Stuffed toy

The stuffed toy design addresses mobility and entertainment limitations by integrating a torso storage compartment for a heat storage member, enhancing mobility and tactile interaction, and providing adjustable shape changes and temperature control.

JP2025173655APending Publication Date: 2025-11-28BANDAI CO LTD
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Patent Information

Application Number
JP2024079296
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-05-15
Publication Date
2025-11-28

AI Technical Summary

Technical Problem

Existing stuffed toys with integrated coolant storage systems restrict movement and lack entertainment value due to limited head and torso mobility.

Method used

A stuffed toy design featuring a main body with a head and torso, incorporating a storage compartment in the torso for a heat storage member, allowing for flexible movement and varying tactile experiences through different elastic properties and storage configurations.

Benefits of technology

The design provides a practical and entertaining stuffed toy with enhanced mobility and tactile interaction, enabling self-standing display and adjustable shape changes, while maintaining temperature control.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a stuffed toy with high practicality and high amusement.SOLUTION: A stuffed toy 1 includes a body part 5 including a head portion 10 and a trunk portion 20, and an accommodating portion 21 formed in the trunk portion 20. The accommodating portion 21 is configured to accommodate a heat storage member 30. As described above, since the stuffed toy 1 is configured such that the heat storage member 30 can be accommodated in the accommodating portion 21 of the trunk portion 20 of the stuffed toy 1, it is possible to enjoy a change in the appearance of the stuffed toy 1 and a change in the touch such as the texture between a state in which the heat storage member 30 is accommodated and a state in which the heat storage member 30 is not accommodated.SELECTED DRAWING: Figure 3
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Description

[Technical Field]

[0001] The present invention relates to a stuffed toy. [Background technology]

[0002] Conventionally, Patent Document 1 discloses a configuration in which a detachable storage section for a coolant or the like is provided, and the outer shape of the cover body is formed to resemble an animal, a vehicle, or the like. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2005-137576 Summary of the Invention [Problem to be solved by the invention]

[0004] In Patent Document 1, the coolant is stored from the head to the torso of the stuffed toy. This configuration aims to provide a cooling effect to the entire stuffed toy, but since the movement of the head and torso is restricted, the toy's movement is limited and it lacks interest.

[0005] The object of the present invention is to provide a stuffed toy that is both highly practical and highly entertaining. [Means for solving the problem]

[0006] One embodiment of the stuffed animal of the present invention is a stuffed animal comprising a main body including a head and a torso, and a storage section formed in the torso, the storage section being configured to be able to store a heat storage member. [Effects of the Invention]

[0007] According to the present invention, a stuffed toy that is both highly practical and highly entertaining can be provided. [Brief explanation of the drawings]

[0008] [Figure 1] 1 is a plan view showing the front side and heat storage member of a stuffed toy according to an embodiment of the present invention. FIG. [Figure 2] FIG. 2 is a side view of the stuffed toy and the heat storage member shown in FIG. [Figure 3] 2A and 2B are a cross-sectional view of the stuffed toy taken along line AA in FIG. 1, and a side view showing a state before storage of a heat storage member and a first stored state. [Figure 4] FIG. 2 is a perspective view showing a first display state of the stuffed toy. [Figure 5] 2 is a cross-sectional view of the stuffed toy taken along line AA in FIG. 1 and a side view showing a second storage state of the heat storage member. [Figure 6] FIG. 10 is a perspective view showing a second display state of the stuffed toy. [Figure 7] FIG. 4 is an enlarged cross-sectional view of region B in FIG. [Figure 8] 8 is an enlarged cross-sectional view showing a state when an external force is applied to region B shown in FIG. 7. FIG. DETAILED DESCRIPTION OF THE INVENTION

[0009] Hereinafter, one embodiment of a stuffed toy representing one aspect of the present invention will be described with reference to the drawings. 1 is a plan view showing the front side of the stuffed toy 1 and the heat storage member 30. FIG.

[0010] The stuffed toy 1 shown in Figures 1 and 2 comprises a main body 5 including a head 10 and a body 20, and a storage compartment 21 formed in the body 20, with the head 10 and body 20 being configured as a single character separated by a connecting portion 15 at the constricted portion. The main body 5 has an outer surface 5s made of long, raised fibers that feel pleasant to the touch. The storage compartment 21 is hollow so that a heat storage member 30 can be stored therein. The stuffed toy 1 can be played with by bending the head 10 relative to the body 20 of the character (by bending the connecting part 15), but as will be described later, the way the head 10 moves is configured to change.

