Transforming toy

By introducing a rotating part and gear transmission mechanism into the transforming toy, the body can be easily folded and unfolded, solving the problem of complex state switching in the existing technology and improving the user experience and fun.

CN119158279BActive Publication Date: 2025-10-24ALPHA GROUP CO LTD +1
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Patent Information

Application Number
CN202310742279.X
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

Technical Problem

Existing transforming toys involve complex folding or unfolding of parts during state transitions, which reduces the user experience.

Method used

By setting a rotating part on the base, the body is connected to the rotating part through a transmission, and can be driven manually or by an external drive module to realize the folding and unfolding of the body. Combined with the gear transmission mechanism and the linkage of multiple deformable parts, one-click folding is achieved.

Benefits of technology

It improves the structural stability and ease of use of transforming toys, enriches the ways to play, increases the fun, and simplifies the process of switching states and storing them.

✦ Generated by Eureka AI based on patent content.

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    Figure CN119158279B_ABST
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Abstract

The application discloses a transformable toy, which comprises a base, a rotating part and a body, the rotating part is rotatably arranged on the base and is configured to be suitable for manual driving or external driving module; the body is connected with the base and has an unfolded state and a folded state, the body is in transmission connection with the rotating part and is suitable for being driven to fold by the rotating part. According to the transformable toy of the embodiment of the application, the rotating part is arranged to drive the body to fold, so that the transformation of the transformable toy is convenient and fast, and the storage of the transformable toy is facilitated. In addition, the rotating part can be manually driven or driven by the external driving module, the adaptability of the rotating part is improved, the play of the transformable toy is enriched, and the interestingness of the transformable toy is improved.
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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 by rotating the rotating part.

[0004] According to the transformable toy of the present application, the base can improve the structural stability of the transformable toy. By setting the rotating part to drive the body to fold, the transformable toy is easy and fast to transform, which facilitates the storage of the transformable toy. In addition, the rotating part can be manually driven or driven by an external driving module, which improves the adaptability of the rotating part, enriches the play of the transformable toy, and improves the interest of the transformable toy.

[0005] According to the transformable toy of the present application, the base can improve the structural stability of the transformable toy. By setting the rotating part to drive the body to fold, the transformable toy is easy and fast to transform, which facilitates the storage of the transformable toy. In addition, the rotating part can be manually driven or driven by an external driving module, which improves the adaptability of the rotating part, enriches the play of the transformable toy, and improves the interest of the transformable toy.

[0006] In addition, the transformable toy according to the above embodiments of the present application can also have the following additional technical features:

[0007] In some embodiments, the transformable toy further comprises a rotating part, which is in transmission connection with the body and rotatably arranged on the base, and the rotating part is in transmission connection with the rotating part.

[0008] In some embodiments, the rotating part and the rotating part have a gear transmission mechanism therebetween.

[0009] In some embodiments, the rotating part includes two rotating parts arranged on the left and right sides of the base, and the two rotating parts are in transmission connection with the same rotating part.

[0010] In some embodiments, the rotating part includes a sliding block configured in a long strip shape extending in a direction perpendicular to the rotation center axis of the rotating part.

[0011] In some embodiments, the rotation center axis of the rotating part passes through the center of the slider.

[0012] In some embodiments, the body comprises: a first transforming part rotatably connected with the base and in transmission connection with the rotating part; a second transforming part rotatably connected with the first transforming part; and a first transmission assembly connected with the base, the first transforming part and the second transforming part respectively, for linkage of the first transforming part and the second transforming part to fold synchronously.

[0013] In some embodiments, the first transmission assembly comprises: a first transmission structure telescopically arranged on the first transforming part, one end of which is in sliding connection with the base, and the first transmission structure is adapted to be driven to telescope when the first transforming part rotates; and a second transmission structure rotatably arranged on the first transforming part and in transmission connection with the first transmission structure and the second transforming part respectively.

[0014] In some embodiments, a gear and rack transmission mechanism is provided between the first transmission structure and the second transmission structure to convert the telescopic movement of the first transmission structure into the rotational movement of the second transforming part relative to the first transforming part.

[0015] In some embodiments, the body further comprises: a third transforming part rotatably connected with the second transforming part; and a second transmission assembly connected with the second transforming part and the third transforming part respectively, for linkage of the third transforming part and the second transforming part to fold synchronously.

[0016] In some embodiments, the second transmission assembly comprises: a fourth transmission structure fixed in position relative to the first transforming part; a fifth transmission structure telescopically arranged on the second transforming part and in transmission connection with the fourth transmission structure; and a sixth transmission structure rotatably arranged on the second transforming part and in transmission connection with the fifth transmission structure and the third transforming part respectively.

[0017] In some embodiments, a gear and rack transmission mechanism is provided between the fourth transmission structure and the fifth transmission structure to convert the rotational movement of the fourth transmission structure into the telescopic movement of the fifth transmission structure relative to the second transforming part; or, the sixth transmission structure, the second transforming part and the third transforming part are connected into a planar four-bar linkage mechanism and driven by the fifth transmission structure.

[0018] 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

[0019] 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 unfolded state.

[0020] 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.

[0021] Figure 3 Schematic diagram of a transformable toy according to an embodiment of the present invention.

[0022] Figure 4 Schematic diagram of a transformable toy according to an embodiment of the present invention.

