Fracturing ring

By combining the magnetic slot structure with centrifugal force, the movable plates automatically unfold during rotation, solving the problem of the existing simple decompression ring structure, achieving visual dynamic effects and enhancing fun, while reducing production costs and failure rate.

CN224220724UActive Publication Date: 2026-05-12DAQING LINGDIANJI IND PRODUCT DESIGN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DAQING LINGDIANJI IND PRODUCT DESIGN CO LTD
Filing Date
2025-05-16
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing decompression rings have a simple structural design and basic deformation methods, making it difficult to provide diverse operating experiences and psychological relief.

Method used

采用磁铁槽孔结构结合离心力,通过磁性吸引与旋转产生的离心力相结合,使活动甲片在旋转时自动展开,实现动态视觉效果。

Benefits of technology

It enhances the product's fun and interactivity, ensures a secure connection between the armor plates and the main body, reduces production costs and failure rates, and provides a novel way to relieve stress.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224220724U_ABST
    Figure CN224220724U_ABST
Patent Text Reader

Abstract

A fission finger ring relates to the technical field of decompression equipment and comprises a main body, a bearing, a fixed nail piece and a movable nail piece, the main body is annular, a center hole is formed in the middle of the main body, the bearing is installed in the main body and fixed in the main body through an upper lock catch, the upper lock catch is fixedly connected with the main body, an inner wall lock catch is arranged in the bearing, and an inner lock catch is fixed with the main body through a lower lock catch. The lower lock catch is fixedly connected with the main body; the outer wall of the body is provided with a pin shaft and a second magnet groove hole, the pin shaft is connected with a fixed armor piece, and the fixed armor piece is connected with a movable armor piece. A first magnet slot and a third magnet slot are formed in the inner wall of the fixed armor piece and the inner wall of the movable armor piece respectively. According to the fission finger ring, through an ingenious balance relation between magnetic attraction provided by a magnet groove hole structure and centrifugal force generated by high-speed rotation, stable closing of the movable nail pieces in the static state and sequential automatic unfolding in the high-speed rotation state are achieved, the structure is novel, interestingness is high, and the entertainment effect of a rotary decompression toy is effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of decompression equipment technology, specifically to a fission ring. Background Technology

[0002] Existing decompression rings utilize finger undulations to rotate the main body or nail plates at high speed. When the centrifugal force exceeds the attraction of the magnets on the main body and nail plates, all the nail plates will open and deform. The existing technology offers limited gameplay and variety. Utility Model Content

[0003] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a fission ring, which is a fingertip rotation device that automatically unfolds by relying on centrifugal force and magnetic action. It solves the problem of high homogenization in the structural design of finger play toys in recent years. The existing technology has common technical defects such as lack of innovation, single deformation structure, simple deformation method and limited range of structural change, which make it difficult to meet the actual needs of users to obtain diversified operation experience and psychological relief during play.

[0004] To address the problems existing in the background technology, this utility model adopts the following technical solution: it includes a main body, a bearing, a fixed armor plate, and a movable armor plate. The main body is in the shape of a ring with a central hole in the middle. The bearing is installed inside the main body and is fixed inside the main body by an upper locking buckle. The upper locking buckle is fixedly connected to the main body. An inner wall locking buckle is provided inside the bearing and is fixed to the main body by a lower locking buckle. The lower locking buckle is fixedly connected to the main body.

[0005] The outer wall of the main body is provided with a pin shaft and several magnetic slot holes II. The pin shaft is filled with a pin hole and a fixed armor plate is fixedly installed on the pin shaft. One end of the fixed armor plate is provided with two connecting posts I. The connecting posts I are filled with a nut hole I. The pin shaft is sandwiched between the two connecting posts I. The nut hole I and the pin hole are located on the same axis. The nut hole I and the pin hole are connected by a fastening bolt. The other end of the fixed armor plate is provided with a connecting post II. The connecting post II is filled with a nut hole II. A movable armor plate is provided on the connecting post II.

