A modular magnet fixation component for a magnetotherapy device

The modular design of the magnetic therapy equipment fasteners, which combines a perforated base plate, an anti-fall ring, a slotted composite unit, and a height difference supplement strip, solves the problems of insufficient practicality and flexibility of the modular fasteners for magnetic therapy equipment, and achieves diversified installation and improved stability.

CN224269928UActive Publication Date: 2026-05-26HEYE HEALTH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEYE HEALTH TECH CO LTD
Filing Date
2025-07-25
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The existing modular magnet fixation components of magnetic therapy equipment have a single installation method, which is not practical or flexible enough, and the scope of application is limited.

Method used

It adopts a modular design including a perforated base plate unit, an anti-fall ring unit, a slotted composite unit, and a height difference supplement strip unit, providing screw and adhesive installation methods. Combined with the support structure of the anti-fall ring and the height difference supplement strip, it improves installation stability and ease of assembly and disassembly.

Benefits of technology

It enables diverse installation methods for magnet fasteners, improves practicality and flexibility, enhances the installation stability and ease of disassembly of magnets, and has a wider range of applications.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application belongs to the field of magnetic therapy equipment technology, and particularly relates to a modular magnet fixing component for magnetic therapy equipment. The fixing component includes a perforated base plate unit for mounting magnets, an anti-drop ring unit disposed on the perforated base plate unit for engaging the magnets, a slotted composite unit disposed on the perforated base plate unit for screwing and / or bonding the mounting surface, and a strip unit disposed on the perforated base plate unit, engaging with the slotted composite unit, and together with the anti-drop ring unit for supplementing the height difference of the magnetic therapy equipment plate. The beneficial effects of this application include at least the following: the slotted composite unit can provide the fixing component with more diverse installation methods, including screwing and / or bonding, further improving the practicality and flexibility of the fixing component.
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Description

Technical Field

[0001] This application belongs to the field of magnetic therapy equipment technology, and in particular relates to a modular magnet fixing component for magnetic therapy equipment. Background Technology

[0002] Commonly available magnetic therapy devices include magnetic therapy mattresses, magnetic therapy foot baths, magnetic therapy clothing, and magnetic therapy chairs. The core structure of these devices is a magnetic component, which can be an electromagnet or a permanent magnet.

[0003] Generally, a foot bath tub can be considered a magnetic therapy foot bath tub if a permanent magnet is fixedly installed inside it. Correspondingly, the aforementioned fasteners are used to provide sufficient fixing strength to the permanent magnet, preventing it from loosening or shifting inside the foot bath tub.

[0004] On the other hand, the aforementioned permanent magnets are generally magnets or magnetic particles. The term "modular" refers to the fact that multiple magnet fixing components can be selected when used in a magnetic foot bath tub, and each magnet fixing component is installed independently, making disassembly and replacement simpler and more efficient. This is the main advantage of modular components.

[0005] For example, Chinese utility model patent CN221307346U, with an authorization announcement date of July 12, 2024, discloses a restraining component for magnets. Its structure mainly includes a slotted substrate unit and an integral strip unit. The former includes a plate, openings, slots, and side seam grooves, while the latter includes a limiting cylinder, connecting strips, and a blocking strip for the component to approach.

[0006] The main advantage of the restraining component in this utility model patent is that when multiple components are used side by side in the horizontal direction, a certain degree of angle can be formed between each pair, allowing for relatively large deformation and ensuring full fit with the back contour.

[0007] However, in actual use, this restraining component still has at least the following impractical problems, specifically:

[0008] First, its installation method is limited to sewing, which greatly reduces its practicality.

[0009] Secondly, its overall strip unit can only be raised on the slotted film unit, which also limits its scope of application. Utility Model Content

[0010] This application provides a modular magnet fixation component for a magnetotherapy device. The technical problem it aims to solve is how to make the modular magnet fixation component have relatively high practicality and flexibility.

[0011] The technical solution adopted by this application to solve the above problems is: a modular magnet fixing component for a magnetic therapy device, the structure of which includes a perforated base plate unit for fitting magnets, an anti-drop ring unit disposed on the perforated base plate unit for engaging magnets, a slotted composite unit disposed on the perforated base plate unit for screwing and / or bonding mounting surfaces, and a strip unit disposed on the perforated base plate unit, engaging with the slotted composite unit, and together with the anti-drop ring unit for supplementing the height difference of the magnetic therapy device plate.

