Magnet mounting structure

By attaching Mylar sheets to the magnet and covering them with release paper, and combining the design of chamfering, external texture, nano-micropores and laser-etched anti-slip texture, the problems of insufficient friction and difficulty in removing air bubbles in traditional magnet installation are solved, achieving a more efficient and stable magnet installation effect.

CN223450631UActive Publication Date: 2025-10-17DONGGUAN JINCONN NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202422966554.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-10-17
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

Traditional magnet installation methods result in insufficient friction, unstable installation, and difficulty in effectively removing bubbles and impurities, which affects the magnet's adsorption force and stability.

Method used

The design combines Mylar sheet and release paper. The Mylar sheet is pasted onto the magnetic component and covered with release paper. The adhesion and stability are enhanced by chamfering, external texture, nano-micropores and laser-etched anti-slip texture. The magnetic component has grooves for tight fit, and the release paper has easy-tear labels for easy operation.

Benefits of technology

It improves the convenience and stability of magnet installation, reduces interference and inconvenience during installation, enhances the contact stability between the magnet and the target surface and the durability of the overall structure, and prevents adhesive failure and damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of magnets, in particular to a magnet mounting structure, which comprises a magnetic part and a mylar arranged on the magnetic part in a sticking manner, release paper is further arranged on the mylar, and the release paper is used for protecting the sticky surface of the mylar before use so as to ensure that the operation is convenient in the mounting process; the magnetic part comprises a first body and a second body, the included angle between the first body and the second body is 0-180 degrees, the mylar is pasted on the first body, the release paper covers the first body and extends to form a tail located above the second body, and the tail is pinched to tear the release paper covering the second body during use. Therefore, the release paper on the first body is separated from the mylar, and the sticky surface of the mylar is exposed. The application of the Mylar film avoids direct contact between the magnet and the mounting surface, so that scraping or damage to the target surface is reduced, and the mounting efficiency and the mounting stability are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a magnet technical field especially discloses a magnet mounting structure. BACKGROUND

[0002] With the increasing demand for magnetic devices in modern industry and daily life, the installation and application of magnets are constantly developing. Magnets are usually used in equipment for fixing, connecting, supporting, etc., and the installation method of the magnet directly affects its performance and service life. In traditional magnet installation, the magnetic part often directly contacts the target surface, which may cause insufficient friction or unstable installation, affecting the adsorption force and stability of the magnet. In addition, the traditional installation method may have the problem that bubbles and impurities between the magnet and the target surface cannot be effectively removed, causing poor adhesion. SUMMARY

[0003] In order to overcome the shortcomings and deficiencies in the prior art, the purpose of the utility model is to provide a magnet mounting structure.

[0004] To achieve the above-mentioned purpose, the utility model provides a magnet mounting structure, which comprises a magnetic part, a Mylar sheet pasted on the magnetic part, and a release paper provided on the Mylar sheet. The release paper is used to protect the adhesive surface of the Mylar sheet before use, ensuring easy operation during installation. The magnetic part comprises a first body and a second body, and the included angle between the first body and the second body is 0-180°. The Mylar sheet is pasted on the first body, and the release paper covers the first body and extends to form a tail part above the second body. When in use, the tail part is pinched to tear the release paper covering the second body, so that the release paper on the first body is separated from the Mylar sheet, and the adhesive surface of the Mylar sheet is exposed.

[0005] By pasting the Mylar sheet on the magnetic part and covering it with the release paper, the adhesive surface of the Mylar sheet can be effectively protected from contamination or damage during storage or transportation. This design ensures that the Mylar sheet maintains good adhesion and cleanliness during actual use, making it easier for users to operate and improving the convenience and efficiency of installation. When the first body of the magnetic part has the Mylar sheet pasted on it and the second body is covered with the release paper, the user can more easily tear off the release paper from the second body during installation. This design reduces the interference and inconvenience caused by tearing the release paper, making the entire installation process smoother and more efficient.

[0006] The Mylar sheet on the first body is the part that directly contacts the magnetic piece. The adhesive surface of the Mylar sheet needs to be protected by a release paper to prevent it from being contaminated or adhering to other objects before installation. The release paper of the second body does not directly contact the Mylar sheet, but serves as a protective and operational guide. When the user is ready to install, the coverage of the release paper ensures that the adhesive surface is not exposed prematurely during the installation process, avoiding contamination from the external environment or operational errors that could compromise the adhesion.

[0007] The thickness of the Mylar sheet is 0.05-1mm. By controlling the thickness of the Mylar sheet between 0.05-1mm, it can ensure that it is not too thick or too thin during installation while maintaining certain adhesion properties. A reasonable thickness allows the Mylar sheet to provide sufficient adhesion support without affecting the overall structure and comfort of use of the magnetic piece.