[0023] Figure 5 Schematic diagram of a transformable toy according to an embodiment of the present invention.

[0024] Figure 6 2 is a schematic diagram of an explosion of a transformable toy according to an embodiment of the present invention.

[0025] Figure 7 Schematic diagram of a transformable toy according to an embodiment of the present invention.

[0026] Figure 8 It is a cross-sectional schematic diagram of a transformable toy according to an embodiment of the present invention.

[0027] Figure 9 yes Figure 8 Enlarged schematic diagram of point A in the middle circle.

[0028] Reference numerals:

[0029] Transformable toy 1000, body 100, base 10, first locking hook 111, first transmission member 18, magnetic attraction structure 15, seventh transmission structure 16, fifth reset member 142, body 20, first transformation member 211, second transformation member 212, third transformation member 213, 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, sixth transmission structure 233, first reset member 241, second reset member 242, rotating member 31, rotating part 50, sliding block 51, base 200, locking member 210, elastic member 220, driving handle 300, rotating shaft part 310, locking groove 311, first locking groove 3111, second locking groove 3112, handle part 312, first matching part 320, lock catch 400, unlocking member 500. DETAILED DESCRIPTION

[0030] Embodiments of the present application are described in detail below with reference to the attached drawing figures, wherein the same or like reference numerals and letters throughout the figures denote the same elements or elements with the same function. The embodiments described below are exemplary and are intended to be illustrative of the present application and are not to be construed as limiting the present application.

[0031] Reference Signs List Figure 1 and Figure 2The application provides a transformable toy 1000, which can comprise a base 10, a rotating part 50 and a body 20. The rotating part 50 is rotatably arranged on the base 10 and is configured to be suitable for manual driving or external driving module, in other words, the rotating part 50 can be directly manually rotated or driven to rotate by the external driving module. The body 20 is connected with the base 10 and has an unfolded state and a folded state. The body 20 can be unfolded or folded on the base 10. The base 10 can provide support and fixation for the body 20, so that the transformable toy 1000 can have a stable state in different transformable states and the structural stability of the transformable toy 1000 is improved. The body 20 is in transmission connection with the rotating part 50 and is suitable for being driven to fold by the rotating part 50. The rotating part 50 is arranged on the base 10 to drive the body 20 to fold. The base 10 is a relatively fixed component, which can improve the stability and reliability of the overall structure of the body 100. The rotating part 50 is arranged to drive the body 20 to fold, so that the transformation of the transformable toy 1000 is convenient and fast, and the storage of the transformable toy 1000 is facilitated. In addition, the rotating part 50 can be manually driven or driven by the external driving module, which improves the adaptability of the rotating part 50, enriches the playing method of the transformable toy 1000 and improves the interestingness of the transformable toy 1000.

[0032] It can be understood that the transformable toy 1000 usually needs to be placed on a relatively flat plane, so that the toy can stand stably. The base 10 is arranged, so that the transformable toy 1000 is not easy to fall in different states and can adapt to different playing environments, thereby improving the playing experience of the user.

[0033] The body 20 is connected with the base 10 and has an unfolded state and a folded state. In the unfolded state, the body 20 can stand on the base 10, and in the folded state, the body 20 can be stacked on the base 10. When the body 20 is folded, the body 100 can be conveniently stored or carried.

[0034] The body 20 is in transmission connection with the rotating part 50, which can be in the form of gear transmission, chain transmission or shaft coupling transmission, and can be adjusted according to the structure of the transformable toy.

[0035] The rotating part 50 is configured to be suitable for manual or external driving module, for example, the rotating part 50 can be directly driven to move by manually rotating the rotating part 50, and the movement of the rotating part 50 drives the folding of the body 20, or the rotating part 50 can be externally connected to a driving module, wherein the driving module can be a driving handle 300 or an electric driving device, etc. For example, the transformable toy 1000 can further include a base 200, the body 20 and the base 10 form a machine body 100 of the transformable toy 1000, the driving handle 300 can be connected to the base 200 and the body 20, which enriches the playing method of the transformable toy 1000 and improves the interest of the transformable toy 1000.

[0036] With reference to Figure 3 Further, the transformable toy 1000 can further include a rotating piece 31, which is in transmission connection with the body 20, wherein the rotating piece 31 and the body 20 can be in key connection, pin connection, thread connection, etc. to facilitate the rotating piece 31 to stably drive the body 20 to rotate. Preferably, the rotating piece 31 and the body 20 are in key connection, which makes the connection between the rotating piece 31 and the body 20 firm, improves the stability and reliability of the connection, and can bear larger force and torque, so that the rotating piece 31 can stably drive the body 20 to fold when rotating. The rotating piece 31 can be rotatably arranged on the base 10, and the rotating piece 31 is in transmission connection with the rotating part 50, wherein the rotating piece 31 and the rotating part 50 can be in gear transmission, rack transmission, shaft coupling transmission, etc. Specifically, the rotating part 50 drives the rotating piece 31 to rotate, and the rotating piece 31 drives the body 20 to fold. By arranging the rotating piece 31, the stability and smoothness of the body 20 during folding are improved, and the reliability and stability of the transformable toy 1000 are improved.