[0012] A further preferred technical solution is that the perforated base plate unit includes a base plate having the slotted composite unit, and a circular hole disposed on the base plate for attaching a magnet.

[0013] A further preferred technical solution is that the anti-fall ring unit includes a circular tube disposed on the base plate and used together with the circular hole to sleeve the magnet, and a blocking ring disposed on the circular tube and used to engage the end face of the magnet.

[0014] A further preferred technical solution is that the anti-fall ring unit also includes a lengthwise cut on the blocking ring and the tube, which is used to bend and deform the tube when the magnet needs to be removed.

[0015] A further preferred technical solution is that the slotted composite unit includes a countersunk hole disposed on the base plate, and an adhesive groove disposed on the lower surface of the base plate, communicating with the countersunk hole, and used for injecting adhesive.

[0016] A further preferred technical solution is that the slotted composite unit further includes a dual-purpose ring disposed within the countersunk hole and used to engage the height difference supplementary strip unit and the blocking bolt.

[0017] A further preferred technical solution is that the height difference supplementing strip unit includes a cuboid strip disposed on the base plate and used together with the anti-fall ring unit to support the magnetic therapy device plate, and a locking cylinder disposed on the cuboid strip and used to insert into the countersunk hole.

[0018] A further preferred technical solution is that the height difference supplementing strip unit further includes a weight reduction cavity disposed on the cuboid strip.

[0019] A further preferred technical solution is that the height difference supplementing strip unit further includes a fixing magnetic piece disposed on the engaging cylinder.

[0020] A further preferred technical solution is that the height difference supplementing strip unit also includes a cover sheet disposed on the fixing magnetic sheet.

[0021] The beneficial effects of this application include at least the following three points.

[0022] First, the slotted composite unit can provide the fastener with more diverse installation methods, including screwing and / or bonding, further enhancing the fastener's practicality and flexibility.

[0023] Secondly, the height difference supplement strip unit can be used or not. When used, it can support the magnetic therapy device together with the anti-fall ring unit. When not used, the anti-fall ring unit can be connected with the magnet to obtain a relatively protruding position feature. Both of the above methods have applicable scenarios, further improving the practicality of the fastener.

[0024] Third, the magnet provides sufficient installation stability and a certain degree of ease of disassembly and assembly in this fastener, which also contributes to the practicality and flexibility of the fastener. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of this application.

[0026] Figure 2 This is a schematic diagram illustrating one possible use of this application.

[0027] Figure 3 This is a schematic diagram of one shape of a magnet in the prior art.

[0028] Figure 4 This is a schematic diagram of the location and structure of the anti-fall ring unit in this application.

[0029] Figure 5 This is a schematic diagram showing the location and shape of the groove used for bonding in this application.

[0030] Figure 6 This is a schematic diagram showing the location of the magnet in this application.

[0031] Figure 7 This is a schematic diagram showing the location of the strip unit used to supplement the height difference in this application.

[0032] Figure 8 This is a schematic diagram of the structure of the strip unit used to supplement the height difference in this application.

[0033] Figure 9 This is a schematic diagram showing the location of the adhesive in this application.

[0034] Figure 10 This is a schematic diagram illustrating the opening method of the anti-fall ring unit in this application.

[0035] The meanings of the markings in the diagram are as follows.

[0036] a) Magnet, b) Mounting surface, c) Magnetic therapy equipment plate, d) Adhesive, e) Bolt, f) Foot bath tub;

[0037] 1. Perforated base plate unit; 2. Anti-fall ring unit; 3. Slotted composite unit; 4. Height difference supplement strip unit;

[0038] Base plate 101, circular hole 102;

[0039] Circular tube 201, blocking ring 202, lengthwise cut 203;

[0040] Countersunk hole 301, grooving for bonding 302, dual-purpose ring 303;

[0041] 401. Rectangular strip, 402. Engaging cylinder, 403. Weight-reducing cavity, 404. Magnetic chuck for fixing, 405. Covering sheet. Detailed Implementation

[0042] The following description is merely a preferred embodiment of this application and is not intended to limit the scope of this application.

