Detachable component applied to toys and toy thereof

The detachable component system for doll toys addresses connector damage issues by enabling modular and stable connections, allowing for individual component replacement and enhancing user experience.

US20260021419A1Pending Publication Date: 2026-01-22ETERNITY COMMERCE LTD
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Patent Information

Application Number
US19/344579
Authority / Receiving Office
US · United States
Patent Type
Applications(United States)
Current Assignee / Owner
Priority Date
2025-09-10
Filing Date
2025-09-30
Publication Date
2026-01-22

AI Technical Summary

Technical Problem

Existing doll toys face issues with connector damage due to external impact or overload, leading to the need for complete replacement of the main body, which affects toy lifespan and user experience.

Method used

A detachable component system with assembling and adapter components, featuring inserting posts and sockets, transition connectors, and magnets, allowing for modular and stable connections that can be easily replaced without scrapping the entire main body.

Benefits of technology

Extends toy lifespan, reduces purchasing costs, and enhances user experience by allowing individual component replacement and providing playful, creative interactions.

✦ Generated by Eureka AI based on patent content.

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  • Figure US20260021419A1-D00000_ABST
    Figure US20260021419A1-D00000_ABST
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Abstract

A detachable component applied to the toys, including: an assembling component, assembling connectors and first inserting posts. The assembling component is disposed between the main body and first accessories, each of the first accessories are provided with an inserting buckle slot, the main body is provided with inserting sockets. The assembling connectors are disposed on the assembling component, each of the assembling connectors is detachably inserted into the inserting buckle slot. The first inserting posts are disposed on the assembling component; the first inserting posts are inserted into the inserting sockets. When the assembling connectors or assembling components break or are damaged, it will not cause the entire main component or toy to be scrapped. Only the detachable component needs to be replaced, and there is no need to replace the entire main component, extending the lifespan of toys, reducing purchasing costs for users, and improving user experience.
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Description

CROSS REFERENCE TO RELATED APPLICATIONS

[0001] This application claims foreign priority of Chinese Patent Application No. 202521953847.1, filed on September 10, 2025 in the China National Intellectual Property Administration, the disclosures of all of which are hereby incorporated by reference.TECHNICAL FIELD

[0002] The present disclosure relates to the technical field of toys, in particular to a detachable component applied to toys and a toy thereof.BACKGROUND

[0003] At present, common assembled doll toys usually include body, limb parts, and connectors. Among them, there are slots on the side of the body, one end of the connector is fixed in the slot, and the other end of the connector is spherical. The limb parts are equipped with buckle slots, and by inserting the ball shaped head of the connector into the buckle slots, the limb parts can be flexibly connected to the main body. However, when the doll toy is assembled or deformed, the connecting head is prone to damage due to unexpected external impact or overload, and the main body need to be completely replaced, which affects the toy lifespan and user experience.SUMMARY

[0004] The present disclosure provides a detachable component applied to toys and a toy thereof, to solve problems that affect toy lifespan life and user experience.

[0005] To realize the above objective, the present disclosure provides a detachable component applied to toys, wherein each of the toys includes a main body and an auxiliary component, the detachable component applied to the toys is detachably mounted between the main body and the auxiliary component; wherein the auxiliary component includes first accessories, and the detachable component applied to the toys includes: an assembling component, disposed between the main body and the first accessories, wherein each of the first accessories are provided with an inserting buckle slot, and the main body is provided with inserting sockets on a side facing the assembling component; assembling connectors, disposed on the assembling component, each of the assembling connectors is detachably inserted into the inserting buckle slot; first inserting posts, disposed on the assembling component, the first inserting posts are inserted and fixed into the inserting sockets.

[0006] Furthermore, a plurality of the first inserting posts is provided and spaced apart from one another.

[0007] Furthermore, a connecting post is disposed on a side of the assembling component facing away from the main body; two assembling connectors are symmetrically arranged on two sides of the assembling component; three first inserting posts are arranged side-by-side on one side of the assembling component opposite to the connecting post.

[0008] Furthermore, a recess slot is defined on the assembling component on a side facing the main body, and the first inserting posts are extended from a bottom surface of the recess slot toward the main body.

[0009] Furthermore, an end of the assembling component is between the assembling connectors and an opening of the recess slot, to form an edge stopping portion.

[0010] Furthermore, the auxiliary component further includes second accessories, and the detachable component applied to the toys further includes an adapter component; the assembling component and the adapter component are respectively disposed on opposite sides of the main body in a first direction; a side of the adapter component facing away from the main body is provided with a supporting block; each of the second accessories is provided with a transition buckle slot, and the main body is provided with a transition socket on the side facing the adapter component; transition connectors are disposed on a side of the supporting block in a second direction, each of the transition connectors is detachably connected into the transition buckle slot; second inserting posts, disposed on a side of the adapter component in the first direction and extending along the first direction, configured to be inserted and fixed into the transition socket in the second direction.

