Toy parts and model toys

CN116549982BActive Publication Date: 2026-09-29BANDAI CO LTD
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Patent Information

Application Number
CN202310625496.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2023-02-28
Filing Date
2023-05-30
Publication Date
2026-09-29
Estimated Expiration
2043-05-30

AI Technical Summary

Benefits of technology

[0011]根据本发明,能够提供用于使模型玩具的姿势变化的模型部件和使用了该模型部件的模型玩具。

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Abstract

The present invention relates to a toy member and a model toy. A model toy can be deformed and a posture can be changed. A toy member is a toy member constituting a model toy, wherein the toy member is provided with a first member and a second member, the first member has at least a first connecting portion and a spherical second connecting portion for coupling with the second member, the second member is configured to have a through hole for accommodating the second connecting portion, the first connecting portion protrudes from a first opening of the through hole, the first member is accommodated in the second member from a second opening of the through hole, a third opening is provided in the second connecting portion, the third opening and a first protrusion portion in the through hole are engaged, so that the first member is configured to be rotatable relative to the second member.
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Description

Technical Field

[0001] This invention relates to toy parts and model toys. Background Technology

[0002] Patent document 1 describes the installation of joint structures in various parts of a humanoid toy, such as the torso, arms, and legs. Users can then position such a humanoid toy in desired poses.

[0003] Existing technical documents

[0004] Patent documents

[0005] Patent Document 1: Japanese Utility Model Application Publication No. 1-138492 Summary of the Invention

[0006] The problem the invention aims to solve

[0007] The present invention can provide a model component for changing the posture of a model toy and a model toy using the model component.

[0008] Solution for solving the problem

[0009] This invention relates to a toy component constituting a model toy. The toy component includes a first component and a second component. The first component has at least a first connecting portion and a spherical second connecting portion for engaging with the second component. The second component is configured to have a through hole for receiving the second connecting portion. The first connecting portion protrudes from a first opening of the through hole, and the first component is received within the second component through a second opening of the through hole. A third opening is provided in the second connecting portion, and the third opening engages with a first protrusion within the through hole, thereby enabling the first component to rotate relative to the second component.

[0010] The effects of the invention

[0011] According to the present invention, it is possible to provide a model component for changing the posture of a model toy and a model toy using the model component. Attached Figure Description

[0012] Figure 1 This is a diagram showing an example of a humanoid toy corresponding to the implementation method.

[0013] Figure 2 This is a diagram showing an example of the external structure, cross-sectional structure, and external structure of the toy parts of the arm of the humanoid toy corresponding to Embodiment 1.

[0014] Figure 3 This is a diagram showing an example of the external structure of the first component of the toy corresponding to Embodiment 1.

[0015] Figure 4 This is a diagram showing an example of the external structure of the second component of the toy corresponding to Embodiment 1.

[0016] Figure 5 This is a diagram illustrating the combination of the first and second parts of the toy components corresponding to Embodiment 1.

[0017] Figure 6 This is a diagram illustrating the rotation of the first component relative to the second component of the toy component corresponding to Embodiment 1.

[0018] Figure 7 This is a diagram showing an example of the external structure, cross-sectional structure, and external structure of the toy parts of the legs and feet of the humanoid toy corresponding to Embodiment 2.

[0019] Figure 8 This is a diagram showing an example of the external structure of the first component of the toy component corresponding to Embodiment 2.

[0020] Figure 9 This is a diagram showing an example of the appearance structure of the second component of the toy corresponding to Embodiment 2.

[0021] Figure 10 This is a diagram illustrating the combination of the first and second parts of the toy components corresponding to Embodiment 2.

[0022] Figure 11 This is a diagram illustrating the rotation of the first component relative to the second component of the toy component corresponding to Embodiment 2. Detailed Implementation

[0023] Hereinafter, embodiments will be described in detail with reference to the accompanying drawings. Furthermore, the embodiments described below are not intended to limit the invention protected by the claims. Also, not all combinations of features described in the embodiments are essential to the invention. Two or more features from the plurality of features described in the embodiments may be combined arbitrarily. Furthermore, the same reference numerals are used to denote the same or identical structures, and repeated descriptions are omitted. In addition, in each drawing, the up, down, left, and right directions relative to the plane of the paper are used as the up, down, left, and right directions of the components (or accessories) of this embodiment in the description herein.

