Toy
Patent Information
- Application Number
- JP2025044420
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2026-01-20
AI Technical Summary
Existing toys that mimic operation members, such as steering wheels, fail to replicate the operation feeling of the real thing, lacking authenticity and interest.
A toy design featuring a main body portion and a sub-body portion that can be fitted into a hole, allowing the sub-body portion to be rotatable with a grip portion, and incorporating first and second protrusions that create a clicking sensation and sound upon rotation.
The toy provides a realistic operation feeling and high interest through the rotation mechanism and audible feedback, enhancing user engagement.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a toy.
Background Art
[0002] Conventionally, there are toys that mimic an operation member to be held by hand and perform a predetermined operation. For example, in Patent Document 1, there is a toy including a play portion formed to mimic the steering wheel of an automobile on a main body, a connecting portion for connecting attachment means is disposed at the lower portion of the main body, and the connecting portion is connected to either a detachable attachment means for an attachment portion extending in the vertical direction or a detachable attachment means for an attachment portion extending in the horizontal direction according to the shape of the attachment portion. Thus, a steering wheel toy is disclosed that enables the toy main body to be attached to an attachment portion extending in either the vertical direction or the horizontal direction.
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] In Patent Document 1, the steering wheel toy has a problem that its operation feeling is significantly different from that of the actual one.
[0005] An object of the present invention is to provide a toy in which the operation feeling of an actual operation portion is close to that of the real thing and has high interestingness.
Means for Solving the Problems
[0006] A toy according to an aspect of the present invention is a toy that mimics an operation portion, and includes a main body portion and a sub-body portion that can be fitted into a hole formed in the main body portion. The sub-body portion is configured to be rotatable on the condition that the grip portion formed on the sub-body portion is gripped.
Advantages of the Invention
[0007] According to the present invention, a highly interesting toy can be provided.
Brief Description of the Drawings
[0008]
Figure 1
Figure 2
Figure 3
Figure 4
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Figure 7
Figure 8
Figure 9
Figure 10
Figure 11
Figure 12
Figure 13
Modes for Carrying Out the Invention
[0009] Hereinafter, a toy according to an aspect of the present invention will be described with reference to the drawings. FIG. 1 is a perspective view of the toy 1A(1) in a first aspect, and FIG. 2 is an exploded perspective view of the toy 1A. In the following description with reference to the drawings, the front (front side) is described with the front side being the near side when the toy is viewed from the front, and the opposite side (opposite direction) being the rear (rear side).
[0010] The toy 1A shown in FIG. 1 is a toy that mimics an operation unit provided on the front side of an article supply device when purchasing a predetermined article. For example, its overall shape includes a main body part 10 with a large diameter (maximum diameter D1 of the main body part 10) formed by an outer member in the shape of a disk, and a disk-shaped sub-body part 20 with a small diameter (maximum diameter D2 of the sub-body part 20) rotatably provided inside the main body part 10. The main body part 10 has, for example, a combined structure of a front part 11 and a rear part 12 as shown in FIG. 2, and the sub-body part 20 is configured to fit into a hole 11h formed in the main body part 10. And the sub-body part 20 can be rotated by gripping a gripping part 23 formed on its front side, as will be described later.
[0011] In the main body part 10, its front part 11fs is configured as a flat annular part, and on this front part 11fs, a mark M which is an arrow mark indicating the first direction X of rotation of the sub-body part 20 is marked. Note that the sub-body part 20 is also configured to be rotatable in a second direction Y which is the opposite direction to the first direction X. For example, in the article supply device, the rotation operation direction for acquiring an article is the direction indicated by the mark M (clockwise rotation direction). Also, the main body part 10 and the sub-body part 20 are configured in different colors so that it can be understood that they are different members at a glance.
[0012] The holding part 23 is formed between the first concave part 25 and the second concave part 26 on the front surface of the auxiliary body part 20. As a result, the holding surfaces 23a on the front and back of the holding part 23 become deeper on the rear side of the auxiliary body part 20 and form a large flat surface. Further, in the holding part 23, the non-holding surface 23b, which is the front end surface at the position sandwiched between the two holding surfaces 23a, has, for example, an arc-shaped protruding structure in which the central part protrudes toward the front side, and protrudes to the front side of the front surface 11fs.