[0011] Furthermore, two transition connectors are symmetrically arranged on opposite sides of the supporting block; a plurality of second inserting posts is disposed on the side of the adapter component facing the main body.

[0012] The present disclosure further provides a toy, including a main body, an auxiliary component, and the detachable component applied to the toys mentioned above; the auxiliary component includes first accessories and second accessories; the detachable component applied to the toys includes an assembling component and an adapter component, wherein the assembling component is detachably connected between the first accessories and the main body, and the adapter component is detachably connected between the second accessories and the main body.

[0013] Furthermore, each of the first accessories is movably connected to the main body via assembling connectors, and each of the first accessories are provided with a first magnet.

[0014] Furthermore, an end of each of the first accessories away from the connector is defined with a first mounting slot, and each of the first accessories are equipped with a first baffle; the first magnet is housed within the first mounting slot, and the first baffle is fixed to each of the first accessories, covering and shielding the first mounting slot.

[0015] Furthermore, the second accessories are provided with a second magnet.

[0016] Furthermore, one end of the inserting buckle slot is extended to an outer surface of each of the first accessories, and the inserting buckle slot is exposed out of the first accessories.

[0017] Furthermore, the main body is defined with a first receiving slot on a side facing the assembling component, the assembling component is housed within the first receiving slot, and the inserting sockets are formed on a bottom surface of the first receiving slot.

[0018] Through the detachable component applied to the toys and toy provided in the present disclosure, the assembling component and the main body can be detachably connected or fixedly assembled. In this way, when the assembling connector or the assembling component is broken or damaged, it will not result in the scrapping of the entire main body or the toy. Only the broken or damaged assembling connector or the assembling component needs to be replaced, without the need to replace the entire main body, thereby extending the lifespan of toys, reducing purchasing costs for users, and improving user experience.BRIEF DESCRIPTION OF THE DRAWINGS

[0019] FIG. 1 is a schematic structural diagram of a detachable component applied to toys according to an embodiment of the present disclosure.

[0020] FIG. 2 is a combination schematic structural diagram of the detachable component applied to the toys and a main body according to an embodiment of the present disclosure.

[0021] FIG. 3 is a schematic structural diagram of a toy according to an embodiment of the present disclosure.

[0022] FIG. 4 is another schematic structural diagram of the toy a according to an embodiment of the present disclosure.

[0023] FIG. 5 is an exploded view of a toy according to an embodiment of the present disclosure.

[0024] FIG. 6 is an exploded view of the detachable component applied to the toys from a first perspective according to an embodiment of the present disclosure.

[0025] FIG. 7 is an exploded view of the detachable component applied to the toys from a second perspective according to an embodiment of the present disclosure.

[0026] FIG. 8 is a sectional view of the detachable component applied to the toys according to an embodiment of the present disclosure.Description of the reference numeral:

[0027] 100 detachable component applied to toys; and

[0028] 10 main body, 11 inserting socket, 12 first accommodating slot, 13 first guiding surface, 14 limiting slot, 15 transition socket, 16 second accommodating slot, 17 second guiding surface, 18 connecting cylinder; and

[0029] 20 first accessory, 21 inserting buckle slot, 22 first magnet, 23 first installing slot, 24 first baffle; and

[0030] 30 second accessory, 31 transition buckle slot, 32 second magnet, 33 second installing slot, 34 second baffle; and

[0031] 40 third accessory, 41 connecting slot; and

[0032] 50 assembling component, 51 assembling connector, 52 first inserting posts, 53 clearance slot, 54 edge stopping portion, 55 connecting post; and

[0033] 60 adapter component, 61 transition connector, 62 second inserting post, 63 supporting block; and

[0034] 70 auxiliary component; and

[0035] 200 toy.DETAILED DESCRIPTION OF THE EMBODIMENTS

[0036] In the description of the embodiments of the present disclosure, technical terms such as "first," "second," and so on are used solely to distinguish between different objects and should not be understood as indicating or implying relative importance or suggesting the number, specific sequence, or primary and secondary relationships of the indicated technical features. In the description of the embodiments of the present disclosure, the term "plurality" means more than two, unless explicitly defined otherwise.

[0037] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as understood by those skilled in the technical field to which this disclosure pertains. The terminology used in this disclosure is solely for the purpose of describing specific embodiments and is not intended to limit the disclosure. The terms "comprising" and "having," as well as any modifications thereof, in the specification and claims of this disclosure are intended to cover non-exclusive inclusion.

[0038] The terms "side" and "one side" in the specification and claims of this disclosure refer to surfaces in multiple directions, such as up, down, left, right, front, back, etc.

