Transforming toy
By using a driving member and a gear transmission mechanism, the state switching of the transformable toy is simplified, the complex folding and unfolding problems in the prior art are solved, and the structural stability and operational convenience are improved.
Patent Information
- Application Number
- CN202310742008.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-20
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2043-06-20
AI Technical Summary
During the state switching process of existing transformable toys, folding and unfolding are complicated, which reduces the user experience.
The rotating part is driven by the driving part to realize the switching of the folding and unfolding states of the fuselage. The deformation process is simplified by combining the gear transmission and the reset mechanism.
The structural stability and operational convenience of the transformable toy are improved, and the state switching of the transformable toy is simple and quick, making it easy to store and carry.
Smart Images

Figure CN119158278B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of toys, in particular to a transformable toy. BACKGROUND
[0002] The transformable toy is a toy that can be transformed, which is usually composed of movable parts and can be combined in various ways. In the related art, multiple parts need to be folded or unfolded during the switching between different states, which makes the state switching of the transformable toy complex and reduces the user experience. SUMMARY
[0003] The present application aims to at least solve one of the technical problems in the related art. To this end, one object of the present application is to provide a transformable toy that is easy and fast to fold the body by driving the rotating part with a driving part.
[0004] The transformable toy according to the embodiment of the present application comprises a base, a body, a rotating part and a driving part. The body is connected to the base and has an unfolded state and a folded state. The rotating part is rotatably arranged on the base and is in transmission connection with the body. The driving part is arranged below the base and is rotatably connected to the base and is configured to drive the rotating part to switch the body from the unfolded state to the folded state.
[0005] The transformable toy according to the embodiment of the present application can improve the structural stability of the transformable toy. The driving part can switch the body from the unfolded state to the folded state, making the transformation of the transformable toy simple and fast, facilitating the storage of the transformable toy, and the driving part can easily apply a transformation force to the transformable toy, facilitating user operation.
[0006] In addition, the transformable toy according to the above embodiment of the present application can also have the following additional technical features:
[0007] In some embodiments, the driving part has a first position and a second position. When the body is in the unfolded state, the driving part is in the first position. When the body is in the folded state, the driving part is in the second position. When the driving part moves from the first position to the second position, it is in transmission cooperation with the rotating part and can drive the rotating part to fold the body.
[0008] In some embodiments, the transformable toy further comprises a fourth rack movably arranged on the base and in transmission connection with the rotating member, the fourth rack being provided with a first shifting tooth, wherein the driving member is provided with a second shifting tooth, and when the driving member moves from the first position to the second position, the first shifting tooth and the second shifting tooth are in transmission cooperation to drive the body to fold.
[0009] In some embodiments, the base comprises a fourth reset member connected with the driving member and having an elastic force to push the driving member to move to the first position; and a second lock hook having a locking position and an unlocking position to releasably lock the driving member at the second position.
[0010] In some embodiments, the base further comprises a seventh transmission structure movably arranged to drive the second lock hook to the unlocking position; and a fifth reset member connected with the seventh transmission structure and adapted to elastically drive the second lock hook to the locking position.
[0011] In some embodiments, the transformable toy further comprises an unlocking member, the seventh transmission structure comprises a first transmission part, and the base further comprises a magnetic attraction structure connected with the first transmission part, the magnetic attraction structure being used to attract the unlocking member and drive the first transmission part to move to unlock the second lock hook.
[0012] In some embodiments, the base is provided with a roller, the seventh transmission structure comprises a second transmission part, and the base further comprises a cam connected with the second transmission part to drive the second transmission part to move to unlock the second lock hook; and a transmission mechanism in transmission connection with the roller and the cam respectively.
[0013] In some embodiments, the base comprises a first lock hook to releasably lock the body at the folded state; and a second lock hook to releasably lock the driving member at the second position, the second lock hook being synchronously unlocked with the first lock hook.
[0014] In some embodiments, the driving member is stacked on the bottom surface of the base at the first position and the second position, and the driving member is reversibly arranged below the base along the front-rear direction.
[0015] In some embodiments, the fuselage includes: a first deformable member, which is rotatably connected to the base and is transmission-connected to the rotating member; a second deformable member, which is rotatably connected to the first deformable member; and a first transmission assembly, which is respectively connected to the base, the first deformable member and the second deformable member, and is used for the first deformable member and the second deformable member to link to synchronously unfold and fold.
[0016] In some embodiments, the body further includes: a first restoring member, which is respectively connected to the base and the first deformable member and has an elastic force to drive the first deformable member to unfold; and / or a second restoring member, which is respectively connected to the first deformable member and the second deformable member and has an elastic force to drive the second deformable member to unfold.
[0017] In some embodiments, the first transmission assembly includes: a first transmission structure, which is telescopically provided on the first deformable member, and the first end is slidably connected to the machine base, and the first deformable member is suitable for driving the first transmission structure to extend and retract when the first deformable member rotates; a second transmission structure, which is rotatably provided on the first deformable member, and is respectively transmission-connected to the first transmission structure and the second deformable member.
[0018] In some embodiments, the fuselage also includes: a third deformable member, which is rotatably connected to the second deformable member; a second transmission assembly, which is respectively connected to the second deformable member and the third deformable member, and is used for the third deformable member and the second deformable member to link to synchronously unfold and fold.
[0019] In some embodiments, the body further includes: a third restoration member, which is connected to the second deformation member and the third deformation member respectively and has an elastic force for driving the third deformation member to fold.
[0020] In some embodiments, the second transmission assembly further includes: a fourth transmission structure, wherein the fourth transmission structure is fixed in relative position to the first deformable member; a fifth transmission structure, wherein the fifth transmission structure is telescopically provided on the second deformable member and is in transmission connection with the fourth transmission structure; and a sixth transmission structure, wherein the sixth transmission structure is rotatably provided on the second deformable member and is in transmission connection with the fifth transmission structure and the third deformable member, respectively.
[0021] In some embodiments, the fuselage further includes: a fourth deformation member, wherein the fourth deformation member is connected to the sixth transmission structure and the relative position thereof is fixed.