[0008] The other end of the Mylar sheet away from the magnetic piece is provided with external texture to enhance the friction with external objects to increase the stability of the magnet installation. Designing external texture on the other end of the Mylar sheet away from the magnetic piece can significantly increase the friction with external objects. This not only enhances the stability of the magnet in contact with the target surface after installation, but also reduces the risk of slipping or loosening during use, thereby improving the stability and safety of the magnet installation.

[0009] The magnetic piece is provided with a chamfer, which makes it easier to slide into or align with the target position during installation, effectively reducing edge friction and jamming. The chamfer design on the magnetic piece can make it easier to slide into or align with the target position during installation. The chamfer design effectively reduces the friction and jamming of the edges of the magnetic piece, making the installation process smoother and avoiding unnecessary waste and improving installation accuracy.

[0010] The Mylar sheet is provided with nanoscale micropores, which are used to release the air bubbles generated during installation to ensure that the Mylar sheet is tightly attached to the target surface. The nanoscale micropores on the Mylar sheet can help release air bubbles during installation, ensuring that the Mylar sheet is more tightly attached to the target surface. The micropore design can effectively avoid the adhesion failure or air bubble residue caused by air bubble generation, thereby improving the overall adhesion effect after installation and the stability of long-term use.

[0011] The side edge of the magnetic piece is laser etched with anti-slip texture via a laser mechanism; the anti-slip texture is used to increase the friction of the magnetic piece during installation and improve installation stability. The anti-slip texture on the side edge of the magnetic piece can increase the friction between the magnetic piece and the target surface during installation, thereby improving the overall installation stability. The anti-slip texture avoids the risk of the magnetic piece slipping or falling off during installation, ensuring the reliability and safety of the installation process.

[0012] The recess is arranged on the magnetic piece, and the Mylar sheet is arranged in the recess and attached to the magnetic piece. The recess is arranged on the magnetic piece to accommodate the Mylar sheet, so that the Mylar sheet is closely attached to the magnetic piece. The design enhances the adhesion stability between the Mylar sheet and the magnetic piece, prevents the Mylar sheet from falling off or moving during use, and increases the durability of the overall structure.

[0013] The release paper is provided with a tear-off label or an indication mark, so as to facilitate the user to identify and accurately tear off the release paper part covering the second body. The tear-off label or the indication mark arranged on the release paper can help the user to accurately identify and tear off the release paper part covering the second body during installation, and the design improves the operation convenience of the user.

[0014] The depth of the recess on the magnetic piece is the same as the thickness of the Mylar sheet. The depth of the recess on the magnetic piece is the same as the thickness of the Mylar sheet, which helps to ensure that the Mylar sheet is completely embedded in the recess and closely attached to the magnetic piece, avoiding the phenomenon of uneven installation or insecure adhesion caused by the mismatch of the recess depth.

[0015] The surface of the Mylar sheet is covered with an anti-ultraviolet coating to improve its durability when exposed to sunlight for a long time and prevent the adhesion from being reduced due to ultraviolet radiation. The surface of the Mylar sheet is covered with an anti-ultraviolet coating, which can significantly improve its durability when exposed to sunlight for a long time. This coating can effectively prevent the adhesion from being reduced or the material from aging due to ultraviolet radiation, thereby prolonging the service life of the Mylar sheet and ensuring that it maintains high adhesion performance in various environments.

[0016] The magnet mounting structure of the utility model has the advantages that the magnet mounting structure of the utility model pastes the Mylar sheet on the magnetic piece and covers the release paper, effectively protects the adhesive surface of the Mylar sheet, ensures that the Mylar sheet is not polluted or damaged during storage and transportation, and provides convenient operation during installation. The thickness, external texture, chamfer, nano micropore and laser etching anti-slip texture are reasonably designed, the adhesion, stability and installation precision of the magnet are enhanced. In addition, the recess of the magnetic piece is matched with the Mylar sheet, so that the Mylar sheet is more closely attached, and the stability is increased. The tear-off label on the release paper and the ultraviolet coating further improve the convenience and durability of use. BRIEF DESCRIPTION OF DRAWINGS

[0017] Fig. 1 It is a schematic view of the overall structure of the utility model;

[0018] Fig. 2 It is a sectional view of the overall structure of the utility model.

[0019] The reference signs include:

[0020] 1, magnetic piece; 2, Mylar sheet; 3, release paper; 4, first body; 5, second body; 6, outer texture;

[0021] 8, groove. DETAILED DESCRIPTION

[0022] For the convenience of those skilled in the art to understand, the following further describes the present application with examples and drawings, and the content mentioned in the embodiments is not a limitation of the present application.