[0039] When the term "embodiment" is mentioned herein, it means that specific features, structures, or characteristics described in conjunction with the embodiment may be included in at least one embodiment of the present disclosure. The use of this phrase in various locations in the specification does not necessarily refer to the same embodiment and is not intended to indicate mutually exclusive or alternative embodiments. One skilled in the art explicitly or implicitly understands that the embodiments described herein can be combined with other embodiments.

[0040] In the related art, common assembly-type doll toys typically include main body, limb parts, and connectors. The main body has a slot on its side, and one end of the connector is fixedly inserted into the slot, with the other end being spherical. The limb parts are equipped with a transition buckle slot, and the spherical head of the connector is inserted into the transition buckle slot, enabling the limb parts to be movably connected to the main body.

[0041] However, in the above-mentioned technology, the direction in which the connector is inserted into the slot is usually similar to the direction in which the connector is inserted into the transition buckle slot. This leads to the force generated during assembly or movement of the limb parts often being aligned with the direction of insertion of the connector into the slot, which can affect the connection between the connector and the slot. Therefore, in the design process of the connection between the connector and the main body, the connection strength between the connector and the slot is typically reinforced. However, this may cause the connector to be too tight and difficult to disassemble. Conversely, if the connection strength is reduced, the connector may not fit tightly, leading to looseness or detachment. This presents a technical contradiction in the design process, resulting in increased design costs.

[0042] On the other hand, current common doll toys on the market mainly use traditional plastic snap-fit or fixed connection structures, where the head, torso, limbs, etc., are typically connected by snaps or pivots. Although such structures provide some mobility and assembly capabilities, their interaction methods are relatively simple. The limbs cannot form new combinations or adsorption functions, which fails to meet children's needs for creativity, variety, and expandability.

[0043] To address this, the present disclosure provides a detachable component applied to the toys and a toy.

[0044] As shown in FIGS. 1 to 4, the embodiment of the present disclosure first provides a detachable component applied to the toys 100. The detachable component applied to the toys 100 is applied to a toy 200, which includes a main body 10 and an auxiliary component 70. The detachable component applied to the toys 100 can be detachably installed between the main body 10 and the auxiliary component 70. The auxiliary component 70 includes various accessories that can be installed and connected to the main body 10, specifically: first accessories 20, second accessories 30, and third accessory 40.

[0045] For example, the toy 200 may be a doll toy, the main body 10 may be a chest of the doll toy, the first accessories 20 are a pair and may represent the left and right arms of the doll toy, the second accessories 30 are a pair and may represent the left and right legs of the doll toy, and the third accessory 40 may represent a head of the doll toy.

[0046] In this embodiment, the detachable component applied to the toys 100 includes an assembling component 50 and an adapter component 60. The assembling component 50 and the adapter component 60 are located on opposite sides of the main body 10 along a first direction. The assembling component 50 is positioned between the main body 10 and the first accessories 20, and also between the main body 10 and the third accessory 40. The adapter component 60 is positioned between the main body 10 and the second accessories 30.

[0047] A side of the main body 10 closest to the assembling component 50 is defined as a top surface, and a side closest to the adapter component 60 is defined as a bottom surface. The first direction corresponds to the Z-axis direction in the drawing.

[0048] In this embodiment, the detachable component applied to the toys 100 also includes two assembling connectors 51, first inserting posts 52, transition connectors 61, and second inserting posts 62. The two assembling connectors 51 and the first inserting posts 52 are provided on the assembling component 50, while the transition connectors 61 and the second inserting posts 62 are provided on the adapter component 60.

[0049] Referring to FIGS. 5 and 6, specifically, the first accessories 20 are provided with an inserting buckle slot 21 on a side facing the assembling component 50. The main body 10 is provided with inserting sockets 11 on the side facing the assembling component 50, and the inserting sockets 11 extend along the first direction.

[0050] The two assembling connectors 51 are provided on the side of the assembling component 50 along the second direction. The first direction and the second direction form an angle, with the second direction corresponding to the X-axis direction in the drawing.

[0051] The two assembling connectors 51 are used to detachably connect to the inserting buckle slot 21. For example, the assembling component 50 and the first accessories 20 are installed by inserting the two assembling connectors 51 into the inserting buckle slot 21 along the second direction. To disassemble, each of the two assembling connectors 51 is pulled out from the inserting buckle slot 21 in a reverse direction. When the assembling component 50 is fixed to the first accessories 20, the first accessories 20 can rotate, swing, or perform other movements at the connection point with the two assembling connectors 51.

[0052] One end of the inserting buckle slot 21 extends to the outer surface of the first accessories 20 and has an exposed structure, meaning that when replacing each the two assembling connectors 51, it can be pulled out from two positions. Moreover, if one of the two assembling connectors 51 breaks inside the inserting buckle slot 21 due to unintended external impact or overload, tools such as a pry bar or tweezers can be used to pry it out from the inserting buckle slot 21.