[0037] With reference to Figure 3 Specifically, the rotating part 50 drives the rotating piece 31 to rotate, and the rotating piece 31 drives the body 20 to fold. By arranging the rotating piece 31, the stability and smoothness of the body 20 during folding are improved, and the reliability and stability of the transformable toy 1000 are improved.

[0038] With reference to Figure 3In some embodiments of the present application, the rotating part 50 can include two rotating parts arranged on the left and right sides of the base 10, and the two rotating parts 50 are in driving connection with the same rotating member 31. When it is needed to fold the body 20, the folding of the body 20 can be realized by rotating any one of the rotating parts 50. Meanwhile, the rotating part 50 can be externally connected with a driving handle 300, the driving handle 300 can be connected with the two rotating parts 50 at the same time, and when the driving handle 300 is rotated, the two rotating parts 50 can be synchronously rotated, thereby driving the body 20 to fold, so that the folding of the body 20 is convenient and fast, and the labor is saved.

[0039] With reference to Figure 3 In some embodiments of the present application, the rotating part 50 can include a sliding block 51, which is configured in a long strip shape extending in a direction perpendicular to the rotation center axis of the rotating part 50. The sliding block 51 is convenient for a hand to hold the rotating part 50 to operate, and is convenient for a user to operate. In addition, it is also convenient to externally connect a driving module through the sliding block 51, so as to improve the adaptability of the rotating part 50, enrich the playing method of the transformable toy 1000, and improve the interestingness of the transformable toy 1000. For example, the driving handle 300 can be externally connected through the sliding block 51, and the driving handle 300 can be provided with a first matching part 320 matched with the sliding block 51. Through the sliding block 51, the rotating part 50 is matched with the driving handle 300, and the driving handle 300 can be conveniently disassembled and assembled.

[0040] In some embodiments of the present application, the rotation center of the rotating part 50 passes through the center of the sliding block 51, so that the force is uniform when the rotating part 50 is rotated, the force can be effectively transmitted to the body 20, the rotating part 50 is stably rotated, the body 20 can be effectively folded, and the stability of the transformable toy 1000 in the folding process is improved.

[0041] With reference to Figure 3 and Figure 4In some embodiments of the present application, the transformable toy 1000 can include the first transformable part 211, the second transformable part 212, and the first transmission assembly 22. The first transformable part 211 is rotatably connected to the base 10 and in transmission connection with the rotating part 31. The second transformable part 212 is rotatably connected to the first transformable part 211. The first transmission assembly 22 is connected to the base 10, the first transformable part 211, and the second transformable part 212, respectively, for linkage of the first transformable part 211 and the second transformable part 212 to realize synchronous folding. Specifically, the transformable toy 1000 can have multiple transformable parts to enrich the shapes of the transformable toy 1000. The first transmission assembly 22 can be used to link the first transformable part 211 and the second transformable part 212 synchronously to realize synchronous folding, thereby realizing one-key folding of the body 20, making the state switching and storage of the transformable toy 1000 simple and convenient, and improving the user experience. In addition, the first transmission assembly 22 connects the base 10, the first transformable part 211, and the second transformable part 212, so that the overall structure of the body 100 is stable and has high reliability.

[0042] With reference to Figure 4 The first transmission assembly 22 can include the first transmission structure 221 and the second transmission structure 222. The first transmission structure 221 is telescopically arranged on the first transformable part 211, and one end of the first transmission structure 221 is in sliding connection with the base 10. The first transformable part 211 is adapted to drive the first transmission structure 221 to extend or retract when the first transformable part 211 rotates. The second transmission structure 222 is rotatably arranged on the first transformable part 211 and in transmission connection with the first transmission structure 221 and the second transformable part 212, respectively. Specifically, the second transmission structure 222 can be in key connection with the second transformable part 212. The rotating part 31 rotates to drive the first transformable part 211 to rotate. The first transmission structure 221 can slide upward along the base 10. The first transmission structure 221 drives the second transmission structure 222 to rotate, and the second transmission structure 222 drives the second transformable part 212 to rotate. The linkage of the first transformable part 211 and the second transformable part 212 is realized through cooperation of the first transmission structure 221 and the second transmission structure 222, thereby realizing synchronous folding of the first transformable part 211 and the second transformable part 212. The body 20 can be one-key transformed and stored, thereby improving the user experience.

[0043] With reference to Figure 4 and Figure 5Further, the first transmission structure 221 and the second transmission structure 222 can have a gear and rack transmission structure to convert the telescopic movement of the first transmission structure 221 into the rotating movement of the second deforming piece 212 relative to the first deforming piece 211. 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 form a gear and rack transmission structure, when the first rack 2211 telescopes and rotates, the third gear 2222 is driven to rotate, the third gear 2222 is connected with the second deforming piece 212, and the rotation of the third gear 2222 can drive the second deforming piece 212 to rotate and fold. Through the gear and rack transmission structure of the first transmission structure 221 and the second transmission structure 222, multiple deforming pieces in different forms can be synchronously linked, the gear and rack transmission structure has stable transmission and high reliability, and the structural stability and reliability of the fuselage 20 can be improved.