[0022] In some embodiments, a first rotation axis is provided between the first deformable member and the base, a second rotation axis is provided between the second deformable member and the first deformable member, and a third rotation axis is provided between the third deformable member and the second deformable member, the first rotation axis is parallel to the second rotation axis, and the second rotation axis is perpendicular to the third rotation axis; and / or, in the folded state, the first deformable member is folded on the base, and the second deformable member is folded with the first deformable member; and / or, in the folded state, the third deformable member is folded with the second deformable member; and / or, in the unfolded state, the first deformable member extends in the up-down direction, and the lower end is connected to the base, the second deformable member extends in the up-down direction, and the lower end is connected to the first deformable member; and / or, in the unfolded state, the third deformable member extends in the up-down direction, and the upper end is connected to the upper end of the second deformable member, and the lower end is spaced apart from the second deformable member along the left and right directions. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 FIG. 1 is a schematic diagram of a transformable toy according to an embodiment of the present invention, wherein the transformable toy is in an expanded state.
[0024] Figure 2 FIG. 1 is a schematic diagram of a transformable toy according to an embodiment of the present invention, wherein the transformable toy is in a folded state.
[0025] Figure 3 FIG. 1 is a schematic diagram of a transformable toy according to an embodiment of the present invention, wherein the transformable toy is in a folded state.
[0026] Figure 4 1 is a schematic diagram of a transformable toy according to an embodiment of the present invention, wherein the body is hidden.
[0027] Figure 5 1 is a schematic diagram of a transformable toy according to an embodiment of the present invention, wherein the body is hidden.
[0028] Figure 6 2 is a schematic diagram of a transformable toy according to an embodiment of the present invention, viewed from another direction, wherein the body is hidden.
[0029] Figure 7 FIG. 1 is a schematic diagram of a transformable toy according to an embodiment of the present invention, wherein the transformable toy is in a folded state.
[0030] Figure 8 1 is an exploded schematic diagram of a transformable toy according to an embodiment of the present invention, wherein the body is hidden.
[0031] Figure 9 Schematic diagram of a transformable toy according to an embodiment of the present invention.
[0032] Figure 10 Schematic diagram of a transformable toy according to an embodiment of the present invention.
[0033] Figure 11 is a schematic view of a transformational toy of an embodiment of the present application.
[0034] Figure 12 is a schematic view of a transformational toy of an embodiment of the present application.
[0035] Figure 13 is a schematic view of a transformational toy of an embodiment of the present application. Figure 12 is a magnified schematic view at circle A.
[0036] Figure 14 is a schematic view of a transformational toy of an embodiment of the present application.
[0037] Figure 15 is a schematic view of a transformational toy of an embodiment of the present application. Figure 14 is a magnified schematic view at circle B.
[0038] Figure 16 is a schematic view of a transformational toy of an embodiment of the present application.
[0039] Figure 17 is a schematic view of a transformational toy of an embodiment of the present application.
[0040] Reference Signs:
[0041] transformational toy 1000, body 100, base 10, first locking hook 111, second locking hook 112, sliding slot 12, fourth rack 13, first pushing tooth 131, fourth reset member 141, fifth reset member 142, magnetic attraction structure 15, seventh transmission structure 16, first transmission part 161, second transmission part 162, roller 171, cam 172, transmission mechanism 173, body 20, first transformation member 211, second transformation member 212, third transformation member 213, fourth transformation member 214, first transmission assembly 22, first transmission structure 221, first rack 2211, second transmission structure 222, third gear 2222, third transmission structure 223, first gear 2231, second gear 2232, second transmission assembly 23, fourth transmission structure 231, fourth gear 2311, fifth transmission structure 232, second rack 2321, third rack 2322, sixth transmission structure 233, fifth gear 2331, first reset member 241, second reset member 242, third reset member 243, driving assembly 30, rotating member 31, driving member 32, second pushing tooth 331, unlocking member 500. DETAILED DESCRIPTION
[0042] Embodiments of the present application are described below in detail with reference to the accompanying drawings, wherein the same or similar components or components having the same or similar functions are denoted by the same or similar reference numerals throughout. The embodiments described below by reference to the accompanying drawings are exemplary and are intended to explain the present application, and cannot be understood as limiting the present application.
[0043] With reference to Figure 1 According to the transformational toy 1000 of the embodiment of the present application, the base 10 and the body 20 are connected, the body 20 has an unfolded state and a folded state, in other words, the body 20 is deformable, and the body 20 can be unfolded or folded on the base 10. By providing the base 10, the body 20 can be supported and fixed, so that the transformational toy 1000 can have a stable state in different transformational states, and the structural stability of the transformational toy 1000 is improved. It can be understood that the transformational toy 1000 usually needs to be placed on a relatively flat plane, and the toy can stand stably. By providing the base 10, the transformational toy 1000 is not easy to fall in different states, and can adapt to different playing environments, and the playing experience of the user is improved.
[0044] With reference to Figure 1 The transformational toy 1000 can further include a rotating member 31 and a driving member 32. The rotating member 31 is rotatably arranged on the base 10 and is in transmission connection with the body 20. The driving member 32 is rotatably connected with the base 10 and is configured to drive the rotating member 31 to fold the body 20. The rotating member 31 and the body 20 can be in key connection, pin connection, threaded connection, etc., so as to facilitate the rotating member 31 to stably drive the body 20 to rotate. Preferably, the rotating member 31 and the body 20 are in key connection, so that the connection between the rotating member 31 and the body 20 is firm, the stability and reliability of the connection are improved, and the rotating member 31 can stably drive the body 20 to fold when rotating. The driving member 32 is arranged below the base 10, so that the structure of the transformational toy 1000 is compact. The driving member 32 is rotatably connected with the base 10, and the base 10 is relatively fixed, so as to improve the structural stability of the driving member 32. By providing the driving member 32, it is convenient to apply a deformation force to the transformational toy 1000, and the transformational toy 1000 is folded conveniently and quickly. When the transformational toy 1000 needs to be stored, only the driving member 32 needs to be rotated, and the use experience of the user is improved.