[0011] The heat storage member 30 is a soft-type ice pack, for example, in which contents 32 made of highly absorbent polymer, water, etc. are contained in a flexible synthetic resin bag 31 as an ice pack for cooling. The heat storage member 30 is configured to have a predetermined rectangular size having a width (L1) and a length (L2) in a plan view. The storage section 21 of the trunk section 20, which is also rectangular, has a width (L4) and a length (L5) that are smaller than the length (L1, L2) of the heat storage member 30. This is because the fabric 5b (see FIG. 3), which is the base material of the main body 5, is made of a stretchy material, and is therefore able to firmly hold and store a heat storage member 30 that is larger than the size of the storage section 21.

[0012] Furthermore, the opening width (L3) of the opening end 21e of the storage section 21 is configured to be smaller than the lateral width (L4) of the storage section 21. This allows the heat storage member 30 stored in the storage section 21 to be held so that the heat storage member 30 does not fall out even when the opening end 21e is open. Note that the opening end 21e is provided with a blocking portion 25 of fastening means such as a hook-and-loop fastener around the entire periphery or a part of the opening end 21e.

[0013] The main body 5 is provided with a fastening part 50 such as a strap at a position on the head 10. Therefore, the stuffed toy 1 can be attached to another item via the fastening part 50 and enjoyed.

[0014] When viewed from the side, the main body 5 has a head 10 that is relatively round and has a first thickness (T1), as shown in Fig. 2. The body 20 has a second thickness (T2) that is thinner than the first thickness (T1) of the head 10. This is because the head 10 contains an elastic member 11 (see Fig. 3) made of, for example, cotton, that has appropriate cushioning properties, and does not have a space for containing the heat storage member 30, as does the body 20.

[0015] Fig. 3 is a cross-sectional view taken along line AA in Fig. 1, and a side view showing the pre-storage state and the first storage state of the heat storage member 30. Fig. 4 is a perspective view showing the first display state of the stuffed toy 1. 3, the head 10 and trunk 20 of the main body 5 are connected to each other through a communication port 15h of the connecting portion 15, and an elastic member 11 is placed inside the head 10. Therefore, the head 10 has a rounded appearance that is nearly spherical. Meanwhile, the storage portion 21 is configured to be able to house the heat storage member 30, and in the first storage state in which the heat storage member 30 is placed inside, the thickness of the trunk 20 in a side view is thinner than that of the head 10.

[0016] 3, the heat storage member 30 is slightly pushed into the storage section 21 from the open end 21e, and the open end 21e is closed by the closing section 25. By being stored in this manner, the heat storage member 30 is compressed from its planar vertical width (L2) before being placed in the storage section 21 to the vertical width (L5) of the storage section 21. As a result, the heat storage member 30 is stored in a state in which the front-to-back width of the stuffed animal 1 (the vertical direction in the figure) is slightly increased.

[0017] 3, the heat storage member 30 can be configured so that a part of its upper end portion 30u abuts against the elastic member 11. In this case, the sense of unity between the head portion 10 and the body portion 20 (the degree of tension of the fabric 5b of the connecting portion 15) is stronger than when the heat storage member 30 is not stored (the state shown in FIG. 2). As a result, for example, when the head portion 10 is released from a state in which it is bent forward (a state in which it is bent upward as shown by the dashed dotted line in the figure), the restoring force (F2) that returns it to its original position as shown in FIG. 3 is stronger than the restoring force (F1) shown in FIG. 2.

[0018] With the heat storage member 30 stored in this manner, the torso 20 and head 10 of the stuffed animal 1 are firmly connected. This allows the torso 20 to function as a base that supports the head 10, and the stuffed animal 1 can be displayed on the placement unit 60 in a freestanding state, as shown in Fig. 4, for example. The position of the heat storage member 30 in the storage unit 21 is not limited to the state shown in Fig. 3, and its orientation and position can be freely changed.

[0019] When the heat storage member 30 is stored in the storage section 21 of the main body 5, the elastic force of the head 10 is due to the elastic member 11, but is significantly different from the elastic force due to the heat storage member 30 of the trunk 20. For example, the restoring force against surface deformation in the trunk 20 is smaller than the restoring force against surface deformation in the head 10, and the feel when pressed or touched is different, and this different feel can be enjoyed.