[0044] With reference to Figure 5 Alternatively, the first transmission assembly 22 can further include a third transmission structure 223, the third transmission structure 223 is rotatably arranged on the first deforming piece 211, and the third transmission structure 223 can include coaxially and fixedly connected first and second gears 2231 and 2232. 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 is engaged with the first gear 2231, and the third gear 2222 is engaged with the second gear 2232, and the number of teeth of the third gear 2222 is less than that of the second gear 2232. In other words, the third transmission structure 223 is in transmission connection with the first transmission structure 221 and the second transmission structure 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 a transition gear between the first rack 2211 and the third gear 2222, and are engaged with each other, so that the effect of speed reduction and torque increase can be achieved, that is, the rotating speed of the third gear 2222 is reduced, and the output torque of the third gear 2222 is increased, so that the second deforming piece 212 can rotate smoothly when the first deforming piece 211 rotates, and the stability of the fuselage 20 during folding is improved.

[0045] Specifically, rotating the rotating part 50 can drive the first deformation part 211 to rotate backward, the first deformation part 211 simultaneously drives the first transmission structure 221 to slide forward on the base 10, the first transmission structure 221 simultaneously drives the third transmission structure 223 (the first gear 2231 and the second gear 2232) to rotate, the third transmission structure 223 transmits force, drives the second transmission structure 222 to rotate, the second transmission structure 222 drives the second deformation part 212 to rotate, and the first deformation part 211 and the second deformation part 212 are synchronously linked and folded on the base 10.

[0046] With reference to Figure 4 and Figure 5 In some embodiments of the present application, the body 20 can further include a third deformation part 213 and a second transmission assembly 23, the third deformation part 213 can further enrich the form of the body 20 and improve the interest of the transformation toy 1000, the third deformation part 213 is rotatably connected with the second deformation part 212, the second transmission assembly 23 is connected with the second deformation part 212 and the third deformation part 213 respectively, and is used for linkage of the third deformation part 213 and the second deformation part 212 to realize synchronous folding. Specifically, when the second deformation part 212 rotates, it drives the second transmission assembly 23 to move, and then drives the third deformation part 213 to rotate, thereby realizing linkage and synchronous folding of the third deformation part 213 and the second deformation part 212.

[0047] 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, linkage of the first deformation part 211 and the second deformation part 212 is realized by the first transmission assembly 22, linkage of the second deformation part 212 and the third deformation part 213 is realized by the second transmission assembly 23, that is, linkage of the first deformation part 211, the second deformation part 212 and the third deformation part 213 can be realized by rotating the rotating part 50 and cooperation of the first transmission assembly 22 and the second transmission assembly 23, one-key folding of the body 20 driven by the rotating part 50 is realized, deformation of the body 20 is convenient and fast, and storage of the body 20 is facilitated.

[0048] With reference to Figure 5The second transmission assembly 23 can include a fourth transmission structure 231, a fifth transmission structure 232 and a sixth transmission structure 233. The fourth transmission structure 231 is fixed relative to the first deformation member 211. The fifth transmission structure 232 is telescopically arranged on the second deformation member 212 and is in transmission connection with the fourth transmission structure 231. The 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. Specifically, the fourth transmission structure 231 can be in key connection with the first deformation member 211 and can be in connection with the second transmission structure 222. When the first deformation member 211 rotates, the fourth transmission structure 231 is driven to rotate, and the second deformation member 212 is simultaneously folded. The fourth transmission structure 231 can drive the fifth transmission structure 232 to move downward, and the fifth transmission structure 232 drives the sixth transmission structure 233 to rotate, thereby synchronously realizing the folding of the third deformation member 213. In this way, the one-key synchronous folding of multiple deformation members is realized, and the deformation and storage of the deformation toy 1000 are facilitated.

[0049] With reference to Figure 5 and Figure 6 Further, the fourth transmission structure 231 and the fifth transmission structure 232 can have a gear and rack transmission structure therebetween to convert the rotary motion of the fourth transmission structure 231 into the telescopic motion of the fifth transmission structure 232 relative to the second deformation member 212. For example, the fourth transmission structure 231 can have a fourth gear 2311 thereon, the fifth transmission structure 232 can have a second rack 2321 thereon, and the sixth transmission structure 233 can be a crank rocker mechanism. The fourth gear 2311 is in meshing connection with the second rack 2321, and the fifth transmission structure 232 is in transmission connection with the crank rocker mechanism. The fourth transmission structure 231 can be in transmission connection with the first deformation member 211, and the relative position of the fourth transmission structure 231 is unchanged. When the first deformation member 211 is folded, the fourth gear 2311 can be driven to rotate synchronously, and the fifth transmission structure 232 can be driven to telescopically move. The fifth transmission structure 232 drives the crank rocker mechanism to move, thereby synchronously driving the third deformation member 213 to fold. In this way, the synchronous linkage of multiple deformation members in different morphologies is realized, and the transmission structure has high reliability and stability.

[0050] With reference to Figure 4In addition, the sixth transmission structure 233, the second deformation member 212 and the third deformation member 213 can be connected into a planar four-bar linkage mechanism, and driven by the fifth transmission structure 232, the fourth transmission structure 231 rotates to drive the fifth transmission structure 232 to extend and retract, and drives the planar four-bar linkage mechanism to move, realizing synchronous folding of the third deformation member 213, the transmission of the planar four-bar linkage mechanism is stable, the transmission structure between the second deformation member 212 and the third deformation member 213 is simple and has high reliability, and the folding of the second deformation member 212 and the third deformation member 213 can be stably driven, improving the stability and reliability of the fuselage 20 during folding.