[0024] First of all, Figure 1 An example of the appearance of a humanoid toy that is a model toy corresponding to this embodiment is shown. Figure 1This is a schematic diagram showing a humanoid toy 100 as an example of a model toy implemented in this way. The humanoid toy 100 includes a head 110, an upper chest portion (or simply referred to as the chest) 112, a lower chest portion (or abdomen) 113, a waist 114, arms 115 (115a, 115b), legs 116 (116a, 116b), and feet 117 (117a, 117b). Each part 110 to 117 is supported so that it can rotate (or swing) relative to adjacent parts. For example, the head 110 is supported so that it can rotate relative to the chest 112, the abdomen 113 is supported so that it can rotate relative to the waist 114, the legs 116 are supported so that they can rotate relative to the waist 114, the arms 115 are supported so that they can rotate relative to the chest 112, and the feet 117 are supported so that they can rotate relative to the legs 116.

[0025] Thus, joint mechanisms are provided in various parts of the humanoid toy 100, allowing the user (e.g., the owner of the humanoid toy 100) to pose the humanoid toy 100 in desired postures, such as bending to the left or right. Furthermore, while this embodiment uses a humanoid toy as an example of a humanoid model toy, this embodiment can be applied to model toys in any form, including not only humanoid toys but also quadrupedal animals, bipedal animals, birds, robots, and other models toy models with joint mechanisms.

[0026] Furthermore, in this specification, when describing the positional relationships of various parts, terms such as front, back, left, right, top, and bottom are sometimes used. However, these descriptions are relative and based on the accompanying drawings. For example, in... Figure 1 The front corresponds to the front side of the doll 100, and the back corresponds to the back side of the doll 100. The right side corresponds to the right hand side of the doll 100, the left side corresponds to the left hand side of the doll 100, the top side corresponds to the head side of the doll 100, and the bottom side corresponds to the feet side of the doll 100.

[0027] In this specification, Embodiment 1 is described using a shoulder joint mechanism that supports the arm 115 so that it can rotate relative to the chest 112, and Embodiment 2 is described using an ankle joint mechanism that supports the foot 117 so that it can rotate relative to the leg 116.

[0028] [Implementation Method 1]

[0029] In Embodiment 1, the structure of a toy component that serves as a shoulder joint component for rotatably connecting the arm 115 and the chest 112 will be described.

[0030] Figure 2This is a diagram showing the partial structure of arm 115b. Figure 2 Figure (A) is an example of the partial appearance of arm 115b. Figure 2 (B) means Figure 2 Figure (A) shows an example of the cross-sectional structure of the arm 115b. The arm 115b is configured to include fitting 201, fitting 202, and fitting 203 (also referred to as first component 201, second component 202, and third component 203, respectively). Figure 2 Figure (C) shows the assembled state of fittings 201 and 202. Fitting 201 is connected to fitting 202 in a manner that allows it to rotate relative to fitting 202, and fitting 201 is connected to the chest 112 via a connecting member 201A at its front end. Fitting 202 has a cylindrical member 202A, which is inserted into fitting 203, thereby connecting fitting 202 and fitting 203.

[0031] Figure 3 This is a diagram used to illustrate the structure of accessory 201. Figure 3 (A) shows a structural example of the side of accessory 201. Figure 3 (B) shows a structural example of the back side of accessory 201.

[0032] Accessory 201 has a shape formed by connecting a first connecting portion 201A at the front end and a second connecting portion 201B at the rear end via a connecting portion 201C. Figure 3 In this diagram, the first connecting portion 201A and the second connecting portion 201B are shown as spherical components, but the diameter of the second connecting portion 201B is larger than the diameter of the first connecting portion 201A. The shapes of the first connecting portion 201A and the second connecting portion 201B are not necessarily limited to a spherical shape. For example, they can be cylindrical, triangular pyramidal, or any other shape suitable for connection. The second connecting portion 201B has an opening 201D, through which it connects to the fitting 202. The opening 201D penetrates the second connecting portion 201B to form a through hole, and the line 201F passing through this through hole constitutes the rotation axis of the fitting 201. The opening 201D can also be formed as a recess. The openings 201D are located on opposite sides of each other on the second connecting portion 201B and are formed in pairs. In this embodiment, opening 201D is referred to as the third opening, opening 202C of the accessory 202 described later is referred to as the first opening, and opening 202E is referred to as the second opening. The side of the second connecting portion 201B is cut off to form surface 201E.

