Suction components, toys, and toy sets
The suction member with deformable protrusions addresses the instability and complexity of existing toy assembly methods, providing stable and versatile toy configurations through enhanced suction fixation.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- BANDAI CO LTD
- Filing Date
- 2026-03-11
- Publication Date
- 2026-05-28
AI Technical Summary
Existing toy assembly methods using suction cups and rod-shaped members are cumbersome and unstable, limiting the freedom of assembly shapes and causing easy movement of components.
A suction member with deformable protrusions on a non-suction surface that contacts the article, providing multiple contact points and stable fixation through suction deformation.
Enhances assembly stability and freedom by allowing secure suction fixation with multiple contact points, enabling robust and varied toy configurations.
Smart Images

Figure 2026088228000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an adsorption member, a toy, and a toy set.
Background Art
[0002] Conventionally, as a toy, for example, Patent Document 1 discloses a plurality of torso members to which members such as a head, a neck, feet, and a tail that can be attached and detached in the axial direction are attached, an annular member that can be attached and detached to the outer periphery of the torso member, and a bendable rod-shaped member that can be attached and detached to the annular member and the torso member and can also be used as a neck, foot, or tail member, a plurality of suction cups that can be attached and detached to the ends of the rod-shaped members constituting the feet, and a head member that can be attached and detached to the torso member. A configuration of an animal assembly toy is disclosed in which these torso members, annular members, rod-shaped members, suction cups, and head members are selectively combined with each other to assemble various animals.
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, a configuration is adopted in which a suction cup, which is an adsorption member, is used at the foot portion to hold and fix the toy body to the placement portion. Also, for the connection of each component, connection by penetration of the rod-shaped member and fitting of the ends is adopted. In this configuration, since it is a connection by fitting of components and penetration of the rod-shaped member, assembly is troublesome and the assembled shape is determined, so there is a problem with the degree of freedom of the assembled shape. Furthermore, in the holding and fixing structure using a suction cup, since the suction cup itself has elasticity, there is a problem that it moves easily and cannot be firmly fixed.
[0005] An object of the present invention is to provide an adsorption member that improves stability during assembly, a toy provided with the adsorption member, and a toy set. [Means for solving the problem]
[0006] The above objective will be achieved as follows:
[0007] (1) A suction member used by being attached to an article, Adsorption surface and, It comprises a non-adsorbent surface on the opposite side of the adsorbent surface, At least a portion of the non-adsorbent surface is configured to be in contact with the article, and is an adsorbent member.
[0008] (2) (1) The adsorption member described above, An adsorption member having a projection provided on the non-adsorption surface that can come into contact with the article.
[0009] (3) (2) The adsorption member described above, The above-mentioned protrusion is a suction member that is configured to be deformable.
[0010] (4) (2) or (3) the adsorption member, The suction member has multiple protrusions as described above.
[0011] (5) (4) The adsorption member described above, An adsorption member having at least one flat surface formed by the tip of the above-mentioned projection.
[0012] (6) (5) The adsorption member described above, The above-mentioned plane is configured to be substantially parallel to the opposing surface of the above-mentioned article in the state of suction deformation, and is a suction member.
[0013] (7) The adsorption member described in any one of (4) to (6), A suction member provided on the non-suction surface and having a mounting portion that can be attached to the article.
[0014] (8) The adsorption member according to (7), wherein three or more of the protrusions are provided so as to surround the mounting portion.
[0015] (9) The adsorption member according to (8), wherein four of the protrusions are provided so as to surround the mounting portion.
[0016] (10) The adsorption member according to (9), wherein four of the protrusions are provided in a rotationally symmetric positional relationship centered on the mounting portion.
[0017] (11) The adsorption member according to any one of (7) to (10), wherein the protrusions are provided at equal intervals in a position surrounding the mounting portion.
[0018] (12) The adsorption member according to any one of (2) to (11), wherein the protrusions are configured to be solid.
[0019] (13) The adsorption member according to (12), wherein the protrusions are configured to have a thicker portion than the adsorption main body portion of the adsorption member.
[0020] (14) The adsorption member according to (13), wherein the protrusions are configured such that the protruding base end portion has the maximum wall thickness.
[0021] (15) The adsorption member according to any one of (2) to (14), The above-mentioned projection is configured such that the contact state between the projection and the above-mentioned article changes in accordance with the suction deformation of the projection.
[0022] (16) (15) The adsorption member described above, The above-mentioned protrusion is a suction member that comes into contact with the above-mentioned article before and after suction deformation.
