Annular magnet structure

By designing a split-type ring magnet structure, using mortise and tenon joints and bolt fixing, the problem of inconvenient maintenance and replacement of existing ring magnet structures is solved, realizing a convenient maintenance and replacement process and enhancing the strength of the connection.

CN223665263UActive Publication Date: 2025-12-12DONGGUAN XINLEI MAGNETOELECTRIC CO LTD
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Patent Information

Application Number
CN202520230248.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-12-12
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

Existing ring magnet structures are cumbersome to maintain and replace when damaged, and have low flexibility.

Method used

A split-type ring magnet structure was designed. Through the combination of the first and second magnet connectors and the fixing mechanism, the disassembly and installation can be achieved in stages by using mortise and tenon joints and bolt fixing.

Benefits of technology

This design improves the flexibility of the ring magnet, making it easier to maintain and replace, and enhances the strength of the connection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of annular magnets, and discloses an annular magnet structure which comprises a first magnet connecting piece, a second magnet connecting piece is arranged on one side of the first magnet connecting piece in a clamped mode, and a fixing mechanism is arranged on the outer side of the first magnet connecting piece and the outer side of the second magnet connecting piece in a sleeved mode. The number of the first magnet connecting pieces and the number of the second magnet connecting pieces are both two, the first magnet connecting pieces comprise the first connecting pieces and the second connecting pieces, clamping plates are fixedly arranged on the sides, close to the second connecting pieces, of the first connecting pieces, and clamping grooves are formed in the sides, close to the first connecting pieces, of the second connecting pieces. A first upward plate is fixedly arranged on one side of the first connecting piece, a first downward plate is fixedly arranged on one side of the second connecting piece, and through layered connection between the first magnet connecting piece and the second magnet connecting piece, the use flexibility of the product is improved; and meanwhile, the difficulty of follow-up maintenance and replacement of the product is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to annular magnet technical field, concretely relates to annular magnet structure. BACKGROUND

[0002] Magnet is made of specific material, can produce magnetic field. It has at least two poles, north pole (N) and south pole (S), and there is attractive force or repulsive force between the two poles. When two magnets are close, same poles repel each other, and opposite poles attract each other. For example, north pole close to north pole will repel each other, and north pole close to south pole will attract each other;

[0003] The existing annular magnet structure is usually used in the form of a whole, and its application scene is fixed. Due to the singleness of its shape, once damaged, the maintenance and replacement process is more cumbersome, and the flexibility is low in the use process. UTILITY MODEL CONTENT

[0004] The utility model discloses a annular magnet structure can solve the above -mentioned technical problems.

[0005] The utility model discloses the following technical scheme to realize the above-mentioned purpose:

[0006] Annular magnet structure, including: first magnet connecting piece, one side of first magnet connecting piece is connected and set with second magnet connecting piece, the outer side of first magnet connecting piece and second magnet connecting piece is equipped with fixed mechanism, first magnet connecting piece and second magnet connecting piece are all provided with two, and the fixed mechanism is used for fixing first magnet connecting piece and second magnet connecting piece.

[0007] The first magnet connecting piece includes a first connecting piece and a second connecting piece, the first connecting piece is fixedly provided with a clamping plate on the side close to the second connecting piece, the second connecting piece is provided with a clamping groove on the side close to the first connecting piece, the first connecting piece is fixedly provided with a first upward plate on one side, and the second connecting piece is fixedly provided with a first downward plate on one side.

[0008] Further, a first upper tenon is fixedly arranged on the top side of the first upward plate close to the first connecting piece, and a first mortise is formed on the top side of the first upward plate away from the first connecting piece.

[0009] Further, a first lower tenon is fixedly arranged on the bottom side of the first downward plate close to the first connecting piece, and the first mortise is formed on the top side of the first upward plate and the bottom side of the first downward plate.

[0010] Further, the second magnet connecting piece includes a third connecting piece and a fourth connecting piece, the third connecting piece is fixedly provided with a second upward plate on both sides, and the two second upward plates are opposite to each other.

[0011] Furthermore, the two second upper plates are respectively fixedly provided with a second upper tenon and a second lower tenon on the side near the third connector, and the two second upper plates are respectively provided with a second upper mortise and a second lower mortise on the side away from the third connector. The structures on both sides of the third connector and the fourth connector are identical.

[0012] Furthermore, the fixing mechanism includes two clamping plates, each of which has two through holes, and fixing bolts are threaded onto the inner side of each of the through holes.

[0013] Furthermore, each of the two clamping plates has a fixing groove on its opposite side. The fixing groove is an arc-shaped groove, and the through hole is located on the outside of the fixing groove.

[0014] Furthermore, there are two fixing mechanisms, which are respectively located outside the connection gap between the first magnet connector and the second magnet connector.

