Magnetic block structure

By designing the arc-shaped convex surface and connecting groove structure of the magnetic block, the problem of complicated assembly of irregularly shaped magnets was solved, realizing easy installation and efficient adhesive application, thus improving assembly efficiency and yield.

CN224082282UActive Publication Date: 2026-04-03NINGBO BAOCHENG ELECTRONIC TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The irregular structure of irregularly shaped magnets means that the bonding area with adhesive is affected by the operator's skill level, making the assembly and positioning process complicated. There is an urgent need for a magnetic block structure that is easy to install.

Method used

A magnetic block structure is designed, comprising a first magnet, a bent body, and a second magnet connected in sequence. The outer side forms an arc-shaped convex structure, the inner side forms a connecting groove, and a stop and a receiving groove are provided to facilitate adhesive application and storage, thereby improving assembly efficiency.

Benefits of technology

It achieves uniform adhesive application, simplifies the assembly process, improves the installation efficiency and yield of magnetic blocks and other parts, and avoids adhesive overflow affecting positioning.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224082282U_ABST
    Figure CN224082282U_ABST
Patent Text Reader

Abstract

The utility model relates to a magnetic block structure which comprises a first magnet, a bent body and a second magnet which are connected in sequence, a first arc-shaped convex surface structure is formed on the outer side of the first magnet, a second arc-shaped convex surface structure is formed on the outer side of the bent body, a third arc-shaped convex surface structure is formed on the outer side of the second magnet, and a first connecting groove is formed in the inner side of the first magnet. A first connecting groove is formed in the inner side of the first magnet, a second connecting groove is formed in the inner side of the bent body, and a third connecting groove is formed in the inner side of the second magnet. The first magnet, the bent body and the second magnet are arranged, and a first arc-shaped convex surface structure, a second arc-shaped convex surface structure and a third arc-shaped convex surface structure are correspondingly formed on the outer sides; a first connecting groove, a second connecting groove and a third connecting groove are correspondingly formed in the inner side, the first arc-shaped convex face structure, the second arc-shaped convex face structure and the third arc-shaped convex face structure are in smooth connection, the first connecting groove, the second connecting groove and the third connecting groove are in smooth connection, mucilage glue can be evenly smeared, and assembling is more convenient for an operator.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of magnetic block technology, and in particular to a magnetic block structure. Background Technology

[0002] Magnets are composed of atoms such as iron, cobalt, and nickel. Their internal atomic structure is quite special, and they inherently possess magnetic moments. Magnets can generate magnetic fields and have the property of attracting ferromagnetic materials such as iron, nickel, and cobalt. Due to their magnetic attraction, magnetic field induction, and energy transmission properties, magnets are widely used in electronic smart devices, household goods, and industrial manufacturing.

[0003] Magnets come in a variety of structures, including square, round, and irregular shapes. Irregularly shaped magnets are typically manufactured using methods such as sintering, injection molding, bonding, or machining to meet specific magnetic field distributions, space constraints, or functional requirements.

[0004] Irregularly shaped magnets are usually assembled to other parts with adhesive. Due to the irregular structure and low surface flatness of irregularly shaped magnets, the bonding area with adhesive is affected by the operator's skill level, which makes the assembly and positioning process relatively complicated. Therefore, there is an urgent need for a magnetic block structure that is easy to install. Utility Model Content

[0005] This application provides a magnetic block structure that is easy to install.

[0006] The magnetic block structure provided in this application adopts the following technical solution:

[0007] A magnetic block structure includes a first magnet, a bent body, and a second magnet connected in sequence, the first magnet and the second magnet being perpendicular to each other. The outer side of the first magnet has a first arc-shaped convex surface structure, the outer side of the bent body has a second arc-shaped convex surface structure, and the outer side of the second magnet has a third arc-shaped convex surface structure. The first arc-shaped convex surface structure, the second arc-shaped convex surface structure, and the third arc-shaped convex surface structure are smoothly connected. The inner side of the first magnet has a first connecting groove, the inner side of the bent body has a second connecting groove, and the inner side of the second magnet has a third connecting groove. The first connecting groove, the second connecting groove, and the third connecting groove are smoothly connected.

[0008] Preferably, the end of the first connecting groove is provided with a first stop portion; the end of the third connecting groove is provided with a second stop portion.

[0009] Preferably, two first receiving grooves are formed on the groove wall of the first connecting groove, and the two first receiving grooves are opposite to each other; two second receiving grooves are formed on the groove wall of the third connecting groove, and the two second receiving grooves are opposite to each other.

[0010] Preferably, the end of the first stop portion is provided with a mounting groove; the end of the second stop portion is provided with a mounting protrusion that matches the mounting groove.

[0011] In summary, this application includes at least one of the following beneficial technical effects:

[0012] 1. This application provides a first magnet, a bent body, and a second magnet, with a first arc-shaped convex structure, a second arc-shaped convex structure, and a third arc-shaped convex structure formed on the outer side, and a first connecting groove, a second connecting groove, and a third connecting groove formed on the inner side. The first arc-shaped convex structure, the second arc-shaped convex structure, and the third arc-shaped convex structure are smoothly connected, as are the first connecting groove, the second connecting groove, and the third connecting groove. During assembly, the user can efficiently and evenly apply the adhesive, making assembly easier for the operator.