[0033] Next, refer to Figure 4 This explains the structure of accessory 202. Figure 4 (A) is a diagram showing the structure of the side of accessory 202 that protrudes from the first connecting part 201A of accessory 201. Figure 4(B) is a diagram showing the structure of the side of accessory 202 into which accessory 201 is inserted. Figure 4 (C) is a diagram illustrating the structure within the opening on the side into which the accessory 201 is inserted in the accessory 202.

[0034] Accessory 202 has a shape that connects the third connecting part 202B and the fourth connecting part 202A. Figure 4 In this design, the third connecting portion 202B is shown as a spherical component, but its shape is not necessarily limited to spherical. For example, it can be any shape suitable for connection. Similarly, the fourth connecting portion 202A is shown as a cylindrical component, but its shape is not necessarily limited to cylindrical and can be any shape suitable for connection. The third connecting portion 202B has a through hole that connects the first opening 202C and the second opening 202E. The diameter of the first opening 202C is smaller than the diameter of the second opening 202E, so that the second opening 202E can accommodate the second connecting portion 201B of the fitting 201, while preventing the second connecting portion 201B from being discharged from the first opening 202C. Furthermore, a locking portion 202G is provided on the first opening 202C side, which limits the insertion depth of the fitting 201 relative to the fitting 202.

[0035] At the first opening 202C Figure 4 An end portion 202Ct is provided on the lower side of (A). This end portion 202Ct is located on the top surface of the locking portion 202G. This end portion 202Ct functions as the lower end side that limits the rotation range of the fitting 201. By locking the connecting portion 201C of the fitting 201 to the end portion 202Ct, the rotation of the fitting 201 relative to the fitting 202 is limited. Furthermore, in the first opening 202C... Figure 4 The upper side of (A) is provided with a notch 202D. The notch 202D functions to limit the rotation range of the accessory 201. By locking the connecting part 201C of the accessory 201 to the end 202Dt of the notch 202D, the rotation of the accessory 201 relative to the accessory 202 is limited.

[0036] Inside the through hole of accessory 202, Figure 4 The left and right sides of (C) are provided with inwardly protruding protrusions 202F for rotatably engaging the third opening 201D of accessory 201 and accessory 202. Figure 4As shown in (B), the protrusion 202F has an inclined portion 202Fa on the side of the second opening 202E that receives the insertion of the fitting 201. This inclined portion 202Fa facilitates positioning when the fitting 201 is inserted into the fitting 202. Furthermore, a flat portion 202Fb is provided continuously with the inclined portion 202Fa. The flat portion 202Fb of the protrusion 202F engages with the third opening 201D of the fitting 201, thereby rotatably connecting the fitting 201 and the fitting 202. The flat portion 202Fb has an arc-shaped curved surface along the inner side of the third opening 201D of the fitting 201.

[0037] Figure 5 This diagram shows the case where the accessory 201 is inserted from the second opening 202E side of the accessory 202. At this time, the protrusion 202F of the accessory 202 engages with the third opening 201D of the accessory 201, thus determining the position of the accessory 201 within the accessory 202.

[0038] Figure 6 This diagram shows the situation where accessory 201 rotates relative to accessory 202. Accessories 201 and 202 are able to engage the arc-shaped surface of the protrusion 202F with the inner wall of the third opening 201D, thereby causing accessory 201 to rotate along the arc-shaped surface of the protrusion 202F.

[0039] Figure 6 (A) shows an example of a state where the first connecting portion 201A of the fitting 201 is located at the lower end of the rotation range. At this time, the connecting portion 201C of the fitting 201 is locked to the end 202Ct of the first opening 202C, thereby restricting rotation. Figure 6 (B) shows an example of the first connecting portion 201A of accessory 201 being located at the upper end of the rotation range. At this time, the connecting portion 201C of accessory 201 is locked to the end 202Dt of the notch 202D provided in the first opening 202C, thereby restricting rotation.

[0040] Thus, according to this embodiment, by utilizing the structure of the shoulder joint portion of the humanoid model, the arm 115 can rotate relative to the chest 112.

[0041] [Implementation Method 2]

[0042] In Embodiment 2, the construction of a toy component that serves as an ankle joint component for rotatably connecting the foot 117 and the leg 116 will be described.

