Amusement park toys
The amusement park toy's rotating mechanism with deformable members enables easy attachment and detachment of gondola members, addressing detachment issues and improving stability and cost-effectiveness.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- EPOCH COMPANY LTD
- Filing Date
- 2024-10-30
- Publication Date
- 2026-05-15
AI Technical Summary
Conventional amusement park toys face difficulties in easily attaching and detaching gondola members to the main body, which can lead to damage during play.
The amusement park toy features a rotating mechanism with an insertion hole and a gondola member having a projection with a deformable member and a second deformable member spaced apart from the first deformable member, and when the projection 323, the first deformable member 324, and when the projection 323 is inserted into the hole, the first deformable member and the second deformable member deform to move closer to each other, facilitating easy attachment and detachment.
This configuration allows for easy attachment and detachment of gondola members, preventing them from falling off during use and enhancing the stability and cost-effectiveness of the toy.
Smart Images

Figure 2026079398000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to amusement park toys.
Background Art
[0002] Patent Document 1 discloses a Ferris wheel toy configured such that a rotating body with a rubber elastic body attached to the outer periphery of a disk-shaped rotating body is attached to the main shaft of a model motor, and the rubber elastic body is pressed against the side surface of the Ferris wheel with an elastic body such as a spring, and the rotating body is moved using the frictional force thereof.
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] By the way, amusement park toys sometimes include a main body part and a gondola member that imitates a gondola. In such amusement park toys, it is assumed that the gondola member is detached from the main body part and played with. However, if the gondola member is relatively firmly attached to the main body part, it becomes difficult to remove the gondola member from the main body part, or when detaching and attaching the gondola member from the main body part to play, for example, the gondola member may be damaged. In this regard, there was room for improvement in conventional amusement park toys.
[0005] An object of the present invention is to provide an amusement park toy with high ease of attachment and detachment of a gondola member to a main body part.
Means for Solving the Problems
[0006] An amusement park toy according to one aspect of the present invention comprises a main body having a shaft, a base supporting the main body, and a rotating mechanism connected to the main body, wherein the rotating mechanism comprises a rotating main body having an insertion hole configured for the insertion of the shaft and at least one hole, and a gondola member detachably provided with respect to the rotating main body, wherein the gondola member is provided with a projection configured for insertion into the second hole, and the projection comprises a first deformable member and a second deformable member disposed apart from the first deformable member, and when the projection is inserted into the second hole, the first deformable member and the second deformable member deform to move closer to each other. [Effects of the Invention]
[0007] According to the above configuration, it is possible to provide an amusement park toy in which the gondola members can be easily attached to and detached from the main body. [Brief explanation of the drawing]
[0008] [Figure 1] This is a front view illustrating an amusement park toy according to one embodiment of the present invention (hereinafter also referred to as this embodiment). [Figure 2] This is a front perspective view illustrating amusement park toys. [Figure 3] This is a magnified view illustrating the vicinity of the shaft portion of the main body of an amusement park toy. [Figure 4] This is a magnified view illustrating the vicinity of the second base component of an amusement park toy. [Figure 5] This is a rear view illustrating the rotating main body. [Figure 6] This is a side view illustrating the rotating main body. [Figure 7] This is a side view illustrating a gondola component. [Figure 8] This is a plan view illustrating a portable toy. [Figure 9] This is a rear perspective view illustrating a portable toy. [Figure 10] This is a perspective view illustrating a traction member. [Figure 11] This diagram illustrates a state in which a gondola component is attached to the rotating main body. [Figure 12] This diagram illustrates how the gondola component is removed from the rotating main body. [Figure 13] This diagram illustrates the state of a mobile toy when it is in its starting position. [Figure 14] This diagram illustrates the state of a mobile toy after it has moved from its starting position to a predetermined position. [Modes for carrying out the invention]
[0009] Hereinafter, an amusement park toy 100 according to an embodiment of the present invention will be described in detail with reference to the drawings. In this description of the embodiment, for the sake of convenience, the terms "left-right direction," "up-down direction," and "front-back direction" may be referred to as appropriate. These directions are relative directions set for the amusement park toy 100 illustrated in Figure 1. Here, the "left-right direction" includes the "left direction" and the "right direction." The "up-down direction" includes the "up direction" and the "down direction." The "front-back direction" includes the "forward direction" and the "backward direction." In each figure, the symbol U indicates the upward direction. The symbol D indicates the downward direction. The symbol L indicates the left direction. The symbol R indicates the right direction. The symbol F indicates the forward direction. The symbol B indicates the back direction.