[0023] Please refer to Figs. 1-2 The magnet mounting structure of the present application includes a magnetic piece 1, a Mylar sheet 2 attached to the magnetic piece 1, and a release paper 3 provided on the Mylar sheet 2. The release paper 3 is used to protect the adhesive surface of the Mylar sheet 2 before use, ensuring easy operation during installation. The magnetic piece 1 includes a first body 4 and a second body 5, with an included angle between the first body 4 and the second body 5 of 0-180°. The Mylar sheet 2 is attached to the first body 4, and the release paper 3 covers the first body 4 and extends to form a tail above the second body 5. When in use, the release paper 3 covering the second body 5 is pulled off by pinching the tail, thereby separating the release paper 3 on the first body 4 from the Mylar sheet 2 and exposing the adhesive surface of the Mylar sheet 2.

[0024] By attaching the Mylar sheet 2 to the magnetic piece 1 and covering it with the release paper 3, the adhesive surface of the Mylar sheet 2 can be effectively protected from contamination or damage during storage or transportation. This design ensures that the Mylar sheet 2 maintains good adhesion and cleanliness during actual use, making it easier for users to operate and improving the convenience and efficiency of installation. When the first body 4 of the magnetic piece 1 has the Mylar sheet 2 attached and the second body 5 is covered with the release paper 3, the user can more easily tear off the release paper 3 from the second body 5 during installation. This design reduces the interference and inconvenience caused by tearing the release paper 3, making the entire installation process smoother and more efficient.

[0025] The Mylar sheet 2 on the first body 4 is the part that directly contacts the magnetic piece 1, and the adhesive surface of the Mylar sheet 2 needs to be protected by the release paper 3 to prevent contamination or adhesion to other objects before installation. The release paper 3 on the second body 5 does not directly contact the Mylar sheet 2, but serves as a protective and operational guide. When the user is ready to install, the coverage of the release paper 3 ensures that the adhesive surface is not prematurely exposed during installation, avoiding contamination or damage caused by external environment or operational errors.

[0026] The thickness of the Mylar sheet 2 is 0.05-1mm. By controlling the thickness of the Mylar sheet 2 between 0.05-1mm, it can be ensured that it will not be too thick or too thin during installation while maintaining certain adhesion properties. A reasonable thickness allows the Mylar sheet 2 to provide sufficient adhesive support without affecting the overall structure and comfort of use of the magnetic piece 1.

[0027] The other end of the Mylar sheet 2 away from the magnetic piece 1 is provided with an external texture 6 for enhancing the friction with external objects to increase the stability of the magnet installation. Designing the external texture 6 on the other end of the Mylar sheet 2 away from the magnetic piece 1 can significantly improve the friction with external objects. Doing so not only enhances the stability of the magnet in contact with the target surface after installation, but also reduces the risk of slipping or loosening during use, thereby improving the stability and safety of the magnet installation.

[0028] The magnetic piece 1 is provided with a chamfer, which makes it easier to slide into or align with the target position during installation, effectively reducing edge friction and jamming. The chamfer design on the magnetic piece 1 can make it easier to slide into or align with the target position during installation. The chamfer design effectively reduces the friction and jamming of the edges of the magnetic piece 1, making the installation process smoother and avoiding unnecessary waste and improving installation accuracy.

[0029] The Mylar sheet 2 is provided with nanoscale micropores for releasing air bubbles generated during installation of the magnetic piece 1 to ensure that the Mylar sheet 2 is tightly attached to the target surface. The nanoscale micropores on the Mylar sheet 2 can help release air bubbles during installation, ensuring that the Mylar sheet 2 is more tightly attached to the target surface. The micropore design can effectively avoid the problems of poor adhesion or air bubble residue caused by air bubbles, thereby improving the overall adhesion effect after installation and the stability of long-term use.

[0030] The side of the magnetic piece 1 is laser etched with anti-slip texture via a laser mechanism; the anti-slip texture is used to increase the friction of the magnetic piece 1 during installation, improving installation stability. The anti-slip texture on the side of the magnetic piece 1 can increase the friction between it and the target surface during installation, thereby improving the overall installation stability. The anti-slip texture avoids the risk of the magnetic piece 1 slipping or falling off during installation, ensuring the reliability and safety of the installation process.