[0045] The body 20 is connected with the base 10 and has an unfolded state and a folded state. The body 20 can stand on the base 10 in the unfolded state, and can be stacked on the base 10 in the folded state. When the body 20 is folded, the transformational toy 1000 can be conveniently stored or carried.
[0046] With reference to Figure 1 and Figure 2 Wherein, the driving member 32 can have a first position and a second position, when the body 20 is in the unfolded state, the driving member 32 is in the first position, when the body 20 is in the folded position, the driving member 32 is in the second position, and when the driving member 32 moves from the first position to the second position, it cooperates with the rotating member 31 and can drive the rotating member 31 to fold the body 20. In other words, when the body 20 is in different transformed states, the driving member 32 is in different positions, when the body 20 is unfolded, the driving member 32 is in the first position, at this time, only need to turn the driving member 32 to the second position, that is, the folding of the body 20 can be completed, which makes the folding of the body 20 more convenient and fast, and realizes the quick storage of the transformed toy 1000.
[0047] With reference to Figure 1 and Figure 2 In some embodiments of the present application, the driving member 32 can be stacked on the bottom surface of the machine base 10 when in the first position and the second position, and the driving member 32 can be turned in the front-back direction and arranged below the machine base 10. As Figure 1 When the body 20 is in the unfolded state, the driving member 32 is in the first position, at this time, the driving member 32 can be stacked on the front position of the bottom surface of the machine base 10, when the driving member 32 is turned to the rear position of the bottom surface of the machine base 10, the driving of the body 20 is realized. In other words, the driving member 32 is rotated 180° in the first position relative to the second position, which realizes that the driving member 32 is stacked on the bottom surface of the machine base 10 in the first position and the second position, which makes the structure of the transformed toy 1000 compact, and the machine base 10 is a relatively fixed structure, connecting the driving member 32 on the machine base 10 can improve the structural stability of the driving member 32.
[0048] With reference to Figure 4 , Figure 6 and Figure 8In some embodiments of the present application, the transformable toy 1000 can comprise a fourth rack 13 movably arranged on the base 10 and in transmission connection with the rotating member 31. The fourth rack 13 and the rotating member 31 can be in gear transmission connection. The fourth rack 13 can be provided with first driving teeth 131. The driving member 32 can be provided with second driving teeth 331. When the driving member 32 moves from the first position to the second position, the first driving teeth 131 and the second driving teeth 331 are in transmission cooperation to drive the body 20 to fold. For example, the first driving teeth 131 can be located below the fourth rack 13. When it is needed to fold the body 20, the driving member 32 can be flipped backward. During the flipping process, the first driving teeth 131 and the second driving teeth 331 are in transmission, driving the fourth rack 13 to move forward. The fourth rack 13 drives the rotating member 31 to rotate, and the rotating member 31 drives the body 20 to rotate, realizing the folding of the body 20. By arranging the fourth rack 13 between the driving member 32 and the rotating member 31 and by means of gear transmission, the reliability of the transmission structure can be improved.
[0049] With reference to Figure 6 and Figure 7 In some embodiments of the present application, the base 10 can comprise a fourth reset member 141 connected with the driving member 32 and having an elastic force to push the driving member 32 to move to the first position. Specifically, when the transformable toy 1000 switches from the folded state to the unfolded state, the driving member 32 rotates from the second position to the first position. By arranging the fourth reset member 141, the driving member 32 can be conveniently pushed to move to the first position, and the driving member 32 can be driven to stably maintain at the first position, improving the structural stability of the driving member 32. When an external force greater than the elastic force is applied to the driving member 32, the driving member 32 can be flipped to move to the second position, driving the body 20 to fold. In this way, the switching between the unfolded and folded states of the body 20 is more smooth.
[0050] With reference to Figure 6 and Figure 7 The base 10 can further comprise a second lock hook 112 which can have a locking position and an unlocking position to releasably lock the driving member 32 at the second position. When the driving member 32 moves from the first position to the second position, the body 20 is driven to the folded state. At this time, the second lock hook 112 is located at the locking position, and the driving member 32 can be clamped with the second lock hook 112, stably maintaining the driving member 32 at the second position. When the second lock hook 112 is at the unlocking position, the driving member 32 can be released. At this time, the driving member 32 is pushed to move to the first position by the fourth reset member 141 and can be stably maintained at the first position. The fourth reset member 141 can be a spring.
[0051] With reference to Figure 4 and Figure 7Further, the base 10 can further comprise a seventh transmission structure 16 movable to drive the second locking hook 112 to the unlocking position, and a fifth reset member 142 connected with the seventh transmission structure 16 and adapted to elastically drive the second locking hook 112 to the locking position. Specifically, the driving member 32 is locked by the second locking hook 112 when in the second position, the seventh transmission structure 16 is movable rearward, at this time, the second locking hook 112 is moved rearward, the second locking hook 112 is moved to the unlocking position, the locking of the driving member 32 is released, the driving member 32 is moved to the first position under the action of the fourth reset member 141. When the locking of the driving member 32 is released, the seventh transmission structure 16 is restored to the original position under the action of the fifth reset member 142, and the second locking hook 112 is driven to the locking position, so as to prepare for the next locking of the driving member 32 by the second locking hook 112. The fifth reset member 142 can be a spring.
[0052] With reference to Figure 5 and Figure 6 In some embodiments of the present application, the transformable toy 1000 can further comprise an unlocking member 500, which can be separate from the body 20 and the base 10, or can be embedded between the body 20 and the base 10, and can be adjusted according to the shape of the transformable toy. The seventh transmission structure 16 can comprise a first transmission part 161, and the base 10 can further comprise a magnetic attraction structure 15 connected with the first transmission part 161, the magnetic attraction structure 15 being used to attract the unlocking member 500 and drive the first transmission part 161 to move to unlock the second locking hook 112. Specifically, the unlocking member 500 can be made of metal, and in the case that the unlocking member 500 is separate from the main body (the body 20 and the base 10) of the transformable toy 1000, the unlocking member 500 can be pushed to move towards the transformable toy 1000, and the transformable toy 1000 can also be pushed to move towards the unlocking member 500, when the transformable toy 1000 approaches the unlocking member 500, the unlocking member 500 approaches the magnetic attraction structure 15, the magnetic attraction structure 15 attracts the unlocking member 500, the magnetic attraction structure 15 is subjected to the pushing force of the unlocking member 500, the first transmission part 161 is driven to move rearward, the second locking hook 112 is driven to move rearward to the unlocking position, the driving member 32 is released, and the driving member 32 is moved to the first position under the action of the fourth reset member 141.
