Toy
The toy design addresses complexity in conventional toys by using a movable body within a container with visible and invisible spaces, offering enhanced entertainment through a single moving object that simulates beverage consumption with clear movement and sound effects.
Patent Information
- Application Number
- JP2024105804
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2026-01-16
AI Technical Summary
Conventional toys simulating beverage consumption are constructed using many parts, which can be complex and less entertaining.
A toy design featuring a movable body within a container body with visible and invisible spaces, allowing the body to transition between states to create the illusion of content reduction using a single moving object, with features like a handle, decorative areas, and a simple, integrally formed structure.
Provides a highly entertaining toy that simulates beverage consumption with a simple configuration, using a single moving body to create the illusion of content reduction through visible and invisible spaces, enhanced by contact sounds and clear movement guidance.
Smart Images

Figure 2026006669000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to toys. [Background technology]
[0002] Conventionally, Patent Document 1 discloses a toy containing a simulated beverage inside a container, in which the beverage inside appears to be consumed and reduced as the user performs an action to drink the beverage. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Utility Model Application Publication No. 50-89498 Summary of the Invention [Problem to be solved by the invention]
[0004] In Patent Document 1, the current situation is that the beverage is constructed using many parts.
[0005] An object of the present invention is to provide a highly entertaining toy. [Means for solving the problem]
[0006] (1) A moving object and a container body that movably houses the movable body, the movable body is movable along an inner circumferential surface that forms the storage space of the container body, The storage space includes a first space configured to be visible from the outside and a second space configured to be invisible from the outside, The toy is capable of taking a first state in which the entire moving body is located in the first space, and a second state in which a part of the moving body is located in the second space and another part different from the part is located in the first space.
[0007] (2) (1) A toy according to the present invention, The toy, wherein the first space and the second space are adjacent to each other in the direction in which the movable body is movable.
[0008] (3) A toy according to (1) or (2), The toy has an outer peripheral surface of the moving body that is shaped to fit along the inner peripheral surface.
[0009] (4) A toy according to any one of (1) to (3), The toy has an outer circumferential surface of the moving body that slides against the inner circumferential surface.
[0010] (5) A toy according to any one of (1) to (4), The toy, wherein the moving body is pillar-shaped.
[0011] (6) (5) A toy according to the present invention, The moving body is a toy configured such that one end on the second space side is closed and the other end opposite to the one end is open.
[0012] (7) (6) A toy according to the present invention, The toy, wherein the outer circumferential surface of the moving body is configured as an inclined surface whose diameter decreases from the other end to the one end.
[0013] (8) A toy according to any one of (5) to (7), A handle is provided on the outer circumferential surface of the container body, A toy wherein one end of the handle is positioned on the outer peripheral surface corresponding to the first space through which one end of the movable body on the second space side can pass when the movable body moves to change from the first state to the second state.
[0014] (9) A toy according to any one of (5) to (8), A decorative area is provided on the outer circumferential surface of the container body, A toy wherein the decorative area is provided at a position including the outer peripheral surface corresponding to the first space through which one end of the moving body on the second space side can pass when the moving body moves to change from the first state to the second state.
[0015] (10) A toy according to any one of (1) to (9), In the first state, the end face of the moving body on the second space side is spaced apart from the boundary between the second space and the first space.
[0016] (11) A toy according to any one of (1) to (10), A toy wherein the length of the movable body in the direction of movement in the internal space of the container body is greater than the combined length of the movable body in that direction and the length of the second space in that direction.
[0017] (12) A toy according to (11), A toy, wherein the length of the movable body in the movable direction is greater than the length of the second space in the movable direction.
[0018] (13) A toy according to any one of (1) to (12), The toy includes a container body including a first container member having an opening, and a second container member that closes the opening and covers a portion of the internal space of the first container member on the opening side so that it cannot be seen from the outside.
[0019] (14) A toy according to (13), a connecting shaft portion provided inside the first container member and extending from an end portion opposite to the opening side toward the second container member, The toy, wherein the first container member and the second container member are connected at the connecting shaft portion.
[0020] (15) A toy according to (14), The first container member and the second container member are connected by a connecting member inserted from the connecting shaft side, and are attached at a position that cannot be seen from the outside.
[0021] (16) A toy according to (14) or (15), The connecting shaft portion is formed in a tapered shape that narrows toward the second container member.
[0022] (17) A toy according to any one of (14) to (16), The toy, wherein the first container member and the connecting shaft portion are each formed of a light-transmitting material.