[0051] With reference to Figure 1 and Figure 2 The transformation toy 1000 according to the embodiment of the present application has two forms of an unfolded state and a folded state, the form of the transformation toy 1000 can be a robot, an animal, a vehicle and the like, for example, the unfolded state can be a robot, an animal and the like, and the folded state can be a toy car, different state switching can enrich the interest of the transformation toy 1000, and the transformation toy 1000 is convenient to store in the folded state. The following will be described by taking the folded state as a toy car form and the unfolded state as a robot as an example, in the unfolded state, the transformation toy 1000 can include a first deformation member 211 and a second deformation member 212, the first deformation member 211 can be a leg, and the second deformation member 212 can be a body, in order to enrich the form and interest of the transformation toy 1000, the transformation toy 1000 can further include a third deformation member 213, and the third deformation member 213 can be an arm.

[0052] In some embodiments of the present application, the first deformation member 211 and the base 10 can have a first rotation axis, the second deformation member 212 and the first deformation member 211 can have a second rotation axis, and the third deformation member 213 and the second deformation member 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 is 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 transformation toy 1000, and the third rotation axis can extend along the front-rear direction of the transformation toy 1000, after the transformation toy 1000 is folded, the first deformation member 211 and the second deformation member 212 can be stacked on the base 10, and the third deformation member 213 can be folded on both sides of the second deformation member 212, in this way, the transformation toy 1000 can be compact after folding, space can be saved, and the toy can be conveniently stored and carried.

[0053] In some embodiments of the present application, the first transformation part 211 can be folded on the base 10, and the second transformation part 212 can be folded with the first transformation part 211. In this way, when the transformation toy 1000 is switched to the folded state, the structure of the body 20 is compact, which can save space and facilitate the storage and carrying of the toy.

[0054] In some embodiments of the present application, in the folded state, the third transformation part 213 can be folded with the second transformation part 212. In this way, when the transformation toy 1000 is switched to the folded state, the structure of the body 20 is compact, which can save space and facilitate the storage and carrying of the toy.

[0055] In some embodiments of the present application, in the unfolded state, the first transformation part 211 can extend in the up-down direction, and the lower end is connected to the base 10. The second transformation part 212 can extend in the up-down direction, and the lower end is connected to the upper end of the first transformation part 211. For example, the unfolded state of the transformation toy 1000 can be a robot, the first transformation part 211 can be a leg, and the second transformation part 212 can be a body. The robot is connected to the base 10, so that the overall structure of the robot is stable, which can maintain a good standing posture and adapt to different playing environments. When the unfolded state is switched to the folded state, the first transformation part 211 and the second transformation part 212 can be folded synchronously to change different shapes and forms, which increases the interest of the toy.

[0056] In some embodiments of the present application, in the unfolded state, the third transformation part 213 can extend in the up-down direction, and the upper end is connected to the upper end of the second transformation part 212. The lower end is spaced apart from the second transformation part 212 in the left-right direction. For example, the unfolded state of the transformation part can be a robot, the second transformation part 212 can be a body, and the third transformation part 213 can be an arm. One end of the arm is connected to the body and located on both sides of the body, which enriches the shape of the transformation toy 1000. When the unfolded state is switched to the folded state, the second transformation part 212 and the third transformation part 213 can be folded synchronously to change different shapes and forms, which increases the interest of the toy.

[0057] Reference Figure 5Optionally, the body 20 can comprise 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. Specifically, the body 20 has an unfolded state and a folded state. By arranging the first reset member 241, the body 20 can be stably maintained in the unfolded state, improving the structural stability of the transformation toy 1000, and facilitating the switching of the body 20 from the unfolded state to the folded state. When the force acting on the first deformation member 211 is greater than the elastic force of the first reset member 241 when the rotating driving member 32 is rotated, the first deformation member 211 is driven to rotate, and the body 20 is switched 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 5 Optionally, the body 20 can comprise 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. Specifically, the body 20 has an unfolded state and a folded state. By arranging the second reset member 242, the body 20 can be stably maintained in the unfolded state, improving the structural stability of the transformation toy 1000, and facilitating the switching of the body 20 from the unfolded state to the folded state. When the rotating driving member 32 is rotated, the first deformation member 211 is folded, 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, the second deformation member 212 is driven to rotate, and the body 20 is switched 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 6 Optionally, the base 10 can have a first locking hook 111 to releasably lock the body 20 in the folded state. 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, improving the structural stability of the transformation toy 1000.

[0060] With reference to Figure 6Optionally, the base 10 can further comprise a seventh transmission structure 16 and a fifth reset member 142, the seventh transmission structure 16 is movable to drive the first locking hook 111 to the unlocking position, and the fifth reset member 142 is connected with the seventh transmission structure 16 and is suitable for driving the first locking hook 111 to the locking position. Specifically, the seventh transmission structure 16 can be moved backward, at this time, the first locking hook 111 is moved backward, the first locking hook 111 is moved to the unlocking position, the locking of the fuselage 20 is released, and the fuselage 20 is unfolded. After the locking of the fuselage 20 is released, the seventh transmission structure 16 is restored to the original position under the action of the fifth reset member 142, so as to prepare for the next locking of the fuselage 20 by the first locking hook 111. The fifth reset member 142 can be a spring.