[0020] Fig. 5 is a cross-sectional view taken along line AA in Fig. 1, and a side view showing a second storage state of the heat storage member 30 in the storage section 21. Fig. 6 is a perspective view showing the second display state of the stuffed toy 1.

[0021] In the case shown in Fig. 5, the storage section 21 is filled with the heat storage member 30, but unlike the case shown in Fig. 4, the heat storage member 30 is stored in a folded state in the storage section 21. In this case, the heat storage member 30 is folded from approximately the center so that both end portions 33, 34 in the folded state substantially overlap. For example, when a large amount of contents 32 is stored in the bag body 31, this folded heat storage member 30 may be subjected to a force (f) in a direction that widens the folding angle from the folded state. In this case, the force (f) that tries to widen the folding angle can press against the inner surface of the body section 20.

[0022] Furthermore, unlike the thin thickness of the first storage state, the thickness of the body 20 in a side view can be greatly expanded to about the same thickness as the head 10. Furthermore, in the state shown in Fig. 5, the open end 21e remains open. This allows the body 20 to expand, and the front-to-back width of the stuffed animal 1 (the vertical direction in the figure) can be made thicker than in the state shown in Fig. 3.

[0023] In the stored state shown in FIG. 5, the fabric 5b of the heat storage member 30 is stretched more tightly than in the state shown in FIG. 3 due to the force (f) that expands the inner surface of the body 20. Therefore, for example, when the head 10 is released from a bent forward position (i.e., when it is bent upward as shown by the dashed-dotted line), the restoring force (F3) that returns it to its original position as shown in FIG. 5 is stronger than the restoring force (F2) shown in FIG. 3. Furthermore, because the lower end 20d of the body 20 is not closed by the closure 25, it is in a wide open state, more spread out than in the state shown in FIG. 3. This allows the stuffed animal 1 to be displayed on the display 60 in a more stable and self-standing state, as shown in FIG. 6. In this display state, both ends 33 and 34 of the heat storage member 30 fulfill their supporting functions.

[0024] Fig. 7 is an enlarged cross-sectional view of region B in Fig. 3. Fig. 8 is an enlarged cross-sectional view showing a state when an external force is applied to region B. As described above, the main body 5 is configured to include the fabric 5b. As shown in the enlarged view of FIG. 7, the outer surface 5s of the main body 5 is configured with a brushed material 5k held by the fabric 5b, which has a stretchy mesh structure. The inner surface 21s of the storage section 21 is made of a non-brushed material and has an uneven surface due to the mesh structure as shown. Therefore, the inner surface 21s has an uneven shape relative to the outer surface 30s of the heat storage member 30, and contact with the outer surface 30s is point contact in an enlarged view. In this point contact state, heat from the heat storage member 30 is relatively difficult to transfer via the fabric 5b. Furthermore, because the outer surface 5s is made of the brushed material 5k, the brushed material 5k becomes fluffy and airy, making it difficult for heat from the heat storage member 30 to be transferred to the outside.

[0025] On the other hand, for example, when the body portion 20 is gripped with the palm of the hand, the body portion 20, together with the heat storage member 30, deforms to the shape of the palm. At this time, as shown in FIG. 8, the raised material 5k on the outer surface 5s is pressed and compressed between the fabric 5b and the palm H. Furthermore, the inner surface 21s of the storage section 21 and the outer surface 30s of the heat storage member 30 come into close contact. That is, the outer surface 30s of the heat storage member 30 deforms to conform to the uneven surface of the fabric 5b, resulting in a state of contact over a large surface area, unlike the state shown in FIG. 7. In this state of contact over a large surface area, the heat of the heat storage member 30 is efficiently transferred via the fabric 5b. Furthermore, because the raised material 5k is compressed on the outer surface 5s, the heat of the heat storage member 30 is effectively transferred to the palm H.

[0026] As described above, the stuffed toy 1 of this embodiment is configured so that the heat storage member 30 can be stored in the storage section 21 of the body 20, so it is possible to enjoy the change in appearance of the stuffed toy 1 between when the heat storage member 30 is stored and when it is not stored. In addition, it is possible to enjoy the change in touch, such as the feel of the heat (cool or warm sensation) generated by the heat storage member 30, between when the heat storage member 30 is stored and when it is not stored.