[0053] With reference to Figure 4 and Figure 8In some embodiments of the present application, the base 10 can be provided with a roller 171, the seventh transmission structure 16 can include a second transmission part 162, the base 10 can further include a cam 172 and a transmission mechanism 173, the cam 172 is connected with the second transmission part 162 to drive the second transmission part 162 to move to unlock the second locking hook 112, and the transmission mechanism 173 is in transmission connection with the roller 171 and the cam 172 respectively. Specifically, the roller 171 is rotatably fixed on the base 10, the roller 171 can be in transmission connection with the transmission mechanism 173, the roller 171 rotates to drive the transmission mechanism 173 to rotate, the transmission mechanism 173 drives the cam 172 to rotate, and when the cam 172 rotates to a certain position, the second transmission part 162 is driven to move backward, thereby driving the second locking hook 112 to move backward to the unlocking position, achieving the release of the driving piece 32, and the driving piece 32 moves to the first position under the action of the fourth reset piece 141.
[0054] With reference to Figure 5 , Figure 7 and Figure 8 In some embodiments of the present application, the base 10 can include a first locking hook 111 and a second locking hook 112, the first locking hook 111 can releasably lock the body 20 in the folded state, and the second locking hook 112 can releasably lock the driving piece 32 in the second position, the second locking hook 112 and the first locking hook 111 can be unlocked synchronously, in other words, when the body 20 is switched from the folded state to the unfolded state, the driving piece 32 is synchronously moved from the second position to the first position. Wherein, the first locking hook 111 can be fixed above the seventh transmission structure 16, when the seventh transmission structure 16 moves, the first locking hook 111 is synchronously driven to move, achieving the release of the body 20 in the folded state, and ensuring the synchronous unlocking of the second locking hook 112 and the first locking hook 111.
[0055] In combination with the foregoing embodiments, the movement of the roller 171 on the base 10, that is, the travel of the transformation toy 1000, can trigger the synchronous unlocking of the first locking hook 111 and the second locking hook 112, or the first locking hook 111 and the second locking hook 112 can be unlocked under the action of the unlocking piece 500, after the first locking hook 111 and the second locking hook 112 are unlocked, the driving piece 32 and the body 20 are synchronously released, the driving piece 32 moves to the first position under the elastic force of the fourth reset piece 141, and the body 20 is switched from the folded state to the unfolded state. By setting multiple different forms to trigger the unlocking of the first locking hook 111 and the second locking hook 112, the play of the transformation toy 1000 is enriched, and the interest of the transformation toy 1000 is improved.
[0056] With reference to Figure 9 and Figure 10In some embodiments of the present application, the fuselage 20 can include a first deformation member 211, a second deformation member 212, and a first transmission assembly 22. The first deformation member 211 is rotatably connected to the base 10 and is in transmission connection with the rotating member 31. The second deformation member 212 is rotatably connected to the first deformation member 211. The first transmission assembly 22 is connected to the base 10, the first deformation member 211, and the second deformation member 212, respectively, and is used to link the first deformation member 211 and the second deformation member 212 to fold synchronously. Specifically, the transformation toy 1000 can have multiple deformation members, which can enrich the shapes of the transformation toy 1000. The first transmission assembly 22 can be used to link the first deformation member 211 and the second deformation member 212 synchronously, so as to realize synchronous folding and one-key folding of the fuselage 20, and make the state switching and storage of the transformation toy 1000 simple and convenient, thereby improving the user experience.
[0057] With reference to Figure 11 In some embodiments of the present application, the fuselage 20 can include a first reset member 241. The first reset member 241 is connected to the base 10 and the first deformation member 211, respectively, and has an elastic force for driving the first deformation member 211 to unfold. Specifically, the fuselage 20 has an unfolded state and a folded state. The first reset member 241 can be used to make the fuselage 20 stably maintain in the unfolded state, improve the structural stability of the transformation toy 1000, and facilitate the switching of the fuselage 20 from the unfolded state to the folded state. When the rotating driving member 32 is rotated, the force acting on the first deformation member 211 is greater than the elastic force of the first reset member 241, so as to drive the first deformation member 211 to rotate and switch the fuselage 20 from the unfolded state to the folded state. The first reset member 241 can be a spring or the like.
[0058] With reference to Figure 11 In some embodiments of the present application, the fuselage 20 can include a second reset member 242. The second reset member 242 can be connected to the first deformation member 211 and the second deformation member 212, respectively, and has an elastic force for driving the second deformation member 212 to unfold. Specifically, the fuselage 20 has an unfolded state and a folded state. The second reset member 242 can be used to make the fuselage 20 stably maintain in the unfolded state, improve the structural stability of the transformation toy 1000, and facilitate the switching of the fuselage 20 from the unfolded state to the folded state. When the rotating driving member 32 is rotated, the first deformation member 211 is driven to fold, and the first transmission assembly 22 is rotated. The first transmission assembly 22 applies a force to the second deformation member 212. The applied force is greater than the elastic force of the second reset member 242, so as to drive the second deformation member 212 to rotate and switch the fuselage 20 from the unfolded state to the folded state. The second reset member 242 can be a spring or the like.
