Model toys and movable structures
The model toy design addresses the challenge of maintaining aesthetic consistency across forms by incorporating a rotatable connection mechanism with a ball-shaped ball portion and a plate-shaped restriction portion, allowing the outer surface tilt to change between states, thus enhancing the deformable model toy's movement and form transformation.
Patent Information
- Application Number
- JP2024176708
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-05-14
- Estimated Expiration
- 2044-10-08
AI Technical Summary
Conventional deformable model toys face challenges in ensuring that parts reused before and after deformation do not give off a sense of discomfort in their alternative forms, due to inconsistent tilting of outer surfaces during transformation.
A model toy design featuring a first part, a second part rotatably connected via a connection portion with a ball-shaped ball portion and a plate-shaped restriction portion, and a third part with protrusions that fit into recesses, allowing the outer surface tilt to change between two states, thereby regulating the direction of movement and maintaining aesthetic consistency across forms.
The solution enables a novel mechanism for moving and regulating the direction of movement in deformable model toys, ensuring that the tilt of outer surfaces changes appropriately between forms, reducing discomfort and maintaining form consistency.
Smart Images

Figure 0007676648000001_ABST
Abstract
Description
[Technical field]
[0001] The present invention relates to a model toy and a movable structure. [Background technology]
[0002] In order to realize movements and poses similar to those of humans and animals, doll toys (model toys) include various joints and movable parts. Some model toys can be transformed into multiple forms, and in this case, they have mechanisms related to transformation in addition to movable mechanisms such as joints. Patent Document 1 proposes a transformable toy that can be transformed so as to be combined with a model toy. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent Publication No. 2021-109108 Summary of the Invention [Problem to be solved by the invention]
[0004] A transformable model toy like the above-mentioned conventional technology requires a mechanism for transformation in addition to movable mechanisms such as various joints. In such a transformable toy, parts are reused before and after transformation, and there is a risk that a part required for one form may have a shape that creates an awkwardness in the other form.
[0005] The present invention provides, for example, a novel mechanism for moving a transformable model toy in accordance with the transformed form. Also, the present invention provides, for example, a novel mechanism for regulating the direction of movement of a model toy. [Means for solving the problem]
[0006] The present invention is characterized in that, for example, a model toy includes a first part, a second part that is rotatably connected to the first part via a connecting part and has a first state before rotation and a second state after rotation, and a third part that is assembled to the first part and the second part, and has an outer surface assembled at a first inclination when the second part is in the first state and an outer surface assembled at a second inclination when the second part is in the second state. The present invention also provides, for example, a model toy comprising: a first part; a second part rotatably connected to the first part via a connecting portion, the second part having a first state before rotation and a second state after rotation; and a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state and the outer surface which is assembled at a second inclination when the second part is in the second state, the first part comprising a first recess and a second recess, the third part comprising a protrusion, the protrusion being fitted into the first recess when the second part is in the first state and the protrusion being fitted into the second recess when the second part is in the second state, the protrusion being unable to fit into the second recess of the first part when the second part is in the first state, and the protrusion being unable to fit into the first recess of the first part when the second part is in the second state. The present invention also provides, for example, a model toy comprising a first part, a second part rotatably connected to the first part via a connecting portion and having a first state before rotation and a second state after rotation, and a third part which is assembled to the first part and the second part, the outer surface of which is assembled at a first inclination when the second part is in the first state and the outer surface of which is assembled at a second inclination when the second part is in the second state, and which is characterized in that the inclination of the surface of the second part to which the third part is assembled changes between the first state and the second state. The present invention also provides, for example, a model toy comprising a first part, a second part rotatably connected to the first part via a connecting portion and having a first state before rotation and a second state after rotation, and a third part assembled to the first part and the second part, the outer surface of which is assembled at a first inclination when the second part is in the first state and the outer surface of which is assembled at a second inclination when the second part is in the second state, the model toy being transformable into a first form and a second form, and the outer surface of the third part being assembled to the second part at the first inclination when in the first form and the outer surface of which is assembled to the second part at the second inclination when in the second form.