[0023] (18) A toy according to any one of (14) to (17), The toy, wherein the first container member and the connecting shaft portion are integrally formed.
[0024] (19) A toy according to any one of (14) to (18), The moving body has a through hole through which the connecting shaft passes, and moves along the connecting shaft.
[0025] (20) A toy according to (19), A toy, wherein an inner wall surface constituting the through hole of the movable body is configured as an inclined surface whose hole diameter widens toward the second container member.
[0026] (twenty one) A toy according to any one of (13) to (20), The container body is modeled after a baby bottle, The moving object is a toy that imitates a fluid object.
[0027] (twenty two) (21) A toy according to the present invention, The second container member is a toy that resembles a drinking spout and lid.
[0028] (twenty three) A toy according to (22), The toy has a rib provided on the inside of the second container member that abuts against the movable body so as to be able to position the movable body in a predetermined posture. [Effects of the Invention]
[0029] According to the present invention, a highly entertaining toy can be provided. [Brief explanation of the drawings]
[0030] [Figure 1] 1 is a perspective view showing an example of a toy according to an embodiment of the present invention. [Figure 2] FIG. 2 is a side view of the toy shown in FIG. [Figure 3] FIG. 2 is a vertical cross-sectional view of the toy shown in FIG. [Figure 4] FIG. 2 is an exploded cross-sectional perspective view of the toy shown in FIG. [Figure 5] FIG. 10 is a cross-sectional view showing a state before a moving body starts to move when the toy is operated. [Figure 6] FIG. 10 is a cross-sectional view showing an example of a moving state of a moving body in the middle of its movement when the toy is operated. [Figure 7] FIG. 10 is a cross-sectional view showing another example of a moving state of the moving body in the middle of its movement when the toy is operated. [Figure 8] FIG. 10 is a cross-sectional view showing another example of a moving state of the moving body in the middle of its movement when the toy is operated. [Figure 9] FIG. 10 is a cross-sectional view showing a state in which the moving body has completed its movement when the toy is operated. DETAILED DESCRIPTION OF THE INVENTION
[0031] Hereinafter, a toy according to one embodiment of the present invention will be described with reference to the drawings. Fig. 1 is a perspective view showing an example of a toy according to one embodiment of the present invention, and Fig. 2 is a side view of the toy shown in Fig. 1.
[0032] As shown in FIGS. 1 and 2, toy 1 is a container body 8 resembling a baby bottle that can be placed on a predetermined placing surface, and includes a first container member 20 (see FIG. 3) and a second container member 30. In this embodiment, up and down are described based on the state in FIG. 2, with the first container member 20 being the upper side and the second container member 30 being the lower side. Container body 8 includes a second container member 30 resembling a lid with a drinking spout 31, located above the lower, substantially cylindrical first container member 20. The internal storage space S formed by these two container members 20, 30 includes a cylindrical movable body 10 that can move in the height direction of storage space S. The movable body 10 resembles milk or other fluids in a baby bottle.
[0033] Furthermore, since the first container member 20 is modeled after the main body of a baby bottle, it is made of a light-transmitting material so that the interior can be seen. On the other hand, the second container member 30 is made of a colored material so that the interior cannot be seen. Therefore, as shown in FIG. 2, when viewed from the side, the storage space S of the toy 1 is vertically divided into a lower first space S1 whose interior can be seen, and an upper second space S2 whose interior cannot be seen. In other words, the first space S1 and the second space S2 are adjacent to each other in the direction in which the movable body 10 can move.
[0034] In this way, the first space S1, the interior of which can be seen, and the second space S2, the interior of which cannot be seen, are adjacent to each other, so that the moving body 10 can be in a first state in which it is located in the first space S1 so that the entire moving body 10 can be seen, and a second state (see Figure 9) in which part of it is located in the second space S2, with both invisible and visible parts present. This makes it possible to create the illusion of a reduction in floating objects using a single moving body 10.
[0035] The outer peripheral surface of the first container member 20 is provided with a handle 40 and a decorative area 50. The handles 40 are arranged in pairs on the left and right sides at 180-degree opposite sides in the circumferential direction of the outer peripheral surface 20us of the first container member 20. The handles are curved with two attachment points in the vertical direction (height direction), and can be held by the handles 40 when playing a game of drinking the contents. The decorative area 50 is a portion to which a sticker or the like is attached, and as shown in the figure, is, for example, oval-shaped, and is a portion on which a predetermined character or a pattern or letter related to the character is drawn.
