Assembling structure and toy
Patent Information
- Application Number
- CN202521953847.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-10
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-09-10
AI Technical Summary
[0003]鉴于此,本申请提供一种拼装结构及玩具,可以解决影响用户体验的问题
[0014] With the assembly structure and toy provided in this application, the assembly parts and the main body can be disassembled or assembled and fixed together. In this way, when the assembly connector or assembly part is broken or damaged, the entire main body or toy will not be scrapped. Only the assembly part needs to be replaced, instead of the entire main body, thus improving the user experience.
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Figure CN224655969U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of toys, and more particularly to an assembly structure and a toy. Background Technology
[0002] Currently, common modular doll toys typically include a body part, limb parts, and connectors. The body part has slots on its side, and one end of the connector is inserted and fixed into the slot, while the other end is spherical. The limb parts have snap-fit grooves; by inserting the spherical end of the connector into the snap-fit groove with an interference fit, the limbs are movably connected to the body part. However, when the doll toy is assembled or transformed, the connectors are prone to damage if subjected to unexpected external impacts or overloads. In such cases, the entire body part needs to be replaced, thus affecting the user experience. Utility Model Content
[0003] In view of this, this application provides an assembly structure and toy that can solve the problem of affecting user experience.
[0004] This application relates to an assembly structure for toys, wherein the toy includes a main body component and supporting components, and the assembly structure is detachably installed on the main body component and the supporting components. The supporting components include a first accessory. The assembly structure includes: An assembly component is disposed between the main body component and the first accessory, wherein the first accessory is provided with an assembly buckle groove, and the main body component is provided with an assembly slot on the side facing the assembly component; An assembly connector is provided on the assembly component, and the assembly connector is used for detachable connection within the assembly buckle groove; An assembly plug-in post is provided on the assembly component, and the assembly plug-in post is inserted and fixed in the assembly slot.
[0005] Furthermore, there are multiple assembly plug-in posts, and the multiple assembly plug-in posts are distributed at intervals.
[0006] Furthermore, a connecting post is provided on the side of the assembly component away from the main body component, and two symmetrical assembly connectors are provided, located on both sides of the assembly component respectively; three assembly plug-in posts are provided, and arranged side by side on the side of the assembly component away from the connecting post.
[0007] Furthermore, the assembly component has a slot on the side facing the main component, and the assembly insertion post extends from the bottom of the slot toward the main component.
[0008] Furthermore, the end of the assembly component is located between the connection point of the assembly connector and the opening of the slot to form a retaining edge.
[0009] Furthermore, the supporting components also include a second accessory, and the assembly structure also includes a connecting component. The assembly component and the connecting component are respectively located on opposite sides of the main body component in a first direction, and a support block is provided on the side of the connecting component away from the main body component. The second accessory is provided with an adapter buckle groove, and the main body component is provided with an adapter slot on the side facing the adapter component; An adapter connector is disposed on the side of the support block in the second direction, and the adapter connector is used for detachable connection within the adapter snap-fit groove; An adapter plug is disposed on the side of the adapter component in the first direction and extends along the first direction. The adapter plug is used to be inserted and fixed in the adapter slot along the second direction.
[0010] Furthermore, two adapter connectors are symmetrically arranged, respectively located on opposite sides of the support block; multiple adapter plugs are arranged, respectively located on the side of the adapter component facing the main body component.
[0011] This application also discloses a toy, including a main body, supporting components, and an assembly structure; The supporting components include a first accessory and a second accessory; The assembly structure includes assembly components and adapter components. The assembly components are detachably connected between the first accessory and the main body component, and the adapter components are detachably connected between the second accessory and the main body component.
[0012] Furthermore, the first accessory is movably connected to the main component via the assembly connector, and the first accessory is provided with a first magnetic component.
[0013] Furthermore, the first component is provided with a first mounting groove at the end away from the assembly connector, and the first component is equipped with a first baffle. The first magnetic component is housed in the first mounting slot, and the first baffle is fixed to the first accessory and covers the first mounting slot.
[0014] With the assembly structure and toy provided in this application, the assembly parts and the main body can be disassembled or assembled and fixed together. In this way, when the assembly connector or assembly part is broken or damaged, the entire main body or toy will not be scrapped. Only the assembly part needs to be replaced, instead of the entire main body, thus improving the user experience. Attached Figure Description
[0015] Figure 1This is a schematic diagram of an assembly structure in one embodiment of this application.
[0016] Figure 2 This is a schematic diagram of the assembly structure and main components in one embodiment of this application.