[0010] (Overall structure) First, the overall configuration of the amusement park toy 100 will be described with reference to Figures 1 to 10. Figure 1 is an illustrative front view of the amusement park toy 100. Figure 2 is an illustrative front perspective view of the amusement park toy 100. Figure 3 is a partially enlarged view illustrating the vicinity of the shaft portion 11 of the main body portion 1 of the amusement park toy 100. Figure 4 is a partially enlarged view illustrating the vicinity of the second base member 22 of the amusement park toy 100. Figure 5 is a rear view illustrating the rotating main body portion 31. Figure 6 is a side view illustrating the rotating main body portion 31. Figure 7 is a side view illustrating the gondola member 32. Figure 8 is a plan view illustrating the mobile toy 41. Figure 9 is a rear perspective view illustrating the mobile toy 41. Figure 10 is a perspective view illustrating the traction member 42. As illustrated in Figures 1 and 2, the amusement park toy 100 is a toy that imitates an amusement park. The amusement park toy 100 comprises a main body 1, a base 2, a rotating mechanism 3, and a moving mechanism 4. In addition to these, the amusement park toy 100 also includes toys modeled after a castle, an airship, a ship, and so on.
[0011] The main body 1 is a plate-shaped member. As illustrated in Figures 1 to 3, the main body 1 has a shaft portion 11 and a first rail portion 12. The shaft portion 11 is a cylindrical member extending in the front-rear direction. The shaft portion 11 includes a first shaft portion 111 and a second shaft portion 112 having a smaller diameter than the first shaft portion 111. The rear end portion of the second shaft portion 112 is inserted into the first shaft portion 111.
[0012] As illustrated in FIGS. 1 and 2, the first rail portion 12 is provided on the left side portion 13 of the main body portion 1. The first rail portion 12 is provided so as to extend from the lower side to the upper side. More specifically, the first rail portion 12 extends so as to curve to the right from the lower side to the upper side. The length D11 in the width direction of the first rail portion 12 is, for example, 14.8 mm. The first rail portion 12 has a first engaged portion 121 (an example of an engaged portion), a second engaged portion 122 (an example of an engaged portion), and a third engaged portion 123 (an example of an engaged portion). That is, in the present embodiment, the first rail portion 12 has three engaged portions (the first engaged portion 121, the second engaged portion 122, and the third engaged portion 123). The first engaged portion 121 and the second engaged portion 122 are concave groove portions formed in a straight line. The third engaged portion 123 is a convex ridge portion formed in a straight line. The first engaged portion 121, the second engaged portion 122, and the third engaged portion 123 are arranged in this order from the bottom. That is, the third engaged portion 123 is located above the first engaged portion 121 and the second engaged portion 122. The first engaged portion 121, the second engaged portion 122, and the third engaged portion 123 are arranged at substantially equal intervals. However, the first engaged portion 121, the second engaged portion 122, and the third engaged portion 123 may be arranged at different intervals.
[0013] The pedestal portion 2 is disposed below the main body portion 1. The pedestal portion 2 is configured to support the main body portion 1. The pedestal portion 2 includes a first pedestal member 21 and a second pedestal member 22. The first pedestal member 21 and the second pedestal member 22 are plate-like members. The first pedestal member 21 is larger than the second pedestal member 22. The first pedestal member 21 is disposed on the left side of the second pedestal member 22. The second pedestal member 22 is provided separately from the first pedestal member 21.
[0014] As illustrated in FIG. 4, the second pedestal member 22 has a base portion 221 and a second rail portion 222. The base portion 221 is configured to support the right side portion of the main body portion 1. The second rail portion 222 has an inclined surface 223 that is curved and inclined. The surface of the inclined surface 223 is smooth. The inclined surface 223 is formed so as to gradually extend upward from the right side toward the left side. Thus, the second rail portion 222 extends so as to curve upward from the horizontal direction. The second rail portion 222 is continuously connected to the first rail portion 12.
[0015] As illustrated in FIGS. 1 and 2, the rotating mechanism 3 is provided on the front side of the main body portion 1. Also, the rotating mechanism 3 is provided on the front side of the second pedestal member 22. In other words, the second pedestal member 22 is provided on the rear side of the rotating mechanism 3. The rotating mechanism 3 has a rotating main body portion 31 and a gondola member 32. In the present embodiment, the rotating mechanism 3 has three gondola members 32A, 32B, and 32C. Also, in this specification, the term "gondola member 32" can be used as a concept including the three gondola members 32A, 32B, and 32C.