[0023] (17) The adsorption member described in any one of (2) to (16), The above-mentioned projection is configured to extend in the direction of the article in which the projection comes into contact when in a suction-deformed state, in the suction member.
[0024] (18) The toy body and The toy body is equipped with an adhesive member having an adhesive surface and a non-adhesive surface on the opposite side of the adhesive surface, A toy in which at least a portion of the non-adhesive surface is configured to be able to come into contact with the toy body.
[0025] (19) (18) The toys described above, The above-mentioned suction member is provided on the non-suction surface and includes a projection that can contact the toy body, the toy.
[0026] (20) (19) The toy described above, The above-mentioned suction member is a toy comprising a plurality of the above-mentioned protrusions.
[0027] (twenty one) (20) The toy described above, The toy body part described above is a toy that includes opposing surfaces corresponding to the multiple protrusions, which can simultaneously contact the multiple protrusions.
[0028] (twenty two) (21) The toy described above, The above-mentioned opposing surface portion includes a flat surface, and is a toy.
[0029] (twenty three) A toy described in any one of (18) to (22), The toy body part is a toy that includes a mounting surface part to which the suction member of another toy can be attached.
[0030] (twenty four) (23) The toys described above, The above-mentioned mounting surface is a toy in which the outer surface is configured as a convex curved surface or a flat surface.
[0031] (twenty five) (23) or (24) the toys described above, The toy body part is a toy that includes multiple mounting surfaces with different orientations.
[0032] (26) A toy set comprising a first toy and a second toy, The first toy comprises a toy body and an adhesive member attached to the toy body, having an adhesive surface and a non-adhesive surface on the opposite side of the adhesive surface, wherein at least a portion of the non-adhesive surface is configured to be in contact with the toy body. The second toy described above is a toy set comprising a toy body and an adhesive member attached to the toy body, having an adhesive surface and a non-adhesive surface on the opposite side of the adhesive surface, wherein at least a portion of the non-adhesive surface is configured not to come into contact with the toy body. [Effects of the Invention]
[0033] According to the present invention, it is possible to provide a suction member, a toy equipped with a suction member, and a toy set that offer a high degree of freedom in assembly shape and enable secure suction fixation. [Brief explanation of the drawing]
[0034] [Figure 1] This is a perspective view of an adsorption member according to one embodiment of the present invention. [Figure 2] This is a cross-sectional view of the portion of the adsorption member shown in Figure 1 along line AA. [Figure 3]Figure 2 is a cross-sectional view showing the adsorption state of the adsorption member. [Figure 4] Figure 1 is a perspective view showing an example of a toy equipped with a suction member. [Figure 5] Figure 4 is a cross-sectional perspective view showing the mounting state of the suction member in the toy. [Figure 6] Figure 1 shows a perspective view illustrating another example of a toy equipped with a suction component. [Figure 7] This is a perspective view showing an example of how toys can be connected to each other. [Figure 8] This is a perspective view showing another example of how toys can be connected to each other. [Figure 9] This is a plan view showing an example of the assembled state of a toy set. [Figure 10] This is a front view showing another example of the assembled state of the toy set. [Figure 11] This is a side view showing an example of the adsorption state between adsorption members. [Figure 12] This is a side view showing another example of the adsorption state between adsorption members. [Figure 13] This is a perspective view showing a modified example of the adsorption member. [Modes for carrying out the invention]
[0035] A toy that is one embodiment of the present invention will be described below with reference to the figures. Figure 1 is a perspective view of an adsorption member 10 according to one embodiment of the present invention. Figure 2 is a cross-sectional view of the portion of the adsorption member 10 shown in Figure 1 along line AA.
[0036] As is well known, the suction member 10 shown in Figures 1 and 2 has a circular suction body 10a in plan view, which has a suction surface 11 that adheres to the smooth surface 30w of the object to be adsorbed (article 30) by utilizing the flexibility of rubber or synthetic resin. In this embodiment, the suction member 10 has an attachment part 13 that can be attached to the article 30 attached to the first toy 31, and the suction body 10a has a plurality (4) of protrusions 20 on the non-adhesion surface 12 opposite to the suction surface 11. The protrusions 20 have a solid structure and are harder and less deformable than the suction body 10a, but are configured to be deformable to a certain extent. Being deformable can also be said to mean that the contact state with the article 30 can be changed, or that the contact area with the article 30 can be changed.