[0027] In addition, in this embodiment, the body 20 containing the heat storage member 30 has a different elasticity and contact feel than the head 10 containing, for example, a cotton material, making it possible to provide a stuffed toy 1. In particular, since the head 10 and body 20 of the stuffed toy 1 have different thicknesses and different contact feels, these (shape, hardness, contact temperature interval, etc.) can be expressed as the characteristics of the character, which can be enjoyed.

[0028] In the stuffed toy 1 of this embodiment, the head 10 contains the elastic member 11, while the body 20 can be made to have two states: one in which the heat storage member 30 is contained, and one in which it is empty, allowing you to enjoy these changes in the character's state. Also, the head 10, including the face, contains the elastic member 11, such as a cotton member, so the character's facial features can be accurately represented at all times without changing, with a predetermined thickness.

[0029] In the present embodiment of the stuffed animal 1, the torso 20 is made of an elastic material, which allows the size of the storage section 21 to be changed, making it possible to store heat storage members 30 of different sizes and greatly changing the size and shape of the torso 20.

[0030] Furthermore, in the stuffed toy 1 of this embodiment, the heat storage member 30 can be held inside the storage section 21 even when the open end 21e of the storage section 21 is left open. In particular, when the heat storage member 30 is placed inside and the open end 21e is opened, with the open end 21e at the bottom, the stuffed toy 1 can be easily displayed in a self-standing state with the body 20 as a base.

[0031] In the stuffed toy 1 of this embodiment, the position and orientation of the heat storage member 30 within the storage section 21 can be freely changed, so that not only can the changing shape of the torso 20 be enjoyed, but also, for example, when holding the torso 20 in one's hand, the position of the heat storage member 30 can be changed to make it easier to grip the torso 20.

[0032] The stuffed toy 1 of this embodiment is configured to be foldable at the connecting portion 15 between the head 10 and the body 20, and can be played with by folding the head 10 relative to the body 20. Furthermore, the restoring force of the head 10 to its unfolded state when folded can be changed depending on whether the heat storage member 30 is stored in the storage portion 21 or not, and this change in movement can be enjoyed.

[0033] In the present embodiment of the stuffed toy 1, when the heat storage member 30 is stored in the storage section 21, the torso 20 and the heat storage member 30 are configured to be deformable by grasping the torso 20, so that the heat storage member 30 can be made to conform to the shape of the palm or other parts of the body and be brought into a nearly tight fit.

[0034] In the stuffed toy 1 of this embodiment, the outer surface 5s of the body 20 is made of a brushed material, which can improve the heat retention effect of the heat storage member 30 in the storage section 21 and maintain the desired temperature of the heat storage member 30. On the other hand, the inner surface 21s of the storage section 21 is made of a non-brushed material, which allows for surface contact with the stored heat storage member 30.

[0035] Furthermore, by configuring the inner surface 21s of the storage section 21 as an uneven surface, when pressure is applied to the body section 20 by gripping, etc., the outer surface 30s of the heat storage member 30 can be brought into surface contact with the uneven surface so as to follow the uneven surface. This increases the contact area between the inner surface 21s of the storage section 21 and the outer surface 30s of the heat storage member 30, thereby improving heat dissipation towards the outer surface 5s of the body section 20. Meanwhile, the uneven surface configuration of the inner surface 21s allows the inner surface 21s of the storage section 21 and the outer surface 30s of the heat storage member 30 to be in approximate point contact when no pressing force is applied to the body section 20, thereby improving the heat retention of the storage section 21.

[0036] In the stuffed toy 1 of this embodiment, the inner surface 21s of the storage compartment 21 has an uneven mesh structure, so that the storage compartment 21 can be configured with a knitted structure of fibers in both the vertical and horizontal directions. This allows the storage compartment 21 to have good elasticity.

[0037] In the stuffed toy 1 of this embodiment, the storage section 21 of the body 20 has a rectangular shape when viewed from the front, which makes it easy to store the heat storage member 30 in correspondence with the rectangular heat storage member 30. Furthermore, since the storage section 21 is configured so that the heat storage member 30 can be stored in a folded state within the storage section 21, when the heat storage member 30 is stored so that both ends 33, 34 in the folded state are on the lower end side of the body 20 (the folded parts are on the upper side), both ends 33, 34 are in an open state, making it easy to place the stuffed toy 1.

[0038] In the stuffed toy 1 of this embodiment, the head 10 and the body 20 are configured to be able to communicate with each other internally via the communication opening 15h inside the connecting part 15, so that the heat storage member 30 stored in the storage part 21 can penetrate through the communication opening 15h and protrude toward the head 10. This not only makes it possible to change the connection strength of the connecting part 15, but also makes it possible to move the head 10 by, for example, changing the gripping force (changing the grip strength) when gripping the body 20.