[0006] The fixed armor plate and the movable armor plate are respectively provided with magnetic slot hole one and magnetic slot hole three on their inner walls, and magnetic slot hole one and magnetic slot hole three correspond to magnetic slot hole two respectively.

[0007] Magnets are installed in all three magnet slots: magnet slot one, magnet slot two, and magnet slot three. The sum of the number of magnet slots one and magnet slot three is equal to the total number of magnet slots two.

[0008] The movable armor plate has two connecting posts 3 in the middle, and each connecting post 3 has a nut hole 3 through it. The two connecting posts 3 are sandwiched between the two connecting posts 2. The centers of the nut hole 3 and the nut hole 2 are located on the same axis. The nut hole 3 and the nut hole 2 are connected by a fixing bolt.

[0009] The outer wall of the main body is provided with at least 4 pins, and there are two magnetic slots 2 between every two adjacent pins. These two magnetic slots 2 correspond to one magnetic slot 1 and one magnetic slot 3, respectively. A fixed armor plate is fixedly installed on each pin, and a movable armor plate is fixedly installed on a fixed armor plate.

[0010] The movable armor plate has two connecting posts 3 in the middle, each of which has a nut hole 3 through it. A connecting post 2 is sandwiched between the two connecting posts 3. The centers of the nut hole 3 and the nut hole 2 are located on the same axis. The nut hole 3 and the nut hole 2 are connected by a fixing bolt. The movable armor plate has a connecting post 4 at its end, with a nut hole 4 through it.

[0011] The outer wall of the main body is provided with a pin and a shaft hole. Two magnetic slot holes are sequentially distributed on the outer wall of the main body. A fixed armor plate is fixedly installed on the pin. The end of the fixed armor plate is connected to the connecting post three in the middle of the movable armor plate through the connecting post two. The end of the movable armor plate is connected to the connecting post two at the end of another fixed armor plate through the connecting post four. In this way, the fixed armor plates and the movable armor plates are connected one after another in an orderly manner. The shaft hole is used to fix the fixed armor plate.

[0012] The outer wall of the main body has vertical U-shaped grooves, and there are several U-shaped grooves arranged in an orderly manner on the outer wall of the main body.

[0013] The beneficial effects of this utility model are:

[0014] 1. The ingenious structural design combines the magnetic attraction of magnets with the centrifugal force generated by rotation, causing the movable plates to automatically unfold in sequence during rotation, creating a visually appealing dynamic effect.

[0015] 2. Compared with existing technologies, traditional rotating toys have simple structures and limited gameplay. This invention provides a more novel way to relieve stress, and the dynamic changes brought about by high-speed rotation significantly enhance the fun and interactivity of the product.

[0016] 3. The connection between the armor plate and the main body is solid and reliable, the assembly structure is simple and easy to manufacture, which helps to reduce production costs and improve market competitiveness.

[0017] 4. Through the ingenious combination of magnetic force and centrifugal force, this product can achieve automatic deployment and closure of the plates without the need for additional mechanical transmission components, making the structure simpler and more reliable, and reducing the failure rate and maintenance costs. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a usage state diagram of Embodiment 1 of this utility model;

[0020] Figure 3 This is an exploded view of Embodiment 1 of this utility model;

[0021] Figure 4 This is a schematic diagram of the main structure of Embodiment 1 of this utility model;

[0022] Figure 5 This is a schematic diagram of the fixed armor plate structure in Embodiment 1 of this utility model;

[0023] Figure 6 This is a schematic diagram of the movable armor plate structure in Embodiment 1 of this utility model;

[0024] Figure 7 This is a usage diagram of Embodiment 2 of this utility model;

[0025] Figure 8 This is an exploded view of Embodiment 2 of this utility model;

[0026] Figure 9 This is a schematic diagram of the main structure of Embodiment 2 of this utility model;