[0053] The first inserting posts 52 are provided on the assembling component 50 and are located on the side of the assembling component 50 along the first direction. The first inserting posts 52 extend along the first direction and are used to insert and fix the assembling component 50 into the inserting sockets 11.

[0054] The assembling component 50 is fixed to the main body 10 by inserting the first inserting posts 52 into the inserting sockets 11 along the first direction. The assembling component 50 is also fixed to the first accessories 20 by inserting one of the two assembling connectors 51 into the inserting buckle slot 21 along the second direction.

[0055] It can be understood that the assembling component 50 and the main body 10 can be disassembled or assembled and fixed separately. Thus, when one of the two assembling connectors 51 or the assembling component 50 is broken or damaged, it will not result in the scrapping of the entire main body 10 or toy 200. Only the assembling component 50 needs to be replaced, without the need to replace the entire main body 10, thus extending the lifespan of toys, reducing purchasing costs for users, and improving the user experience.

[0056] It is worth noting that when assembling the toy 200, the first inserting posts 52 can be inserted into the inserting sockets 11 of the main body 10 along the first direction, and each of the two assembling connectors 51 can be inserted into the inserting buckle slots 21 the first accessories 20 along the second direction. During disassembly, the first inserting posts 52 can be pulled out from the inserting sockets 11 of the main body 10 along the first direction, and the two assembling connectors 51 can be pulled out from the inserting buckle slots 21 of the first accessories 20 along the second direction.

[0057] Thus, the directions of disassembly are different, reducing the mutual impact of forces during the assembly and disassembly process. That is, when the first accessories 20 are disassembled or moves, the force generated primarily acts along the second direction, avoiding the impact on the connection between the first inserting posts 52 and the inserting sockets 11. Similarly, when the assembling component 50 is disassembled or moves, the force generated primarily acts along the first direction, avoiding the impact on the connection between the two assembling connectors 51 and the inserting buckle slots 21.

[0058] In summary, the detachable component applied to the toys 100 provided by the present disclosure is less likely to suffer from loosening and detachment, extending the lifespan of toys, reducing purchasing costs for users, and improving user experience.

[0059] It is understood that the detachable component applied to the toys 100 provided by the present disclosure avoids the technical contradiction problem in the related art, where the connection between the two assembling connectors 51 and the inserting buckle slots 21 is easily affected when the limb parts are disassembled or moved. Therefore, during the structural design process of the assembling component 50 and the main body 10, there is no need to strengthen the connection strength in the second direction, reducing design costs and improving production efficiency.

[0060] In one embodiment of this disclosure, the first accessories 20 are symmetrically arranged, with the two first accessories 20 symmetrically positioned on opposite sides of the main body 10 in the second direction. Correspondingly, the assembling connectors 51 are also arranged in pairs and symmetrically positioned on opposite sides of the assembling component 50 in the second direction, so that the two first accessories 20 can be connected to the assembling component 50 via the corresponding assembling connectors 51.

[0061] In some embodiments, two assembling connectors 51 and the first inserting posts 52 are integrally injection-molded with the assembling component 50. This simplifies the manufacturing process of the assembling component 50, reducing production costs.

[0062] For example, each of the two assembling connectors 51 extends along the second direction, with one end fixed integrally with the assembling component 50, and the other end forming a spherical snap joint. The two assembling connectors 51 forms an interference fit with the inserting buckle slot 21 of the first accessories 20 and allows the first accessories 20 to rotate relative to the two assembling connectors 51.

[0063] Thus, when the first accessories 20 are fixed to the assembling component 50 and the main body 10 through the two assembling connectors 51, the first accessories 20 can still swing back and forth through rotation, providing a playful experience for the user.

[0064] Refer to FIGS. 7 and 8. In some embodiments, the assembling component 50 is provided with a clearance slot 53 on the side facing the main body 10. The first inserting posts 52 extend along the first direction from a bottom of the clearance slot 53 toward the main body 10.

[0065] For example, the clearance slot 53 is recessed into the bottom surface of the assembling component 50 and forms a groove in the bottom surface. The end of the assembling component 50 is between the connection of the two assembling connectors 51 and the clearance slot 53, forming an edge stopping portion 54. The edge stopping portion 54 supports the two assembling connectors 51.

[0066] For example, in the first direction, a length of the first inserting posts 52 is greater than a depth of the clearance slot 53, so that one end of the first inserting posts 52 is fixed integrally with the assembling component 50, and the other end protrudes from the bottom surface of the assembling component 50.

[0067] It is understood that the clearance slot 53 can reduce the overall weight of the assembling component 50, making it lighter and more cost-effective. On the other hand, the clearance slot 53 can be used to align and position the assembling component 50 with other parts, enhancing the stability of the assembling component 50 during installation.