[0036] Here, since the movable body 10 is modeled after a liquid such as milk, it is positioned downward and does not move when it is in an upright position (standing position) as shown in the figure. That is, as will be described later, when the container body 8 is tilted, which is the operation of drinking the liquid, the movable body 10 is configured so that its outer peripheral surface 10us moves in the height direction of the container body 8 as described above along the inner peripheral surface 20is of the storage space S. For example, the length (L1) in the height direction of the storage space S is configured to be sufficiently large to have a movable length (L3) compared to the length (L2) of the movable body 10 in the movement direction.
[0037] 2, the upper end 10a constituting the end face on one end side of the movable body 10 is located at a predetermined distance (L5) from the boundary between the second space S2 and the first space S1, i.e., the lower end 30d of the second container member 30. The length (L1) of the movable body 10 in the movement direction in the internal space of the container body 8 is configured to be greater than the combined length of the height of the movable body 10 (length (L2) in the movement direction) and the length (L4) of the second space S2 in the movement direction. Furthermore, the length (L2) of the movable body 10 in the movement direction is configured to be greater than the length (L4) of the second space S2 in the movement direction.
[0038] 2, the attachment position of the handle 40 on the outer peripheral surface 10us of the container body 8 is, for example, arranged such that its upper attachment end 41 is located at a position through which the upper end 10a of the movable body 10 passes when the movable body 10 moves to change from the first state to the second state. For example, the attachment end 41 is located between the lower end 30d of the second container member 30 (at a height of (L2+L4) from the container bottom) and the upper end 10a of the movable body 10.
[0039] 2, the decorative area 50 on the outer peripheral surface 10us of the container body 8 is positioned so as to overlap with the upper end 10a of the movable body 10. That is, the decorative area 50 is positioned so that the upper end 10a of the movable body 10 moves past the decorative area 50 when the movable body 10 changes from the first state to the second state. In this way, the decorative area 50 and the mounting end 41 of the handle 40 are positioned in the movement area of the upper end 10a of the movable body 10, thereby providing a clear indication of the movement of the movable body 10.
[0040] FIG. 3 is a vertical cross-sectional view of the toy 1. 3, the movable body 10 has a generally cylindrical columnar shape with an upper end 10a closed and a lower end 10b open. That is, the cylindrical outer peripheral surface 10us is configured to be movable by sliding along the cylindrical inner peripheral surface 20is of the first container member 20.
[0041] The movable body 10 has a double-wall structure in which an outer wall 10u and an inner wall 10i are connected at the upper end 10a. The outer wall 10u has an outer peripheral surface 10us that is configured as an inclined surface whose diameter decreases from the lower end 10b to the upper end 10a. The inner wall 10i has an inner peripheral side surface 10is that is configured as a through hole 10th that is inclined and whose diameter increases from the lower end 10b to the upper end 10a.
[0042] FIG. 4 is an exploded perspective view of the toy 1. As shown in FIG. As shown in FIG. 4, the second container member 30 is attached to the opening 20a of the first container member 20 so as to close the opening 20a. This attachment is performed, for example, using a connecting member 60, which is a single screw member. For example, a cylindrical connecting shaft portion 20c extending from the first space S1 toward the second space S2 is provided on the bottom portion 20b of the first container member 20. The connecting shaft portion 20c is hollow, and a threaded hole 20ch is formed on the outer circumferential surface and tip of the connecting shaft portion 20c, through which the connecting member 60 can pass. The outer surface 20cu and the inner surface 20ci are tapered toward the tip. The connecting shaft portion 20c is integrally formed with the first container member 20 and is made of the same optically transparent material as the first container member 20.
[0043] The second container member 30 is open on the side opposite the spout 31 and includes a cover portion 35 that covers the opening 20a of the first container member 20 and the surrounding area by a predetermined length (L4). A central shaft portion 32 is provided in the center of the interior of the second container member 30, extending from the spout 31 toward the connecting shaft portion 20c. A plurality of ribs 33 are provided that extend radially from the central shaft portion 32 toward the cover portion 35. The edges 33e of the ribs 33 on the movable body 10 side are configured at the same height as the movable body 10, forming a plane that can come into contact with the upper end portion 10a of the movable body 10. Due to the configuration of the ribs 33, as described below, the edges 33e can receive the movable body 10 when it moves and position it in a predetermined posture.
[0044] The first container member 20 and the second container member 30 configured in this manner are fastened together by a joining member 60 inserted from the base end 20cb side of the connecting shaft portion 20c. The fastening position of the connecting shaft portion 20c and the central shaft portion 32 is not visible from the outside when the container body 8 is viewed from the side (see FIG. 3).