[0016] As illustrated in FIG. 5, the rotating main body portion 31 is substantially circular in a rear view. The rotating main body portion 31 includes an insertion hole portion 311 and three hole portions 312. However, the number of the hole portions 312 provided in the rotating main body portion 31 may be, for example, one or two, or four or more. The insertion hole portion 311 is provided substantially at the center of the rotating main body portion 31. The insertion hole portion 311 is a bottomed hole portion. Since the diameter of the insertion hole portion 311 is slightly larger than the diameter of the second shaft portion 112 (see FIG. 3), the second shaft portion 112 can be inserted into the insertion hole portion 311. That is, the insertion hole portion 311 is configured such that the shaft portion 11 (see FIG. 3) of the main body portion 1 is inserted therein. Therefore, the rotating mechanism 3 is connected to the shaft portion 11 of the main body portion 1. Also, the rotating main body portion 31 is rotatable about the shaft portion 11 of the main body portion 1.
[0017] As illustrated in Figure 5, the holes 312 are positioned outside the insertion holes 311 when viewed from the center of the rotating body 31. The three holes 312 are arranged at equal intervals. However, the intervals between the three holes 312 do not have to be equal. As illustrated in Figures 5 and 6, the holes 312 are substantially cylindrical. The holes 312 are hollow. A stepped portion 312A is formed inside each hole 312. In other words, a total of three stepped portions 312A are formed in the rotating body 31 according to this embodiment. As illustrated in Figure 5, the stepped portion 312A is formed in a substantially annular shape inside the hole 312 when viewed from the front. In other words, the stepped portion 312A is formed around the entire circumference of the inner surface of the hole 312. Therefore, even when the rotating body 31 rotates, the gondola member 32 can maintain a state perpendicular to the ground.
[0018] As illustrated in Figures 1 and 2, the gondola member 32 is attached to the rotating main body 31. In this embodiment, the gondola member 32 is detachably provided with respect to the rotating main body 31. As illustrated in Figure 7, the gondola member 32 includes a mounting portion 321, a rear portion 322, and a protruding portion 323.
[0019] The mounting section 321 is formed in a concave shape. The mounting section 321 is configured so that an object such as a doll can be placed on it.
[0020] The rear portion 322 is a plate-shaped member that extends in the height direction (up and down direction in Figure 6) of the gondola member 32. The rear portion 322 is continuously connected to the rear of the mounting portion 321.
[0021] The protruding portion 323 is continuously connected to the rear portion 322. The protruding portion 323 extends in the front-rear direction and protrudes from the rear portion 322. The protruding portion 323 is configured to be inserted into the hole 312 (see Figure 5). The protruding portion 323 comprises a first deformation member 324 and a second deformation member 325. The first deformation member 324 and the second deformation member 325 are substantially semi-cylindrical members. The first deformation member 324 is positioned above the second deformation member 325. The protruding distance D21 of the first deformation member 324 is longer than the protruding distance D22 of the second deformation member 325. The second deformation member 325 is positioned at a distance from the first deformation member 324. In other words, a notch is formed in the protruding portion 323 between the first deformation member 324 and the second deformation member 325. A convex portion 326 that protrudes upward is formed at the tip of the first deformation member 324. The protrusion 326 is configured to engage with the hole 312 inside the rotating body 31. Specifically, as illustrated by the dashed line in Figure 6, the protrusion 326 engages with the stepped portion 312A formed inside the hole 312. As described above, since the projection 323 has a notch, when the projection 323 is inserted into the hole 312, external pressure is applied to the projection 323, and as a result, the first deformable member 324 bends downward and the second deformable member 325 bends upward. In other words, when the projection 323 is inserted into the hole 312, the first deformable member 324 and the second deformable member 325 deform to move closer to each other. For this reason, the user can easily insert the projection 323 of the gondola member 32 into the hole 312 of the rotating body 31.
[0022] As illustrated in Figures 1 and 2, the moving mechanism 4 includes a mobile toy 41 and a traction member 42. In this embodiment, the mobile toy 41 is a toy modeled after a train. However, the mobile toy 41 may be a toy modeled after another vehicle (e.g., a rocket). As illustrated in Figures 8 and 9, the mobile toy 41 has a housing section 411, a floor section 412, a connecting member 413, and a support section 414.
[0023] As illustrated in Figure 8, the storage section 411 is located inside the mobile toy 41. The storage section 411 is a concave hole (a bottomed hole). The storage section 411 is configured to accommodate objects such as dolls. The storage section 411 includes a first storage section 411A and a second storage section 411B. The first storage section 411A is located below the second storage section 411B. Between the first storage section 411A and the second storage section 411B, a plate-like member is provided extending inward from the outer edge of the storage section 411. As a result, the upper surface area of the first storage section 411A is smaller than the upper surface area of the second storage section 411B. Therefore, the first object that can be stored in the first storage section 411A is smaller than the second object that can be stored in the second storage section 411B. In other words, the first storage section 411A can accommodate the first object, and the second storage section 411B can accommodate the second object which is larger than the first object.