[0068] In some embodiments, a top surface of the assembling component 50 is provided with a connecting post 55, which is located at a center of the assembling component 50 and extends along the first direction. The connecting post 55 is used to connect with the third accessory 40, fixing the third accessory 40 to the assembling component 50.

[0069] For example, the bottom surface of the third accessory 40 is provided with a connecting slot 41, and the connecting post 55 is inserted into and fixed in the connecting slot 41 along the first direction. The connecting post 55 and the connecting slot 41 can rotate relative to each other. In this way, when the third accessory 40 is fixed to the assembling component 50 and the main body 10 via the connecting post 55, the third accessory 40 can still rotate, offering a playful experience for the user.

[0070] In some embodiments, a plurality of first inserting posts 52 are provided, and the plurality of first inserting posts 52 are spaced apart along the second direction. For example, three first inserting posts 52 are arranged side by side on a side of the assembling component 50 opposite to the connecting post 55 and distributed at the center and the end of the assembling component 50. Among them, the first inserting posts 52 are located at the end of the assembling component 50 leaves a gap between the edge stopping portion 54.

[0071] It is understood that by providing the plurality of first inserting posts 52 along the second direction, multiple fixed points can be formed between the assembling component 50 and the main body 10 in the second direction, improving the installation stability of the assembling component 50.

[0072] In some embodiments, the side of the main body 10 facing the assembling component 50 is provided with a first accommodating slot 12, and the assembling component 50 is accommodated in the first accommodating slot 12. For example, in the third direction, a width of the main body 10 is greater than a width of the assembling component 50, and a slot width of the first accommodating slot 12 is consistent with the width of the assembling component 50. The first accommodating slot 12 runs through opposite sides of the main body 10 in the second direction and passes through the top surface of the main body 10. The third direction corresponds to the Y-axis direction in the drawing.

[0073] When assembling the toy 200, the assembling component 50 can be inserted into the first accommodating slot 12 from the top of the main body 10. The walls of the first accommodating slot 12 fit against the sides of the assembling component 50, providing a limit for the assembling component 50 and enhancing the connection stability between the assembling component 50 and the main body 10. Meanwhile, the assembling connectors 51 at both ends of the assembling component 50 can protrude from opposite sides of the main body 10 to connect and fix the first accessories 20; the connecting post 55 at the top of the assembling component 50 can protrude from the top of the main body 10 to connect and fix the third accessory 40.

[0074] In some embodiments, an opening of the inserting sockets 11 is provided with a first guiding surface 13, which gradually expands outward in the direction away from the bottom of the inserting sockets 11. For example, the inserting sockets 11 is provided at the bottom surface of the first accommodating slot 12, and the slot opening of the inserting sockets 11 is formed at the bottom surface of the first accommodating slot 12. A number and position of the inserting sockets 11 correspond to a number and position of the first inserting posts 52, with one of the first inserting posts 52 corresponding to one of the inserting sockets 11. When the assembling component 50 is housed in the first accommodating slot 12, the multiple first inserting posts 52 are respectively inserted and fixed in the corresponding inserting sockets 11.

[0075] During the insertion of the first inserting posts 52 into the inserting sockets 11, the first guiding surface 13 guides the first inserting posts 52 to align with the corresponding inserting sockets 11 in the first direction, enabling a rapid assembly of the assembling component 50 and the main body 10 and improving production efficiency.

[0076] In some embodiments, the side of the main body 10 facing the assembling component 50 is provided with a limiting slot 14, in which the edge stopping portion 54 is housed. The walls of the limiting slot 14 along the second direction hold the edge stopping portion 54.

[0077] For example, the limiting slot 14 is located between the bottom surface of the first accommodating slot 12 and the side of the main body 10 in the second direction, and its shape matches the shape of the edge stopping portion 54. When the edge stopping portion 54 is housed in the limiting slot 14, at least part of the main body 10 is embedded in the gap between the second inserting posts 62 and the edge stopping portion 54 and held along the second direction by the edge stopping portion 54.

[0078] When the assembling component 50 is housed in the first accommodating slot 12, the edge stopping portion 54 is housed in the corresponding limiting slot 14, and the limiting slot 14 along the second direction supports and limits the edge stopping portion 54. Meanwhile, the bottom surface of the first accommodating slot 12 supports and limits the edge stopping portion 54 in the third direction. In this way, the main body 10 provides support to the two assembling connectors 51 from multiple directions, enhancing the mechanical strength of the two assembling connectors 51 and improving the durability of the two assembling connectors 51 and the assembling component 50.

[0079] Next, the connection relationship between the adapter component 60, the second accessories 30, and the main body 10 will be described.

[0080] In some embodiments, the second accessories 30 are provided with a transition buckle slot 31. The side of the main body 10 facing the adapter component 60 is provided with a transition socket 15, which extends along the first direction.