[0037] The four protrusions 20 are arranged around the mounting portion 13, spaced apart from the mounting portion 13, at equal intervals (90-degree intervals) in the circumferential direction. For example, the four protrusions 20 are provided in a rotationally symmetrical positional relationship with respect to the mounting portion 13. Furthermore, the maximum wall thickness (d21) of the protruding base end 21 of the protrusion 20 is greater than the wall thickness (d10) of the suction portion body 10a, and the shape tapers towards the tip 22. The tip 22 also has a flat surface 22s. The flat surface 22s is inclined with a predetermined inclination angle θ toward the outer edge side of the suction portion body 10a with respect to a plane perpendicular to the central axis CL of the mounting portion 13.
[0038] Figure 3 is a cross-sectional view showing the adsorption state of the adsorption member 10 shown in Figure 2. When adsorbing the adsorption member 10 onto the smooth surface 30w of the object to be adsorbed (article 30), the adsorption surface 11 is pressed against the smooth surface 30w of the object to be adsorbed, as shown in Figure 3. As a result, the adsorption surface 11 deforms to make close contact with the smooth surface 30w, as is well known. Consequently, the inside of the adsorption surface 11 becomes close to a vacuum, and the negative pressure caused by this reduction in pressure causes the adsorption member 10 to adhere to the smooth surface 30w.
[0039] In this suction state, the suction part body 10a deforms from a curved shape (shown in Figure 2) to a flattened shape (shown in Figure 3). As a result, the projection 20 moves so that all of its tips 22 approach the mounting part 13 and extends in a direction along the line VL1 perpendicular to the smooth surface 30w. Consequently, the flat surface 22s of the tip 22 of the projection 20 can make surface contact with the opposing surface 30s, for example, the outer wall of the article (first toy 31, etc.) to which the suction member 10 is attached. The outer diameter (d11) of the suction part body 10a in the suction state is slightly larger than in the non-suction state. The opposing surface 30s is approximately parallel to the suction surface 11.
[0040] Here, the opposing surface portion 30s is the flat surface of the outer wall of the first toy 31 to which the suction member 10 is attached, as will be described later. The plane 22s is inclined at a predetermined angle θ with respect to the opposing surface portion 30s in the non-suction state, but can be made to be parallel to the opposing surface portion 30s and in surface contact with it in the suction state. Also, the tip 22 of the projection portion 20 is in contact with the opposing surface portion 30s in the suction state, while in the non-suction state it is in contact with the opposing surface portion 30s. For example, the projection portion 20 is in light contact with the opposing surface portion 30s in the non-suction state of the suction member 10, and changes to a state of strong contact with the opposing surface portion 30s in the suction state of the suction member 10. This change in contact state is due to a change in the contact pressure of the tip 22, which in turn changes the contact area.
[0041] Figure 4 is a perspective view showing an example of a first toy 31 equipped with the suction member 10 shown in Figure 1. Figure 5 is a cross-sectional perspective view showing the mounting state of the suction member 10 shown in Figure 4.
[0042] The first toy 31 (article 30) shown in Figure 4 is configured such that a suction member 10 protrudes from the end face of one end (lower side in the figure) of its cylindrical toy body 30a. The projection 20 of the suction member 10 is attached so that its tip 22 (see Figure 2) contacts the opposing surface 30s formed by the flat end face of one end of the toy body 30a.
[0043] The suction member 10 is attached by passing a circular through-hole 13h, provided at the tip 13t of its mounting portion 13, through the support shaft 35 of the toy body 30a, as shown in Figure 5. The toy body 30a also has a smooth mounting surface 38s on the other end face, allowing other toys' suction members 10 to be attached. Furthermore, two cylindrical protrusions 38, each with a circular, smooth mounting surface 38s, are provided on the cylindrical outer surface of the toy body 30a, positioned, for example, 180 degrees opposite each other. Thus, in the first toy 31, multiple mounting surfaces 38s are provided in different orientations, making it easy to attach other toys' suction members 10. In addition, the toy body 30a has an internal space SP, and a door 36 that can be opened and closed via a hinge portion 36a is provided, allowing character dolls and other toys to be stored inside the internal space SP.
[0044] Figure 6 is a perspective view showing another example of the first toy 31 equipped with the suction member 10 shown in Figure 1. The first toy 31 (article 30) shown in Figure 6 has a configuration similar to that shown in Figure 4, in which the suction member 10 protrudes from one end face (lower side in the figure) of the cylindrical toy body 30a. In the configuration shown in Figure 6, two cylindrical protrusions 38, each having a circular, smooth mounting surface 38s, are provided on the cylindrical outer surface of the toy body 30a. Furthermore, in the configuration shown in Figure 6, a curved mounting surface 38rs, different from the flat surface of the cylindrical protrusion 38, is provided on the side opposite to the side to which the suction member 10 is attached.