[0017] Figure 3 This is a schematic diagram of the structure of a toy in an embodiment of this application.
[0018] Figure 4 This is a schematic diagram of the state of a toy when a user is playing with it, as described in an embodiment of this application.
[0019] Figure 5 This is an exploded view of a toy according to an embodiment of this application.
[0020] Figure 6 This is an exploded view of an assembly structure from a first perspective, as shown in an embodiment of this application.
[0021] Figure 7 This is an exploded view of an assembly structure from a second perspective in an embodiment of this application.
[0022] Figure 8 This is a cross-sectional schematic diagram of an assembly structure in an embodiment of this application.
[0023] Explanation of reference numerals in the attached figures: 100. Assembled structure; 10. Main body component; 11. Assembly slot; 12. First receiving slot; 13. First guide surface; 14. Limiting slot; 15. Adapter slot; 16. Second receiving slot; 17. Second guide surface; 18. Connecting cylinder; 20. First component; 21. Assembly buckle slot; 22. First magnetic component; 23. First mounting slot; 24. First baffle; 30. Second accessory; 31. Adapter clip slot; 32. Second magnetic component; 33. Second mounting slot; 34. Second baffle; 40. Third accessory; 41. Connecting slot; 50. Assembled components; 51. Assembled connectors; 52. Assembled plug-in pins; 53. Open slots; 54. Edge retaining section; 55. Connecting pins; 60. Adapter component; 61. Adapter connector; 62. Adapter plug; 63. Support block; 200. Toys. Detailed Implementation
[0024] In the description of the embodiments of this application, technical terms such as "first" and "second" are used only to distinguish different objects and should not be construed as indicating or implying relative importance or implicitly specifying the number, specific order, or primary and secondary relationship of the indicated technical features. In the description of the embodiments of this application, "multiple" means two or more, unless otherwise explicitly defined.
[0025] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the specification of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. The terms “comprising” and “equivalent to”, and any variations thereof, in the specification and claims of this application are intended to cover non-exclusive inclusion. The terms “side” and “one side” in the specification and claims of this application include surfaces of an object in multiple directions such as top, bottom, left, right, front, and back.
[0026] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0027] In related technologies, common modular doll toys typically include a body part, limb parts, and connectors. The body part has slots on its side, one end of the connector is inserted and fixed into the slot, and the other end of the connector is spherical. The limb parts are provided with snap-fit grooves, and by inserting the spherical end of the connector into the snap-fit groove with an interference fit, the limb parts can be movably connected to the body part.
[0028] However, in the aforementioned technologies, the direction in which the connector is inserted into the slot is usually similar to the direction in which it is inserted into the snap-fit slot. This causes the limb parts to generate a component force in the same direction as the connector being inserted into the slot when they are disassembled or moved, which can easily affect the connection between the connector and the slot. Therefore, in the structural design process, the connection strength between the connector and the slot is usually strengthened, but this can result in the problem of the connection being too tight and difficult to disassemble. Conversely, if the connection strength between the connector and the slot is reduced, the connection may not be tight enough and may be easily affected and loosened or detached. Thus, there is a technical contradiction in the design process, which leads to increased design costs.
[0029] On the other hand, most common doll toys on the market today are based on traditional plastic interlocking or fixed connection structures, with the head, torso, and limbs usually connected by snaps or hinges. While these structures offer a certain degree of mobility and interlocking, their interaction methods are relatively limited, and the limbs cannot form new building or adhesive functions, making it difficult to meet children's needs for creative, diverse, and expandable play.
[0030] Therefore, this application provides an assembly structure and a toy.
[0031] like Figures 1 to 4 As shown, this application embodiment first provides an assembly structure 100. The assembly structure 100 is applied to a toy 200, which includes a main body component 10 and supporting components. The assembly structure 100 is detachably installed between the main body component 10 and the supporting components. The supporting components include various accessories that cooperate and connect with the main body component 10, specifically: a first accessory 20, a second accessory 30, and a third accessory 40.
[0032] For example, toy 200 can be a doll toy, main body part 10 can be the chest of the doll toy, first accessory 20 is set in pairs, the first accessory 20 can be the left and right hands of the doll toy, second accessory 30 is set in pairs, the second accessory 30 can be the left and right legs of the doll toy, and third accessory 40 can be the head of the doll toy.