[0015] With the above structure, when maintenance, replacement, and disassembly of this product are required, the staff first removes the fixing bolts in the fixing mechanism from the through hole. Then, the fixing mechanism that is stuck in the first magnet connector and the second magnet connector is removed. Then, the staff moves one of the second upper plates of the third connector and the fourth connector in the second magnet connector upward and the other downward to disassemble the second magnet connector for maintenance and repair. The third connector and the fourth connector in the second magnet connector are provided with second upper plates on both sides, and the second upper plates are symmetrically arranged so that the third connector and the fourth connector can be fixed to each other by tenons and mortises.

[0016] In summary, the beneficial effects of this utility model are as follows: by dividing the first magnet connector and the second magnet connector into two parts each, the magnet components are connected in four parts, which facilitates the phased and hierarchical installation of the magnet connections, makes subsequent maintenance and replacement of the magnet components easier, and increases the flexibility of the product. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Fig. 1 This is a front view of the present invention;

[0019] Fig. 2 This is an axonometric view of the present invention;

[0020] Fig. 3 This is an exploded axonometric view of the present invention;

[0021] Fig. 4 This is a bottom-view axonometric view of the present invention;

[0022] Fig. 5 This is a side view of the present invention near the card plate;

[0023] Fig. 6 This is an isometric view of the fixing mechanism of this utility model.

[0024] The annotations in the attached figures are explained as follows:

[0025] 1. First magnet connector; 101. First connector; 102. Second connector; 103. Clamping plate; 104. Clamping slot; 105. First upper plate; 106. First mortise; 107. First upper tenon; 108. First lower plate; 109. First lower tenon; 2. Second magnet connector; 201. Third connector; 202. Fourth connector; 203. Second upper plate; 204. Second upper tenon; 205. Second upper mortise; 206. Second lower tenon; 207. Second lower mortise; 3. Fixing mechanism; 301. Clamping plate; 302. Fixing groove; 303. Through hole; 304. Fixing bolt. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be described in detail below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0027] See Figs. 1-2 As shown, this utility model provides a ring magnet structure, including: a first magnet connector 1, a second magnet connector 2 snapped onto one side of the first magnet connector 1, a fixing mechanism 3 sleeved on the outside of the first magnet connector 1 and the second magnet connector 2, two of each of the first magnet connector 1 and the second magnet connector 2, and two fixing mechanisms 3 respectively disposed on the outside of the connection gap between the first magnet connector 1 and the second magnet connector 2.

[0028] Using the above technical solution, the first magnet connector 1 and the second magnet connector 2 are nested together to form a ring-shaped whole. Then, two fixing mechanisms 3 are used to secure the gap between the first magnet connector 1 and the second magnet connector 2, thereby improving the firmness of the connection between the first magnet connector 1 and the second magnet connector 2.

[0029] See Figs. 3-5 As shown, the first magnet connector 1 includes a first connector 101 and a second connector 102. A retaining plate 103 is fixedly provided on the side of the first connector 101 near the second connector 102. A retaining groove 104 is provided on the side of the second connector 102 near the first connector 101. A first upward plate 105 is fixedly provided on one side of the first connector 101. A first downward plate 108 is fixedly provided on one side of the second connector 102. A first upper tenon 107 is fixedly provided on the top side of the first upward plate 105 near the first connector 101. A first mortise 106 is provided on the top side of the first upward plate 105 away from the first connector 101. A first lower tenon 109 is fixedly provided on the bottom side of the first downward plate 108 near the first connector 101. The first mortise 106 is respectively provided on the top side of the first upward plate 105 and the bottom side of the first downward plate 108.

[0030] In use, the first connector 101 and the second connector 102 are connected by a retaining plate 103 protruding from one side of the two connectors, while the second connector 102 is recessed into a groove. The second connector 102 is fixed to the first connector 101 from top to bottom. The first upward plate 105 and the first downward plate 108 on both sides of the first connector 101 and the second connector 102 are symmetrically arranged on both sides of the first connector 101 and the second connector 102. The first upward plate 105 is on the upper side of the first connector 101 and the first downward plate 108 is on the lower side of the second connector 102, providing space for the second magnet connector 2 to engage with each other.

[0031] See Figs. 3-5 As shown, the second magnet connector 2 includes a third connector 201 and a fourth connector 202. The third connector 201 has a second upward plate 203 fixedly provided on both sides. The two second upward plates 203 face opposite directions. The two second upward plates 203 are respectively fixedly provided with a second upper tenon 204 and a second lower tenon 206 on the side of the two second upward plates 203 closest to the third connector 201. The two second upward plates 203 are respectively provided with a second upper mortise 205 and a second lower mortise 207 on the side of the two second upward plates 203 away from the third connector 201. The structures on both sides of the third connector 201 and the fourth connector 202 are the same.