[0059] With reference to Figure 12In some embodiments of the present application, the base 10 can be provided with a first locking hook 111, which can releasably lock the body 20 in the folded state, wherein when the body 20 is in the folded state, the first deformation member 211 and the second deformation member 212 are folded on the base 10 and locked by the first locking hook 111. In this way, after the body 20 is folded, the body 20 can be locked by the first locking hook 111, so that the body 20 can be stably maintained in the folded state, thereby improving the structural stability of the transformation toy 1000. In combination with the foregoing embodiments, the first locking hook 111 can be triggered to the unlocked position by the travel trigger or the unlocking member 500 of the transformation toy 1000, the first locking hook 111 releases the locking of the body 20, and the transformation toy 1000 can be provided with a first reset member 241 and / or a second reset member 242. The reset member can drive the body 20 to unfold, so that the body 20 can be stably maintained in the unfolded state. The transformation toy 1000 can realize one-key folding or one-key unfolding, and after switching between different states, it can be stably maintained in the corresponding state.
[0060] With reference to Figure 9 And 10 In some embodiments of the present application, the first transmission assembly 22 can include a first transmission structure 221 and a second transmission structure 222. The first transmission structure 221 is telescopically arranged on the first deformation member 211, and one end of the first transmission structure 221 is slidably connected with the base 10. The first transmission structure 221 is adapted to drive the first transmission structure 221 to telescopically extend when the first deformation member 211 rotates. The second transmission structure 222 is rotatably arranged on the first deformation member 211 and is in transmission connection with the first transmission structure 221 and the second deformation member 212, respectively. Specifically, the second transmission structure 222 and the first transmission structure 221 can be in gear transmission, and the second transmission structure 222 and the second deformation member 212 can be in key connection. The driving member 32 drives the rotating member 31 to rotate, the rotating member 31 drives the first deformation member 211 to rotate, the first transmission structure 221 moves upward, the first transmission structure 221 drives the second transmission structure 222 to rotate, and the second transmission structure 222 drives the second deformation member 212 to rotate. The linkage of the first deformation member 211 and the second deformation member 212 is realized by the cooperation of the first transmission structure 221 and the second transmission structure 222, thereby realizing the synchronous folding of the first deformation member 211 and the second deformation member 212. The transformation toy 1000 can be one-key transformed and stored, thereby improving the user's experience.
[0061] With reference to Figure 10Optionally, the base 10 can be provided with a sliding groove 12, and the end of the first transmission structure 221 can be slidably connected with the sliding groove 12. For example, the first transmission structure 221 can include a rack, and the end of the rack can be slidably connected with the sliding groove 12, so that the first transmission structure 221 can be retracted and extended on the first deforming member 211 when the first deforming member 211 rotates on the base 10. In addition, the first transmission structure 221 is in transmission connection with the second transmission structure 222, which can be in the form of gear transmission. For example, the other end of the rack can be provided with a tooth, and the second transmission structure 222 can be provided with a gear, and the other end of the rack can be engaged with the gear of the second transmission structure 222. The sliding groove 12 can extend from one end to the other end around the rotation center of the second transmission structure 222 and gradually away from the rotation center of the second transmission structure 222. In this way, when the first transmission structure 221 slides along the sliding groove 12, the second transmission structure 222 can be simultaneously rotated around the rotation center. By providing the sliding groove 12 on the base 10, the first transmission structure 221 can move in a predetermined direction, avoiding deviation of the movement direction, and improving the stability of the first transmission assembly 22 during movement.
[0062] In combination Figure 10 In addition, the first transmission structure 221 and the second transmission structure 222 can have a gear and rack transmission structure therebetween, which can convert the retraction and extension movement of the first transmission structure 221 into the rotation movement of the second deforming member 212 relative to the first deforming member 211. Specifically, referring to Figure 12 and Figure 13 For example, the first transmission structure 221 can have a first rack 2211, and the second transmission structure 222 can have a third gear 2222. The first rack 2211 and the third gear 2222 can form a gear and rack transmission structure. When the first rack 2211 retracts and extends, the third gear 2222 is driven to convert into a rotation movement. The second transmission structure 222 is in key connection with the second deforming member 212, and the rotation of the third gear 2222 can drive the second deforming member 212 to rotate and fold.
[0063] Referring to Figure 10 、 Figure 12 and Figure 13Optionally, the first transmission assembly 22 can further comprise a third transmission structure 223 rotatably arranged on the first deformation member 211, the third transmission structure 223 can comprise coaxially and fixedly connected first and second gears 2231 and 2232, wherein the first transmission structure 221 can have a first rack 2211, the second transmission structure 222 can have a third gear 2222, the first rack 2211 is engaged with the first gear 2231, the third gear 2222 is engaged with the second gear 2232, and the third gear 2222 has a smaller number of teeth than the second gear 2232. In other words, the third transmission structure 223 is in transmission connection with the first and second transmission structures 221 and 222 respectively, and by arranging the third transmission structure 223, the transmission ratio can be changed. Specifically, the coaxially and fixedly connected first and second gears 2231 and 2232 act as transition gears between the first and second transmission structures 221 and 222, and are engaged with each other, which can achieve the effect of speed reduction and torque increase, can reduce the rotation speed of the third gear 2222, and further increase the output torque of the second transmission structure 222, so as to avoid the second deformation member 212 from rotating smoothly due to insufficient force during rotation, thereby realizing that the first deformation member 211 can smoothly drive the rotation of the second deformation member 212 when rotating, and improving the stability of the fuselage 20 when folding.
[0064] Specifically, the turnover driving member 32 drives the rotating member 31 to rotate, drives the first deformation member 211 to rotate backward, and the first deformation member 211 simultaneously drives the first rack 2211 to slide forward along the sliding groove 12 on the machine base 10, and the first rack 2211 simultaneously drives the third transmission structure 223 (the first and second gears 2231 and 2232) to rotate, the third transmission structure 223 transmits force, drives the first gear 2231 to rotate, and the first gear 2231 drives the second deformation member 212 to rotate, thereby completing the synchronous linkage and folding of the first and second deformation members 211 and 212 on the machine base 10.