[0013] FIG. 3 is an exploded perspective view of the main body part 10 of the toy 1A shown in FIG. 1 as viewed from the back side. The front part 11 of the main body part 10 is connected with a predetermined interval through a wall part that constitutes the front part 11fs (see FIG. 2) between an outer wall 11u that constitutes the outer peripheral surface 11us and an inner wall 11i that constitutes the inner peripheral surface 11is. For example, a plurality of connecting concave parts 11b are provided between the outer wall 11u and the inner wall 11i, and the connecting part 12b of the rear part 12 is inserted into the connecting concave part 11b, so that the front part 11 and the rear part 12 are connected.
[0014] Further, the outer surface 12us on the rear side of the rear part 12 is configured as a flat surface having approximately the same diameter as the main body part 10. Therefore, a layer such as an adhesive layer or a magnet that can be attached to the surface of another article can be provided on the outer surface 12us of the rear part 12 with a large area, and thus, it can be firmly attached in surface contact with the surface of another article. In addition to being played as a simulation toy of the operation part, the toy 1A can be used as a practical article that makes it easier to hold a tablet or the like by, for example, attaching it to the back side of a mobile phone or other tablet.
[0015] FIG. 4 is a cross-sectional view taken along the line A-A of the toy 1A shown in FIG. 1. As shown in FIG. 4, the main body portion 10 is combined with a rear surface part portion 12 so as to close the front surface part portion 11 having the hole 11h from the rear side thereof. By this combination, a closed space SP is formed by the main body portion 10 and the sub-body portion 20. The sub-body portion 20 is fitted so that its outer peripheral surface 20us faces the inner peripheral surface 11is of the main body portion 10. Further, the sub-body portion 20 is configured such that the rear end surface 20ae of its outer peripheral wall 20a faces the rear surface wall 12a of the rear surface part portion 12, while the tip portions of a second protrusion portion 22 and an abutment auxiliary portion 28, which will be described later, formed on a part of the outer peripheral wall 20a face the rear end surface 11c of the inner wall 11i of the front surface part portion 11. That is, the sub-body portion 20 is configured to be sandwiched between the front surface part portion 11 and the rear surface part portion 12.
[0016] FIG. 5 is an enlarged perspective view of the rear surface part portion 12 of the main body portion 10, and FIG. 6 is a perspective view of the sub-body portion 20 viewed from the rear side.
[0017] As shown in FIG. 5, the main body portion 10 includes a front-side first protrusion portion 17a (shown by an imaginary line) and a rear-side first protrusion portion 17b (hereinafter, these are collectively referred to as the first protrusion portion 17). As shown in FIG. 6, the sub-body portion 20 includes a second protrusion portion 22 that can abut against the first protrusion portion 17 by its rotation. And the sub-body portion 20 is rotatably held in a state where, for example, one second protrusion portion 22 can abut against both the front surface part portion 11 and the rear surface part portion 12.
[0018] The first protrusion portion 17 provided on the main body portion 10 is divided into a front-side first protrusion portion 17a provided on the front surface part portion 11 and a rear-side first protrusion portion 17b provided on the rear surface part portion 12. The rear-side first protrusion portion 17b is formed, for example, as a plurality of convex structures protruding in a semi-cylindrical shape on the inner surface side of a protruding wall 12c provided on the inner surface 12is of the rear surface wall 12a. On the other hand, the front-side first protrusion portion 17a is formed as a cylindrical protrusion protruding rearward at a position straddling the side wall portion and the rear end surface 11c of the connection recess 11b of the front surface part portion 11 (see FIG. 3).