[0043] Figure 7 This is a diagram showing a partial view of the leg 116a and a structural example of the foot 117a. Figure 7 Figure (A) is an example showing a portion of the leg 116a and the appearance of the foot 117a. Figure 7Figure (B) is an example of a partial view of the leg 116a and a cross-sectional view of the foot 117a. The leg 116a is configured to include at least fitting 703, and the foot 117a is configured to include fittings 701 to 702, 704 to 706. Figure 7 (C) is a diagram showing the connection state of fittings 701 and 702 (also referred to as first component 701 and second component 702, respectively) in the fittings constituting foot 117a. Fitting 701 is connected to fitting 702 in a rotatable manner relative to fitting 702. Fitting 701 connects fitting 704 constituting the instep and fitting 705 constituting the ball of the foot in a rotatable manner via a connecting member 701A at its front end. Furthermore, fitting 702 has a cylindrical member 702A, which is inserted into fitting 703, thereby connecting fitting 702 to fitting 703.

[0044] Figure 8 This is a diagram used to illustrate the structure of accessory 701. Figure 8 (A) shows a structural example of the side of accessory 701. Figure 8 (B) shows a structural example of the back side of accessory 701.

[0045] Accessory 701 has a shape formed by connecting the first connecting part 701A at the front end and the second connecting part 701B at the rear end via a connecting part 701C. Figure 7 In this diagram, the first connecting portion 701A and the second connecting portion 701B are shown as spherical components, but the diameter of the second connecting portion 701B is larger than the diameter of the first connecting portion 701A. The shapes of the first connecting portion 701A and the second connecting portion 701B are not necessarily limited to a spherical shape. For example, they can be cylindrical, triangular pyramidal, or any other shape suitable for connection. The second connecting portion 701B has an opening 701D, through which it connects to the fitting 702. The opening 701D penetrates the second connecting portion 701B to form a through hole, and the line 701F passing through this through hole constitutes the rotation axis of the fitting 701. The opening 701D can also be formed as a recess. The openings 701D are located on opposite sides of each other on the second connecting portion 701B and are formed in pairs. In this embodiment, opening 701D is referred to as the third opening, opening 702C of accessory 702 described later is referred to as the first opening, and opening 702E is referred to as the second opening.

[0046] The side of the second connecting portion 701B is cut off to form a surface 701E. The surface 701E is formed to protrude from the spherical outline of the second connecting portion 701B and is also used for positioning when the accessory 701 is inserted into the accessory 702.

[0047] Next, refer to Figure 9 This explains the structure of accessory 702. Figure 9Figure (A) shows the structure of the side of accessory 702 that protrudes from the first connecting portion 701A of accessory 701. Figure 9 (B) is a diagram showing the structure of the side of accessory 702 into which accessory 701 is inserted. Figure 9 (C) is a diagram illustrating the structure within the opening on the side into which accessory 701 is inserted in accessory 702.

[0048] Accessory 702 has a shape that connects the third connecting part 702B and the fourth connecting part 702A. Figure 9 In this design, the third connecting portion 702B is shown as a spherical member, but its shape is not necessarily limited to spherical. For example, it can be provided with any shape suitable for connection. Similarly, the fourth connecting portion 702A is shown as a cylindrical member, but its shape is not necessarily limited to cylindrical. For example, it can be provided with any shape suitable for connection. A through hole is formed in the third connecting portion 702B to connect the first opening 702C and the second opening 702E. The diameter of the first opening 702C is smaller than the diameter of the second opening 702E, so that the second opening 702E can accommodate the second connecting portion 701B of the fitting 701, while preventing the second connecting portion 701B from being discharged from the first opening 702C. Furthermore, locking portions 702Gu and 702Gb are provided inside the fitting 702 to prevent the second connecting portion 701B from being discharged from the first opening 702C side. The insertion depth of accessory 701 relative to accessory 702 is limited by the locking part 702G.

[0049] In the first opening 702C Figure 9 The lower side of (A) is provided with an end portion 702Ctb. This end portion 702Ctb functions as a lower end portion that limits the rotation range of the fitting 701. By locking the connecting portion 701C of the fitting 701 to the end portion 702Ctb, the rotation of the fitting 701 relative to the fitting 702 is limited. Furthermore, in the first opening 702C... Figure 9 The upper side of (A) is provided with an end 702Ctu. The end 702Ctu functions to limit the rotation range of the fitting 701. By locking the connecting part 701C of the fitting 701 to the end 702Ctu, the rotation of the fitting 701 relative to the fitting 702 is limited.