[0024] As illustrated in Figure 9, the floor surface 412 includes a smooth surface 415 and a curved surface 416. The smooth surface 415 extends in the left-right direction. The curved surface 416 is continuously connected to the smooth surface 415. The curved surface 416 is curved upward from the smooth surface 415. In other words, the curved surface 416 has a rounded shape. Therefore, it can be said that at least a portion of the surface of the mobile toy 41 that contacts the first rail section 12 and the second rail section 222 (i.e., the floor surface 412) (in this embodiment, the curved surface 416) is curved convexly with respect to the first rail section 12 and the second rail section 222.
[0025] The widthwise length D31 of the smooth surface 415 is, for example, 16.1 mm. The widthwise length D32 of the curved surface 416 is, for example, 16.1 mm. Thus, the widthwise length D31 of the smooth surface 415 is equal to the widthwise length D32 of the curved surface 416. In this specification, the term widthwise length D30 of the floor surface 412 may be used when referring to both the widthwise length D31 of the smooth surface 415 and the widthwise length D31 of the smooth surface 415. For this reason, the widthwise length D11 of the first rail section 12 (see Figure 2) is shorter than the widthwise length D30 of the floor surface 412 (the surface of the mobile toy 41 that contacts the first rail section 12 and the second rail section 222). More specifically, the difference between the widthwise length D11 of the first rail section 12 and the widthwise length D30 of the floor surface 412 is 1.0 mm or more and 2.0 mm or less (for example, 1.3 mm).
[0026] As illustrated in Figures 8 and 9, the connecting member 413 is provided on the front end of the mobile toy 41 on the side facing the direction of travel (left side in Figure 8). The connecting member 413 includes a plate-shaped portion 417 and two extension portions 418. The extension portions 418 are approximately L-shaped in plan view. The extension portions 418 are provided on the front end of the plate-shaped portion 417 on the side facing the direction of travel of the mobile toy 41. The extension portions 418 extend outward from the plate-shaped portion 417 (forward or backward in Figure 8). The extension portions 418 are configured to be connected to the second connecting portion 422 of the traction member 42, which will be described later. In other words, the connecting member 413 is configured to be connected to the traction member 42.
[0027] The support portion 414 is located at the right end of the mobile toy 41. In other words, the support portion 414 is located opposite the connecting member 413. The support portion 414 is a plate-shaped member that extends in the vertical direction. The support portion 414 can support an object housed in the housing portion 411. In particular, the support portion 414 can support an object housed in the housing portion 411 when the mobile toy 41 moves upward.
[0028] As illustrated in Figures 1 and 2, the traction member 42 is connected to the first rail portion 12 of the main body 1. In other words, the moving mechanism 4 is connected to the main body 1. As illustrated in Figure 10, the traction member 42 has a first connecting portion 421, a second connecting portion 422, a gripping portion 423, and a claw portion 424.
[0029] The first connecting portion 421 is substantially U-shaped when viewed from below. The first connecting portion 421 is configured to be connected to the first rail portion 12. The first connecting portion 421 includes a substantially rectangular first member 425, a second member 426 provided at the right end of the first member 425, and a third member 427 provided at the left end of the first member 425. A hole 425A is formed in the central part of the first member 425. When the first connecting portion 421 is connected to the first rail portion 12, the first rail portion 12 is enclosed in the space defined by the first member 425, the second member 426, and the third member 427. At this time, the first rail portion 12 is in contact with the first projection 428 provided on the second member 426 and the second projection 429 provided on the third member 427.
[0030] The second connecting portion 422 is provided at the lower end of the second member 426 and the lower end of the third member 427, respectively. The second connecting portion 422 is a substantially circular hole when viewed from the front-to-back direction in Figure 10. The extension portion 418 of the connecting member 413 of the mobile toy 41 is inserted into each of the two second connecting portions 422. In other words, the traction member 42 is connected to the connecting member 413 of the mobile toy 41.
[0031] The gripping portion 423 is provided on the traction member 42 so as to protrude forward from the second member 426. The gripping portion 423 is a plate-shaped member. The front end of the gripping portion 423 is rounded. The gripping portion 423 is configured to be grasped by the user (a person playing with the amusement park toy 100). Therefore, the user can move the mobile toy 41 along the first rail portion 12 and the second rail portion 222 by, for example, pinching the gripping portion 423 and moving the traction member 42 in the vertical direction. Thus, in this embodiment, the mobile toy 41 is configured to move along the first rail portion 12 and the second rail portion 222. Furthermore, the mobile toy 41 can move along the first rail portion 12 and the second rail portion 222 via the traction member 42 which is configured to be grasped by the user.