[0065] Referring to Figure 9 and Figure 10 In some embodiments of the present application, in order to enrich the shape of the deformation toy 1000, the fuselage 20 can further comprise a third deformation member 213 rotatably connected with the second deformation member 212 and a second transmission assembly 23 connected with the second and third deformation members 212 and 213 respectively for linkage and synchronous folding of the third and second deformation members 213 and 212. Specifically, when the second deformation member 212 rotates, it drives the second transmission assembly 23 to move, synchronously drives the third deformation member 213 to rotate, and further realizes the linkage and synchronous folding of the third and second deformation members 213 and 212.
[0066] By setting the second transmission assembly 23, linkage of the second deformation part 212 and the third deformation part 213 is realized, in combination with the foregoing embodiments, the first transmission assembly 22 realizes linkage of the first deformation part 211 and the second deformation part 212, and the second transmission assembly 23 realizes linkage of the second deformation part 212 and the third deformation part 213, that is, through the flip driving part 32 and cooperation of the first transmission assembly 22 and the second transmission assembly 23, linkage of the first deformation part 211, the second deformation part 212 and the third deformation part 213 can be realized, the driving part 32 drives the body 20 to fold in one key, and folding of the transformation toy 1000 is convenient and fast, and storage of the transformation toy 1000 is facilitated.
[0067] Further, the body 20 further comprises a third reset part 243, the third reset part 243 is connected with the second deformation part 212 and the third deformation part 213 respectively, and has an elastic force for driving the third deformation part 213 to fold. Referring to Figure 17 In the unfolded state, the second transmission assembly 23 abuts against the third deformation part 213, and has a force for driving the third deformation part 213 to unfold, when the second transmission assembly 23 moves, the force of the second transmission assembly 23 on the third deformation part 213 is eliminated, at this time, the third deformation part 213 is driven to approach the second deformation part 212 by the elastic force of the third reset part 243, and folding of the third deformation part 213 is realized.
[0068] Referring to Figure 14 and Figure 15 In some embodiments of the present application, the second transmission assembly 23 can comprise a fourth transmission structure 231, a fifth transmission structure 232 and a sixth transmission structure 233, the fourth transmission structure 231 is fixed in position relative to the first deformation part 211, the fifth transmission structure 232 is telescopically arranged on the second deformation part 212 and is in transmission connection with the fourth transmission structure 231, and the sixth transmission structure 233 is rotatably arranged on the second deformation part 212 and is in transmission connection with the fifth transmission structure 232 and the third deformation part 213 respectively. Specifically, the fourth transmission structure 231 can be in key connection with the first deformation part 211 and is fixed on the second deformation part 212, when the first deformation part 211 rotates, the fourth transmission structure 231 is driven to rotate, and simultaneously drives the second deformation part 212 to fold, the fourth transmission structure 231 drives the fifth transmission structure 232 to move downward, the fifth transmission structure 232 drives the sixth transmission structure 233 to rotate, and synchronous folding of the third deformation part 213 is realized, in this way, one-key synchronous folding of multiple deformation parts is realized, and transformation and storage of the transformation toy 1000 are facilitated.
[0069] Referring to Figure 14 and Figure 15Optionally, the fourth transmission structure 231 can be provided with a fourth gear 2311, one end of the fifth transmission structure 232 can be provided with a second rack 2321 and the other end can be provided with a third rack 2322, and the sixth transmission structure 233 can be provided with a fifth gear 2331, wherein the fourth gear 2311 is engaged with the second rack 2321, the third rack 2322 is engaged with the fifth gear 2331, and the fifth gear 2331 is adapted to drive the third deformation part 213 to unfold. The fourth transmission structure 231 can be in transmission connection with the first deformation part 211 and fixed to the second deformation part 212, and the relative position of the fourth transmission structure 231 is unchanged. When the first deformation part 211 is folded, the fourth gear 2311 can be driven to rotate synchronously, the second rack 2321 is driven to move downward, the third rack 2322 is driven to move downward, and the fifth gear 2331 is driven to move synchronously, thereby realizing linkage of multiple deformation parts, and the transmission structure is reliable and stable.
[0070] With reference to Figure 9 , Figure 10 and Figure 16 , in some embodiments of the present application, the fuselage 20 can further include a fourth deformation part 214, which can be connected with the sixth transmission structure 233 and has a fixed relative position. In other words, when the sixth transmission structure 233 rotates, the fourth deformation part 214 can be simultaneously driven to rotate, thereby realizing folding of the fourth deformation part 214. The fourth deformation part 214 and the sixth transmission structure 233 can be in key connection, which is simple in structure and improves the connection stability and reliability of the fourth deformation part 214 and the sixth transmission structure 233, thereby stably driving the fourth deformation part 214 to fold. In addition, by providing the fourth deformation part 214, the shape of the transformation toy 1000 is enriched, and the interest of the transformation toy 1000 is improved.
[0071] The transformation toy 1000 according to the embodiments of the present application has two shapes of an unfolded state and a folded state. The shape of the transformation toy 1000 can be a robot, an animal, a vehicle, etc. For example, the unfolded state can be a robot or an animal, and the folded state can be a toy car. The interest of the transformation toy 1000 can be enriched by switching between different states, and the transformation toy 1000 is convenient to store and carry in the folded state. Hereinafter, taking the folded state as a toy car shape and the unfolded state as a robot as examples, in the unfolded state, the transformation toy 1000 can include a first deformation part 211 and a second deformation part 212. The first deformation part 211 can be a leg part, and the second deformation part 212 can be a body. In order to enrich the shape and interest of the transformation toy 1000, the transformation toy 1000 can further include a third deformation part 213 and a fourth deformation part 214. The third deformation part 213 can be an arm part, and the fourth deformation part 214 can be a wing.
[0072] In some embodiments of the present application, the first deformation part 211 and the base 10 can have a first rotation axis, the second deformation part 212 and the first deformation part 211 can have a second rotation axis, and the third deformation part 213 and the second deformation part 212 can have a third rotation axis, wherein the first rotation axis can be parallel to the second rotation axis, and the second rotation axis can be perpendicular to the third rotation axis. For example, the first rotation axis and the second rotation axis can extend along the left-right direction of the transformable toy 1000, and the third rotation axis can extend along the front-back direction of the transformable toy 1000. After the transformable toy 1000 is folded, the first deformation part 211 and the second deformation part 212 can be stacked on the base 10, and the third deformation part 213 can be folded on both sides of the second deformation part 212. In this way, the transformable toy 1000 can have a compact structure after being folded, thereby saving space and facilitating storage and carrying of the toy.