[0007] The present invention is also characterized in that, for example, a movable structure of a model toy includes a first part having a connecting portion, a second part rotatably connected to the connecting portion and having a first state before rotation and a second state after rotation, and a third part that is assembled to the first part and the second part, and has an outer surface assembled with a first inclination when the second part is in the first state and has an outer surface assembled with a second inclination when the second part is in the second state. The present invention also provides, for example, a movable structure of a model toy, comprising: a first part having a connecting portion; a second part rotatably connected to the connecting portion and having a first state before rotation and a second state after rotation; and a third part which is assembled to the first part and the second part, and whose outer surface is assembled at a first inclination when the second part is in the first state and whose outer surface is assembled at a second inclination when the second part is in the second state, wherein the first part has a first recess and a second recess, and the third part has a protrusion, wherein the protrusion is fitted into the first recess when the second part is in the first state and the protrusion is fitted into the second recess when the second part is in the second state, and wherein the protrusion cannot be fitted into the second recess of the first part when the second part is in the first state, and the protrusion cannot be fitted into the first recess of the first part when the second part is in the second state. The present invention also relates to a movable structure of a model toy, for example, comprising a first part having a connecting portion, a second part rotatably connected to the connecting portion and having a first state before rotation and a second state after rotation, and a third part which is assembled to the first part and the second part, the outer surface of which is assembled at a first inclination when the second part is in the first state, and the outer surface of which is assembled at a second inclination when the second part is in the second state, and which is characterized in that the inclination of the surface of the second part to which the third part is assembled changes between the first state and the second state. The present invention also provides, for example, a movable structure of a model toy, comprising a first part having a connecting portion, a second part rotatably connected to the connecting portion and having a first state before rotation and a second state after rotation, and a third part which is assembled to the first part and the second part, and whose outer surface is assembled at a first inclination when the second part is in the first state and whose outer surface is assembled at a second inclination when the second part is in the second state, wherein the model toy is transformable into a first form and a second form, and wherein the outer surface of the third part is assembled to the second part at the first inclination when in the first form and whose outer surface is assembled to the second part at the second inclination when in the second form. Effect of the Invention
[0008] According to the present invention, for example, in a transformable model toy, a novel mechanism for moving in accordance with the transformed form can be provided. Also, according to the present invention, for example, in a model toy, a novel mechanism for regulating the direction of movement can be provided. [Brief description of the drawings]
[0009] [Figure 1] 1A, 1B, 1C, 1D, and 1E are perspective views showing the appearance of a model toy according to an embodiment in a second form, a first form, and a third form, respectively. [Diagram 2]1A is an external view of a first form of a model toy according to one embodiment, and FIG. 1B is an exploded view of a waist portion thereof. [Diagram 3] FIG. 2 is a perspective view of main parts constituting the waist portion of the model toy according to one embodiment. [Figure 4] FIG. 2 is a side cross-sectional view of a waist portion of the model toy according to one embodiment. [Diagram 5] FIG. 2 is a diagram showing the rear surface of the waist portion of the model toy according to one embodiment. [Figure 6] 1A and 1B are diagrams illustrating states of a model toy before and after deformation according to an embodiment. [Figure 7] FIG. 4 is a diagram showing a configuration of a connecting portion according to an embodiment. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0010] Hereinafter, the embodiments will be described in detail with reference to the accompanying drawings. Note that the following embodiments do not limit the invention according to the claims, and not all combinations of features described in the embodiments are essential to the invention. Two or more features among the multiple features described in the embodiments may be arbitrarily combined. In addition, the same reference numbers are used for the same or similar configurations, and duplicated descriptions are omitted.
[0011] <Appearance of the model toy> A model toy that can be transformed into a plurality of forms according to this embodiment will be described with reference to Fig. 1. Fig. 1(a) and (b) show the exterior side views of model toys 110 and 120 in the second form, Fig. 1(c) and (d) show model toys 130 and 140 in the first form, and Fig. 1(e) shows model toy 100 in the third form. Note that the x, y, and z arrows indicate the upward, left, and forward directions of the model toy, respectively, and the same is true for the other drawings.