[0032] The claw portion 424 is located approximately in the center of the first member 425 and is positioned inside the hole 425A formed in the central part of the first member 425. The claw portion 424 includes a flat plate member 424A, a first engaging portion 424B, and a second engaging portion 424C. The flat plate member 424A is connected to the hole 425A of the first member 425 and the first engaging portion 424B. The first engaging portion 424B is convex and protrudes to the right from the hole 425A of the first member 425. The second engaging portion 424C extends slightly to the left from the upper end of the first engaging portion 424B. The second engaging portion 424C protrudes slightly to the left from the hole 425A of the first member 425.
[0033] When the traction member 42 is connected to the first rail portion 12 of the main body 1, the traction member 42 is located to the right of the first rail portion 12. Furthermore, the first engaging portion 424B is convex and protrudes to the right from the hole 425A of the first member 425, while the third engaged portion 123 of the first rail portion 12 is convex, so the first engaging portion 424B can engage with the third engaged portion 123. On the other hand, the second engaging portion 424C protrudes slightly to the left from the hole 425A of the first member 425, while the first engaged portion 121 and the second engaged portion 122 of the first rail portion 12 are concave, so the second engaging portion 424C can engage with the first engaged portion 121 and the second engaged portion 122. Therefore, for example, when a user grasps the gripping portion 423 and moves the traction member 42 vertically along the first rail portion 12, the first engaging portion 424B of the claw portion 424 engages with the third engaged portion 123, and the second engaging portion 424C engages with the first engaged portion 121 and the second engaged portion 122. In this way, the first engaged portion 121, the second engaged portion 122, and the third engaged portion 123 are configured to engage with the claw portion 424.
[0034] (Attachment and detachment of gondola component 32) Next, the attachment and detachment of the gondola member 32A will be described in detail with reference to Figures 11 and 12. Figure 11 is a diagram illustrating the state in which the gondola member 32 is attached to the rotating body 31. Figure 12 is a diagram illustrating the state in which the gondola member 32A is removed from the rotating body 31. As illustrated in Figure 11, when the gondola member 32 is attached to the rotating body 31, the protruding portion 323 of the gondola member 32 is inserted into the hole 312 of the rotating body 31. In the state illustrated in Figure 11, since the convex portion 326 is engaged with the hole 312, for example, when the rotating mechanism 3 of the amusement park toy 100 swings in the front-back direction, it is possible to prevent the protruding portion 323 from coming out of the hole 312 and, as a result, the gondola member 32 from falling.
[0035] When a user wants to remove the gondola member 32A from the rotating body 31, they grasp the mounting portion 321 of the gondola member 32A and pull it upwards. At this time, the first deformation member 324 and the second deformation member 325 bend downwards. The protrusion distance D21 of the first deformation member 324 (see Figure 7) is longer than the protrusion distance D22 of the second deformation member 325 (see Figure 7), so when the user grasps the mounting portion 321 of the gondola member 32A and pulls it upwards, the second deformation member 325 comes out of the hole 312. The state of the gondola member 32A and the rotating body 31 at this time is illustrated in Figure 12. When the second deformation member 325 comes out of the hole 312, the external pressure on the second deformation member 325 is relieved, and the second deformation member 325 returns to its original state.
[0036] The user then grasps the mounting portion 321 of the gondola member 32A and pulls it upwards, causing the first deformation member 324 to detach from the hole 312. At this time, the first deformation member 324 bends downwards. Once the first deformation member 324 detaches from the hole 312, the external pressure on the first deformation member 324 is released, and the first deformation member 324 returns to its original state. When the user removes the gondola member 32A from the rotating body 31, as described above, the first deformation member 324 and the second deformation member 325 bend downwards, allowing the user to easily remove the protruding portion 323 from the hole 312. In this way, the user can remove the gondola member 32A from the rotating body 31.
[0037] (Details of the operation of the moving mechanism 4) Next, the operation of the moving mechanism 4 will be described in detail with reference to Figures 13 and 14. Figure 13 is an example of the state when the mobile toy 41 is in the starting position. Figure 14 is an example of the state when the mobile toy 41 has moved from the starting position to a predetermined position. The state when the mobile toy 41 is in the starting position (hereinafter also referred to as the initial state) refers to the state when the mobile toy 41 is on the second rail section 222. When the mobile toy 41 is in the starting position, the mobile toy 41 is facing approximately horizontally. In this explanation, the predetermined position is the position where the second engaged section 122 of the first rail section 12 is provided. Furthermore, a doll 200 (an example of an object) is housed in the housing section 411 of the mobile toy 41. Since the doll 200 is relatively small, it is housed in the first housing section 411A (see Figure 8).