[0045] The curved mounting surface 38rs is made of, for example, a transparent or light-transmitting material and is further configured to be detachable from the toy body 30a. The curved mounting surface 38rs allows the mounting orientation of the suction member 10 to be freely changed. In addition, a character or other doll toy can be housed in the inner space of the curved mounting surface 38rs (see Figure 10), and the character can be seen from the outside.
[0046] Figure 7 is a perspective view showing one example of how the toys are connected. Figure 8 is a perspective view showing another example of how the toys are connected.
[0047] In the configuration shown in Figure 7, the first toy 31 is connected using the mounting surface 38s on the end face side of the toy body 30a. In this case, by connecting the toy body 30a in a vertical orientation, it is possible to create the body of a rocket, for example, with the lower suction member 10 in the figure resembling a thrust nozzle. On the other hand, in the configuration shown in Figure 8, the curved mounting surface portion 38rs is used to connect the first toys 31 so that they are slightly tilted. In this case, it is possible to recreate the state in which the two spaceships are docked together.
[0048] Figure 9 is a plan view showing an example of the assembled state of toy set 1. Figure 9 shows a toy set 1 that includes the aforementioned first toy 31 and two second toys 41, 42, and 43, which are different from the first toy 31, and is assembled into a configuration such as a space station. In the toy set 1 shown in Figure 9, for example, there is a section in which four first toys 31 are connected vertically (horizontally in the figure), and one first toy 31 is connected in a direction perpendicular to this vertical section. As a result, the section composed of five first toys 31 is connected by suction members 10, and has a robust structure as the framework of the toy set 1.
[0049] Two second toys 41, 42, and 43, each equipped with a standard suction member 50 without a protrusion 20, are attached to the five first toys 31 of the frame of toy set 1. For example, second toy 41, which is modeled after a manipulator, second toy 42, which is modeled after a solar panel, and second toy 43, which is modeled after a character wearing a spacesuit, are attached to the mounting surfaces 38s and 38rs of the first toy 31.
[0050] Figure 10 is a front view showing another example of the assembled state of toy set 1. In the case of toy set 1 shown in Figure 10, the set configuration utilizes one first toy 31. For example, two second toys 41, which mimic manipulators, are attached to the two mounting surfaces 38s on the toy body 30a side of the first toy 31, which has a curved mounting surface 38rs. The second toy 43, which mimics a character, is housed inside the first toy 31. The first toy 31 can be fixed to the mounting part 33 by suction using its suction member 10. Therefore, in this toy set 1, even if the robot's arms are large and heavy, the character can be securely fixed, creating the effect of controlling a robot with arms.
[0051] Figure 11 is a side view showing an example of the adsorption state between the adsorption members 10. In the first toy 31, as shown in Figure 11, the suction surfaces 11 of the suction members 10 can be connected by suction. In the case shown in Figure 11, the suction surfaces 11 are connected in a state where they are not in complete contact with each other. That is, the suction body 10a is connected while maintaining its curved shape. With this configuration, for example, the bulge of the connection part between spaceships, along with the projection 20, can create the mechanical structure of the connection part. Furthermore, in this case, because the connection part is elastic, the first toys 31 can swing relative to each other.
[0052] Figure 12 is a side view showing another example of the adsorption state between the adsorption members 10. Figure 12 shows a state in which the suction surfaces 11 of the suction members 10 are in complete contact with each other. In this case, compared to the case shown in Figure 11, the suction body 10a is connected in a flattened state. In this contact state, as shown in the blowing portion of Figure 12, the suction surfaces 11 of the suction members 10 that have been attached are in complete surface contact, and furthermore, the protrusions 20 of both suction members 10 are connected so as to face each other. In this case, because the suction surfaces 11 are in close contact with each other, the two opposing protrusions 20 can be positioned side by side as if connected on the vertical line VL2 of the opposing surfaces 30s. As a result, the connection between the first toys 31 is strong.
[0053] The following describes some modified examples of the present invention. Figure 13 is a perspective view showing a modified example of the adsorption member 10. In the suction member 10, the number of protrusions 20 can be configured as three, as shown in Figure 13. In this configuration as well, the protrusions are configured to contact the opposing surface 30s. When there are three protrusions 20, the three points connecting the tips 22 of the protrusions 20 form a single plane, thus improving contact with the opposing surface 30s.