[0013] 2. By setting the first and second receiving slots, excess adhesive can be stored, making it less likely that the magnetic block will protrude more than the preset position after installation due to excessive adhesive when assembling with other parts, thus ensuring a high installation yield. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the main magnetic block in a preferred embodiment of this application.

[0015] Figure 2 This is a cross-sectional view of the main magnetic block in a preferred embodiment of this application.

[0016] Explanation of reference numerals in the attached drawings: 1. First magnet; 11. First arc-shaped convex structure; 12. First connecting groove; 13. First stop; 131. Mounting groove; 14. First receiving groove; 2. Bending body; 21. Second arc-shaped convex structure; 22. Second connecting groove; 3. Second magnet; 31. Third arc-shaped convex structure; 32. Third connecting groove; 33. Second stop; 331. Mounting protrusion; 34. Second receiving groove. Detailed Implementation

[0017] The present application will be further described in detail below with reference to the accompanying drawings.

[0018] This application provides a magnetic block structure, such as Figure 1 and Figure 2 As shown, it includes a first magnet 1, a bent body 2, and a second magnet 3 connected in sequence. The first magnet 1, the bent body 2, and the second magnet 3 are integrally cast. The first magnet 1 and the second magnet 3 are both straight strip structures and are perpendicular to each other.

[0019] The outer side of the first magnet 1 has a first arc-shaped convex structure 11, the outer side of the bent body 2 has a second arc-shaped convex structure 21, and the outer side of the second magnet 3 has a third arc-shaped convex structure 31. The first arc-shaped convex structure 11, the second arc-shaped convex structure 21, and the third arc-shaped convex structure 31 are smoothly connected. Users can efficiently and evenly apply adhesive to the first arc-shaped convex structure 11, the second arc-shaped convex structure 21, and the third arc-shaped convex structure 31. The operation is simple, which improves the efficiency of assembling the magnetic block to other parts and ensures the assembly yield.

[0020] A first connecting groove 12 is formed on the inner side of the first magnet 1, a second connecting groove 22 is formed on the inner side of the bent body 2, and a third connecting groove 32 is formed on the inner side of the second magnet 3. The first connecting groove 12, the second connecting groove 22, and the third connecting groove 32 are smoothly connected. A first stop 13 is provided at the end of the first connecting groove 12, and a second stop 33 is provided at the end of the third connecting groove 32. The first stop 13 and the second stop 33 are used to prevent adhesive from overflowing during the process of assembling the magnetic blocks to other parts with adhesive. A mounting groove 131 is provided at the end of the first stop 13, and a mounting protrusion 331 matching the mounting groove 131 is provided at the end of the second stop 33. The mounting groove 131 and the mounting protrusion 331 are used for the mating of multiple magnetic blocks. Two first receiving grooves 14 are formed on the groove wall of the first connecting groove 12, and the two first receiving grooves 14 are opposite to each other. Two second receiving grooves 34 are formed on the groove wall of the third connecting groove 32, and the two second receiving grooves 34 are opposite to each other. The first receiving groove 14 and the second receiving groove 34 can store excess adhesive, so that the magnetic block is less likely to protrude more than the preset position after installation due to excessive adhesive between it and other parts, thereby ensuring the assembly yield.

[0021] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A magnetic block structure, characterized in that: It includes a first magnet (1), a bent body (2), and a second magnet (3) connected in sequence. The first magnet (1) and the second magnet (3) are perpendicular to each other. A first arc-shaped convex structure (11) is formed on the outer side of the first magnet (1), a second arc-shaped convex structure (21) is formed on the outer side of the bent body (2), and a third arc-shaped convex structure (31) is formed on the outer side of the second magnet (3). The first arc-shaped convex structure (11), the second arc-shaped convex structure (21), and the third arc-shaped convex structure (31) are smoothly connected. A first connecting groove (12) is formed on the inner side of the first magnet (1), a second connecting groove (22) is formed on the inner side of the bent body (2), and a third connecting groove (32) is formed on the inner side of the second magnet (3). The first connecting groove (12), the second connecting groove (22) and the third connecting groove (32) are smoothly connected.

2. The magnetic block structure according to claim 1, characterized in that: The first connecting groove (12) is provided with a first stop (13) at its end; The end of the third connecting groove (32) is provided with a second stop (33).

3. A magnetic block structure according to claim 2, characterized in that: Two first receiving grooves (14) are formed on the groove wall of the first connecting groove (12), and the two first receiving grooves (14) are opposite to each other; The third connecting groove (32) has two second receiving grooves (34) formed on its groove wall, and the two second receiving grooves (34) are opposite to each other.

4. A magnetic block structure according to claim 2, characterized in that: The end of the first stop (13) is provided with a mounting groove (131); The end of the second stop (33) is provided with a mounting protrusion (331) that matches the mounting groove (131).