[0038] As illustrated in Figure 13, in the initial state, the user grasps the gripping portion 423 of the traction member 42 and moves the traction member 42 upward. When this is done, the mobile toy 41 connected to the traction member 42 begins to move. At this time, since the mobile toy 41 is on the second rail portion 222 in the initial state, it starts moving in a nearly horizontal direction and gradually moves upward. At this time, the curved surface 416 of the surface of the mobile toy 41 that contacts the first rail portion 12 and the second rail portion 222 (floor surface portion 412 (see Figure 9)) is curved convexly with respect to the first rail portion 12 and the second rail portion 222, so the direction of movement of the mobile toy 41 is smoothly changed from horizontal to upward. As a result, the mobile toy 41 moves smoothly from the second rail portion 222 to the first rail portion 12.
[0039] Continuing, as the user moves the traction member 42 upward while pinching the gripping portion 423 of the traction member 42, the mobile toy 41 moves upward because it is on the first rail portion 12, as illustrated in Figure 14. At this time, gravity acts on the doll 200 housed in the housing portion 411 (first housing portion 411A) of the mobile toy 41. However, since the doll 200 is housed in a housing portion 411 (i.e., the first housing portion 411A) that is sized appropriately for the doll 200 and is supported by the support portion 414 of the mobile toy 41, the state in which the doll 200 is housed in the housing portion 411 is maintained when the mobile toy 41 is moving along the first rail portion 12. Therefore, even when the mobile toy 41 is moving along the first rail portion 12 (i.e., when the mobile toy 41 is moving vertically), the doll 200 housed in the housing portion 411 of the mobile toy 41 does not fall. When the mobile toy 41 moves to a predetermined position, the second engaging portion 424C of the mobile toy 41 engages with the second engaged portion 122 of the first rail portion 12. Therefore, the user can stop the mobile toy 41 in the predetermined position. If the user further moves the traction member 42 upward (i.e., moves the mobile toy 41 upward), the mobile toy 41 moves to the position where the third engaged portion 123 (see Figure 2) of the first rail portion 12 is located. At this time, the first engaging portion 424B of the mobile toy 41 engages with the third engaged portion 123 of the first rail portion 12, so the user can stop the mobile toy 41 at the position where the third engaged portion 123 of the first rail portion 12 is located. The user can move the mobile toy 41 between the first rail portion 12 and the second rail portion 222. That is, the user can move the mobile toy 41 towards the first rail portion 12 and then return it to the starting position. In this case as well, the doll 200 is housed in the first housing section 411A, which is a housing section 411 of a size appropriate for the size of the doll 200, and is also supported by the support section 414 of the mobile toy 41. Therefore, when the mobile toy 41 is moving downward along the first rail section 12, the state in which the doll 200 is housed in the housing section 411 is maintained.
[0040] Incidentally, amusement park toys sometimes consist of a main body and a gondola component that mimics a gondola. In such amusement park toys, it is assumed that the gondola component will be attached to and detached from the main body for play. However, if the gondola component is attached to the main body relatively firmly, it may be difficult to remove the gondola component from the main body, or the gondola component may be damaged when attaching and detaching it for play. In this respect, conventional amusement park toys had room for improvement.
[0041] In contrast, with the amusement park toy 100 according to the above configuration, when the protruding portion 323 of the gondola member 32, which is detachably attached to the rotating main body 31, is inserted into the hole 312 of the rotating main body 31, the first deformation member 324 and the second deformation member 325 provided on the protruding portion 323 deform to move closer to each other. Therefore, the protruding portion 323 of such a gondola member 32 is easy to insert into the hole 312 of the rotating main body 31 and difficult to detach from the hole 312. In this way, the amusement park toy 100 makes it possible to improve the ease of attaching and detaching the gondola member 32 to the main body 1.
[0042] Furthermore, according to the amusement park toy 100 with the above configuration, the first deformation member 324 is positioned above the second deformation member 325, and the protrusion distance D21 of the first deformation member 324 is longer than the protrusion distance D22 of the second deformation member 325. For this reason, for example, when removing the gondola member 32 from the main body 1, the user can easily remove the gondola member 32 from the main body 1 by removing the second deformation member 325 first and then removing the first deformation member 324.