[0032] In the above embodiment, the third connector 201 and the fourth connector 202 are identical. Both sides of the third connector 201 and the fourth connector 202 are second upward plates 203, which are identical and one is facing upward and the other downward. At the same time, both second upward plates 203 are provided with second upper mortises 205 and second upper tenons 204 to facilitate the connection between the third connector 201 and the fourth connector 202. The second lower tenon 206 in the downward second upward plate 203 is inserted into the second upper mortises 205 in the upward second upward plate 203 to complete the connection between the third connector 201 and the fourth connector 202. Then, the second upper tenon 204 and the second lower tenon 206 after the third connector 201 and the fourth connector 202 are inserted into the first mortises 106 and the first upper tenons 107 in the first connector 101 and the second connector 102 of the first magnet connector 1 to complete the snap-fit ​​connection between the first magnet connector 1 and the second magnet connector 2.

[0033] See Fig. 6 As shown, the fixing mechanism 3 includes two clamping plates 301. Each clamping plate 301 has two through holes 303. Fixing bolts 304 are threaded on the inner side of each through hole 303. Fixing grooves 302 are formed on opposite sides of each clamping plate 301. The fixing grooves 302 are arc-shaped grooves. The through holes 303 are formed on the outer side of the fixing grooves 302.

[0034] In use, there are two fixing mechanisms 3. One fixes the gap between the first connector 101 and the second connector 102 in the first magnet connector 1 after they are snapped together, and the other fixes the gap between the third connector 201 and the fourth connector 202 in the second magnet connector 2 after they are snapped together. First, the two clamping plates 301 are placed symmetrically, and then placed outside the gap that needs to be snapped together, so that the fixing groove 302 opened in the clamping plate 301 will be snapped on the outside of the first magnet connector 1. Finally, the fixing bolt 304 passes through the through hole 303 opened in the clamping plate 301 to complete the fixing of the outside of the first magnet connector 1, thereby improving the firmness of the connection.

[0035] With the above structure, when maintenance, replacement and disassembly of this product are required, the staff first removes the fixing bolts 304 in the fixing mechanism 3 from the through hole 303. Then, the fixing mechanism 3 that is stuck in the first magnet connector 1 and the second magnet connector 2 is removed. Then, the staff moves one of the second upward plates 203 of the third connector 201 and the fourth connector 202 in the second magnet connector 2 upward and the other downward to disassemble the second magnet connector 2 for maintenance and repair. The second upward plates 203 are provided on both sides of the third connector 201 and the fourth connector 202 in the second magnet connector 2, and the second upward plates 203 are symmetrically arranged so that the third connector 201 and the fourth connector 202 can be fixed to each other by tenons and mortises.

[0036] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.

Claims

1. A ring magnet structure, characterized by The utility model relates to a magnetic connection device, including: First magnet connecting piece (1), one side of first magnet connecting piece (1) is connected with second magnet connecting piece (2), and the outer side of first magnet connecting piece (1) and second magnet connecting piece (2) is equipped with fixed mechanism (3), and first magnet connecting piece (1) and second magnet connecting piece (2) are provided with two; First magnet connecting piece (1) includes first connecting piece (101) and second connecting piece (102), and the side close to second connecting piece (102) of first connecting piece (101) is fixedly provided with clamping plate (103), the side close to first connecting piece (101) of second connecting piece (102) is equipped with clamping groove (104), and the side of first connecting piece (101) is fixedly provided with first upward plate (105), and the side of second connecting piece (102) is fixedly provided with first downward plate (108).

2. The annular magnet structure of claim 1, wherein: The top side of first upward plate (105) is fixedly provided with first upper tenon (107) on the side close to first connecting piece (101), and the top side of first upward plate (105) is equipped with first mortise (106) on the side away from first connecting piece (101).

3. The annular magnet structure of claim 2, wherein: The bottom side of first downward plate (108) is fixedly provided with first lower tenon (109) on the side close to first connecting piece (101), and first mortise (106) is respectively equipped on the top side of first upward plate (105) and the bottom side of first downward plate (108).

4. The annular magnet structure of claim 1, wherein: Second magnet connecting piece (2) includes third connecting piece (201) and fourth connecting piece (202), and the both sides of third connecting piece (201) are fixedly provided with second upward plate (203), and the two second upward plates (203) are opposite to each other.

5. The annular magnet structure of claim 4, wherein: The side close to third connecting piece (201) of two second upward plates (203) is respectively fixedly provided with second upper tenon (204) and second lower tenon (206), and the side away from third connecting piece (201) of two second upward plates (203) is respectively equipped with second upper mortise (205) and second lower mortise (207), and the both sides of third connecting piece (201) and fourth connecting piece (202) are consistent.

6. The annular magnet structure of claim 1, wherein: The fixed mechanism (3) includes two clamping plates (301), and two clamping plates (301) are respectively equipped with two through holes (303), and the inner side of multiple through holes (303) is screwedly provided with fixed bolt (304).

7. The annular magnet structure of claim 6, wherein: The opposite side of two clamping plates (301) is equipped with fixed groove (302), the fixed groove (302) is arc groove, and the through hole (303) is equipped on the outer side of fixed groove (302).

8. The annular magnet structure of claim 1, wherein: The fixed mechanism (3) has two, and is respectively arranged on the outer side of the connecting gap of first magnet connecting piece (1) and second magnet connecting piece (2).