[0081] The transition connectors 61 are provided on the side of the adapter component 60 along the second direction. Specifically, a supporting block 63 is provided on the side of the adapter component 60 away from the main body 10, which protrudes from the bottom surface of the adapter component 60, and the transition connectors 61 are positioned on the side of the supporting block 63 in the second direction. The transition connectors 61 are used to detachably connect to the transition buckle slot 31.

[0082] For example, the connection method between the adapter component 60 and the second accessories 30 are as follows: the transition connectors 61 are installed into the adapter snap slot 31 of each of the second accessories 30 through an interference fit along the second direction. The disassembly method for the adapter component 60 and the second accessories 30 are: the transition connectors 61 are pulled out in the reverse direction from the adapter snap slot 31. When the adapter component 60 is fixed to each of the second accessories 30, the second accessories 30 can rotate, swing, or perform other movements around the connection point formed by the transition connectors 61.

[0083] The second inserting posts 62 are positioned on the side of the adapter component 60 along the first direction, and the second inserting posts 62 extend along the first direction. The second inserting posts 62 are used to be inserted and fixed into the transition socket 15 along the first direction.

[0084] It is understood that the adapter component 60 is inserted and fixed into the transition socket 15 along the first direction using the second inserting posts 62, thereby fixing the adapter component 60 relative to the main body 10. The adapter component 60 is connected to the second accessories 30 through the transition connectors 61 along the second direction, thus fixing the adapter component 60 relative to the second accessories 30.

[0085] When assembling the toy 200, the second inserting posts 62 can be inserted into the transition socket 15 of the main body 10 along the first direction, and the transition connectors 61 can be inserted into the adapter snap slot 31 of each of the second accessories 30 along the second direction. When disassembling the toy 200, the second inserting posts 62 can be pulled out from the transition socket 15 of the main body 10 along the first direction, and the transition connectors 61 can be pulled out from the adapter snap slot 31 of each of the second accessories 30 along the second direction.

[0086] Thus, the directions of disassembly for both components differ, reducing the mutual influence of the forces applied during disassembly and minimizing the risk of loose connections. This extends the lifespan of toys, reduces purchasing costs for users, and improves the user experience by preventing the components from becoming easily loose and detached.

[0087] Furthermore, when the one of transition connectors 61 or the adapter component 60 breaks or is damaged, it will not cause the entire toy 200 to be scrapped. Only the adapter component 60 needs to be replaced, and there is no need to replace the entire main body 10.

[0088] In this example, the second accessories 30 are arranged in pairs, symmetrically on opposite sides of the supporting block 63 in the second direction. Correspondingly, the adapter connectors 61 are also arranged in pairs and symmetrically positioned on opposite sides of the adapter component 60 in the second direction, so that the two second accessories 30 can be connected to the adapter component 60 through the corresponding adapter connectors 61.

[0089] In some embodiments, both the transition connectors 61 and the second inserting posts 62 are integrally injection-molded with the adapter component 60. This simplifies the manufacturing process of the adapter component 60 and reduces production costs.

[0090] For example, the transition connectors 61 extends along the second direction, with one end of the transition connectors 61, the adapter component 60, and the supporting block 63 fixed integrally. The other end of the transition connectors 61 forms a spherical snap joint. The transition connectors 61 forms an interference fit with the transition buckle slot of the second accessories 30 and allows the second accessories 30 to rotate relative to the transition connectors 61.

[0091] Thus, when the second accessories 30 are fixed to the adapter component 60 and the main body 10 through the transition connectors 61, the second accessories 30 can still swing back and forth through rotation, providing a playful experience for the user.

[0092] In some embodiments, a plurality of second inserting posts 62 are provided, and the plurality of second inserting posts 62 are spaced apart along the second direction. For example, three second inserting posts 62 are arranged, with one positioned at the center and others at the ends of the adapter component 60.

[0093] It is understood that by providing the plurality of second inserting posts 62 along the second direction, a plurality of fixed points can be formed between the adapter component 60 and the main body 10 in the second direction, improving the installation stability of the adapter component 60.

[0094] In some embodiments, the side of the main body 10 facing the adapter component 60 is provided with a second accommodating slot 16, and the adapter component 60 is accommodated within the second accommodating slot 16. The second accommodating slot 16 passes through the bottom surface of the main body 10, exposing the supporting block 63 outward from the bottom surface.

[0095] During the assembly process of the toy 200, the adapter component 60 can be inserted into the second accommodating slot 16 from the bottom of the main body 10. The walls of the second accommodating slot 16 fit against the sides of the adapter component 60, providing a limit for the adapter component 60 and enhancing the connection stability between the adapter component 60 and the main body 10. Meanwhile, the supporting block 63 of the adapter component 60 can protrude from the bottom surface of the main body 10 to connect and fix the second accessories 30.