[0027] Figure 10 This is a schematic diagram of the fixed armor plate structure in Embodiment 2 of this utility model;

[0028] Figure 11 This is a schematic diagram of the movable armor plate structure in Embodiment 2 of this utility model. Detailed Implementation

[0029] Referring to the figures, the present invention specifically adopts the following implementation method: It includes a main body 1, a bearing 2, a fixed armor plate 6, and a movable armor plate 7. The main body 1 is annular with a central hole 17. The bearing 2 is installed inside the main body 1 and is fixed to the main body 1 by an upper locking buckle 3. The upper locking buckle 3 is fixedly connected to the main body 1. An inner wall locking buckle 4 is provided inside the bearing 2, and is fixed to the main body 1 by a lower locking buckle 5. The lower locking buckle 5 is fixedly connected to the main body 1. The outer wall of the main body 1 is provided with a pin 8 and several magnet slots 18. The pin 8 has a through-hole 9, and the fixed armor plate 6 is fixedly installed on the pin 8. One end of the fixed plate 6 has two connecting posts 10, with a nut hole 11 passing through each post 10. A pin 8 is sandwiched between the two connecting posts 10. The centers of the nut hole 11 and the pin hole 9 are located on the same axis. The nut hole 11 and the pin hole 9 are connected by a fastening bolt. The other end of the fixed plate 6 has a connecting post 2 14, with a nut hole 2 13 passing through each post 2 14. A movable plate 7 is mounted on the connecting post 2 14. Magnet slot holes 12 and 3 19 are respectively opened on the inner walls of the fixed plate 6 and the movable plate 7. The magnet slot holes 12 and 3 19 correspond to the magnet slot holes 2 18. Magnets are installed in the magnet slot holes 12, 2 18, and 3 19. The sum of the number of magnet slot holes 12 and 3 19 is equal to the total number of magnet slot holes 2 18. The movable armor plate 7 has two connecting posts 15 in the middle, each with a nut hole 16 passing through it. A connecting post 14 is sandwiched between the two connecting posts 15. The centers of the nut holes 16 and 13 are on the same axis and are connected by a fixing bolt. The outer wall of the main body 1 has at least four pins 8. Between every two adjacent pins 8, there are two magnet slots 18. These two magnet slots 18 correspond to a magnet slot 12 and a magnet slot 19, respectively. A fixed armor plate 6 is fixedly installed on each pin 8, and a movable armor plate 7 is fixedly installed on each fixed armor plate 6. The movable armor plate 7 has two connecting posts 15 in the middle, each with a nut hole 16 penetrating it. A connecting post 14 is sandwiched between the two connecting posts 15. The nut holes 16 and 13 are centered on the same axis and are connected by a fixing bolt. The movable armor plate 7 has a connecting post 21 at its end, with a nut hole 22 penetrating it. The outer wall of the main body 1 has a pin 8 and a shaft hole 20. Magnet slot holes 18 are sequentially distributed on the outer wall of the main body 1. A fixed armor plate 6 is fixedly installed on the pin 8. The end of the fixed armor plate 6 is connected to the connecting post 15 in the middle of the movable armor plate 7 through the connecting post 24. The end of the movable armor plate 7 is connected to the connecting post 24 at the end of another fixed armor plate 6 through the connecting post 21. In this way, the fixed armor plates 6 and the movable armor plates 7 are connected one after another in an orderly manner. The shaft hole 20 is used to fix the fixed armor plate 6.The outer wall of the main body 1 has vertical U-shaped grooves, and there are several U-shaped grooves arranged in an orderly manner on the outer wall of the main body 1. Example

[0030] Reference Figure 1-6 .

[0031] Reference Figure 1 This is the normal state of the fission ring; refer to Figure 2 When the user inserts their finger into the center hole 17 of the main body 1, and the main body 1 is rotated at high speed through the bearing 2, the fingernail is subjected to centrifugal force generated by the high-speed rotation. When the centrifugal force exceeds the magnetic attraction between the fingernail and the magnetic groove of the main body, the fingernail is pushed by the centrifugal force and automatically opens, presenting an unfolded state.