[0019] On the other hand, the rear-side first protrusions 17b form a first pattern in which, for example, four sub-groups 17sg (groups formed on one protruding wall 12c) are arranged at equal intervals in the circumferential direction of the main body 10 as one unit, and a total of 16 first groups are configured with four sets of these sub-groups 17sg arranged at a phase interval of 90 degrees in the circumferential direction. Further, the front-side first protrusions 17a form a second group configured as, for example, two columnar protrusions spaced 180 degrees apart in the circumferential direction, which is a second pattern different from the first pattern. Also, the front-side first protrusions 17a are arranged so as to be positioned between the sub-groups 17sg.
[0020] While the first protrusions 17 have a protruding structure that does not elastically displace with respect to the main body 10, the second protrusions 22 are configured to be elastically displaceable as a part of the outer peripheral wall 20a of the sub-body 20 with a pair of slits 20s therebetween, as shown in FIG. 6. For example, the second protrusions 22 are provided at the tip of the bent portion 21 between the slits 20s, and have a protruding structure that protrudes radially outward from the outer peripheral surface 20us at the tip of the bent portion 21 and has a predetermined length (L) in the circumferential direction. The second protrusions 22 include a tip protrusion 22a that protrudes most prominently in its protruding shape and a base protrusion 22b that protrudes slightly lower than the tip protrusion 22a. Note that the bent portion 21 is configured to be thinner than the thickness of the outer peripheral wall 20a and is easily bendable.
[0021] Also, as shown in FIG. 6, the sub-body 20 is provided with a contact auxiliary portion 28 that can contact the inner peripheral surface 11is of the main body 10 on the side opposite to the second protrusions 22 in the circumferential direction of the sub-body 20. This contact auxiliary portion 28 includes a bent portion 27 having a contact protrusion 28b similar in shape to the second protrusions 22 at its tip between the pair of slits 20s. This contact auxiliary portion 28 can bring the contact protrusion 28b into contact with the first protrusions 17. That is, when the second protrusions 22 contact the first protrusions 17, it is possible to apply a biasing force that assists the contact force from the opposite side, and a biasing force that stabilizes the rotation of the sub-body 20 can be applied.
[0022] When the auxiliary body part 20 is incorporated into the main body part 10, for example, it can be attached by operating so as to be pushed into the hole 11h from the front side of the assembled main body part 10. That is, when the auxiliary body part 20 is inserted and incorporated into the main body part 10, the second protrusion part 22 and the contact auxiliary part 28 can be elastically deformed inward and inserted, and return to their original positions simultaneously with the end of the insertion. Thereby, the auxiliary body part 20 is positioned so that the second protrusion part 22 and the contact protrusion 28b are caught by the rear end surface 11c of the front part 11 and held by the main body part 10. (The state shown in FIG. 4).
[0023] The engagement state between the first protrusion part 17 and the second protrusion part 22 will be described with reference to FIGS. 7 and 8. FIG. 7 is a cross-sectional view of a portion along line B-B in FIG. 4, showing a state where the second protrusion part is not in contact with the first protrusion part. FIG. 8 is a cross-sectional view showing a state where the second protrusion part 22 is in contact with the first protrusion part 17. In the following description, the movement when the auxiliary body part 20 is rotated in the clockwise direction (mark M) will be described.
[0024] The second protrusion part 22 can come into contact with the first protrusion part 17 by rotating the auxiliary body part 20. For example, when in the position shown in FIG. 7, the second protrusion part 22 is not in contact with the first protrusion part 17. For example, the second protrusion part 22 is located where its base protrusion 22b is out of the subgroup of the rear-side first protrusion part 17b. Here, the length (L) of the base protrusion 22b is configured to be smaller than the interval (L1) between the front-side first protrusion part 17a and the rear-side first protrusion part 17b located on the downstream side in the rotation direction of the auxiliary body part 20. That is, a state where the second protrusion part 22 does not contact any of the first protrusion parts 17 can be created.
[0025] When the sub-body portion 20 is rotated, the second protrusion 22 has the side edge portion 22e on the tip side in the rotation direction abut against the rear surface side first protrusion 17b at the end of the adjacent sub-group 17sg. Thereafter, as the rotation proceeds as shown in FIG. 8, the bending portion 21 elastically displaces radially inward of the bent sub-body portion 20 while overcoming the rear surface side first protrusion 17b. Then, it successively overcomes a plurality of rear surface side first protrusions 17b. At this time, each time the second protrusion 22 abuts against the rear surface side first protrusion 17b, a click feeling is generated and a clicking sound of the abutment is generated.