[0045] FIG. 5 is a cross-sectional view showing a state before the moving object 10 starts to move when the toy 1 is operated. To play with the toy 1, for example, the handle 40 is held and operated to lift the bottom of the container body 8 as shown by the arrow in Fig. 5. At this time, the container body 8 begins to tilt, and when it tilts beyond a predetermined level, the outer peripheral surface 10us of the movable body 10 tilts so as to come into contact with the inner peripheral surface 20is of the container body 8, resulting in the state shown in Fig. 5. The tilt is further increased from the horizontal state shown in Fig. 5, but due to friction between the inner peripheral surface 20is and the outer peripheral surface 10us, the movable body 10 does not start moving immediately.
[0046] Fig. 6 is a cross-sectional view showing an example of a moving state of the moving body 10 in the middle of its movement when operating the toy 1. Figs. 7 and 8 are cross-sectional views showing other examples of a moving state of the moving body 10 in the middle of its movement.
[0047] After the container body 8 has been lifted, when the inclination angle of the container body 8 reaches a certain value or more (for example, about 40 degrees), the movable body 10 moves downward with the lower end side of the outer peripheral surface 10us of the movable body 10 sliding on the inner peripheral surface 20is of the container body 8, as shown in Fig. 6. In the case shown in Fig. 6, the sliding of the movable body 10 is caused by contact between the outer peripheral surface 10us and the inner peripheral surface 20is.
[0048] Unlike the case shown in Fig. 6, the case shown in Fig. 7 is a case where sliding occurs due to contact between the inner peripheral side surface 10is of the through-hole 10th of the movable body 10 and the outer peripheral side surface 20cu of the connecting shaft portion 20c. In this way, when the movable body 10 moves, the difference between the case where the outer peripheral surface 10us comes into contact and the case where the inner peripheral side surface 10is comes into contact can be freely adjusted by setting the dimensions of the movable body 10 and the first container member 20. Furthermore, the inclination angle at which the movable body 10 starts to move depends on the frictional force at the contact portion. For example, in the case of the configuration shown in Fig. 7, the contact surface can be made smaller, making it easier to reduce the inclination angle at the start of movement.
[0049] 8 is the same as the case shown in FIG. 7 in that the movable body 10 contacts and slides against the inner peripheral surface 20is of the first container member 20, but the manner of contact is different. That is, in the configuration shown in FIG. 8, the movable body 10 contacts the inner peripheral surface 20is at two locations: the upper outer peripheral edge 10ae of the upper end portion 10a and the lower outer peripheral edge 10be of the lower end portion 10b. In this way, the state in which the upper outer peripheral edge 10ae and the lower outer peripheral edge 10be of the lower end portion 10b contact each other is when the movable body 10 is significantly tilted within the storage space S.
[0050] 8, when the movable body 10 is tilted significantly, for example, it is important that the center of gravity of the movable body 10 is located on the upper end 10a side. In other words, it is important that the center of gravity is located on the upper side so that the movable body 10 can easily fall over when the container body 8 is tilted. In addition, the connecting shaft portion 20c is configured to guide the movable body 10 so as to allow it to fall over.
[0051] FIG. 9 is a cross-sectional view showing a state in which the moving object 10 has completed its movement when the toy 1 is operated. 9, the upper end 10a of the movable body 10 comes into contact with the edge 33e of the rib 33, and the movable body 10 stops moving. In this state, nearly half of the movable body 10 is obscured by the cover portion 35. This makes it appear as if the amount of contents in the container body 8 has decreased.
[0052] Furthermore, when the upper end 10a of the movable body 10 abuts against the edge 33e, a contact sound is generated. On the other hand, when the container body 8 is returned to its original upright state, the lower end 10b of the movable body 10 abuts against the bottom of the container body 8, generating a contact sound. The contact sounds generated when the upper end 10a of the movable body 10 abuts against the edge 33e and when the lower end 10b of the movable body 10 abuts against the bottom of the container body 8 differ depending on the shape of the movable body and the position at which they abut.
[0053] As described above, the toy 1 of this embodiment can represent a first state in which the entire moving body 10 is visible and a second state in which part of the moving body 10 is invisible by moving the moving body 10, which is movable along the inner circumferential surface 20is of the storage space S, between a first space S1 that is a part of the storage space S and whose entire area is visible from the outside, and a second space S2 that is not visible. This makes it possible to present the effect of the contents of the storage space S decreasing by using one moving body 10. In this way, according to the present invention, a toy 1 that simulates a beverage container can be realized with a simple configuration using a single structure.