[0043] Furthermore, according to the amusement park toy 100 with the above configuration, the upwardly protruding convex portion 326 formed at the tip of the first deformation member 324 engages with the hole 312 of the rotating body portion 31. In other words, when the protruding portion 323 of the gondola member 32 is inserted into the hole 312 of the rotating body portion 31, the first deformation member 324 engages with the hole 312, thus preventing the gondola member 32 from coming off the rotating body portion 31 when, for example, the rotating mechanism 3 shakes.
[0044] Furthermore, according to the amusement park toy 100 with the above configuration, the base portion 2 includes a first base member 21 and a second base member 22 provided at a distance from the first base member 21, so the configuration of the amusement park toy 100 can be made stable while keeping costs down.
[0045] Furthermore, in the amusement park toy 100 with the above configuration, the rotating mechanism 3 is provided on the front side of the main body 1, while the second base member 22 is provided on the rear side of the rotating mechanism 3. Therefore, while the rotating mechanism 3 acts to tilt the amusement park toy 100 forward, the second base member 22 also acts to tilt it backward, thus further enhancing the stability of the amusement park toy 100.
[0046] According to the embodiments of the present invention described above, it is possible to provide amusement park toys in the following forms.
[0047] An amusement park toy according to the first embodiment comprises a main body having a shaft, a base supporting the main body, and a rotating mechanism connected to the main body, wherein the rotating mechanism comprises a rotating main body having an insertion hole configured for the insertion of the shaft and at least one hole, and a gondola member detachably provided with respect to the rotating main body, the gondola member having a projection configured for insertion into the hole, the projection comprising a first deformable member and a second deformable member spaced apart from the first deformable member, and when the projection is inserted into the hole, the first deformable member and the second deformable member deform to move closer to each other.
[0048] In this configuration, when the protruding portion of the gondola member, which is detachably attached to the rotating main body, is inserted into the hole in the rotating main body, the first and second deformable members on the protruding portion deform to move closer to each other. Therefore, such a protruding portion of the gondola member is easy to insert into the hole in the rotating main body and difficult to detach from the hole. Thus, the amusement park toy according to the above configuration makes it easier to attach and detach the gondola member to the main body.
[0049] In the amusement park toy according to the second embodiment, the first deformation member is positioned above the second deformation member, and the protrusion distance of the first deformation member is longer than the protrusion distance of the second deformation member.
[0050] In this configuration, the first deformation member is positioned above the second deformation member, and the protrusion distance of the first deformation member is longer than that of the second deformation member. Therefore, for example, when removing the gondola member from the main body, the user can easily remove the gondola member from the main body by removing the second deformation member first, and then removing the first deformation member.
[0051] In the amusement park toy according to the third embodiment, a protruding projection is formed at the tip of the first deformable member, and the protruding projection engages with the hole.
[0052] In this configuration, the upwardly protruding convex portion formed at the tip of the first deformation member engages with the hole in the rotating body. In other words, when the protruding portion of the gondola member is inserted into the hole in the rotating body, the first deformation member engages with the hole, thus preventing the gondola member from coming off the rotating body when the rotating mechanism shakes, for example.
[0053] In the amusement park toy according to the fourth embodiment, the base portion includes a first base member and a second base member provided at a distance from the first base member.
[0054] With this configuration, the base includes a first base member and a second base member provided separately from the first base member, thus enabling the amusement park toy to have a highly stable structure while keeping costs down.
[0055] In the amusement park toy according to the fifth embodiment, the rotating mechanism is provided on the front side of the main body, and the second base member is provided on the rear side of the rotating mechanism.
[0056] In this configuration, the rotating mechanism is located at the front of the main body, while the second base member is located behind the rotating mechanism. Therefore, while the rotating mechanism exerts a force that tends to tilt the amusement park toy forward, the second base member also exerts a force that tends to tilt it backward, thus increasing the stability of the amusement park toy.
[0057] The embodiments described above are provided to facilitate understanding of the present invention and do not limit it. The present invention may be modified and improved without departing from its spirit.
[0058] In this embodiment, the protrusion distance D21 of the first deformation member 324 is longer than the protrusion distance D22 of the second deformation member 325, but may be shorter than the protrusion distance D22 of the second deformation member 325. Alternatively, the protrusion distance D21 of the first deformation member 324 and the protrusion distance D22 of the second deformation member 325 may be the same length.
[0059] In this embodiment, a protruding projection 326 is formed at the tip of the first deformable member 324, but it is not necessary for a protruding projection 326 to be formed at the tip of the first deformable member 324.
[0060] In this embodiment, the base portion 2 includes a first base member 21 and a second base member 22, but it may also be composed of a single base member.