[0026] The sound of the abutment of the second protrusion 22 is a short rhythm sound at regular intervals when passing through the sub-group 17sg, and between adjacent sub-groups 17sg, since the distance between the protrusions is slightly apart, a click feeling and sound of a slightly longer rhythm are generated. Here, as a structure for generating sound, for example, as described above, the second protrusion 22 having a two-stage structure is effective for generating sound. For example, by providing the tip protrusion 22a that most protrudes at the tip in the rotation direction, when overcoming the rear surface side first protrusion 17b, it largely displaces inward and then displaces so as to return outward. At the time of the return displacement at this time, the second protrusion 22 hits the rear surface side first protrusion 17b, making it possible to increase the sound.
[0027] Also, the second protrusion 22 can generate a similar click feeling and sound when overcoming the front surface side first protrusion 17a. Regarding the front surface side first protrusion 17a, for example, the radial position of the main body portion 10 can be arranged to be more inward than the rear surface side first protrusion 17b. Thereby, at the position of the front surface side first protrusion 17a, the displacement of the second protrusion 22 inward becomes larger, and the click feeling and the sound can be made louder.
[0028] FIG. 9 is a perspective view of the toy 1B(1) in the second aspect of the present invention. FIG. 10 is an exploded perspective view of the toy 1B in the second aspect. FIG. 11 is a perspective view of the front part shown in FIG. 10 as viewed from the rear side.
[0029] The toy 1B(1) shown in this embodiment has the same overall shape as that shown in FIG. 1, except that the mark M indicating the rotational direction in the first direction is a continuous arrow shape and the width of the front surface 11fs is slightly larger. The structure of this embodiment that is significantly different from the above-described embodiment is that, as shown in FIGS. 10 and 11, the internal structure of the main body 10 is different.
[0030] In the main body 10, as shown in FIG. 10, the rear part 12 has a flat back wall 12a on both the front and back sides, and a cylindrical connecting part 12b is provided inside thereof, and is configured to be inserted and connected to the connecting recess 11b of the front part 11. On the other hand, as shown in FIG. 11, the front part 11 is configured with a thick inner wall 11i, and a plurality of cylindrical first protrusions 17 (17c, 17d) are provided protruding rearward over the entire circumference of the rear end surface 11c of the inner wall 11i.
[0031] The first protrusions 17 in this embodiment are composed of a first group in which four sub-groups 17sg of a plurality of rows of protrusions 17c arranged at equal intervals are arranged on the circumference at 90-degree intervals, and a total of four single protrusions 17d arranged on the circumference at 90-degree intervals one by one between each sub-group 17sg, for a total of 20 protrusion structures. The single protrusions 17d of this second group are arranged slightly closer to the inner side in the radial direction of the main body 10 than the multi-row protrusions 17c. Therefore, similar to the above-described embodiment, the displacement amount when the second protrusion 22 abuts against the single protrusion 17d can be slightly increased.
[0032] The engagement state between the first protrusion 17 and the second protrusion 22 in this embodiment will be described with reference to FIGS. 12 and 13. Note that the cross-sectional views in FIGS. 12 and 13 are cross-sections of the corresponding parts in FIGS. 7 and 8 described above, and the movement when the sub-body 20 is rotated in the direction of the mark M will also be described.
[0033] Regarding the movement when rotating the sub-body part 20 to move the second protrusion part 22, for example, when in the position shown in FIG. 12, the second protrusion part 22 contacts a subgroup of the multiple rows of protrusions 17c of the first protrusion part 17, and during its movement, for example, a clicking sound is made at regular intervals and a clicking feeling is generated. Then, as shown in FIG. 13, when it comes to a position deviated from the position of the subgroup, the second protrusion part 22 is disengaged from the engagement with the first protrusion part 17 and is located slightly closer to the outside (the outer side in the radial direction). Thereafter, by the rotation of the sub-body part 20, the second protrusion part 22 abuts against the single protrusion 17d of the second group, and the tip protrusion 22a is displaced so as to straddle the single protrusion 17d. The amount of displacement at this time is slightly larger compared to the case of the multiple rows of protrusions 17c of the subgroup. As a result, the clicking feeling and sound at the position of the single protrusion 17d become slightly larger.