[0033] In this embodiment, the assembly structure 100 includes an assembly component 50 and a connecting component 60, wherein the assembly component 50 and the connecting component 60 are located on opposite sides of the main body component 10 in a first direction. The assembly component 50 is disposed between the main body component 10 and the first accessory 20, and between the main body component 10 and the third accessory 40. The connecting component 60 is disposed between the main body component 10 and the second accessory 30.
[0034] The side of the main component 10 closest to the assembly component 50 is defined as the top surface, and the side of the main component 10 closest to the adapter component 60 is defined as the bottom surface. The first direction is the Z-axis direction shown in the figure.
[0035] In this embodiment, the assembly structure 100 further includes an assembly connector 51, an assembly plug-in post 52, an adapter connector 61, and an adapter plug-in post 62. The assembly connector 51 and the assembly plug-in post 52 are both located on the assembly component 50, and the adapter connector 61 and the adapter plug-in post 62 are both located on the adapter component 60.
[0036] Please refer to the following: Figure 5 and Figure 6Specifically, the first accessory 20 has an assembly latch groove 21 on the side facing the assembly component 50. The main body component 10 has an assembly slot 11 on the side facing the assembly component 50, and the assembly slot 11 extends along the first direction.
[0037] The assembly connector 51 is disposed on the side of the assembly component 50 in the second direction. The first direction and the second direction form an angle, and the second direction is the X-axis direction shown in the figure.
[0038] The assembly connector 51 is used for detachable connection within the assembly latch slot 21. For example, the assembly component 50 and the first accessory 20 are installed by interfering with each other in the second direction within the assembly latch slot 21. The assembly component 50 and the first accessory 20 are disassembled by pulling the assembly connector 51 out of the assembly latch slot 21 in the reverse direction. When the assembly component 50 and the first accessory 20 are fixedly installed, the first accessory 20 can rotate or swing using the assembly connector 51 as the connection point.
[0039] One end of the assembly latch groove 21 extends to the outer surface of the first component 20 and is exposed. That is, the first component 20 extends along the side wall towards the main component 10 and forms an opening when viewed from the outside. It can be understood that when replacing the assembly connector 51, it can be pulled out from two positions. When the assembly connector 51 is subjected to unexpected external force impact or overload and breaks in the assembly latch groove 21, it can be pried out of the assembly latch groove 21 by using tools such as pry bars or tweezers to act on the broken part.
[0040] The assembly plug-in post 52 is disposed on the assembly component 50 and located on the side of the assembly component 50 in the first direction. The assembly plug-in post 52 extends along the first direction and is used to be inserted and fixed in the assembly slot 11 along the first direction.
[0041] The assembly component 50 is inserted and fixed in the assembly slot 11 along the first direction via the assembly plug 52, so that the assembly component 50 is relatively fixed to the main component 10. The assembly component 50 is connected to the assembly buckle slot 21 along the second direction via the assembly connector 51, so that the assembly component 50 is relatively fixed to the first accessory 20.
[0042] It is understandable that the assembly component 50 and the main body component 10 can be disassembled or assembled and fixed together. In this way, when the assembly connector 51 or the assembly component 50 breaks or is damaged, the entire main body component 10 or the toy 200 will not be scrapped. Only the assembly component 50 needs to be replaced, and the entire main body component 10 does not need to be replaced, thus improving the user experience.
[0043] It is worth noting that when assembling the toy 200, the assembly plug 52 can be inserted into the assembly slot 11 of the main body component 10 along the first direction, and the assembly connector 51 can be inserted into the assembly buckle slot 21 of the first accessory 20 along the second direction. When disassembling the toy 200, the assembly plug 52 can be pulled out from the assembly slot 11 of the main body component 10 along the first direction, and the assembly connector 51 can be pulled out from the assembly buckle slot 21 of the first accessory 20 along the second direction.
[0044] Thus, the disassembly and assembly directions of the two components are different, reducing the mutual influence of the forces generated during the disassembly and assembly process. Specifically, when the first component 20 is disassembled or moved, the force generated is mainly in the second direction, avoiding any impact on the insertion relationship between the assembly plug-in post 52 and the assembly slot 11. Similarly, when the assembly component 50 is disassembled or moved, the force generated is mainly in the first direction, avoiding any impact on the insertion relationship between the assembly connector 51 and the assembly latch slot 21. In summary, the assembly structure 100 provided by this application is less prone to loosening and detachment due to insufficient insertion, improving the user experience.
[0045] Understandably, the assembly structure 100 provided in this application avoids the technical contradiction in the related art where the connection between the connector and the slot is easily affected when the limb parts are disassembled or moved. Therefore, in the structural design process, the connection strength between the assembly part 50 and the main part 10 does not need to be additionally strengthened in the second direction, thereby reducing design costs and improving production efficiency.