[0054] As described above, the suction member 10 in this embodiment is configured such that its non-suction surface 12, opposite to the suction surface 11, can come into contact with the opposing surface 30s of the article. As a result, it is possible to provide a suction member 10 that strengthens the connection between the article on the suction surface 11 side and the article on the non-suction surface 12 side (the opposing surface 30s of the first toy 31).
[0055] In this embodiment of the suction member 10, the projection 20 is configured to be deformable, so that the way the projection 20 contacts the article can be changed as the suction member 10 deforms in its suction state. As a result, when the suction member 10 is deformed (flattened), the contact pressure of the projection 20 with the article can be increased, improving the stability when supporting the article.
[0056] Furthermore, in the suction member 10 of this embodiment, since multiple protrusions 20 are provided, multiple contact points with the article can be formed, thereby further stabilizing the support of the article 30 in the suction state. In particular, since the protrusions 20 are provided so as to surround the mounting part 13, they can cooperate with the mounting part 13 to provide support, thereby further enhancing the effect. Also, as shown in Figure 1, since four protrusions 20 are provided in a rotationally symmetrical positional relationship, when the four protrusions 20 and the article 30 come into contact, the shapes of the contact surfaces between the protrusions 20 and the article 30 become similar in the direction in which the protrusions 20 tilt, making it easy for a similar load to be applied to each of the protrusions 20. Therefore, the article 30 can be stably supported in the suction state, and the oscillation of the article 30 can be effectively suppressed. As shown in Figure 13, when three protrusions 20 are provided, the positional accuracy of the protrusions 20 is not required, which simplifies manufacturing.
[0057] In the suction member 10 of this embodiment, it is desirable that the flat surface 22s of the tip 22 of the projection 20 be substantially parallel to the opposing surface 30s of the article when in the suction deformation state. With this configuration, the article can be supported more stably by the flat surface 22s when it is deformed by suction.
[0058] Furthermore, in the suction member 10 of this embodiment, since there are three or more protrusions 20, a virtual plane is formed by at least three tips 22 of the protrusions 20, and this virtual plane can reliably contact the opposing surface 30s.
[0059] Furthermore, in the suction member 10 of this embodiment, since there are multiple projections 20 surrounding the mounting portion 13, when releasing the suction, the projections 20 can be approached from any direction relative to the mounting and fixing portion, making it easy to release the suction.
[0060] In the suction member 10 of this embodiment, the projection 20 is made of a solid material, which improves the stability of the shape of the projection 20 itself and stabilizes the support of the article 30 in the suction state. Furthermore, the thickness of the projection 20 is made thicker than that of the suction body 10a, making the projection 20 more robust and able to stably support the article 30. Moreover, since the thickness of the projection 20 is greatest at its protruding base end 21, deformation that causes the projection 20 itself to tilt relative to the suction body 10a can be suppressed, and the article 30 can be supported more stably in the suction state.
[0061] Furthermore, since the projection 20 is configured to extend in the direction of the article it is in contact with and supporting during the suction deformation state, it can support the article more stably during suction deformation. The direction of extension is preferably approximately vertical.
[0062] In the first toy 31 of this embodiment, the suction member 10 is configured such that the non-suction surface 12 opposite to its suction surface 11 can contact the opposing surface 30s of the toy body 30a, thereby ensuring that the first toy 31 is firmly supported by the suction member 10.
[0063] Furthermore, the first toy 31 is equipped with a mounting surface 38s on the toy body 30a to which the suction members 10, 50 of other toys can be attached, making it easy to connect toys together using the suction members 10, 50. In addition, since the mounting surface 38s has multiple different orientations, toys can be connected in various orientations. Moreover, if the mounting surface 38rs has a convex curved outer surface, the mounting orientation can be freely selected depending on the mounting position on the curved surface.
[0064] Furthermore, in the toy set 1 of this embodiment, not only is there a first toy 31 equipped with a suction member 10 having a protrusion 20, but there are also second toys 41, 42, and 43 equipped with suction members 50 without a protrusion 20, allowing children to enjoy assembling a wide variety of structures.
[0065] Although one aspect 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 tip 22 of the projection 20 is in constant contact with the opposing surface 30s, but the invention is not limited to this configuration, and in the non-adherent state of the adsorption member 10, the tip 22 may be separated from the opposing surface 30s.
[0066] Furthermore, although the above embodiments describe cases where there are four or three projections 20, the configuration is not limited to these, and there may be five or more projections.