[0034] As described above, the toy 1 of each aspect of the present invention is provided with a sub-body part 20 that is rotatably mounted so as to fit into the hole 11h of the main body part 10, so that the sub-body part 20 can be rotated for play.
[0035] In the toy 1, the second protrusion part 22 of the sub-body part 20 is configured to abut against the plurality of first protrusion parts 17 of the main body part 10 while elastically displacing, so that a clicking feeling can be produced when the sub-body part 20 is rotated.
[0036] Also, in the toy 1, since the first protrusion parts 17 are arranged in different arrangement patterns of the first group and the second group in their arrangement, the clicking feeling when the second protrusion part 22 abuts against the first protrusion parts 17 can be enjoyed in a plurality of patterns. In particular, in the equally spaced arrangement pattern (the first pattern), a pleasant repetitive feeling is obtained, and with the second pattern having a different interval from the first pattern, a clicking feeling with variation can be experienced.
[0037] In the toy 1, since the second protrusion 22 is configured to generate a sound when it abuts against the first protrusion 17, it is possible to enjoy the sound (click sound) along with the click feeling. Furthermore, according to the toy 1, since the main body part 10 and the sub-body part 20 are configured to form a closed space SP, the click sound between the first protrusion 17 and the second protrusion 22 can be made to resonate within the closed space.
[0038] Also, in the toy 1, since the main body part 10 is composed of a combination of the front part 11 and the rear part 12, it is easy to form an internal structure that sandwiches the sub-body part 20 between the front part 11 and the rear part 12.
[0039] In the toy 1, the outer surface 12us of the rear part 12 is configured as a flat surface and can be in surface contact with other articles and is easy to install by pasting or the like. For example, when pasted on the back side of a mobile phone or a tablet terminal, since the gripping part 23 has a click feeling and is rotatable, the gripping part 23 can be rotated to an orientation that is easy to hold according to the holding orientation of a tablet or the like.
[0040] Also, in the toy 1, since the first recess 25 and the second recess 26 are formed on both sides of the gripping part 23 in the sub-body part 20, the gripping area (gripping depth) of the gripping part 23 can be increased, and a configuration that is easy to grip can be achieved. Furthermore, since the non-gripping surface 23b, which is the protruding end surface of the gripping part 23, is formed to protrude more than the front surface 11fs of the main body part 10 that surrounds the sub-body part 20, the ease of grasping can be further improved.
[0041] According to the toy 1, since a mark M indicating the rotation direction of the sub-body part 20 is attached to the front surface 11fs of the main body part 10, its operation method is easy to understand and it is easy to handle. Also, since the colors of the sub-body part 20 and the main body part 10 are different, the distinction between the operating part and the fixed part is easy to understand.
[0042] In the toy 1, the auxiliary body part 20 is provided with an abutment auxiliary part 28 that abuts against the inner peripheral surface 11is of the main body part 10 on the side 180 degrees opposite to the second protrusion part 22 in the circumferential direction of the auxiliary body part 20. Thus, for the auxiliary body part 20, the contact during rotation, for example, can be made uniform with respect to the main body part 10, and stable rotation can be performed.
[0043] As described above, the embodiments of the present invention have been explained, but the present invention can be appropriately modified within the scope of its technical idea. For example, in the above embodiment, the configuration is such that one second protrusion part 22 is provided, but the present invention is not limited to this configuration, and for example, a configuration in which two second protrusion parts are provided may also be acceptable.
[0044] As described above, the following matters are disclosed in this specification.
[0045] (1) A toy imitating an operation part, comprising a main body part, and an auxiliary body part that can be fitted into a hole formed in the main body part, wherein the auxiliary body part is configured to be rotatable on the condition that the grip part formed on the auxiliary body part is gripped.