[0061] With reference to Figure 6 Optionally, the transformable toy 1000 can further comprise an unlocking member 500, the unlocking member 500 can be separate from the fuselage 20 and the base 10, or can be embedded between the fuselage 20 and the base 10, and can be adjusted according to the shape of the transformable toy. The base 10 can further comprise a magnetic attraction structure 15, the magnetic attraction structure 15 can be connected with the seventh transmission structure 16, and the magnetic attraction structure 15 is used for attracting the unlocking member 500 and driving the seventh transmission structure 16 to move to unlock the first locking hook 111. Specifically, the unlocking member 500 can be made of metal material, and the unlocking member 500 is separate from the main body part (the fuselage 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 pushed by the unlocking member 500, the seventh transmission structure 16 is driven to move backward, the first locking hook 111 is driven to move backward to the unlocking position, the fuselage 20 is released, and the fuselage 20 is unfolded.

[0062] With reference to Figure 7 Optionally, the transformable toy 1000 can comprise a base 200 and a machine body 100, wherein the machine body 100 comprises a base 10 and a fuselage 20, the machine body 100 can be connected with the base 200, the base 200 can provide support for the machine body 100, and the transformable toy 1000 can further comprise a driving handle 300, the driving handle 300 can be rotatably connected with the base 200 and connected with the rotating part 50, the rotating part 50 can be driven to rotate through the driving handle 300, and the fuselage 20 can be further folded through the driving handle 300. By providing the driving handle 300, it is convenient to apply a deformation force to the transformable toy 1000, so as to facilitate folding of the transformable toy 1000, and the folding of the transformable toy 1000 is more convenient and fast. When it is necessary to store the transformable toy 1000, it is only necessary to rotate the driving handle 300, thereby improving the user experience.

[0063] Referring to Figure 8 and Figure 9 Wherein, the base 200 can be provided with a locking member 210, the locking member 210 is configured to releasably lock the driving handle 300, when the driving handle 300 is released, the locking member 210 can rotate the driving handle 300 to drive the rotating part 50 to rotate, when the driving handle 300 moves to a predetermined position, the driving handle 300 can be locked by the locking member 210, so that the locking member 210 is stably maintained at the corresponding position, the driving handle 300 can be locked by the locking member 210 when the body 20 is in the folded state, or the driving handle 300 can be locked by the locking member 210 when the body 20 is in the unfolded state, which improves the structural stability of the transformable toy 1000.

[0064] Referring to Figure 9 Further, the driving handle 300 can include a rotating shaft part 310, the rotating shaft part 310 is rotatably provided on the base 200, the outer circumferential surface of the rotating shaft part 310 can be provided with a locking groove 311, and the locking member 210 can be inserted into the locking groove 311 to lock and release the driving handle 300. Specifically, during the rotation of the driving handle 300, when the locking member 210 is embedded in the locking groove 311, the driving handle 300 is locked, so that the driving handle 300 is stably maintained in the corresponding state, and when the locking member 210 is taken out of the locking groove 311, the driving handle 300 is released. By cooperating the locking groove 311 on the rotating shaft part 310 with the locking member 210, the driving handle 300 can be effectively locked, the driving handle 300 is prevented from loosening, and the structural stability of the transformable toy 1000 is improved.

[0065] Referring to Figure 9 Alternatively, the base 200 can be provided with an elastic member 220, the elastic member 220 is connected with the locking member 210 and can have an elastic force to drive the locking member 210 to lock the driving handle 300. In other words, when the locking member 210 is embedded in the locking groove 311, the elastic member 220 can apply an elastic force to the locking member 210, so that the locking member 210 is stably embedded in the locking groove 311, the locking key can effectively lock the driving handle 300, and the elastic member 220 can provide a certain buffer for the rotating process of the rotating shaft part 310, so that the rotating of the rotating shaft part 310 is smooth.

[0066] Referring to Figure 9 Alternatively, the locking groove 311 can include a plurality of locking grooves 311, the plurality of locking grooves 311 can include a first locking groove 3111 and a second locking groove 3112, the locking member 210 is inserted into the first locking groove 3111 when the body 20 is unfolded, and the locking member 210 is inserted into the second locking groove 3112 when the body 20 is folded. In this way, the driving handle 300 can be locked and positioned in both the unfolded state and the folded state of the body 20, which improves the structural stability of the transformable toy 1000 in different states.

[0067] With reference to Figure 8 And Figure 9 Optionally, the driving handle 300 can have a first position and a second position, the driving handle 300 is located at the first position when the body 100 is unfolded, the driving handle 300 is located at the second position when the body 100 is folded, and the driving handle 300 can drive the body 100 to fold when it rotates from the first position to the second position. In other words, when the body 20 is in different deformation states, the driving handle 300 is located at different positions. When the body 20 is unfolded, the driving handle 300 is located at the first position. At this time, only need to rotate the driving handle 300 to the second position, that is, the folding of the body 20 can be completed, so that the folding of the body 20 is more convenient and fast, and the quick storage of the transformation toy 1000 is realized.

[0068] With reference to Figure 9 Optionally, the driving handle 300 can further include a handle part 312, which can be arranged below the base 200. By arranging the handle part 312, the user can operate conveniently, so that the storage of the body 20 is convenient and convenient, and the handle part 312 can cooperate with the base 200 to support the transformation toy 1000, thereby improving the structural stability of the transformation toy 1000.