[0012] As shown in Fig. 1(a) to Fig. 1(d), the model toys 110, 120 in the second form, which is a vehicle form, can be transformed into the model toys 130, 140 in the first form, which is a robot form, respectively. As shown in Fig. 1(e), the two model toys 110 (130), 120 (140) can be transformed into the model toy 100 in the third form, which is a combined robot form. Thus, according to this embodiment, and also according to this embodiment, the model toy 100 can be transformed from the robot form, which is the first form, into the vehicle form, which is the second form, and into the combined robot form, which is the third form, but there is no intention to limit the present invention to each form, and any form may be used.
[0013] The model toy 130 of the first form includes a head 101, a chest 102, arms 103a and 103b, a waist 104, legs 105a and 105b, which constitute a main body, and an accessory 106. In this embodiment, a humanoid robot is used as an example of a model toy, but this is not intended to limit the present invention, and the present invention can be applied to various models such as humans, animals, robots, insects, dinosaurs, weapons, and accessories.
[0014] The head 101 is connected to a chest 102. A right arm 103b and a left arm 103a are further connected to the sides of the chest 102 by connecting members, and a waist 104 is connected to the lower part. A right leg 105b and a left leg 105a are connected to the waist 104. Furthermore, an accessory 106, which is a weapon, is connected to the back of the model toy 100.
[0015] <Waist Configuration> The configuration of the waist portion 104 of the model toy 130 according to this embodiment will be described with reference to Fig. 2. Fig. 2(a) shows the model toy 130 in the first form, similar to Fig. 1(c). Fig. 2(b) shows the exploded configuration of the waist portion 104.
[0016] As shown in FIG. 2(b), waist 104 includes parts 201 to 207b. Part 201 is a part that forms a waist joint and corresponds to the first part. Part 201 has a cylindrical insertion part formed in the center, and part 208 that forms part of chest 102 is rotatably connected to the insertion part. A connecting part of part 202, which will be described later, is rotatably connected to part 201.
[0017] Part 202 is a part that forms the hip joint, and is rotatably connected to parts 201 and 204 via connecting parts. Part 202 corresponds to the second part. Part 203 is a part that forms the back surface of waist 104, and is connected by fitting to parts 201 and 202. Part 203 corresponds to the third part. Part 204 is a part that forms the front surface of waist 104, and has a recess formed on its back surface into which the spherical connecting part of part 202 is inserted.
[0018] Parts 205a and 205b are parts that form hip joints, and are each connected to a cylindrical connecting part of part 202. Legs 105a and 105b are rotatably connected to the hip joints formed on the left and right, respectively. Parts 206a, 206b, 207a, and 207b are parts that form a part of the skirt, which is a decorative part, and are each rotatably connected to part 201.
[0019] <Main parts configuration> The configuration of the main parts constituting a part of the waist portion 104 according to this embodiment will be described with reference to Fig. 3. Fig. 3(a) shows a front perspective view of the main parts, 201 to 204. Fig. 3(b) shows a rear perspective view of the parts 201 to 204.
[0020] Part 201 is configured to include a through hole 311, a cylindrical insertion section 312, and spherical connecting sections 313a and 313b. A connecting section 321 of part 202, which will be described later, is inserted into through hole 311. Part 208, which constitutes a part of chest section 102, is rotatably connected to insertion section 312. Part 206a is rotatably connected to connecting section 313a, and part 206b is rotatably connected to connecting section 313b. In addition, as shown in FIG. 3(b), a recess (first recess) 314 and a recess (second recess) 315 are formed on the back surface of part 201.
[0021] Part 202 includes a spherical connecting portion 321, cylindrical connecting portions 322a and 322b, and an opening 323. Connecting portion 321 passes through a through hole 311 of part 201 and is rotatably connected to a hole portion 341 of part 204, which will be described later. Therefore, part 202 is rotatably connected to parts 201 and 204.
[0022] Here, referring to FIG. 7, a detailed fitting configuration of the connecting part 321 and the hole part 341 will be described. FIG. 7 shows parts 203 and 204. The connecting part 321 has a spherical ball part and a plate-like restricting part 701 formed along the outer periphery of the upper half of the ball part. The restricting part 701 is formed on the ball part as a crown-shaped protrusion like a cockscomb seen in birds of the Phasianidae family. Meanwhile, the hole part 341 into which the connecting part 321 is rotatably fitted has a notch 702 formed in the upper part corresponding to the restricting part 701. Therefore, when the connecting part 321 is inserted into the hole part 341, the restricting part 701 is inserted into the notch 702.