[0046] In the example of this application, two first accessories 20 are symmetrically arranged, and the two first accessories 20 are symmetrically arranged on opposite sides of the main body component 10 in the second direction. Correspondingly, the assembly connectors 51 are also arranged in pairs and symmetrically arranged on opposite sides of the assembly component 50 in the second direction, so that the two pairs of first accessories 20 can be connected to the assembly component 50 through the corresponding assembly connectors 51.
[0047] In some embodiments, the assembly connector 51 and the assembly plug-in post 52 are both integrally injection molded with the assembly component 50. This simplifies the manufacturing process of the assembly component 50 and reduces production costs.
[0048] For example, the assembly connector 51 extends along the second direction as a whole. One end of the assembly connector 51 is integrally fixed to the assembly component 50, and the other end of the assembly connector 51 forms a ball-shaped snap-fit connector. The assembly connector 51 forms an interference fit with the snap-fit groove of the first component 20 through the ball-shaped snap-fit connector, and forms a movable connection with the first component 20, allowing the first component 20 to rotate relative to the assembly connector 51.
[0049] Thus, even though the first accessory 20 is fixed to the assembly component 50 and the main component 10 by the assembly connector 51, the first accessory 20 can still swing back and forth by rotating, allowing the user to play with it.
[0050] Please refer to the following: Figure 7 and Figure 8 In some embodiments, the assembly component 50 is provided with a slot 53 on the side facing the main component 10, and the assembly plug-in post 52 extends from the bottom surface of the slot 53 toward the main component 10 in a first direction.
[0051] For example, a recessed groove 53 is formed on the bottom surface of the assembly component 50, and a slot is formed on the bottom surface of the assembly component 50. The end of the assembly component 50 is located between the connection point of the assembly connector 51 and the slot of the recessed groove 53 to form a retaining edge 54. The retaining edge 54 supports the assembly connector 51.
[0052] For example, in the first direction, the length of the assembly plug 52 is greater than the depth of the slot 53, so that one end of the assembly plug 52 is integrally fixed with the assembly component 50, and the other end of the assembly plug 52 protrudes and is exposed on the bottom surface of the assembly component 50.
[0053] Understandably, the recessed slot 53 reduces the overall weight of the assembled component 50, making it lighter and reducing material costs. On the other hand, the recessed slot 53 can be used to position the assembled component 50 in conjunction with other components, thereby enhancing the stability of the assembled component 50 during installation.
[0054] In some embodiments, a connecting post 55 is provided on the top surface of the assembly component 50. The connecting post 55 is located in the middle of the assembly component 50 and protrudes along a first direction on the surface of the assembly component 50. The connecting post 55 is used to cooperate with the third accessory 40 for installation, so that the third accessory 40 is fixed to the assembly component 50.
[0055] For example, the bottom surface of the third accessory 40 is provided with a connecting groove 41, and the connecting post 55 is inserted and fixed in the connecting groove 41 along the first direction, and the connecting post 55 and the connecting groove 41 can rotate. In this way, even when the third accessory 40 is fixed to the assembly part 3 pieces 50 and the main body part 10 by the connecting post 55, the third accessory 40 can still rotate so that the user can play with it.
[0056] In some embodiments, there are multiple assembly plug-in posts 52, and the multiple assembly plug-in posts 52 are distributed at intervals along the second direction. For example, three assembly plug-in posts 52 are provided, arranged side-by-side on the side of the assembly component 50 away from the connecting post 55, and distributed in the middle and ends of the assembly component 50. A gap is left between the assembly plug-in post 52 located at the end of the assembly component 50 and the retaining edge portion 54.
[0057] It is understood that by setting multiple assembly plug-in posts 52 in the second direction, multiple fixing points can be formed between the assembly component 50 and the main body component 10 in the second direction, thereby improving the installation stability of the assembly component 50.
[0058] In some embodiments, the main body component 10 has a first receiving groove 12 on the side facing the assembly component 50, and the assembly component 50 is received within the first receiving groove 12. Exemplarily, in the third direction, the width of the main body component 10 is greater than the width of the assembly component 50, and the width of the first receiving groove 12 is the same as the width of the assembly component 50. The first receiving groove 12 extends through opposite sides of the main body component 10 in the second direction and extends through the top surface of the main body component 10. The third direction is the Y-axis direction shown in the figure.