[0039] In the stuffed toy 1 of this embodiment, the head 10 of the main body 5 is provided with a locking part 50 that can be locked to another object, so that the head 10 can be held hanging with the top facing up.

[0040] Although the embodiments of the present invention have 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 heat storage member 30 is described as being an ice pack or other cooling agent, but it may also be configured using a material such as a soft heat pack or other material.

[0041] In the above embodiment, the head portion 10 and the body portion 20 are made of the same fabric 5b, but this is not limitative, and it is sufficient that at least the body portion 20 is made of an elastic member.

[0042] Furthermore, in the above embodiment, the inner surface 21s of the storage section 21 is an uneven surface due to the mesh structure of the fabric 5b, but the configuration of the uneven surface is not limited to this, and for example, it may be configured so that unevenness is provided in the fabric 5b.

[0043] As described above, this specification describes the following:

[0044] (1) It is a stuffed toy, a body portion including a head portion and a body portion; a storage section formed in the body section, The storage section is configured to be able to store a heat storage member.

[0045] (2) The stuffed toy according to (1), The stuffed toy has no storage section for the heat storage member formed in the head.

[0046] (3) A stuffed toy according to (1) or (2), The head and the torso form a character as a whole.

[0047] (4) A stuffed toy according to any one of (1) to (3), the head portion is configured with a first thickness; The toy is configured so that the body has a second thickness that is thinner than the first thickness.

[0048] (5) A stuffed toy according to any one of (1) to (4), The head includes an elastic member therein, The torso of the stuffed toy is hollow inside.

[0049] (6) (5) A stuffed toy according to the present invention, The stuffed toy, wherein the elastic member is a cotton member.

[0050] (7) A stuffed toy according to any one of (1) to (6), The toy has a body made of an elastic material.

[0051] (8) A stuffed toy according to any one of (1) to (7), The main body is configured such that, when the heat storage member is stored in the storage section, the elastic force at the head section is different from the elastic force at the torso section.

[0052] (9) A stuffed toy according to any one of (1) to (8), The main body is configured such that, when the heat storage member is stored in the storage section, the restoring force of the torso against surface deformation is smaller than the restoring force of the head against surface deformation.

[0053] (10) A stuffed toy according to any one of (1) to (9), The storage unit is configured so that the position of the stored heat storage member can be changed.

[0054] (11) A stuffed toy according to any one of (1) to (10), The main body includes a connecting portion between the head and the torso, and is configured to be bendable at the connecting portion.

[0055] (12) The stuffed toy according to (11), The main body is configured to be able to return to an unfolded state when the heat storage member is stored in the storage section and when the main body is folded at the connecting section.

[0056] (13) The stuffed toy according to (12), The main body is configured so that the restoring force of the connecting portion in the folded state when the heat storage member is stored in the storage portion is greater than the restoring force when the heat storage member is not stored in the storage portion.

[0057] (14) A stuffed toy according to any one of (1) to (13), The main body is configured so that, when the heat storage member is stored in the storage section, the trunk and the heat storage member can be deformed by gripping the trunk.

[0058] (15) A stuffed toy according to any one of (1) to (14), The heat storage member stored in the storage section forms a base for the main body when the main body is in a freestanding state.

[0059] (16) A stuffed toy according to any one of (1) to (15), the body includes an open end; The stuffed toy is configured so that the heat storage member can be inserted into the storage portion through the open end.

[0060] (17) The stuffed toy according to (16), the body portion includes a closing portion that closes the open end, The main body is configured so as not to be able to stand on its own when the heat storage member is not stored in the storage section and the closing section is closed.

[0061] (18) A stuffed toy according to any one of (1) to (17), The body portion is configured to be able to stand on its own, provided that the heat storage member is stored in the storage portion.

[0062] (19) A stuffed toy according to any one of (1) to (18), The stuffed toy has an outer surface of the body made of a brushed material and an inner surface of the storage section made of a non-brushed material.

[0063] (20) A stuffed toy according to any one of (1) to (19), The torso is configured to transfer heat more easily than the head.

[0064] (twenty one) A stuffed toy according to (19) or (20), The stuffed toy, wherein the storage section has an inner surface configured as an uneven surface.

[0065] (twenty two) The stuffed toy according to (21), The uneven surface is a mesh structure surface.