[0023] With the above configuration, the rotation direction of the connecting part 321 can be limited to only a predetermined direction of the model toy 130. This is important for defining the position of the part 203 in the first state and the second state described later. In this way, the model toy according to this embodiment can provide a new mechanism for restricting the moving direction. It is possible to restrict the rotation direction by configuring a movable structure by a movable shaft having a cylindrical rod part instead of the spherical connecting part 321. However, in the case of the movable shaft, it is necessary to form a bearing part for the movable shaft, which leads to an increase in size. On the other hand, in the case of the connecting part 321 having the restricting part 701 according to this embodiment, the rotation direction can be restricted and the increase in size of the part can be avoided. Details of the rotation operation of the connecting part 321 will be described later with reference to FIG. 4.
[0024] Returning to the explanation of Fig. 3, part 205a is connected to connecting portion 322a, and part 205b is connected to connecting portion 322b to form the hip joint of model toy 130. A protrusion 332 of part 203, which will be described later, is fitted into opening 323. Also, as shown in Fig. 3(b), recesses 324a and 324b are formed on the back surface of part 202.
[0025] Part 203 is configured to include protrusions 331, 332, 333a, and 333b. Protrusion 331 is fitted into one of recesses 314, 315 formed on the back surface of part 201. Protrusion 333a is fitted into recess 324a, and protrusion 333b is fitted into recess 324b. Protrusion 332 is fitted into opening 323 of part 202 as described above.
[0026] Part 204 is a part on the outer front side of waist portion 104, and has hole 341 on the back side. As described above, connecting part 321 of part 202 that passes through through hole 311 of part 201 is rotatably connected to hole 341. Therefore, part 202 rotates relative to parts 201 and 204 around connecting part 321 inserted into hole 341.
[0027] <Waist deformation configuration> The transformation configuration of the waist portion 104 in the model toy 130 according to this embodiment will be described with reference to Fig. 4. Fig. 4 shows a side cross section of the waist portion 104, illustrating how the model toy 130 transforms from a first form, which is a robot form, to a second form, which is a vehicle form.
[0028] FIG. 4(a) shows a side cross section of the waist 104 and the abdomen connected to the waist 104 of the model toy 130 in the first form, which is a robot form. In the first form, the part 202 is in a first state in which it does not rotate with respect to the parts 201 and 204. In the first state, among the recesses 314 and 315 formed on the back surface of the part 201, the protrusion 331 of the part 203 is fitted into the recess 314, which is the first recess formed on the upper side. On the other hand, in the first state, the protrusion 331 cannot be fitted into the recess 315, which is the second recess, because other parts of the part 203 interfere with it. For example, the lower part of the protrusion 331 hits the wall surface of the part 203, and the protrusion 331 cannot enter the recess 315, and the connection is restricted.
[0029] 4(a), the solid line 401 indicates the inclination of the outer surface of the part 203. Here, the inclination 401 of the outer surface is represented by an inclination angle (first inclination) 411. This inclination angle is a parameter for comparison with the inclination of the outer surface of the part 203 in the second form, which is the vehicle form, and is represented here by the inclination with respect to the horizontal plane (dotted line) in the z-axis direction in the figure.
[0030] FIG. 4(b) shows how the first form, which is the robot form shown in FIG. 4(a), is transformed into the second form, which is the vehicle form. First, part 203 is removed. Then, part 202 is rotated in the direction of the arrow (downward) with connecting part 321 as the rotation axis. Here, part 202 transitions from the first state to the second state. As described above, the rotation of part 202 is restricted only in the direction of the arrow due to the configuration of restricting part 701 of connecting part 321, and rotation is restricted, for example, to the left and right. This prevents part 203 from shifting out of position.