[0046] (2) The toy according to (1), wherein the auxiliary body part is configured to be rotatable within the hole formed in the main body part.
[0047] (3) The toy according to (1) or (2), wherein the auxiliary body part is configured to be rotatable in a first direction and a second direction opposite to the first direction.
[0048] (4) The toy according to any one of (1) to (3), wherein the main body part and the auxiliary body part each have a disk shape, and the maximum diameter of the main body part is configured to be larger than the maximum diameter of the auxiliary body part.
[0049] (5) A toy according to any one of (1) to (4), wherein the main body portion includes a first protrusion, wherein the sub-body portion includes a second protrusion, A toy, wherein the sub-body portion is configured such that the second protrusion can come into contact with the first protrusion upon rotation thereof.
[0050] (6) A toy according to (5), wherein the main body portion includes a plurality of the first protrusions, A toy, wherein the sub-body portion includes at least one of the second protrusions.
[0051] (7) A toy according to (6), wherein the plurality of first protrusions includes a first group arranged in a first pattern in the circumferential direction of the main body portion.
[0052] (8) A toy according to (7), wherein the plurality of first protrusions includes a second group arranged in a second pattern different from the first pattern in the circumferential direction of the main body portion.
[0053] (9) A toy according to (8), wherein the first pattern is a pattern in which sub-groups each consisting of a plurality of the first protrusions arranged at equal intervals in the circumferential direction are arranged at equal intervals in the circumferential direction.
[0054] (10) A toy according to (9), wherein any one of the first protrusions belonging to the second group is arranged between the sub-groups.
[0055] (11) A toy according to any one of (5) to (10), The first protrusion is configured to be non-elastically displaceable with respect to the main body portion. The second protrusion is configured to be elastically displaceable with respect to the sub-body portion, a toy.
[0056] (12) The toy according to (11), The second protrusion is configured to be deformable when it abuts against the first protrusion, a toy.
[0057] (13) The toy according to any one of (5) to (12), The second protrusion is configured to generate a sound when it abuts against the first protrusion, a toy.
[0058] (14) The toy according to any one of (5) to (13), The main body portion includes a front part portion and a rear part portion. The sub-body portion is configured to be clamped by the front part portion and the rear part portion, a toy.
[0059] (15) The toy according to (14), The sub-body portion is rotatably held in a state where it can abut against the rear part portion, a toy.
[0060] (16) The toy according to (14) or (15), The outer surface of the rear part portion is configured to be flat and to be in surface contact with the surface of another article, a toy.
[0061] (17) The toy according to (16), The outer surface of the rear part portion is configured to be attachable to the surface of the other article, a toy.
[0062] (18) The toy according to any one of (1) to (17), On the front surface of the auxiliary body portion, a first concave portion and a second concave portion are formed. The gripping portion is formed between the first concave portion and the second concave portion. Toy.
[0063] (19) The toy according to (18), The gripping portion includes a gripping surface and a non-gripping surface. The main body portion includes the front surface excluding the hole. The gripping portion is formed such that the non-gripping surface protrudes more than the front surface. Toy.
[0064] (20) The toy according to (19), On the front surface of the main body portion, a mark indicating the rotation direction of the auxiliary body portion is provided. Toy.
[0065] (21) The toy according to any one of (1) to (20), The main body portion and the auxiliary body portion are configured in different colors. Toy.
[0066] (22) The toy according to any one of (1) to (21), The main body portion and the auxiliary body portion are configured to form a closed space. Toy.
[0067] (23) The toy according to any one of (5) to (17) On the auxiliary body portion, on the 180-degree opposite side in the circumferential direction of the auxiliary body portion from the second protrusion portion, an abutment auxiliary portion that abuts at least against the inner peripheral surface of the main body portion is provided. Toy.