[0050] Inside the through hole of accessory 702, Figure 9 The left and right sides of (C) are provided with inwardly protruding protrusions 702F for rotatably engaging the third opening 701D of accessory 701 and accessory 702. Figure 9As shown in (B), the protrusion 702F has an inclined portion 702Fa on the side receiving the insertion of the fitting 701. This inclined portion 702Fa facilitates the insertion and installation of the fitting 701 into the fitting 702. Furthermore, a flat portion 702Fb is provided continuously with the inclined portion 702Fa. The flat portion 702Fb of the protrusion 702F engages with the third opening 701D of the fitting 701, thereby rotatably connecting the fitting 701 and the fitting 702. The flat portion 702Fb has an arc-shaped curved surface along the inner side of the third opening 701D of the fitting 701.

[0051] like Figure 9 As shown in (C), engaging portions 702D are provided at four locations inside the second opening 702E. The engaging portions 702D are arranged in pairs above and below the protrusion 702F. The engaging portions 702D and... Figure 8 The upper and lower ends of the side surface 701E of the accessory 701 shown in (B) engage for positioning when the accessory 701 is inserted into the accessory 702. Furthermore, the protruding portion of the side surface 701E protruding from the second connecting portion 701B is annular (circular), allowing rotation on the engaging portion 702D using the side surface of the protruding portion. This assists in preventing the rotation axis from wobbling when the third opening 701D of the accessory 701 engages with the protrusion 702F of the accessory 702 and rotates.

[0052] Figure 10 This diagram illustrates the insertion of the component 701 into the component 702 through the second opening 702E. At this time, the protrusion 702F of the component 702 engages with the third opening 701D of the component 701, defining the position of the component 701 within the component 702. Furthermore, the upper and lower ends of the surface 701E engage with the engaging portion 702D, thereby defining the insertion direction and restricting rotation of the component 701 by limiting its rotation.

[0053] Figure 11 This diagram illustrates the rotation of accessory 701 relative to accessory 702. Accessories 701 and 702 allow accessory 701 to rotate along the arcuate side of the protrusion 702F by engaging with the inner wall of the third opening 701D. At this time, the side of the protruding portion of the surface 701E of accessory 701 contacts the engaging portion 702D, restricting the position of accessory 701. Accessory 701 is positioned between the upper and lower engaging portions 702D in the diagram and will not shift from this position.

[0054] Figure 11(A) shows an example of a state where the first connecting portion 701A of the fitting 701 is located at the lower end of the rotation range. At this time, the connecting portion 701C of the fitting 701 is locked to the lower end 702Ctb of the first opening 702C, thereby restricting rotation. Figure 11 (B) shows an example of a state where the first connecting portion 701A of the fitting 701 is located at the upper end of the rotation range. At this time, the connecting portion 701C of the fitting 701 is locked to the upper end 702Ctu of the first opening 702C, thereby restricting rotation.

[0055] Thus, according to this embodiment, the ankle portion of the humanoid model can be rotated relative to the leg 116 using its structure. In the above embodiments, the shoulder joint mechanism and ankle joint mechanism have been primarily described, but the toy components described in Embodiments 1 and 2 can also be used as other joint mechanisms such as the hip joint. Furthermore, while the above embodiments describe a humanoid model toy, this is not a limitation, and various types of model toys can be applied.

[0056] <Summary of Implementation Methods>

[0057] The above embodiments disclose at least the following toy parts and model toys.

[0058] (Project 1) A toy component, which is a toy component constituting a model toy, wherein,

[0059] The toy consists of a first part and a second part.

[0060] The first component has at least a first connecting portion and a spherical second connecting portion for joining with the second component.

[0061] The second component is configured to have a through hole for receiving the second connecting portion, the first connecting portion protruding from a first opening of the through hole, and the first component being received within the second component through a second opening of the through hole.

[0062] The second connecting portion is provided with a third opening, which engages with the first protrusion in the through hole, thereby enabling the first component to rotate relative to the second component.

[0063] (Project 2) The toy components according to Project 1, wherein,

[0064] The range of rotation of the first component relative to the second component is limited by the locking of the end of the first opening against the connecting portion that connects the first connecting portion and the second connecting portion.

[0065] (Item 3) The toy component according to Item 2, wherein,

[0066] The first opening has a notch, and the range of rotation of the first component relative to the second component is further limited by the locking of the end of the notch onto the connecting portion.