[0031] When part 202 is rotated to the second state and then part 203 is fitted again, the vehicle transitions to the second form, which is the vehicle form shown in Fig. 4(c). In the second form, protrusion 331 of part 203 fits into recess 315 formed on the back surface of part 201. This is possible because part 202 rotates so that other parts do not interfere when protrusion 331 is fitted into recess 315. On the other hand, when part 202 is in the second state, protrusion 331 cannot be fitted into recess 314 due to interference from other parts.
[0032] In FIG. 4(c), the solid line 402 indicates the inclination of the outer surface of the part 203. Here, the inclination 402 of the outer surface is represented by an inclination angle (second inclination) 412. It can be seen that the inclination angle 412 is larger than the inclination angle 411 in the first form which is the robot form. It can also be seen that the inclination (solid line) 402 representing the outer surface of the part 202 extends in the vertical direction of the model toy 130 (the y direction in the figure). In this way, according to this embodiment, the inclination of the outer surface of a part of the model toy can be changed between the first form and the second form.
[0033] <Back structure of the lower back> The back configuration of the waist portion 104 in the model toy 130 according to this embodiment will be described with reference to Fig. 5. Fig. 5(a) shows the front of the part 203 on the back of the waist portion 104. Fig. 5(b) shows the back of the waist portion 104 in the first form. Fig. 5(c) shows the back of the waist portion 104 in the second form.
[0034] 5(a), part 203 is formed with multiple protrusions 331, 332, 333a, and 333b. These multiple protrusions are molded by pouring resin into a metal mold, and their positional relationship is fixed and does not change. Therefore, in order to fit part 203, it is necessary to have a recess that corresponds to these positional relationships.
[0035] Fig. 5(b) shows the first form, with part 202 in the first state before rotation. In the first form, recess 314 of part 201 corresponds to opening 323 and recesses 324a and 324b of part 202, as shown by the shading, with respect to the positional relationship of the multiple protrusions in Fig. 5(a). Note that in the first form, if recess 315 of part 202 is selected, its position does not correspond to the multiple protrusions of part 203, and it cannot be fitted in.
[0036] Fig. 5(c) shows the second form, in which part 202 is in the second state after rotating in the direction of the arrow. In the second form, recess 315 of part 201 corresponds to opening 323 and recesses 324a and 324b of part 202, as shown by the hatched portion, with respect to the positional relationship of the multiple protrusions in Fig. 5(a). Note that in the second form, if recess 314 of part 202 is selected, its position does not correspond to the multiple protrusions of part 203, and it cannot be fitted in.
[0037] <Before and after transformation> The states of the model toy 130 according to this embodiment before and after deformation will be described with reference to Fig. 6. Fig. 6(a) shows a side view of the upper body of the model toy 130 in the first form. Fig. 6(b) shows a side view of the upper body of the model toy 130 in the second form.
[0038] 6(a) 600 indicates the inclination of the outer surface of the part on the back side of the chest 102. It can be seen that the inclination 600 is different from the inclination 401 of the outer surface of the part 203 of the waist 104 in the first form. This represents the shape of the buttocks of a humanoid robot.
[0039] On the other hand, as shown in FIG. 6(b), in the second form, which is the vehicle form, the inclination 600 of the outer surface of the part on the back side of the chest 102 is the same as in the first form, which is the robot form. In contrast, the inclination 402 of the outer surface of the part 203 of the waist 104 is approximately the same as the inclination 600, and they are in a parallel positional relationship. In the second form, these surfaces form the upper surface (ceiling surface) of the vehicle. Therefore, if the inclinations of the respective surfaces are different, the shape of the vehicle will give an unnatural feeling. In this embodiment, the inclination of the outer surface of the part 203 on the back side of the waist 104 is changed by rotating the part 202, thereby eliminating the unnatural feeling as described above.
[0040] As described above, the model toy according to the present embodiment includes a first part, a second part that is rotatably connected to the first part via a connecting part and has a first state before rotation and a second state after rotation, and a third part that is assembled to the first part and the second part, and has an outer surface assembled at a first inclination when the second part is in the first state and an outer surface assembled at a second angle when the second part is in the second state. The model toy according to the present embodiment can be transformed from a first form, which is a robot form, to a second form, which is a vehicle form, and the inclination (tilt angle) of the outer surface of some parts can be changed in each form. This can reduce the sense of incongruity caused by the shape of the other form remaining in one form. In this way, the present invention can provide a novel mechanism that moves in accordance with the transformed form in a transformable model toy. The present invention can also provide a novel mechanism that restricts the moving direction in a model toy.