[0096] In some embodiments, the second accommodating slot 16 contains a connecting cylinder 18, which extends along the first direction from the bottom surface of the second accommodating slot 16 toward the bottom surface of the main body 10. The transition socket 15 is formed inside the connecting cylinder 18.

[0097] The number and position of the connecting cylinders 18 correspond to the number and position of the second inserting posts 62. When the adapter component 60 is housed in the second accommodating slot 16, the plurality of second inserting posts 62 are inserted and fixed into the corresponding adapter slots 15 inside the connecting cylinders 18.

[0098] In some embodiments, the slot opening of the transition socket 15 is provided with a second guiding surface 17, which gradually expands outward in the direction away from the bottom of the transition socket 15.

[0099] When inserting the second inserting posts 62 into the adapter slots 15, the second guiding surface 17 guides the second inserting posts 62 to align with the corresponding adapter slots 15 along the first direction, enabling the rapid assembly of the adapter component 60 and the main body 10 and improving production efficiency.

[0100] As shown in FIGS. 1 to 5, the embodiment of the present disclosure also provides a toy 200, which includes a main body 10 and an auxiliary component 70, with the auxiliary component 70 including first accessories 20, second accessories 30, and a third accessory 40, and the detachable component applied to the toys 100 from any of the aforementioned embodiments.

[0101] For example, the toy 200 can be a doll toy, the main body 10 is a chest of the doll, the first accessories 20 has two pieces, a left arm and a right arm of the doll. The second accessories 30 also has two pieces, a left leg and a right leg of the doll. The third accessory 40 represents the head of the doll.

[0102] The assembling component 50 can be detachably connected between the first accessories 20 and the main body 10, while the adapter component 60 can be detachably connected between the second accessories 30 and the main body 10. The first accessories 20 are movably connected to the main body 10 via the two assembling connectors 51, and the first accessories 20 are equipped with a first magnet 22. The second accessories 30 are movably connected to the main body 10 via the transition connectors 61, and the second accessories 30 are equipped with a second magnet 32.

[0103] It is understood that both the first accessories 20 and the second accessories 30 can rotate, swing, or be disassembled and replaced. Furthermore, the first accessories 20 and the second accessories 30 can each be magnetically attached to metal or magnetic objects using the first magnet 22 and the second magnet 32, offering a more diverse range of play options.

[0104] In some embodiments, the end of the first accessories 20, far from each of the two assembling connectors 51, is provided with a first installing slot 23, and the first accessories 20 are equipped with a first baffle 24. The first magnet 22 is housed within the first installing slot 23, and the first baffle 24 is fixed to the first accessories 20, covering the first installing slot 23.

[0105] For example, the first magnet 22 can be a neodymium-iron-boron permanent magnet, embedded within the first installing slot 23 and sealed by ultrasonic welding to prevent detachment. One end of the first accessories 20 has inserting buckle slot 21, and the other end has a first installing slot 23. The first baffle 24 snaps and fixes onto the first accessories 20, covering the first magnet 22 in the first installing slot 23.

[0106] In some embodiments, the end of the second accessories 30, far from the transition connectors 61, is provided with a second installing slot 33, and the second accessories 30 are equipped with a second baffle 34. The second magnet 32 is housed within the second installing slot 33, and the second baffle 34 is fixed to the second accessories 30, covering the second installing slot 33.

[0107] For example, the second magnet 32 can also be a neodymium-iron-boron permanent magnet, embedded within the second installing slot 33 and sealed using ultrasonic welding or thermal fusion to prevent detachment. One end of the second accessories 30 has an adapter snap slot 31, and the other end has a second installing slot 33. The second baffle 34 snaps and fixes onto the second accessories 30, covering the second magnet 32 in the second installing slot 33.

[0108] In some embodiments, the toy 200 is made of plastic materials, such as acrylonitrile-butadiene-styrene (ABS) copolymer, which has good impact resistance, improving safety during use and making it suitable for children in lower age groups.

[0109] In some embodiments, all components in the toy 200 (such as the first accessories 20, second accessories 30, third accessory 40, etc.) follow a unified interface standard, supporting interchangeable parts, allowing users to mix and match different accessories or extend the series in the future.

[0110] It is understood that the toy 200 provided in this disclosure has a head (i.e., the third accessory 40), torso (i.e., the main body 10), arms (i.e., the first accessories 20), and legs (i.e., the second accessories 30) that all use detachable, snap-on or rotating connections, enabling all parts to be easily disassembled and replaced, supporting free combination, assembly, and creative expansion, enhancing the toy's versatility and interactive play.

[0111] Based on this, the toy's arms (i.e., the first accessories 20) and legs (i.e., the second accessories 30) are each embedded with magnets, forming a four-point magnetic structure for multi-directional and multi-angle magnetic interaction, improving the playability and connection methods between characters or other building modules.