[0073] In some embodiments of the present application, the first deformation part 211 can be folded on the base 10, and the second deformation part 212 can be folded with the first deformation part 211. In this way, the transformable toy 1000 can have a compact structure of the body 20 when switched to the folded state, thereby saving space and facilitating storage and carrying of the toy.
[0074] In some embodiments of the present application, in the folded state, the third deformation part 213 can be folded with the second deformation part 212. In this way, the transformable toy 1000 can have a compact structure of the body 20 when switched to the folded state, thereby saving space and facilitating storage and carrying of the toy.
[0075] In some embodiments of the present application, in the unfolded state, the first deformation part 211 can extend along the up-down direction with the lower end connected to the base 10, and the second deformation part 212 can extend along the up-down direction with the lower end connected to the upper end of the first deformation part 211. For example, the unfolded state of the transformable toy 1000 can be a robot, the first deformation part 211 can be a leg, and the second deformation part 212 can be a body. The robot is connected to the base 10, so that the overall structure of the robot is stable, can maintain a good standing posture, and can adapt to different playing environments. When the unfolded state is switched to the folded state, the first deformation part 211 and the second deformation part 212 can be folded synchronously to change different forms and shapes, thereby increasing the interest of the toy.
[0076] In some embodiments of the present application, in the unfolded state, the third transformable member 213 can extend in the up-down direction, and the upper end is connected to the upper end of the second transformable member 212, and the lower end is spaced apart from the second transformable member 212 in the left-right direction. For example, the unfolded state of the transformable member can be a robot, the second transformable member 212 can be a body, and the third transformable member 213 can be an arm, one end of which is connected to the body and located on both sides of the body, enriching the shape of the transformable toy 1000, and when switching from the unfolded state to the folded state, the second transformable member 212 and the third transformable member 213 can be folded synchronously, changing different shapes and styles, and increasing the interest of the toy.
[0077] The above and other aspects of the present application will become more apparent by describing in detail exemplary embodiments thereof with reference to the attached drawings in which: Figure 1 The above and other aspects of the present application will become more apparent by describing in detail exemplary embodiments thereof with reference to the attached drawings in which: Figure 17, describes the switching process of the transformation toy 1000 from the unfolded state to the folded state, the transformation toy 1000 is in the unfolded state (robot state), when it is needed to deform the transformation toy 1000 to the folded state (toy car form), or it is needed to store the transformation toy 1000 for convenient carrying, the driving member 32 can be flipped back, the second toggle tooth 331 is in transmission cooperation with the first toggle tooth 131, the fourth rack 13 is driven to move forward, the fourth rack 13 is in mesh with the rotating member 31, the rotating member 31 is driven to rotate along the clockwise direction, the rotating member 31 is in transmission connection with the first transformation member 211 (leg), the first transformation member 211 (leg) is driven to rotate back and fold onto the chassis 10, the first transformation member 211 (leg) drives the first transmission structure 221 to move upward along the sliding groove 12 in the rotating process, the upper end of the first rack 2211 is in mesh with the first gear 2231, the first gear 2231 is coaxially fixedly connected with the second gear 2232, the second gear 2232 is in mesh with the third gear 2222, the first rack 2211 drives the first gear 2231 and the second gear 2232 to rotate along the clockwise direction, the first gear 2231 and the second gear 2232 serve the purpose of speed reduction and torque increase, and drive the third gear 2222 to rotate along the counterclockwise direction, the second transmission structure 222 simultaneously drives the second transformation member 212 (body) to rotate forward, so that the second transformation member 212 is folded on the chassis 10, because the fourth transmission structure 231 is fixed on the second transformation member 212 (body), the fourth gear 2311 does not rotate relative to the second transformation member 212, the fourth gear 2311 drives the second rack 2321 to move downward, and drives the third rack 2322 to move downward, the fifth gear 2331 is in mesh with the third rack 2322, the third rack 2322 moves downward, drives the fifth gear 2331 to rotate along the counterclockwise direction, the sixth transmission structure 233 simultaneously drives the fourth transformation member 214 (wing) to rotate and fold in front of the second transformation member 212 (body), at the same time, the sixth transmission structure 233 drives the third transformation member 213 (arm) to fold on both sides of the second transformation member 212 (body) under the elastic action of the third reset member 243 in the rotating process, through the cooperation of multiple racks and gears, under the driving of the driving member 32, the synchronous linkage folding of each transformation member of the fuselage 20 is realized, that is, under the driving of the driving member 32, one-key folding of the fuselage 20 is realized, the switching of the folded state of the transformation toy 1000 is fast and convenient, and after folding, the structure of the transformation toy 1000 is compact, the form of the toy car is changed, the storage or carrying of the transformation toy 1000 is facilitated, and the playing experience of the user is improved.
[0078] In the description of the application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application.
[0079] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.
[0080] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0081] In the present application, unless otherwise explicitly specified and limited, the first feature is "on" or "under" the second feature, which can be direct contact between the first and second features, or indirect contact between the first and second features through intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be directly above or obliquely above the first feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature can be directly below or obliquely below the first feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.
[0082] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are contained in at least one embodiment or example of the present application. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any suitable manner in any one or more embodiments or examples. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of the different embodiments or examples without contradiction.
[0083] Although the embodiments of the present application have been shown and described above, it is understood that the above-described embodiments are exemplary and are not to be construed as limiting the present application, and the person skilled in the art can make changes, modifications, replacements and variations to the above-described embodiments within the scope of the present application.