[0032] This utility model includes a main body 1, a bearing 2, a shell, and a magnet groove structure.

[0033] Reference Figure 3 The main body 1 is a hollow ring structure with a bearing 2 at its center. The bearing 2 is fixed inside the main body 1 by a locking structure (upper locking buckle 3, inner wall locking buckle 4, and lower locking buckle 5). The locking structure includes an inner wall locking buckle 4 located on the inner wall of the main body 1 to fix the center position of the bearing 2. The upper locking buckle 3 and the lower locking buckle 5 ensure a stable connection between the bearing 2 and the main body 1, achieving stability during high-speed rotation.

[0034] Reference Figure 4 The main body 1 has several pins 8 and magnet slots 18 evenly distributed around its periphery. The pins 8 are used to install and fix the armor plate 6, and the magnet slots 18 are used to install magnets. The main body 1 and the fixed armor plate 6 are securely connected by a bolt and nut connection through the pin holes 9 on the main body and the connecting post 10 on the fixed armor plate 6.

[0035] Reference Figure 5 and Figure 6 The armor plates include two structural forms: fixed armor plate 6 and movable armor plate 7. The movable armor plate 7 has a connecting post 3 15 only in the middle.

[0036] The fixed armor plate 6 is fixedly connected to the main body 1 and serves only a fixing function. The number of fixed armor plates 6 depends on the number of pins 8 on the outer wall of the main body 1. One fixed armor plate 6 is installed on each pin 8, and each fixed armor plate 6 has a movable armor plate 7 at its end. The fixed armor plate 6 has a magnetic slot hole 12 for providing magnetic attraction with the main body 1, and a nut hole 13 for installing and fixing the movable armor plate 7.

[0037] The movable armor plate 7 is provided with a magnet slot 3 19 for placing a magnet to cooperate with the magnet slot 2 18 of the main body 1 to provide magnetic attraction; it is also provided with a nut hole 3 16 for secure connection with the fixed armor plate 6 by fastening bolts.

[0038] In a static state, the main body 1 and the axle are attracted to each other by the magnets in the magnetic groove. The fixed axle 6 and the movable axle 7 are firmly attracted to the main body 1 by magnetic force, resulting in a compact overall structure. When the user inserts their finger into the central hole 17 of the main body and applies force to make the product rotate at high speed, the movable axle 7, under the action of centrifugal force, gradually overcomes the magnetic attraction starting from the fixed axle 6 at the end, until both the fixed and movable axles unfold, forming... Figure 2 A dynamic visual effect resembling scattered flowers. Example

[0039] Reference Figure 1 , Figure 7-11 .

[0040] Reference Figure 1 This is the normal state of the fission ring; refer to Figure 7 When the user inserts their finger into the center hole 17 of the product and makes the product rotate at high speed, the fixed awl 6 and the spaced movable awl 7 are subjected to centrifugal force generated by the high-speed rotation. When the centrifugal force exceeds the magnetic attraction between the awl and the magnetic groove between the main awl 1, the awl is pushed by the centrifugal force and automatically opens, presenting a dynamic visual effect similar to a whip swinging.

[0041] This utility model includes a main body 1, a bearing 2, a plate and a magnet slot structure.

[0042] Reference Figure 8 The main body 1 is a hollow ring structure with a bearing 2 at its center. The bearing 2 is fixed inside the main body 1 by a locking structure (upper locking buckle 3, inner wall locking buckle 4, and lower locking buckle 5). The locking structure includes an inner wall locking buckle 4 located on the inner wall of the main body 1 to fix the center position of the bearing 2. The upper locking buckle 3 and the lower locking buckle 5 ensure a stable connection between the bearing 2 and the main body 1, achieving stability during high-speed rotation.