[0031] The magnetic piece 1 is also provided with a groove 8, and the Mylar sheet 2 is accommodated in the groove 8 and attached to the magnetic piece 1. The design of the groove 8 on the magnetic piece 1 can accommodate the Mylar sheet 2, making it tightly attached to the magnetic piece 1. This design enhances the adhesion stability between the Mylar sheet 2 and the magnetic piece 1, preventing the Mylar sheet 2 from falling off or shifting during use, thereby increasing the durability of the overall structure.

[0032] The release paper 3 is provided with a tear-off label or an indication mark, so as to facilitate the user to identify and accurately tear off the part of the release paper 3 covering the second body 5. The tear-off label or the indication mark provided on the release paper 3 can help the user to accurately identify and tear off the part of the release paper 3 covering the second body 5 during installation, and the design improves the operation convenience of the user.

[0033] The depth of the groove 8 on the magnetic piece 1 is the same as the thickness of the Mylar sheet 2. The depth of the groove 8 on the magnetic piece 1 is the same as the thickness of the Mylar sheet 2, which helps to ensure that the Mylar sheet 2 is completely embedded in the groove 8 and closely adheres to the magnetic piece 1, avoiding the phenomenon of uneven installation or insecure adhesion caused by the mismatch of the depth of the groove 8.

[0034] The surface of the Mylar sheet 2 is covered with an anti-ultraviolet coating to improve its durability when exposed to sunlight for a long time and prevent the adhesion from decreasing due to ultraviolet radiation. Covering the surface of the Mylar sheet 2 with an anti-ultraviolet coating can significantly improve its durability when exposed to sunlight for a long time. This coating can effectively prevent the adhesion from decreasing or the material from aging due to ultraviolet radiation, thereby prolonging the service life of the Mylar sheet 2 and ensuring that it maintains high adhesion performance in various environments.

[0035] The above is only a preferred embodiment of the present application, and for those skilled in the art, according to the idea of the present application, the specific implementation and application range can be changed, and the content of the specification should not be understood as a limitation of the present application.

Claims

1. A magnet mounting structure, characterized in that: The invention comprises a magnetic part (1), and a mylar sheet (2) pasted on the magnetic part (1), wherein the mylar sheet (2) is further provided with a release paper (3), and the release paper (3) is used to protect the sticky surface of the mylar sheet (2) before use, so as to ensure easy operation during installation; the magnetic part (1) comprises a first body (4) and a second body (5), wherein the angle between the first body (4) and the second body (5) is 0-180 degrees, the mylar sheet (2) is pasted on the first body (4), the release paper (3) covers the first body (4) and extends to form a tail portion located above the second body (5), and when in use, the tail portion is pinched to tear the release paper (3) covering the second body (5), thereby separating the release paper (3) on the first body (4) from the mylar sheet (2) and exposing the sticky surface of the mylar sheet (2).

2. The magnet mounting structure according to claim 1, characterized in that: The thickness of the Mylar sheet (2) is 0.05-1 mm.

3. The magnet mounting structure according to claim 1, wherein: The other end surface of the Mylar sheet (2) away from the magnetic member (1) is provided with an external texture (6) for enhancing the friction with external objects to increase the stability of the magnet installation.

4. The magnet mounting structure according to claim 1, wherein: The magnetic part (1) is provided with a chamfer, so that the magnetic part (1) can be more easily slid into or aligned with a target position during installation, effectively reducing friction and jamming at the edge.

5. The magnet mounting structure according to claim 1, wherein: The Mylar sheet (2) is provided with nano-scale micropores, which are used to release bubbles generated during installation when the magnetic component (1) is installed to ensure that the Mylar sheet (2) is tightly fitted to the target surface.

6. The magnet mounting structure according to claim 1, characterized in that: The side edge of the magnetic part (1) is laser-etched to form an anti-skid texture via a laser mechanism; the anti-skid texture is used to increase the friction of the magnetic part (1) during installation, thereby improving installation stability.

7. The magnet mounting structure according to claim 1, characterized in that: The magnetic member (1) is further provided with a groove (8), and the Mylar sheet (2) is accommodated in the groove (8) and fits with the magnetic member (1).

8. The magnet mounting structure according to claim 1, characterized in that: The release paper (3) is provided with an easy-tear label or an indicator mark, so that the user can easily identify and accurately tear off the portion of the release paper (3) covering the second body (5).

9. The magnet mounting structure according to claim 7, characterized in that: The depth of the groove (8) on the magnetic member (1) is the same as the thickness of the Mylar sheet (2).

10. The magnet mounting structure according to claim 1, characterized in that: The surface of the Mylar sheet (2) is covered with an anti-ultraviolet coating to improve its durability when exposed to sunlight for a long time and prevent the viscosity from decreasing due to ultraviolet radiation.