[0054] In the toy 1 of this embodiment, the storage space S in which the moving body 10 can move is divided into a first space S1 that can be seen in its entirety from the outside and a second space S2 that cannot be seen in its entirety from the outside, so that the visible size of the moving body 10 can be easily changed by moving the moving body 10.
[0055] In the toy 1 of this embodiment, the outer peripheral surface 10us of the moving body 10 is shaped to fit the inner peripheral surface 20is of the storage space S, so that the contact state of the moving body 10 with the inner peripheral surface 20is can be made the same at any position, ensuring stable movement during sliding of the moving body 10. Furthermore, because the moving body 10 has a cylindrical shape, the contact surface with the inner peripheral surface 20is can be made small.
[0056] In the toy 1 of this embodiment, the movable body 10 has one end (the upper end 10a on the visible side) closed, so that the surface of the contents can be represented by the movable body 10. Furthermore, the mass of the movable body 10 can be easily biased toward the closed side, and the center of gravity of the movable body 10 can be biased toward the one end.
[0057] In the toy 1 of this embodiment, the outer surface 10us of the moving body 10 is configured as an inclined surface so that the diameter becomes smaller from the open other end side (lower end 10b) to the closed one end side (upper end 10a), thereby making it easier to release from the mold during molding and improving moldability.
[0058] In the toy 1 of this embodiment, the handle 40 is provided on the container body 8, which improves the ease of handling of the toy 1. Furthermore, one end of the handle 40 is provided on the path along which the moving body 10 moves, so that the one end can be used as a guide to easily understand the movement of the moving body 10.
[0059] In the toy 1 of this embodiment, the decorative area 50 provided on the outer peripheral surface 10us of the container body 8 is provided in a position that makes it easy to compare its position with one end of the moving body 10, and can therefore be used as a guide for the movement of the moving body 10.
[0060] In the toy 1 of this embodiment, in the first state, the tip portion (upper end portion 10a) of the moving body 10 in the direction of movement is in a visible position away from the boundary between the second space S2 and the first space S1, so that the movement of the moving body 10 can be clearly seen from the very beginning.
[0061] In the toy 1 of this embodiment, the length (L2) of the moving body 10 in the direction of movement is configured to be greater than the length (L4) of the second space S2 in the direction of movement, so that the moving body 10 is visible in the second state, making it possible to create the impression that the contents remain.
[0062] In the toy 1 of this embodiment, the opening 20a of the first container member 20 and a portion of the first container member 20 are covered with the opaque second container member 30, thereby providing a container that changes the visible portion of the moving body 10 as the moving body 10 moves.
[0063] Furthermore, according to the toy 1 of this embodiment, the connecting shaft portion 20c extends inside the first container member 20 toward the second container member 30, making it possible to position the connecting portion in an area that cannot be seen from the outside.
[0064] In the toy 1 of this embodiment, the connecting shaft portion 20c is configured in a tapered shape that tapers toward the second container member 30, which improves moldability when the first container member 20 is integrally molded.
[0065] In the toy 1 of this embodiment, the connecting shaft 20c is made of a light-transmitting material, which can prevent the container from feeling out of place inside. Also, the joining member 60 can be easily seen, which makes the fastening operation easier.
[0066] In the toy 1 of this embodiment, the connecting shaft 20c is configured to pass through the through-hole 10th of the moving body 10, so that the connecting shaft 20c can be used as a movement assisting member for the movement of the moving body 10.
[0067] Furthermore, according to the toy 1 of this embodiment, the inner wall 10i constituting the through-hole 10th of the moving body 10 is configured as an inclined surface whose hole diameter increases toward the second container member 30, thereby allowing the moving body 10 to tilt within the container. Furthermore, the inclined structure can also be used as a configuration that facilitates release of the moving body 10 from the mold when it is molded.
[0068] In the toy 1 of this embodiment, the rib 33 provided on the inside of the second container member 30 abuts against the moving body 10 at the end of its movement, thereby determining the posture of the moving body 10 and generating a contact sound when the rib abuts. This contact sound can notify the user that the moving body 10 has reached its limit. In addition, an operation sound can be produced to notify the user that the moving body 10 has completed its movement.
[0069] Although one embodiment of the present invention has been described above, the present invention can be modified as appropriate within the scope of its technical concept. For example, in the above embodiment, the container body 8 and the movable body 10 have a cylindrical configuration, but this configuration is not limited thereto, and the cross-sectional shape may be rectangular or polygonal.