[0067] Furthermore, in the above embodiment, the vertical cross-sectional shape of the projection 20 is configured to be approximately trapezoidal, but it is not limited to this, and can be configured in shapes such as hemispherical or cylindrical. [Explanation of symbols]
[0068] 1 Toy Set 10 Adsorption members 10a Adsorption unit body 11 Adsorption surface 12 Non-adsorption surface 13 Mounting part 20 Protrusion 21 Protruding base end 22 Tip 22s plane 30a Toy main body 30s Opposite side 31 1st Toy (Article) 41, 42, 43 2nd toy
Claims
1. A suction member used by being attached to an article, Adsorption surface and, It comprises a non-adsorbent surface on the opposite side of the adsorbent surface, At least a portion of the non-adsorbent surface is configured to be in contact with the article, and is an adsorbent member.
2. The adsorption member according to claim 1, An adsorption member having a projection provided on the non-adsorption surface that can contact the article.
3. The adsorption member according to claim 2, The aforementioned projection is a suction member configured to be deformable.
4. The adsorption member according to claim 2, The aforementioned protrusions are provided in multiple locations on the suction member.
5. The adsorption member according to claim 4, A suction member having at least one flat surface formed by the tip of the aforementioned projection.
6. The adsorption member according to claim 5, The aforementioned plane is configured to be substantially parallel to the opposing surface of the article in a state of suction deformation, and is an adsorption member.
7. The adsorption member according to claim 4, A suction member provided on the non-suction surface and comprising a mounting portion that can be attached to the article.
8. The adsorption member according to claim 7, The aforementioned projections are provided in three or more portions so as to surround the mounting portion, and the suction member is provided in this manner.
9. The adsorption member according to claim 8, The aforementioned protrusions are four suction members provided so as to surround the mounting portion.
10. The adsorption member according to claim 9, The aforementioned projections are arranged in a rotationally symmetrical positional relationship with respect to the mounting portion, and the suction member has four such projections.
11. The adsorption member according to claim 7, The aforementioned protrusions are suction members provided at equal intervals in positions surrounding the mounting portion.
12. The adsorption member according to claim 2, The aforementioned projection is a solid, suction-type member.
13. The adsorption member according to claim 12, The aforementioned projection is configured to have a thicker portion than the suction body portion of the suction member.
14. The adsorption member according to claim 13, The aforementioned projection is configured such that the protruding base end has the maximum thickness, making it an adsorption member.
15. The adsorption member according to claim 2, The aforementioned projection is configured such that the contact state between the projection and the article changes in accordance with the suction deformation of the projection, in the suction member.
16. The adsorption member according to claim 15, The aforementioned projection is a suction member that comes into contact with the article before and after suction deformation.
17. The adsorption member according to claim 2, The aforementioned projection is configured to extend in the direction of the article in which the projection abuts when in a suction-deformed state, the suction member.
18. The toy body and The toy body is equipped with an adhesive member having an adhesive surface and a non-adhesive surface on the opposite side of the adhesive surface, A toy in which at least a portion of the non-adhesive surface is configured to be able to come into contact with the toy body.
19. The toy according to claim 18, The suction member is provided on the non-suction surface and includes a projection that can contact the toy body, the toy.
20. The toy according to claim 19, The suction member is a toy comprising a plurality of the aforementioned protrusions.
21. The toy according to claim 20, The toy body comprises a toy having opposing surfaces that correspond to the plurality of protrusions, which can simultaneously contact the plurality of protrusions.
22. The toy according to claim 21, The opposing surface portion includes a flat surface, and is a toy.
23. The toy according to claim 18, The toy body portion comprises a mounting surface portion to which the suction member of another toy can be attached.
24. The toy according to claim 23, The mounting surface portion is configured as a convex curved surface or a flat surface on its outer surface, in the toy.
25. The toy according to claim 23, The toy body comprises a plurality of mounting surfaces with different orientations.
26. A toy set comprising a first toy and a second toy, The first toy comprises a toy body and an adhesive member attached to the toy body, having an adhesive surface and a non-adhesive surface opposite to the adhesive surface, wherein at least a portion of the non-adhesive surface is configured to be in contact with the toy body. The second toy is a toy set comprising a toy body and an adhesive member attached to the toy body, having an adhesive surface and a non-adhesive surface opposite to the adhesive surface, wherein at least a portion of the non-adhesive surface is configured not to come into contact with the toy body.
Citation Information
Patent Citations
JP1972011298U