[0069] Optionally, the body 100 can be detachably mounted on the base 200, and the body 100 can be used alone or mounted on the base 200 for use, thereby enriching the play of the transformation toy 1000 and improving the interest.

[0070] For example, the body 100 can be detached from the base 200 and used alone. The body 100 has an unfolded state and a folded state. The folded state can be a toy car shape, and the unfolded state can be a robot, an animal or the like. When the body 100 needs to be transformed or stored, the body 100 can be mounted on the base 200, and the body 20 can be driven to fold by the driving handle, so that the storage of the transformation toy 1000 is convenient and fast.

[0071] With reference to Figure 7 Optionally, the transformation toy 1000 can further include a lock 400, which is movably arranged on the base 200 and can releasably lock the body 100. The body 100 can be stably fixed on the base 200 by locking the body 100 by the lock 400, thereby improving the overall structural strength and stability of the transformation toy 1000. The body 100 is stably fixed on the base 200, so that the body 100 can be driven to fold by the driving handle. When the body 100 needs to be detached from the base 200, the lock 400 can be released, so that the operation of the transformation toy 1000 is simple, convenient and stable.

[0072] With reference to Figure 7Optionally, the driving handle 300 can be provided with a first matching part 320, and the first matching part 320 and the rotating part 50 are detachably transmission matched. According to the foregoing embodiment, the driving handle 300 is rotatably connected to the base 10. By providing the first matching part 320 on the driving handle 300, when the first matching part 320 and the rotating part 50 are separated, the machine body 20 can be separated from the base 200. When the driving handle 300 is rotated, the first matching part 320 is driven to rotate, the first matching part 320 can drive the rotating part 50 to rotate synchronously, and the machine body 20 is driven to fold. In this way, the first matching part 320 and the rotating part 50 can be used to realize the disassembly or assembly of the machine body 20 and the base 200, and the driving handle 300 can also be used to drive the machine body 20 to fold.

[0073] Referring to Figure 8 and Figure 9 Further, the driving handle 300 can include a rotating shaft part 310, and the rotating shaft part 310 is movably arranged on the base 200. The first matching part 320 is a groove part arranged on the rotating shaft part 310, and the groove part extends along the radial direction of the rotating shaft part 310 and is open at least at one end. The rotating part 50 includes a sliding block 51, and the sliding block 51 is arranged to be capable of being pulled out of the groove part along the radial direction of the rotating shaft part 310. By matching the sliding block 51 with the groove part, the sliding block 51 can be pulled out of the groove part along the rotating shaft part 310 to complete the disassembly of the machine body 20 from the base 200, and the sliding block 51 can be inserted into the groove part to complete the assembly of the machine body 20 to the base 200, so that the machine body 20 and the base 200 are convenient and fast to disassemble and assemble, thereby facilitating the user to operate in different use scenarios.

[0074] Optionally, the driving handle 300 can include two rotating shaft parts 310 arranged coaxially and oppositely, and the base 10 can be provided with two first transmission parts 18 arranged coaxially and spaced apart. The two first transmission parts 18 are correspondingly matched with the two rotating shaft parts 310, and the rotating part 31 is transmissionally connected with the two first transmission parts 18. The two first transmission parts 18 can be gear transmissionally connected with the rotating part 31, so as to improve the stability of the transmission structure.

[0075] The following will be described in detail with reference to the accompanying Figure 1 to Figure 5, the switching process of the transformation toy 1000 from the unfolded state to the folded state is described, 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 shape) or it is needed to store the transformation toy 1000 for convenient carrying, the rotating part 50 can be rotated backward, the rotating part 50 is in transmission with the rotating part 31 through the gear transmission, the rotating part 31 is driven to rotate in the clockwise direction, the rotating part 31 is in transmission connection with the first transformation part 211 (leg), the first transformation part 211 (leg) is driven to rotate backward and fold on the base 10, the first transformation part 211 (leg) drives the first transmission structure 221 to move upward in the rotating process, the upper end of the first transmission structure 221 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 transmission structure 221 drives the first gear 2231 and the second gear 2232 to rotate in the clockwise direction, the first gear 2231 and the second gear 2232 achieve the purpose of speed reduction and torque increase, and drive the third transmission structure 222 to rotate in the counterclockwise direction, the third transmission structure simultaneously drives the second transformation part 212 (body) to rotate forward, so that the second transformation part 212 is folded on the base 10, because the fourth transmission structure 231 is fixedly arranged opposite to the first transformation part 211, when the first transformation part is folded, the fourth transmission structure 231 is driven to rotate, the fourth gear 2311 drives the second rack 2321 to move downward, under the action of the planar four-bar linkage mechanism, the third transformation part 213 (arm) is folded to the two sides of the second transformation part 212 (body), through the cooperation of the plurality of racks and gears, under the driving of the rotating part 50, the synchronous linkage folding of each transformation part of the fuselage 20 is realized, that is, under the driving of the rotating part 50, one-key folding of the fuselage 20 is realized, so that 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 shape 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.

[0076] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0077] In addition, the terms "first", "second", etc. are used only for the purpose of description and do not imply or imply relative importance or imply the number of the technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly specified.

[0078] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an 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.