[0043] Reference Figure 9 The outer wall of the main body 1 has several magnet slots 19 and a pin 8 evenly distributed. The magnet slots 19 and the pin 8 are used to install magnets and fix the armor plate 6, respectively. The pin 8 and the fixed armor plate 6 are securely connected by a pin hole 9 on the main body 1 and a nut hole 11 on the fixed armor plate 6, using a screw and nut engagement.

[0044] Reference Figure 10 and Figure 11The armor plates include two structural forms: fixed armor plates 6 and movable armor plates 7. The movable armor plate 7 has a connecting post 3 15 in the middle and a connecting post 4 21 at its end. The connecting post 3 15 is used to connect one fixed armor plate 6, and the connecting post 4 21 is used to connect another fixed armor plate 6. Several fixed armor plates 6 and several movable armor plates 7 are connected one at a time, with intervals between them.

[0045] One of the fixing plates 6 is fixedly connected to the main body 1 through the shaft hole 20. It does not rotate or unfold with the main body and only serves a fixing function. The fixing plate 6 is provided with a magnet slot hole 12 to provide magnetic attraction between itself and the magnet slot hole 19.

[0046] The movable armor plate 7 is provided with a magnet slot 3 19 for placing a magnet, which cooperates with the magnet slot 2 18 of the main body 1 to provide magnetic attraction; it is also provided with a nut hole 4 structure for installing and fixing the adjacent fixed armor plate 6.

[0047] In a static state, the main body 1 and the axle are attracted to each other by the magnets in the magnetic slots. The movable axle 7 is firmly attracted to the main body 1 by magnetic force, and the overall structure is compact. When the user places his finger into the bearing 2 hole in the center of the main body 1 and applies force to make the product rotate at high speed, the movable axle 7, under the action of centrifugal force, gradually overcomes the magnetic attraction from the end movable axle 7 and automatically unfolds outwards in sequence until all the movable axle 7 are unfolded and fixed on the last fixed axle 6, forming a dynamic visual effect similar to a whip swinging.

[0048] The difference between this invention and the prior art lies in the fact that the magnetic slot structure provides a clever balance between magnetic attraction and centrifugal force generated by high-speed rotation, enabling the movable plate 7 to be stably closed when stationary and automatically unfolded sequentially in a high-speed rotating state. The structure is novel, highly interesting, and effectively improves the entertainment effect of the rotating decompression toy.

[0049] The above technical solution clearly describes the relative positional relationship, connection relationship and mechanical fit relationship of the components, especially the magnetic attraction fit relationship between the magnet slot structure and the axle, as well as the mechanical structure relationship of the axle being firmly connected by screws and nuts. It is clearly expressed in conjunction with the accompanying drawings of the standard mechanical drawing specifications to ensure that those skilled in the art can accurately understand and implement this utility model.

[0050] In summary, this fission ring features an ingenious structural design. By combining the magnetic attraction of magnets with the centrifugal force generated by rotation, the movable plates automatically unfold sequentially during rotation, creating a visually appealing dynamic effect. Compared to existing technologies, traditional spinning toys have simple structures and limited gameplay. This invention offers a more novel way to relieve stress, significantly enhancing the product's fun and interactivity through the dynamic changes brought about by high-speed rotation. The connection between the plates and the main body is stable and reliable, and the assembly structure is simple and easy to manufacture, helping to reduce production costs and improve market competitiveness. Through the clever combination of magnetic force and centrifugal force, this product can achieve automatic unfolding and closing of the plates without the need for additional mechanical transmission components, making the structure simpler and more reliable, reducing failure rates and maintenance costs.

[0051] The technical features of this utility model directly result in significantly improved visual dynamic effects, greatly enhanced product fun, simple and stable structure, convenient production and assembly, and more cost-effectiveness, thereby effectively meeting the market demand for innovative rotating decompression toys.