[0066] (twenty three) A stuffed toy according to any one of (1) to (22), The storage section is configured to be able to store the heat storage member in a folded state.

[0067] (twenty four) A stuffed toy according to any one of (1) to (23), The torso of the stuffed animal has a rectangular shape when viewed from the front.

[0068] (twenty five) A stuffed toy according to any one of (1) to (24), The stuffed toy is configured so that the head and the torso can communicate with each other internally.

[0069] (26) A stuffed toy according to any one of (1) to (25), The main body has a locking portion at the head that can be locked to another object. [Explanation of symbols]

[0070] 1 stuffed toy 5 Main body 5s outer surface 10 head 11 Elastic member 15 Connecting part 20 Torso 21 Storage area 21e Open end 21s inner surface 25 Occlusion 30 Heat storage material 50 Locking part

Claims

1. It is a stuffed toy, a body portion including a head portion and a body portion; a storage section formed in the body section, The storage section is configured to be able to store a heat storage member.

2. The stuffed toy according to claim 1, The stuffed toy has no storage section for the heat storage member formed in the head.

3. The stuffed toy according to claim 2, The head and the torso form a character as a whole.

4. The stuffed toy according to claim 3, the head portion is configured with a first thickness; The toy is configured so that the body has a second thickness that is thinner than the first thickness.

5. The stuffed toy according to claim 4, The head portion includes an elastic member therein, The torso is a stuffed animal having a hollow interior.

6. The stuffed toy according to claim 5, The plush toy, wherein the elastic member is a cotton member.

7. The stuffed toy according to claim 6, The toy has a body made of an elastic material.

8. The stuffed toy according to claim 7, The main body is configured such that, when the heat storage member is stored in the storage section, the elastic force at the head section is different from the elastic force at the torso section.

9. The stuffed toy according to claim 8, The main body is configured such that, when the heat storage member is stored in the storage section, the restoring force of the torso against surface deformation is smaller than the restoring force of the head against surface deformation.

10. The stuffed toy according to claim 9, The storage unit is configured so that the position of the stored heat storage member can be changed.

11. The stuffed toy according to any one of claims 1 to 10, The main body includes a connecting portion between the head and the torso, and is configured to be bendable at the connecting portion.

12. The stuffed toy according to claim 11, The main body is configured to be able to return to an unfolded state when the heat storage member is stored in the storage section and when the main body is folded at the connecting section.

13. The stuffed toy according to claim 12, The main body is configured so that the restoring force of the connecting part in the folded state when the heat storage member is stored in the storage part is greater than the restoring force when the heat storage member is not stored in the storage part.

14. The stuffed toy according to any one of claims 1 to 10, The main body is configured such that, when the heat storage member is stored in the storage section, the torso and the heat storage member can be deformed by gripping the torso.

15. The stuffed toy according to any one of claims 1 to 10, The heat storage member stored in the storage section forms a base for the main body section when the main body section is in a freestanding state.

16. The stuffed toy according to any one of claims 1 to 10, the body includes an open end; The stuffed toy is configured so that the heat storage member can be inserted into the storage portion through the open end.

17. 17. The stuffed toy according to claim 16, the body portion includes a closing portion that closes the open end, The main body is configured so as not to be able to stand on its own when the heat storage member is not stored in the storage section and the closing section is closed.

18. 18. The stuffed toy according to claim 17, The toy is configured so that the body can stand on its own, provided that the heat storage member is stored in the storage section.

19. 19. The stuffed toy according to claim 18, The stuffed toy has an outer surface of the body made of a brushed material and an inner surface of the storage section made of a non-brushed material.

20. 20. The stuffed toy according to claim 19, The torso is configured to transfer heat more easily than the head.

21. 21. The stuffed toy according to claim 20, The stuffed toy, wherein the inner surface of the storage section is configured as an uneven surface.

22. 22. The stuffed toy according to claim 21, The stuffed toy, wherein the uneven surface is a mesh structure surface.

23. 23. The stuffed toy according to claim 22, The storage section is configured to be able to store the heat storage member in a folded state.

24. 24. The stuffed toy according to claim 23, The toy has a rectangular shape when viewed from the front.

25. 25. The stuffed toy according to claim 24, The stuffed toy, wherein the head and the torso are configured to be able to communicate with each other internally.

26. 26. The stuffed toy according to claim 25, The main body has a locking portion at the head that can be locked to another object.

Citation Information

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