[0041] The present invention is not limited to the above-described embodiment, and various modifications and changes are possible within the scope of the gist of the invention. For example, the shape of the model toy is not particularly limited, and includes various shapes such as people, animals, robots, insects, dinosaurs, etc.
[0042] <Summary of the embodiment> The above embodiments disclose at least the following model toy and movable structure. (1) A model toy, The first part, a second part that is rotatably connected to the first part via a connecting portion and has a first state before the rotation and a second state after the rotation; a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state, and the third part having an outer surface which is assembled at a second inclination when the second part is in the second state; A model toy comprising: (2) the first part includes a first recess and a second recess; The third part is Protrusions are provided, When the second part is in the first state, the protrusion is fitted into the first recess, The model toy described in (1), wherein the protrusion is fitted into the second recess when the second part is in the second state. (3) When the second part is in the first state, the protrusion cannot be fitted into the second recess of the first part, The model toy described in (2), wherein when the second part is in the second state, the protrusion cannot be fitted into the first recess of the first part. (4) The model toy described in any one of (1) to (3), wherein the inclination of the surface to which the third part is assembled changes between the first state and the second state of the second part. (5) The model toy is transformable into a first form and a second form, The third part is In the first configuration, the outer surface is assembled to the second part at the first inclination, The model toy described in any one of (1) to (4), characterized in that in the second form, the outer surface is assembled to the second part at the second inclination. (6) The model toy described in (5) is characterized in that the outer surface of the third part assembled to the second part at the second inclination is parallel to the outer surfaces of the other parts. (7) The model toy described in (5) or (6), wherein in the second form, the second part transitions from the first state to the second state by rotating downwardly around the connecting part relative to the first part. (8) The connecting portion is formed to have a spherical ball portion and a plate-shaped restricting portion formed along an outer periphery of an upper half of the ball portion, The model toy described in (7) is characterized in that the regulating portion regulates the rotation direction of the rotational motion centered on the connecting portion. (9) the first form is a robot form, The model toy described in any one of (5) to (8), wherein the second form is a vehicle form. (10) The model toy described in (9), characterized in that in the first form, the first part and the second part are parts that form the waist joint and hip joint of the model toy, and the third part is a back part of the waist of the model toy. (11) The model toy according to (9) or (10), wherein in the second form, the outer surface of the third part forms a part of an upper surface of the vehicle form. (12) A movable structure of a model toy, A first part having a connecting portion; A second part is rotatably connected to the connecting portion and has a first state before the rotation and a second state after the rotation; a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state, and the third part having an outer surface which is assembled at a second inclination when the second part is in the second state; A movable structure comprising:
[0043] 100: model toy (third form), 101: head, 102: chest, 103a, 103b: arms, 104: waist, 105a, 105b: legs, 106: accessories, 110, 120: model toy (second form), 130, 140: model toy (first form)
Claims
1. A model toy, A first part; a second part that is rotatably connected to the first part via a connecting portion and has a first state before the rotation and a second state after the rotation; a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state, and the third part having an outer surface which is assembled at a second inclination when the second part is in the second state; Equipped with the first part includes a first recess and a second recess; The third part is Protrusions are provided, When the second part is in the first state, the protrusion is fitted into the first recess, When the second part is in the second state, the protrusion is fitted into the second recess, When the second part is in the first state, the protrusion cannot be fitted into the second recess of the first part, The model toy, wherein when the second part is in the second state, the protrusion cannot be fitted into the first recess of the first part.
2. The model toy as described in Claim 1, characterized in that the inclination of the surface to which the third part is assembled changes between the first state and the second state.
3. The model toy is transformable into a first form and a second form, The third part is When in the first configuration, the outer surface is assembled to the second part at the first inclination, 3. The model toy according to claim 1, wherein in the second configuration, the outer surface is attached to the second part at the second inclination.