[0067] (Item 4) A toy component according to any one of Items 1 to 3, wherein...

[0068] The first protrusion is configured to have a curved surface along the inner side of the third opening and an inclined surface on the side of the second opening.

[0069] (Item 5) A toy component according to any one of Items 1 to 4, wherein,

[0070] The third openings are located on opposite sides of the second connection and are formed in pairs.

[0071] The first protrusion is opposite to the through hole and is formed in pairs corresponding to the third opening.

[0072] (Item 6) The toy component according to Item 5, wherein,

[0073] The second connecting portion has a pair of circumferential second protrusions surrounding the third opening.

[0074] The second component also has a locking portion within the through hole, which is arranged in pairs across each of the first protrusions and is configured to receive the second protrusion.

[0075] The engagement portion engages with the second protrusion, thereby restricting the position of the first component relative to the second component during rotation.

[0076] (Item 7) A toy component according to any one of Items 1 to 6, wherein,

[0077] The second component also has a locking part inside the through hole, which is used to limit the insertion depth of the first connecting part into the through hole.

[0078] (Item 8) A toy component according to any one of Items 1 to 7, wherein,

[0079] The diameter of the first opening is smaller than the diameter of the second opening.

[0080] (Item 9) A toy component according to any one of Items 1 to 8, wherein,

[0081] The second component includes a spherical third connecting portion and a fourth connecting portion connected to the third connecting portion, and the through hole is provided in the third connecting portion.

[0082] (Item 10) A toy component according to any one of Items 1 to 9, wherein,

[0083] The toy component is a joint component that connects the parts and components of the model toy.

[0084] (Item 11) The toy component according to Item 10, wherein,

[0085] The toy component is a shoulder joint component or an ankle joint component.

[0086] (Project 12) A model toy, wherein,

[0087] The model toy has any of the toy parts described in any of items 1 to 11.

[0088] The invention is not limited to the above-described embodiments; various modifications and alterations are possible within the scope of the invention's intent.

Claims

1. A toy component, which is a toy component constituting a model toy, wherein, The toy consists of a first part and a second part. The first component has at least a first connecting portion and a spherical second connecting portion for joining with the second component. The second component is configured to have a through hole for receiving the second connecting portion, the first connecting portion protruding from a first opening of the through hole, and the first component being received within the second component through a second opening of the through hole. The second connecting portion has a third opening, which engages with a first protrusion within the through hole, thereby enabling the first component to rotate relative to the second component. The second component further includes a locking part inside the first opening, the locking part being configured to retain the second connecting part within the second component by locking the second connecting part.

2. The toy component according to claim 1, wherein, The range of rotation of the first component relative to the second component is limited by the locking of the end of the first opening against the connecting portion that connects the first connecting portion and the second connecting portion.

3. The toy component according to claim 2, wherein, The first opening has a notch, and the range of rotation of the first component relative to the second component is further limited by the locking of the end of the notch onto the connecting portion.

4. The toy component according to claim 1, wherein, The first protrusion is configured to have a curved surface along the inner side of the third opening and an inclined surface on the side of the second opening.

5. The toy component according to claim 1, wherein, The third openings are located on opposite sides of the second connection and are formed in pairs. The first protrusion is opposite to the through hole and is formed in pairs corresponding to the third opening.

6. The toy component according to claim 5, wherein, The second connecting portion has a pair of circumferential second protrusions surrounding the third opening. The second component also has a locking portion within the through hole, which is arranged in pairs across each of the first protrusions and is configured to receive the second protrusion. The engagement portion engages with the second protrusion, thereby restricting the position of the first component relative to the second component during rotation.

7. The toy component according to claim 1, wherein, The locking part is also configured to limit the insertion depth of the second connecting part into the through hole.

8. The toy component according to claim 1, wherein, The diameter of the first opening is smaller than the diameter of the second opening.

9. The toy component according to claim 1, wherein, The second component includes a spherical third connecting portion and a fourth connecting portion connected to the third connecting portion, and the through hole is provided in the third connecting portion.

10. The toy component according to claim 1, wherein, The toy component is a joint component that connects the parts and components of the model toy.

11. The toy component according to claim 10, wherein, The toy component is a shoulder joint component or an ankle joint component.

12. A model toy, wherein, The model toy has the toy parts as described in any one of claims 1 to 11.

Citation Information

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