[0059] When assembling the toy 200, the assembly component 50 can be inserted into the first receiving groove 12 from the top of the main body component 10. The groove wall of the first receiving groove 12 fits against the side of the assembly component 50 to limit the assembly component 50 and improve the connection stability between the assembly component 50 and the main body component 10. At the same time, the assembly connectors 51 at both ends of the assembly component 50 can be exposed on opposite sides of the main body component 10 for the first accessory 20 to be connected and fixed; the connecting post 55 at the top of the assembly component 50 can be exposed at the top of the main body component 10 for the third accessory 40 to be connected and fixed.
[0060] In some embodiments, a first guide surface 13 is provided at the opening of the assembly slot 11, and the first guide surface 13 gradually expands outward in a direction away from the bottom of the assembly slot 11. For example, the assembly slot 11 is formed on the bottom surface of the first receiving groove 12, and the opening of the assembly slot 11 is formed on the bottom surface of the first receiving groove 12. The number and position of the assembly slots 11 correspond to the number and position of the assembly plug-in pins 52, each one. When the assembly component 50 is received in the first receiving groove 12, the plurality of assembly plug-in pins 52 are respectively inserted and fixed into the corresponding assembly slots 11.
[0061] During the process of inserting the assembly plug 52 into the assembly slot 11, the first guide surface 13 can guide the assembly plug 52 so that the multiple assembly plugs 52 are aligned with the corresponding assembly slots 11 in the first direction, thereby realizing the rapid assembly of the assembly component 50 and the main component 10 and improving production efficiency.
[0062] In some embodiments, the main body component 10 is provided with a limiting groove 14 on the side facing the assembly component 50, the retaining edge portion 54 is received in the limiting groove 14, and the groove wall of the limiting groove 14 abuts against the retaining edge portion 54 in the second direction.
[0063] For example, the limiting slot 14 is formed between the bottom surface of the first receiving slot 12 and the side surface of the main body component 10 in the second direction, and the shape of the limiting slot 14 matches the shape of the retaining edge portion 54. When the retaining edge portion 54 is received in the limiting slot 14, the main body component 10 is at least partially embedded in the space between the adapter plug post 62 and the retaining edge portion 54, and abuts against the retaining edge portion 54 in the second direction.
[0064] When the assembly component 50 is housed in the first receiving groove 12, the retaining edge 54 is housed in the corresponding limiting groove 14. The limiting groove 14 supports and limits the retaining edge 54 along the second direction, while the bottom of the first receiving groove 12 supports and limits the retaining edge 54 along the third direction. In this way, the main body component 10 can support the assembly connector 51 from multiple directions, strengthening the mechanical strength of the assembly connector 51 and improving the durability of the assembly connector 51 and the assembly component 50.
[0065] The following section describes the connection relationship between the adapter 60, the second accessory 30, and the main body 10.
[0066] In some embodiments, the second accessory 30 is provided with an adapter snap groove 31. The main body component 10 is provided with an adapter slot 15 on the side facing the adapter component 60, and the adapter slot 15 extends along a first direction.
[0067] The adapter connector 61 is disposed on the side of the adapter component 60 in the second direction. Specifically, a support block 63 is provided on the side of the adapter component 60 opposite to the main body component 10. The support block 63 protrudes and protrudes from the bottom surface of the adapter component 60, and the adapter connector 61 is located on the side of the support block 63 in the second direction. The adapter connector 61 is used for detachable connection within the adapter snap-fit groove 31.
[0068] For example, the adapter component 60 and the second accessory 30 are installed by interfering with each other in the second direction and mounting the adapter connector 61 into the adapter snap-fit groove 31. The adapter component 60 and the second accessory 30 are disassembled by pulling the adapter connector 61 out of the adapter snap-fit groove 31 in the reverse direction. When the adapter component 60 and the second accessory 30 are fixedly installed, the second accessory 30 can rotate or swing using the adapter connector 61 as the connection point.
[0069] The adapter plug 62 is disposed on the side of the adapter component 60 in the first direction, and the adapter plug 62 extends along the first direction. The adapter plug 62 is used to be inserted and fixed in the adapter slot 15 along the first direction.
[0070] It is understood that the adapter component 60 is inserted and fixed in the adapter slot 15 along the first direction via the adapter plug 62, so that the adapter component 60 is relatively fixed to the main body component 10. The adapter component 60 is connected to the adapter buckle groove 31 along the second direction via the adapter connector 61, so that the adapter component 60 is relatively fixed to the second accessory 30.