[0061] In this embodiment, the rotating mechanism 3 is provided on the front side of the main body 1, but it may also be provided on the rear side of the main body 1, for example. Also, the second base member 22 is provided behind the rotating mechanism 3, but it may also be provided in front of the rotating mechanism 3, for example.
[0062] In this embodiment, at least a portion (specifically, the curved surface 416) of the surface (floor surface 412) of the mobile toy 41 that contacts the first rail section 12 and the second rail section 222 is curved convexly with respect to the first rail section 12 and the second rail section 222, but the present invention is not limited to this example. For example, the entire floor surface 412 may be curved convexly with respect to the first rail section 12 and the second rail section 222. Also, the shape of the portion of the floor surface 412 corresponding to the curved surface 416 in this embodiment may be a shape other than a curved shape.
[0063] In this embodiment, the moving mechanism 4 includes a traction member 42, but it does not necessarily have to include a traction member 42. In this case, the user grasps the mobile toy 41 and moves the mobile toy 41.
[0064] In this embodiment, the traction member 42 has a claw portion 424, and the first rail portion 12 has three engaging portions (first engaging portion 121, second engaging portion 122, and third engaging portion 123), but the present invention is not limited to this example. For example, the traction member 42 does not have a claw portion 424, and the first rail portion 12 does not have engaging portions (first engaging portion 121, second engaging portion 122, and third engaging portion 123).
[0065] In this embodiment, the mobile toy 41 has a storage section 411, but it does not have to have a storage section 411.
[0066] In this embodiment, the housing section 411 includes a first housing section 411A and a second housing section 411B, but it may also include only one of the first housing section 411A or the second housing section 411B. Furthermore, the housing section 411 may include not only the first housing section 411A and the second housing section 411B, but also other housing sections.
[0067] In this embodiment, the first object that can be accommodated in the first storage section 411A is smaller than the second object that can be accommodated in the second storage section 411B, but for example, the first object and the second object may be the same size.
[0068] In this embodiment, the rotating mechanism 3 has three gondola members 32A, 32B, and 32C, but it may have one or two gondola members 32, or four or more gondola members 32. [Explanation of Symbols]
[0069] 1: Main body, 2: Base, 3: Rotation mechanism, 4: Movement mechanism, 11: Shaft, 12: First rail, 13: Left side, 21: First base member, 22: Second base member, 31: Rotating main body, 32: Gondola member, 41: Mobile toy, 42: Traction member, 100: Amusement park toy, 111: First shaft, 112: Second shaft, 121: First engaged part, 122: Second engaged part, 123: Third engaged part, 200: Doll, 221: Base, 222: Second rail, 223: Inclined surface, 311: Insertion hole, 312: Hole, 312A: Stepped part, 321: Mounting part, 322: Back part, 3 23: Protruding part, 324: First deformable member, 325: Second deformable member, 326: Convex part, 411: Housing part, 411A: First housing part, 411B: Second housing part, 412: Floor surface part, 413: Connecting member, 414: Support part, 415: Smooth surface, 416: Curved surface, 417: Plate-shaped part, 418: Extension part, 421: First connecting part, 422: Second connecting part, 423: Gripping part, 424: Claw part, 424A: Flat plate member, 424B: First engaging part, 424C: Second engaging part, 425: First member, 425A: Hole, 426: Second member, 427: Third member, 428: First projection, 429: Second projection
Claims
1. A main body having a shaft, A base portion that supports the main body portion, It comprises a rotating mechanism connected to the main body, The aforementioned rotating mechanism is A rotating body comprising an insertion hole configured for the insertion of the shaft portion and at least one hole, wherein the rotating body is rotatable around the shaft portion, It has a gondola member that is detachably attached to the rotating main body, The gondola member is provided with a projection configured to be inserted into the hole, The aforementioned protrusion comprises a first deformable member and a second deformable member arranged at a distance from the first deformable member. An amusement park toy in which, when the protruding portion is inserted into the hole, the first deformable member and the second deformable member deform so that they move closer to each other.
2. The first deformation member is positioned above the second deformation member. The amusement park toy according to claim 1, wherein the protrusion distance of the first deformable member is longer than the protrusion distance of the second deformable member.
3. The tip of the first deformable member has a protruding portion that extends upward, The amusement park toy according to claim 1 or claim 2, wherein the protrusion engages with the hole.
4. The amusement park toy according to claim 1 or claim 2, wherein the base portion includes a first base member and a second base member provided at a distance from the first base member.
5. The aforementioned rotating mechanism is provided on the front side of the main body, The amusement park toy according to claim 4, wherein the second base member is provided behind the rotating mechanism.