[0079] 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 an 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.

[0080] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms is not necessarily directed to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. Furthermore, those skilled in the art can combine and combine different embodiments or features of different embodiments or examples described in the present application without contradiction.

[0081] Although the embodiments of the present application have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limiting the present application, and those skilled in the art can make changes, modifications, replacements and variations to the above embodiments within the scope of the present application.

Claims

1. A transformable toy (1000) characterized in that, The utility model relates to a kind of folding machine, including: Machine base (10); Rotary part (50), the rotary part (50) is rotatably provided on the machine base (10), and is configured to be suitable for manual driving or external driving module; Machine body (20), the machine body (20) is connected with the machine base (10), and has unfolded state and folded state, the machine body (20) is drivingly connected with the rotary part (50), and is suitable for being driven folding by the rotary part (50); Rotary piece (31), the rotary piece (31) is drivingly connected with the machine body (20), and is rotatably provided on the machine base (10), and the rotary piece (31) is drivingly connected with the rotary part (50); The machine body (20) includes: First deformation piece (211), the first deformation piece (211) is rotatably connected with the machine base (10), and is drivingly connected with the rotary piece (31); Second deformation piece (212), the second deformation piece (212) is rotatably connected with the first deformation piece (211); First transmission assembly (22), the first transmission assembly (22) is connected with the machine base (10), the first deformation piece (211) and the second deformation piece (212) respectively, for the first deformation piece (211) and the second deformation piece (212) linkage to synchronize folding.

2. The transformable toy (1000) according to claim 1, characterized in that, Gear transmission mechanism is arranged between the rotary part (50) and the rotary piece (31).

3. The transformable toy (1000) according to claim 1 or 2, characterized in that, The rotary part (50) includes two rotary parts (50) arranged on the left and right sides of the machine base (10), and the two rotary parts (50) are drivingly connected with the same rotary piece (31).

4. The transformable toy (1000) according to claim 1, characterized in that, The rotary part (50) includes sliding block (51), and the sliding block (51) is configured as long strip shape extending in the direction perpendicular to the rotation center axis of the rotary part (50).

5. The transformable toy (1000) according to claim 4, characterized in that, The rotation center axis of the rotary part (50) passes through the center of the sliding block (51).

6. The transformable toy (1000) according to claim 1, characterized in that, The first transmission assembly (22) includes: First transmission structure (221), the first transmission structure (221) is telescopically arranged on the first deformation piece (211), and one end is slidingly connected with the machine base (10), and the first deformation piece (211) rotates and is suitable for driving the first transmission structure (221) telescopic; Second transmission structure (222), the second transmission structure (222) is rotatably arranged on the first deformation piece (211), and is drivingly connected with the first transmission structure (221) and the second deformation piece (212) respectively.

7. The transformable toy (1000) according to claim 6, characterized in that, Gear rack transmission mechanism is arranged between the first transmission structure (221) and the second transmission structure (222), to convert the telescopic motion of the first transmission structure (221) into the rotary motion of the second deformation piece (212) relative to the first deformation piece (211).

8. The transformable toy (1000) according to claim 1, characterized in that, The machine body (20) further includes: Third deformation piece (213), the third deformation piece (213) is rotatably connected with the second deformation piece (212); A second transmission assembly (23) is connected with the second deforming member (212) and the third deforming member (213) respectively, and is used for linkage of the third deforming member (213) and the second deforming member (212) to fold synchronously.

9. The transformable toy (1000) according to claim 8, characterized in that, The second transmission assembly (23) comprises: A fourth transmission structure (231) is fixed in position opposite to the first deforming member (211); A fifth transmission structure (232) is telescopically arranged on the second deforming member (212) and is in transmission connection with the fourth transmission structure (231); A sixth transmission structure (233) is rotatably arranged on the second deforming member (212) and is in transmission connection with the fifth transmission structure (232) and the third deforming member (213) respectively.

10. The transformable toy (1000) according to claim 9, characterized in that, The fourth transmission structure (231) and the fifth transmission structure (232) have a gear and rack transmission mechanism to convert the rotary motion of the fourth transmission structure (231) into the telescopic motion of the fifth transmission structure (232) relative to the second deforming member (212); Or, the sixth transmission structure (233), the second deforming member (212) and the third deforming member (213) are connected into a planar four-bar linkage mechanism and are driven by the fifth transmission structure (232).

11. The transformable toy (1000) according to claim 8, characterized in that, The first deforming member (211) and the base (10) have a first rotation axis, the second deforming member (212) and the first deforming member (211) have a second rotation axis, the third deforming member (213) and the second deforming member (212) have a third rotation axis, 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 deforming member (211) is folded on the base (10), and the second deforming member (212) is folded with the first deforming member (211); And / or, in the folded state, the third deforming member (213) is folded with the second deforming member (212); And / or, in the unfolded state, the first deforming member (211) extends in the up-down direction and the lower end is connected with the base (10), and the second deforming member (212) extends in the up-down direction and the lower end is connected with the first deforming member (211); And / or, in the unfolded state, the third deforming member (213) extends in the up-down direction and the upper end is connected with the upper end of the second deforming member (212), and the lower end is spaced apart from the second deforming member (212) in the left-right direction.

Citation Information

Patent Citations

  • Transformer toy car

    CN208031901U