Claims

1. A fission ring, characterized in that: It includes a main body (1), a bearing (2), a fixed armor plate (6) and a movable armor plate (7). The main body (1) is in the shape of a ring with a central hole (17) in the middle. The bearing (2) is installed inside the main body (1). The bearing (2) is fixed inside the main body (1) by an upper locking buckle (3). The upper locking buckle (3) is fixedly connected to the main body (1). The bearing (2) is provided with an inner wall locking buckle (4). The inner wall locking buckle (4) is fixed to the main body (1) by a lower locking buckle (5). The lower locking buckle (5) is fixedly connected to the main body (1). The outer wall of the main body (1) is provided with a pin (8) and several magnet slots (18). The pin (8) is penetrated by a pin hole (9). A fixed plate (6) is fixedly installed on the pin (8). One end of the fixed plate (6) is provided with two connecting posts (10). The connecting posts (10) are penetrated by a nut hole (11). The pin (8) is sandwiched between the two connecting posts (10). The nut hole (11) and the pin hole (9) are located on the same axis. The nut hole (11) and the pin hole (9) are connected by fastening bolts. The other end of the fixed plate (6) is provided with a connecting post (14). The connecting post (14) is penetrated by a nut hole (13). A movable plate (7) is provided on the connecting post (14). The inner walls of the fixed armor plate (6) and the movable armor plate (7) are respectively provided with magnet slot hole one (12) and magnet slot hole three (19), which correspond to magnet slot hole two (18).

2. The fission ring according to claim 1, characterized in that: Magnets are installed in the first (12), second (18) and third (19) magnet slots, and the sum of the number of the first (12) and third (19) magnet slots is equal to the total number of the second (18) magnet slots.

3. The fission ring according to claim 1, characterized in that: The movable armor plate (7) is provided with two connecting posts three (15) in the middle. Each connecting post three (15) has a nut hole three (16) through it. A connecting post two (14) is sandwiched between the two connecting posts three (15). The centers of the nut hole three (16) and the nut hole two (13) are located on the same axis. The nut hole three (16) and the nut hole two (13) are connected by a fixing bolt.

4. The fission ring according to claim 1 or 3, characterized in that: The main body (1) has at least 4 pins (8) on its outer wall. There are two magnet slots (18) between each two adjacent pins (8). These two magnet slots (18) correspond to a magnet slot (12) and a magnet slot (19) respectively. A fixed plate (6) is fixedly installed on each pin (8), and a movable plate (7) is fixedly installed on a fixed plate (6).

5. The fission ring according to claim 1, characterized in that: The movable armor plate (7) is provided with two connecting posts three (15) in the middle, and each connecting post three (15) has a nut hole three (16) through it. The two connecting posts three (15) are sandwiched between connecting posts two (14). The centers of nut hole three (16) and nut hole two (13) are located on the same axis. Nut hole three (16) and nut hole two (13) are connected by a fixing bolt. The movable armor plate (7) is provided with a connecting post four (21) at the end, and nut hole four (22) through it.

6. The fission ring according to claim 1 or 5, characterized in that: The outer wall of the main body (1) is provided with a pin (8) and a shaft hole (20). The magnet slot holes (18) are distributed sequentially on the outer wall of the main body (1). A fixed plate (6) is fixedly installed on the pin (8). The end of the fixed plate (6) is connected to the connecting post (3) (15) in the middle of the movable plate (7) through the connecting post (24). The end of the movable plate (7) is connected to the connecting post (24) at the end of another fixed plate (6) through the connecting post (4) (21). In this way, the fixed plate (6) and the movable plate (7) are connected one after another in an orderly manner. The shaft hole (20) is used to fix the fixed plate (6).

7. The fission ring according to claim 1, characterized in that: The outer wall of the main body (1) has vertical U-shaped grooves, and there are several U-shaped grooves arranged in an orderly manner on the outer wall of the main body (1).