Explanation of reference numerals
[0068] 1 Toy 10 Main body portion 11 Front part portion 11fs Front surface 11h Hole 12 Rear part portion Outer surface of the rear part after 12 us 17 First protrusion 20 Sub-body part 22 Second protrusion 23a Gripping surface 23b Non-gripping surface 25 First recess 26 Second recess Mark M
Claims
1. A toy that resembles an operating unit, a main body portion including a first protrusion portion, a front part portion, and a rear part portion; a secondary body portion including a second protrusion portion and capable of being fitted into a hole formed in the main body portion; The secondary body portion is rotatable when grasped by a gripping portion formed on the secondary body portion, and the rotation is configured to allow the second protrusion portion to abut against the first protrusion portion.
2. 10. The toy of claim 1, The toy, wherein the secondary body portion is configured to be rotatable within the hole formed in the main body portion.
3. 3. The toy according to claim 2, The toy, wherein the secondary body is configured to be rotatable in a first direction and a second direction opposite to the first direction.
4. 4. The toy according to claim 3, The main body portion and the secondary body portion each have a disk shape, The toy is configured such that the main body portion has a maximum diameter larger than the maximum diameter of the secondary body portion.
5. The toy according to any one of claims 1 to 4, the main body portion includes a plurality of the first protrusions, The secondary body portion includes at least one second protrusion portion.
6. 6. The toy according to claim 5, The toy, wherein the plurality of first protrusions include a first group arranged in a first pattern circumferentially around the main body portion.
7. 7. The toy of claim 6, the plurality of first protrusions include a second group arranged in the circumferential direction of the main body in a second pattern different from the first pattern.
8. 8. The toy of claim 7, The toy, wherein the first pattern is a pattern in which subgroups each consisting of a plurality of the first protrusions arranged at equal intervals in the circumferential direction are arranged at equal intervals in the circumferential direction.
9. 9. The toy of claim 8, A toy, wherein any one of the first protrusions belonging to the second group is arranged between the subgroups.
10. 10. The toy of claim 9, the first protrusion is configured to be unable to be elastically displaced with respect to the main body portion, The toy is configured so that the second protrusion can be elastically displaced relative to the secondary body.
11. 11. The toy of claim 10, The toy is configured so that the second protrusion is deformable when it comes into contact with the first protrusion.
12. 12. The toy of claim 11, The toy is configured so that the second protrusion generates a sound when it comes into contact with the first protrusion.
13. The toy according to any one of claims 1 to 4, The secondary body portion is rotatably held in a state in which it can abut against the rear part portion.
14. 14. The toy of claim 13, A toy wherein the outer surface of the rear part portion is configured to be flat and capable of surface contact with the surface of another object.
15. 15. The toy of claim 14, The outer surface of the rear part portion is configured to be attachable to the surface of the other item.
16. The toy according to any one of claims 1 to 4, The secondary body has a first recess and a second recess formed on its front surface, The toy, wherein the grip portion is formed between the first recess and the second recess.
17. 17. The toy of claim 16, the gripping portion includes a gripping surface and a non-gripping surface; the main body portion includes a front surface excluding the hole; The gripping portion is formed such that the non-gripping surface protrudes beyond the front surface.
18. The toy according to any one of claims 1 to 4, A toy in which the secondary body portion is provided with an abutment auxiliary portion that abuts at least the inner surface of the main body portion on the circumferential opposite side of the secondary body portion from the second protrusion portion by 180 degrees.
19. A toy that resembles an operating unit, a main body portion including a plurality of first protrusions; a secondary body portion including at least one second protrusion portion and capable of being fitted into a hole formed in the main body portion; the secondary body is rotatable, and the rotation of the secondary body allows the second protrusion to come into contact with the first protrusion; the plurality of first protrusions include a first group arranged in a first pattern in the circumferential direction of the main body portion and a second group arranged in a second pattern different from the first pattern in the circumferential direction of the main body portion.
20. A toy that resembles an operating unit, a main body portion including a first protrusion portion; a secondary body portion including a second protrusion portion and capable of being fitted into a hole formed in the main body portion; The secondary body is rotatable, and the rotation causes the second protrusion to abut against the first protrusion, and an abutment auxiliary portion is provided 180 degrees circumferentially opposite the second protrusion of the secondary body, which abuts against at least the inner surface of the main body.