[0070] Furthermore, in the above embodiment, the connecting shaft portion 20c is provided in the accommodation space S, but the connecting shaft portion 20c may be omitted. [Explanation of symbols]
[0071] 1 toy 8 Container body 10 Mobile 10th through hole 10us outer surface 20 First container member 20a opening 20c Connecting shaft part 20is inner surface 30 second container member 33 Ribs 40 Toride 50 Decoration Area 60 Connecting member S Storage space S1 1st space S2 2nd space
Claims
1. A moving object and a container body that movably accommodates the movable body, the movable body is movable along an inner circumferential surface that forms the storage space of the container body, The storage space includes a first space configured to be visible from the outside and a second space configured to be invisible from the outside, The toy is capable of taking a first state in which the entire moving body is located in the first space, and a second state in which a part of the moving body is located in the second space and another part different from the part is located in the first space.
2. 10. The toy of claim 1, The toy, wherein the first space and the second space are adjacent to each other in the direction in which the movable body is movable.
3. 3. The toy according to claim 2, A toy, wherein the outer peripheral surface of the moving body is shaped to fit along the inner peripheral surface.
4. 4. The toy according to claim 3, The moving body is a toy in which the outer peripheral surface of the moving body slides against the inner peripheral surface.
5. 5. The toy according to claim 4, The toy, wherein the moving body is pillar-shaped.
6. 6. The toy according to claim 5, The moving body is a toy configured such that one end on the second space side is closed and the other end opposite to the one end is open.
7. 7. The toy according to claim 6, The toy, wherein the outer circumferential surface of the movable body is configured as an inclined surface whose diameter decreases from the other end to the one end.
8. 8. The toy of claim 7, A handle is provided on the outer circumferential surface of the container body, A toy wherein one end of the handle is positioned on the outer surface corresponding to the first space through which one end of the movable body on the second space side can pass when the movable body moves to change from the first state to the second state.
9. 9. The toy of claim 8, A decorative area is provided on the outer circumferential surface of the container body, A toy wherein the decorative area is provided at a position including the outer peripheral surface corresponding to the first space through which one end of the moving body on the second space side can pass when the moving body moves to change from the first state to the second state.
10. 10. The toy of claim 9, A toy, wherein in the first state, an end face of the movable body on the second space side is separated from a boundary between the second space and the first space.
11. 11. The toy of claim 10, A toy wherein the length of the movable body in the direction of movement in the internal space of the container body is greater than the combined length of the movable body in the direction of movement and the length of the second space in the direction of movement.
12. 12. The toy of claim 11, A toy, wherein the length of the movable body in the movable direction is greater than the length of the second space in the movable direction.
13. 13. The toy of claim 12, The container body includes a first container member having an opening, and a second container member that closes the opening and covers a portion of the opening side of the internal space of the first container member so that it cannot be seen from the outside.
14. 14. The toy of claim 13, a connecting shaft portion provided inside the first container member and extending from an end portion opposite to the opening side toward the second container member, The toy, wherein the first container member and the second container member are connected at the connecting shaft portion.
15. 15. The toy of claim 14, The toy, wherein the first container member and the second container member are connected by a connecting member inserted from the connecting shaft portion side and attached at a position that cannot be seen from the outside.
16. 16. The toy of claim 15, The connecting shaft portion is formed in a tapered shape that tapers toward the second container member.
17. 17. The toy of claim 16, The toy, wherein the first container member and the connecting shaft portion are each formed of a light-transmitting material.
18. 18. The toy of claim 17, The toy, wherein the first container member and the connecting shaft portion are integrally formed.
19. 19. The toy of claim 18, The moving body has a through hole through which the connecting shaft portion passes, and moves along the connecting shaft portion.
20. 20. The toy of claim 19, A toy, wherein an inner wall surface constituting the through hole of the movable body is configured as an inclined surface whose hole diameter widens toward the second container member.
21. 21. The toy of claim 20, The container body is shaped like a baby bottle, The toy, wherein the moving object imitates a fluid object.
22. 22. The toy of claim 21, The second container member is a toy that simulates a drinking spout and lid.
23. 23. The toy of claim 22, A toy, wherein a rib is provided on the inside of the second container member to abut against the movable body so as to be able to position the movable body in a predetermined posture.
Citation Information
Patent Citations
Toy charged with liquid
JP1995265551A
Moving doll toy made of clay
JP2002102546A
JP1975089498U