4. A model toy, A first part; a second part that is rotatably connected to the first part via a connecting portion and has a first state before the rotation and a second state after the rotation; a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state, and the third part having an outer surface which is assembled at a second inclination when the second part is in the second state; Equipped with The model toy, wherein the inclination of the surface of the second part to which the third part is attached changes between the first state and the second state.
5. The first part has a first recess and a second recess, The third part is Protrusions are provided, When the second part is in the first state, the protrusion is fitted into the first recess, 5. The model toy according to claim 4, wherein the protrusion is fitted into the second recess when the second part is in the second state.
6. The model toy is transformable into a first form and a second form, The third part is When in the first configuration, the outer surface is assembled to the second part at the first inclination, 6. The model toy according to claim 4, wherein in the second configuration, the outer surface is attached to the second part at the second inclination.
7. A model toy, A first part; a second part that is rotatably connected to the first part via a connecting portion and has a first state before the rotation and a second state after the rotation; a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state, and the third part having an outer surface which is assembled at a second inclination when the second part is in the second state; Equipped with The model toy is transformable into a first form and a second form, The third part is When in the first configuration, the outer surface is assembled to the second part at the first inclination, A model toy, characterized in that, in the second configuration, the outer surface is assembled to the second part at the second inclination.
8. The first part has a first recess and a second recess, The third part is Protrusions are provided, When the second part is in the first state, the protrusion is fitted into the first recess, 8. The model toy according to claim 7, wherein the protrusion is fitted into the second recess when the second part is in the second state.
9. 8. The model toy according to claim 3, 6 or 7, wherein the outer surface of the third part assembled to the second part at the second inclination is parallel to outer surfaces of other parts.
10. The model toy according to any one of claims 3, 6 and 7, characterized in that, in the second form, the second part transitions from the first state to the second state by rotating downwardly around the connecting portion relative to the first part.
11. The connecting portion is formed to have a spherical ball portion and a plate-shaped restricting portion formed along an outer periphery of an upper half of the ball portion, The model toy according to claim 10, wherein the restricting portion restricts a rotation direction of the rotational movement of the model toy around the connecting portion.
12. the first form is a robot form; 8. The model toy according to claim 3, 6 or 7, wherein the second form is a vehicle form.
13. The model toy according to claim 12, characterized in that, in the first form, the first part and the second part are parts that form a waist joint and a hip joint of the model toy, and the third part is a back part of the waist of the model toy.
14. 14. The model toy according to claim 13, wherein in the second configuration, the outer surface of the third part forms part of an upper surface of the vehicle configuration.
15. A movable structure of a model toy, A first part having a connecting portion; a second part that is rotatably connected to the connecting portion and has a first state before the rotation and a second state after the rotation; a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state, and the third part having an outer surface which is assembled at a second inclination when the second part is in the second state; Equipped with the first part includes a first recess and a second recess; The third part is Protrusions are provided, When the second part is in the first state, the protrusion is fitted into the first recess, When the second part is in the second state, the protrusion is fitted into the second recess, When the second part is in the first state, the protrusion cannot be fitted into the second recess of the first part, A movable structure, characterized in that when the second part is in the second state, the protrusion cannot be fitted into the first recess of the first part.
16. A movable structure of a model toy, comprising: A first part having a connecting portion; a second part that is rotatably connected to the connecting portion and has a first state before the rotation and a second state after the rotation; a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state, and the third part having an outer surface which is assembled at a second inclination when the second part is in the second state; Equipped with A movable structure, wherein the inclination of a surface of the second part to which the third part is attached changes between the first state and the second state.
17. A movable structure of a model toy, comprising: A first part having a connecting portion; a second part that is rotatably connected to the connecting portion and has a first state before the rotation and a second state after the rotation; a third part which is assembled to the first part and the second part, the third part having an outer surface which is assembled at a first inclination when the second part is in the first state, and the third part having an outer surface which is assembled at a second inclination when the second part is in the second state; Equipped with The model toy is transformable into a first form and a second form, The third part is When in the first configuration, the outer surface is assembled to the second part at the first inclination, A movable structure characterized in that, in the second configuration, the outer surface is assembled to the second part at the second inclination.
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