[0071] When assembling toy 200, the adapter plug 62 can be inserted into the adapter slot 15 of the main body component 10 in the first direction, and the adapter connector 61 can be inserted into the adapter latch slot 31 of the second accessory 30 in the second direction. When disassembling toy 200, the adapter plug 62 can be pulled out from the adapter slot 15 of the main body component 10 in the first direction, and the adapter connector 61 can be pulled out from the adapter latch slot 31 of the second accessory 30 in the second direction.
[0072] In this way, the two parts are installed and disassembled in different directions, which reduces the mutual influence of the forces generated during the installation and disassembly process. This makes it less likely for the parts to loosen and fall off due to loose connections, thus improving the user experience.
[0073] Furthermore, if the adapter connector 61 or the adapter component 60 breaks or is damaged, the entire toy 200 will not be scrapped. Only the adapter component 60 needs to be replaced, and the entire main body component 10 does not need to be replaced.
[0074] In the example of this application, the second accessories 30 are arranged in pairs and symmetrically on opposite sides of the support block 63 in the second direction. Correspondingly, the adapter connectors 61 are also arranged in pairs and symmetrically on opposite sides of the adapter component 60 in the second direction, so that the two pairs of second accessories 30 can be connected to the adapter component 60 through the corresponding adapter connectors 61.
[0075] In some embodiments, both the adapter connector 61 and the adapter plug 62 are integrally injection molded with the adapter component 60. This simplifies the manufacturing process of the adapter component 60 and reduces production costs.
[0076] For example, the adapter connector 61 extends entirely along the second direction. One end of the adapter connector 61, the adapter component 60, and the support block 63 are integrally fixed, and the other end of the adapter connector 61 forms a ball-shaped snap-fit connector. The adapter connector 61 forms an interference fit with the snap-fit groove of the second accessory 30 through the ball-shaped snap-fit connector, and forms a movable connection with the second accessory 30, allowing the second accessory 30 to rotate relative to the adapter connector 61.
[0077] Thus, even when the second accessory 30 is fixed to the adapter 60 and the main body 10 via the adapter connector 61, the second accessory 30 can still swing back and forth by rotating, allowing the user to play with it.
[0078] In some embodiments, a plurality of adapter plugs 62 are provided, and the plurality of adapter plugs 62 are respectively provided on the side of the adapter component 60 facing the main body component 10, and are distributed at intervals along the second direction. For example, the number of adapter plugs 62 is 3, and the 3 adapter plugs 62 are respectively located in the middle and at the end of the adapter component 60.
[0079] It is understood that by providing multiple adapter plugs 62 in the second direction, multiple fixing points can be formed between the adapter component 60 and the main body component 10 in the second direction, thereby improving the installation stability of the adapter component 60.
[0080] In some embodiments, the main body component 10 is provided with a second receiving groove 16 on the side facing the adapter component 60, and the adapter component 60 is received in the second receiving groove 16. The second receiving groove 16 penetrates the bottom surface of the main body component 10 so that the support block 63 protrudes and protrudes from the bottom surface of the main body component 10.
[0081] When assembling the toy 200, the adapter 60 can be inserted into the second receiving groove 16 from the bottom of the main body 10. The groove wall of the second receiving groove 16 fits against the side of the adapter 60 to limit the adapter 60 and improve the connection stability between the adapter 60 and the main body 10. At the same time, the adapter 60 support block 63 can be exposed on the bottom surface of the main body 10 for the second accessory 30 to be connected and fixed.
[0082] In some embodiments, a connecting cylinder 18 is provided in the second receiving groove 16. The connecting cylinder 18 extends from the bottom surface of the second receiving groove 16 along a first direction toward the bottom surface of the main body component 10, and the adapter slot 15 is formed inside the connecting cylinder 18.
[0083] The number and position of the connecting cylinders 18 correspond to the number and position of the adapter plugs 62, each one. When the adapter component 60 is received in the second receiving groove 16, the plurality of adapter plugs 62 are respectively inserted and fixed in the adapter slots 15 of the corresponding connecting cylinders 18.
[0084] In some embodiments, a second guide surface 17 is provided at the opening of the adapter slot 15, and the second guide surface 17 is gradually expanded outward in a direction away from the bottom of the adapter slot 15.
[0085] During the process of inserting the adapter plug 62 into the adapter slot 15, the second guide surface 17 can guide the adapter plug 62 so that the multiple adapter plugs 62 are aligned with the corresponding adapter slots 15 in the first direction, thereby realizing the rapid assembly of the adapter component 60 and the main component 10 and improving production efficiency.