Claims
1. A transformable toy (1000) characterized in that, The transformational toy (1000) comprises: a base (10); a body (20) connected to the base (10) and having an unfolded state and a folded state; a rotating member (31) rotatably arranged on the base (10) and in driving connection with the body (20); a driving member (32) arranged below the base (10) and rotatably connected to the base (10) and configured to drive the rotating member (31) to switch the body (20) from the unfolded state to the folded state, the driving member (32) having a first position and a second position, the driving member (32) being located at the first position when the body (20) is in the unfolded state, the driving member (32) being located at the second position when the body (20) is in the folded state, and the driving member (32) being in driving cooperation with the rotating member (31) when moving from the first position to the second position and being able to drive the rotating member (31) to fold the body (20), the driving member (32) being stacked on the bottom surface of the base (10) at the first position and the second position, and the driving member (32) being reversible in the front-rear direction.
2. The transformable toy (1000) according to claim 1, characterized in that, The transformational toy (1000) further comprises: a fourth rack (13) movably arranged on the base (10) and in driving connection with the rotating member (31), the fourth rack (13) being provided with a first shifting tooth (131), wherein the driving member (32) is provided with a second shifting tooth (331), the first shifting tooth (131) and the second shifting tooth (331) being in driving cooperation when the driving member (32) moves from the first position to the second position, so as to drive the body (20) to fold.
3. The transformable toy (1000) according to claim 1, characterized in that, The base (10) comprises: a fourth reset member (141) connected to the driving member (32) and having an elastic force to push the driving member (32) to move to the first position; a second lock hook (112) having a locking position and an unlocking position to releasably lock the driving member (32) at the second position.
4. The transformable toy (1000) according to claim 3, characterized in that, The base (10) further comprises: a seventh transmission structure (16) movable to drive the second lock hook (112) to the unlocking position; a fifth reset member (142) connected to the seventh transmission structure (16) and adapted to elastically drive the second lock hook (112) to the locking position.
5. The transformable toy (1000) according to claim 4, characterized in that, The transformational toy (1000) further comprises an unlocking member (500), the seventh transmission structure (16) comprises a first transmission part (161), and the base (10) further comprises: a magnetic attraction structure (15) connected to the first transmission part (161), the magnetic attraction structure (15) being used to attract the unlocking member (500) and drive the first transmission part (161) to move to unlock the second lock hook (112).
6. The transformable toy (1000) according to claim 4, characterized in that, The base (10) is provided with a roller (171), the seventh transmission structure (16) comprises a second transmission part (162), the base (10) further comprises: A cam (172) connected with the second transmission part (162) to drive the second transmission part (162) to move and unlock the second locking hook (112); A transmission mechanism (173) in transmission connection with the roller (171) and the cam (172) respectively.
7. The transformable toy (1000) according to claim 1, characterized in that, The base (10) comprises: A first locking hook (111) releasably locking the fuselage (20) in the folded state; A second locking hook (112) releasably locking the driving member (32) in the second position, the second locking hook (112) being synchronously unlocked with the first locking hook (111).
8. The transformable toy (1000) according to claim 1, characterized in that, The fuselage (20) comprises: A first deformation member (211) rotatably connected with the base (10) and in transmission connection with the rotating member (31); A second deformation member (212) rotatably connected with the first deformation member (211); A first transmission assembly (22) connected with the base (10), the first deformation member (211) and the second deformation member (212) respectively, for the first deformation member (211) and the second deformation member (212) to be linked to be synchronously unfolded and folded.
9. The transformable toy (1000) according to claim 8, characterized in that, The fuselage (20) further comprises: A first reset member (241) connected with the base (10) and the first deformation member (211) respectively and having an elastic force to drive the first deformation member (211) to unfold; and / or A second reset member (242) connected with the first deformation member (211) and the second deformation member (212) respectively and having an elastic force to drive the second deformation member (212) to unfold.
10. The transformable toy (1000) according to claim 8, characterized in that, The first transmission assembly (22) comprises: A first transmission structure (221) telescopically provided on the first deformation member (211) and having a first end in sliding connection with the base (10), and the first deformation member (211) being adapted to drive the first transmission structure (221) to telescope when rotating; A second transmission structure (222) rotatably provided on the first deformation member (211) and in transmission connection with the first transmission structure (221) and the second deformation member (212) respectively.
11. The transformable toy (1000) according to claim 8, characterized in that, The fuselage (20) further comprises: A third deformation member (213) rotatably connected with the second deformation member (212); A second transmission assembly (23) is connected with the second deformation member (212) and the third deformation member (213) respectively, and is used for linkage of the third deformation member (213) and the second deformation member (212) to synchronize unfolding and folding.
12. The transformable toy (1000) according to claim 11, characterized in that, The fuselage (20) further comprises: A third reset member (243) is connected with the second deformation member (212) and the third deformation member (213) respectively, and has an elastic force for driving the third deformation member (213) to fold.
13. The transformable toy (1000) according to claim 11, characterized in that, The second transmission assembly (23) further comprises: A fourth transmission structure (231) is fixed in position relative to the first deformation member (211); A fifth transmission structure (232) is telescopically arranged on the second deformation member (212) and is in transmission connection with the fourth transmission structure (231); A sixth transmission structure (233) is rotatably arranged on the second deformation member (212) and is in transmission connection with the fifth transmission structure (232) and the third deformation member (213) respectively.
14. The transformable toy (1000) according to claim 13, characterized in that, The fuselage (20) further comprises: A fourth deformation member (214) is connected with the sixth transmission structure (233) and is fixed in position relative to the sixth transmission structure (233).
15. The transformable toy (1000) according to claim 11, characterized in that, The first rotation axis is parallel to the second rotation axis, and the second rotation axis is perpendicular to the third rotation axis; And / or, in the folded state, the first deformation member (211) is folded on the machine base (10), and the second deformation member (212) is folded with the first deformation member (211); And / or, in the folded state, the third deformation member (213) is folded with the second deformation member (212); And / or, in the unfolded state, the first deformation member (211) extends in the up-down direction, and the lower end is connected with the machine base (10), and the second deformation member (212) extends in the up-down direction, and the lower end is connected with the first deformation member (211); And / or, in the unfolded state, the third deformation member (213) extends in the up-down direction, and the upper end is connected with the upper end of the second deformation member (212), and the lower end is spaced apart from the second deformation member (212) in the left-right direction.
Citation Information
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