[0112] In practical disclosures, users can attach the toy 200 to magnetic building terrain components, vehicles, houses, or other character figures, constructing rich scene models (e.g., simulating climbing with the hands attached to walls, hanging with the legs attached to the ceiling, or team formations with mutual attraction between characters). When not in use, the toy 200 can be stably attached to a storage board or display stand via the magnets for easy storage and display.

[0113] Additionally, the toy 200 can be designed in standard sizes, specifically compatible with magnetic building blocks (e.g., 2×2×2 cm cubic system), ensuring interchangeability between different characters or parts, facilitating mass production and systemized thematic scene combinations.

[0114] Thus, the toy 200 provided in this disclosure is magnetic, modular, easy to assemble and disassemble, and enhances interactive play, solving issues with existing toy designs that have limited functionality, poor expandability, and insufficient interaction. The toy 200 provided in this disclosure can be used independently or combined with other magnetic building modules to create magnetic interactions and play between characters and buildings, props, and scenes, meeting the dynamic, creative building needs of children and enhancing the fun and immersive experience of assembly play.

[0115] Lastly, it should be noted that the above embodiments are only provided to illustrate the technical solutions of this disclosure, not to limit them. Although the disclosure has been explained in detail with reference to the preferred embodiments, one of ordinary skill in the art should understand that modifications or equivalent substitutions can be made without departing from the spirit and scope of the technical solutions in this disclosure.

Claims

1. A detachable component applied to toys, wherein each of the toys comprises a main body and an auxiliary component, the detachable component applied to the toys is detachably mounted between the main body and the auxiliary component; wherein the auxiliary component comprises first accessories, and the detachable component applied to the toys comprises: an assembling component, disposed between the main body and the first accessories, wherein each of the first accessories are provided with an inserting buckle slot, and the main body is provided with inserting sockets on a side facing the assembling component;assembling connectors, disposed on the assembling component, each of the assembling connectors is detachably inserted into the inserting buckle slot;first inserting posts, disposed on the assembling component, the first inserting posts are inserted and fixed into the inserting sockets.

2. The detachable component applied to the toys according to claim 1, wherein a plurality of the first inserting posts is provided and spaced apart from one another.

3. The detachable component applied to the toys according to claim 2, wherein a connecting post is disposed on a side of the assembling component facing away from the main body;two assembling connectors are symmetrically arranged on two sides of the assembling component; three first inserting posts are arranged side-by-side on one side of the assembling component opposite to the connecting post.

4. The detachable component applied to the toys according to claim 2, wherein a recess slot is defined on the assembling component on a side facing the main body, and the first inserting posts are extended from a bottom surface of the recess slot toward the main body.

5. The detachable component applied to the toys according to claim 4, wherein an end of the assembling component is between the assembling connectors and an opening of the recess slot, to form an edge stopping portion.

6. The detachable component applied to the toys according to claim 1, wherein the auxiliary component further comprises second accessories, and the detachable component applied to the toys further comprises an adapter component; the assembling component and the adapter component are respectively disposed on opposite sides of the main body in a first direction;a side of the adapter component facing away from the main body is provided with a supporting block;each of the second accessories is provided with a transition buckle slot, and the main body is provided with a transition socket on the side facing the adapter component;transition connectors are disposed on a side of the supporting block in a second direction, each of the transition connectors is detachably connected into the transition buckle slot;second inserting posts, disposed on a side of the adapter component in the first direction and extending along the first direction, configured to be inserted and fixed into the transition socket in the second direction.

7. The detachable component applied to the toys according to claim 6, wherein two transition connectors are symmetrically arranged on opposite sides of the supporting block; a plurality of second inserting posts is disposed on the side of the adapter component facing the main body.

8. A toy, comprising a main body, an auxiliary component, and the detachable component applied to the toys of claim 1;the auxiliary component comprises first accessories and second accessories;the detachable component applied to the toys comprises an assembling component and an adapter component, wherein the assembling component is detachably connected between the first accessories and the main body, and the adapter component is detachably connected between the second accessories and the main body.

9. The toy according to claim 8, wherein each of the first accessories is movably connected to the main body via assembling connectors, and each of the first accessories are provided with a first magnet.

10. The toy according to claim 9, wherein an end of each of the first accessories away from the connector is defined with a first mounting slot, and each of the first accessories are equipped with a first baffle;the first magnet is housed within the first mounting slot, and the first baffle is fixed to each of the first accessories, covering and shielding the first mounting slot.

11. The toy according to claim 8, wherein the second accessories are provided with a second magnet.

12. The toy according to claim 8, wherein one end of the inserting buckle slot is extended to an outer surface of each of the first accessories, and the inserting buckle slot is exposed out of the first accessories.

13. The toy according to claim 8, wherein the main body is defined with a first receiving slot on a side facing the assembling component, the assembling component is housed within the first receiving slot, and the inserting sockets are formed on a bottom surface of the first receiving slot.