[0086] like Figures 1 to 5As shown, this application embodiment also provides a toy 200, which includes a main body component 10 and supporting components. The supporting components include a first accessory 20, a second accessory 30, a third accessory 40, and an assembly structure 100 as described in any of the above embodiments.
[0087] For example, toy 200 can be a doll toy, main body part 10 can be the chest of the doll toy, first accessory 20 has 2 parts, the two first accessories 20 are the left and right hands of the doll toy. Second accessory 30 has 2 parts, the two second accessories 30 are the left and right legs of the doll toy. Third accessory 40 is the head of the doll toy.
[0088] The assembly component 50 is detachably connected between the first accessory 20 and the main component 10, and the adapter component 60 is detachably connected between the second accessory 30 and the main component 10. The first accessory 20 and the main component 10 are movably connected via an assembly connector 51, and the first accessory 20 is provided with a first magnetic element 22. The second accessory 30 and the main component 10 are movably connected via an adapter connector 61, and the second accessory 30 is provided with a second magnetic element 32.
[0089] It is understandable that both the first accessory 20 and the second accessory 30 can be rotated, swung, or disassembled and replaced. Furthermore, the first accessory 20 and the second accessory 30 can be attached to metal or magnetic objects through the first magnetic component 22 and the second magnetic component 32, respectively, making the playability more diverse.
[0090] In some embodiments, the first accessory 20 has a first mounting groove 23 at the end away from the assembly connector 51, and the first accessory 20 is equipped with a first baffle 24. The first magnetic element 22 is housed in the first mounting groove 23, and the first baffle 24 is fixed to the first accessory 20 and covers the first mounting groove 23.
[0091] For example, the first magnetic component 22 can be a neodymium iron boron permanent magnet, which is embedded in the first mounting groove 23 and encapsulated by ultrasonic welding to prevent the first magnetic component 22 from falling off. One end of the first accessory 20 has an assembly snap-fit groove 21, and the other end of the first accessory 20 has a first mounting groove 23. The first baffle 24 is snapped and fixed to the first accessory 20 and covers the first magnetic component 22 in the first mounting groove 23.
[0092] In some embodiments, the second accessory 30 has a second mounting groove 33 at the end away from the adapter connector 61, and the second accessory 30 is equipped with a second baffle 34. The second magnetic element 32 is housed in the second mounting groove 33, and the second baffle 34 is fixed to the second accessory 30 and covers the second mounting groove 33.
[0093] For example, the second magnetic component 32 can be a neodymium iron boron permanent magnet, which is embedded in the second mounting groove 33 and sealed by ultrasonic welding or thermal fusion to prevent the second magnetic component 32 from falling off. One end of the second accessory 30 has an adapter snap-fit groove 31, and the other end of the second accessory 30 has a second mounting groove 33. The second baffle 34 is snapped and fixed to the second accessory 30 and covers the second magnetic component 32 in the second mounting groove 33.
[0094] In some embodiments, the overall structure of the toy 200 is made of plastic material, specifically ABS (acrylonitrile-butadiene-styrene copolymer). ABS material has good impact resistance, improves safety, and is especially suitable for young children to play with.
[0095] In some embodiments, all modules in toy 200 (such as first accessory 20, second accessory 30, third accessory 40, etc.) follow a unified interface specification, supporting interchange of the same type of parts, making it convenient for users to mix and match different accessories or for future series expansion.
[0096] It is understood that the head (i.e., the third accessory 40), torso (i.e., the main body part 10), arms (i.e., the first accessory 20), and legs (i.e., the second accessory 30) of the toy 200 provided in this application all adopt plug-in or screw-lock connection methods to realize the detachability and replacement of all parts, support users to freely combine, assemble and creatively expand, and improve versatility and play level.
[0097] Based on this, magnets are embedded in the arms (i.e., the first accessory 20) and legs (i.e., the second accessory 30) of the toy 200 to form a four-point magnetic attraction structure, realizing multi-directional and multi-angle adsorption interaction, and improving the adsorption gameplay and connection methods between characters or other building block modules.
[0098] In practical applications, users can magnetically connect Toy 200 with building block-like terrain components, vehicles, houses, or other character figures to create rich scene-based models, such as simulating climbing (hands adhering to walls), hanging (feet adhering to ceilings), and team play (people attracting each other). Furthermore, when not in use, Toy 200 can be stably attached to storage shelves or display stands via its magnetic attachments for easy storage and display.
