of the first rotating parts corresponding to the plurality of operating parts, Each of the plurality of first rotating parts has the connecting part and the non-connecting part.
7. The bouncing toy according to claim 1 or 2, wherein the second rotating part has a second pressing part, and when the second rotating part that rotates according to the operation of one of the operation parts reaches a specified position, the second pressing part presses at least a part of the restricting part, when at least a part of the restricting part is pressed by the second pressing part, the restriction of the restricting part on the accommodating part is released, and the accommodating part moves in the specified direction.
8. The bouncing toy according to claim 7, wherein the restricting part has a shaft part and a rotating part that can rotate around the shaft part by the pressing of the second pressing part, the rotating part rotates by the pressing of the second pressing part, thereby releasing the restriction of the restricting part on the accommodating part.
Citation Information
Patent Citations
Jumping-up toy
JP2012228494A