[0099] Furthermore, the toy 200 provided in this application can adopt a standard size design, and is especially compatible with building block-type magnetic modules (such as 2×2×2cm cubic block system), ensuring interchangeability and compatibility between different characters or parts, and facilitating mass production and systematic combination of themed scenes.
[0100] Thus, this application provides a toy 200 with magnetic adsorption function, modular structure, easy assembly and disassembly, and enhanced interactive play, solving the problems of existing interlocking figurine toys such as single function, poor expandability, and insufficient interactivity. The toy 200 provided by this application can not only be used alone, but also be combined with other magnetic building block modules to achieve magnetic adsorption and interaction between characters and buildings, props, and scenes, meeting the needs of dynamic and creative assembly, thereby enhancing the fun and immersion of interlocking play, and satisfying children's needs for character interaction, action simulation, and creative construction in open play scenarios.
[0101] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit it. Although this application has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this application without departing from the spirit and scope of the technical solutions of this application.
Claims
1. An assembly structure used in toys, characterized in that, The toy (200) includes a main body component (10) and supporting components. The assembly structure (100) is detachably installed on the main body component (10) and the supporting components. The supporting components include a first accessory (20). The assembly structure (100) includes: The assembly component (50) is disposed between the main body component (10) and the first accessory (20), wherein the first accessory (20) is provided with an assembly buckle groove (21), and the main body component (10) is provided with an assembly slot (11) on the side facing the assembly component (50); An assembly connector (51) is provided on the assembly component (50), and the assembly connector (51) is used to be detachably connected to the assembly buckle groove (21); The assembly plug-in post (52) is disposed on the assembly component (50) and is inserted and fixed in the assembly slot (11).
2. The assembly structure according to claim 1, characterized in that, There are multiple assembly plug-in posts (52), and the multiple assembly plug-in posts (52) are distributed at intervals.
3. The assembly structure according to claim 2, characterized in that, The assembly component (50) has a connecting post (55) on the side away from the main component (10), and two assembly connectors (51) are symmetrically arranged and located on both sides of the assembly component (50); three assembly plug-in posts (52) are arranged side by side on the side of the assembly component (50) away from the connecting post (55).
4. The assembly structure according to claim 2, characterized in that, The assembly component (50) has a slot (53) on the side facing the main component (10), and the assembly plug-in post (52) extends from the bottom surface of the slot (53) toward the main component (10).
5. The assembly structure according to claim 4, characterized in that, The end of the assembly component (50) is located between the connection point of the assembly connector (51) and the opening of the slot (53) to form a retaining edge (54).
6. The assembly structure according to any one of claims 1 to 5, characterized in that, The supporting components also include a second accessory (30), and the assembly structure (100) also includes a connecting component (60). The assembly component (50) and the connecting component (60) are respectively located on opposite sides of the main body component (10) in the first direction. A support block (63) is provided on the side of the connecting component (60) away from the main body component (10). The second accessory (30) is provided with an adapter buckle groove (31), and the main body component (10) is provided with an adapter slot (15) on the side facing the adapter component (60); An adapter connector (61) is disposed on the side of the support block (63) in the second direction, and the adapter connector (61) is used to be detachably connected to the adapter buckle groove (31); The adapter plug (62) is disposed on the side of the adapter component (60) in the first direction and extends along the first direction. The adapter plug (62) is used to be inserted and fixed in the adapter slot (15) along the second direction.
7. The assembly structure according to claim 6, characterized in that, Two adapter connectors (61) are symmetrically arranged and are respectively located on opposite sides of the support block (63); multiple adapter plugs (62) are arranged and are respectively located on the side of the adapter component (60) facing the main component (10).
8. A toy, characterized in that, It includes the main body component (10), supporting components, and the assembly structure (100) as described in any one of claims 1 to 7; The supporting components include a first accessory (20) and a second accessory (30); The assembly structure (100) includes an assembly component (50) and a connecting component (60). The assembly component (50) is detachably connected between the first accessory (20) and the main body component (10), and the connecting component (60) is detachably connected between the second accessory (30) and the main body component (10).
9. The toy according to claim 8, characterized in that, The first accessory (20) is movably connected to the main component (10) through the assembly connector (51), and the first accessory (20) is provided with a first magnetic component (22).
10. The toy according to claim 9, characterized in that, The first component (20) is provided with a first mounting groove (23) at the end away from the assembly connector (51), and the first component (20) is provided with a first baffle (24); The first magnetic component (22) is housed in the first mounting groove (23), and the first baffle (24) is fixed to the first accessory (20) and covers the first mounting groove (23).