[0043] like Figures 1-10 As shown, a modular magnet fixing component for a magnetic therapy device includes a perforated base plate unit 1 for fitting a magnet a, an anti-drop ring unit 2 disposed on the perforated base plate unit 1 for engaging the magnet a, a slotted composite unit 3 disposed on the perforated base plate unit 1 for screwing and / or bonding the mounting surface b, and a strip unit 4 disposed on the perforated base plate unit 1, engaging with the slotted composite unit 3, and together with the anti-drop ring unit 2 for supplementing the height difference of the magnetic therapy device plate c.

[0044] In this embodiment, the main body of the fixing component is made of plastic or rubber, and it can be used in magnetic therapy devices such as magnetic foot baths, magnetic waist belts, and magnetic chairs. The term "modular" refers to the fact that each fixing component can be installed and used independently. Several fixing components can be selected for the magnetic therapy device, and their arrangement can be flexibly configured. If any fixing component fails, it can be replaced individually, ultimately making the use of the fixing component and magnets more flexible and practical.

[0045] Specifically, the fixing component includes one perforated base plate unit 1, several anti-fall ring units 2, two slotted composite units 3, and two height difference supplementing strip units 4. All the anti-fall ring units 2 are located between two height difference supplementing strip units 4, and the position and number of the anti-fall ring units 2 correspond to magnet a.

[0046] The magnet 'a' is a commercially available product, generally made of artificial permanent magnet material, and is cylindrical in shape. Each fixing component is used with 2-5 magnets 'a'. The perforated base plate unit 1, the anti-fall ring unit 2, and the slotted composite unit 3 are integrally formed. The perforated base plate unit 1 and the height difference supplement strip unit 4 are movably connected through the slotted composite unit 3.

[0047] When using this fastener, the height difference supplementing strip unit 4 can be used or not. For example, when the fastener is used inside a foot bath tub f, the height difference supplementing strip unit 4 is used, together with the anti-fall ring unit 2, to support the magnetic therapy device plate c, which can be the inner bottom plate of the foot bath tub. When the fastener is used inside a magnetic therapy waist belt, neither of the two height difference supplementing strip units 4 is used, causing the anti-fall ring unit 2 to protrude relative to the perforated bottom plate unit 1, thereby connecting with the magnet a, to obtain a combined massage and magnetic therapy effect at the user's waist.

[0048] The perforated base plate unit 1 includes a base plate 101 with the slotted composite unit 3, and a circular hole 102 disposed on the base plate 101 for fitting a magnet a.

[0049] In this embodiment, the base plate 101 is rectangular in shape. When multiple fasteners are used together, they are generally arranged in a linear manner, either along the long side or the wide side of the rectangle.

[0050] The anti-fall ring unit 2 includes a circular tube 201 disposed on the base plate 101 and used together with the circular hole 102 to sleeve the magnet a, and a blocking ring 202 disposed on the circular tube 201 and used to engage the end face of the magnet a.

[0051] In this embodiment, the inner diameter of the circular tube 201 is the same as the diameter of the circular hole 102, both being larger than the diameter of the magnet a, while the inner diameter of the blocking ring 202 is smaller than the diameter of the magnet a. The magnet a is inserted and installed at the circular hole 102, and at the blocking ring 202, it achieves at least the following two effects:

[0052] First, one end face of the magnet a is exposed, making its magnetic therapy effect on the user's waist and feet more direct;

[0053] Secondly, the radial dimension of the blocking ring 202 is sufficient and appropriate, which can effectively block the magnet a and prevent the latter from accidentally slipping out and falling.

[0054] The anti-fall ring unit 2 also includes a lengthwise cut 203 disposed on the blocking ring 202 and the round tube 201, which is used to bend and deform the round tube 201 when the magnet a needs to be removed.

[0055] In this embodiment, when the fastener is used on the horizontal mounting surface b, the length of the cut 203 is vertical, completely penetrating the blocking ring 202 and the round tube 201, and is not cut on the base plate 101.

[0056] The main function of the length-direction cut 203 is that, although it will slightly reduce the anti-drop protection strength of the anti-drop ring unit 2 for the magnet a, when the magnet a needs to be replaced, it can be taken out at the length-direction cut 203 without having to take it out from the circular hole 102 or remove the entire fastener. This is very practical and flexible.

[0057] Correspondingly, at this time, the anti-fall ring unit 2 is "divided into two" by the length-direction cut 203, and its two parts are bent and deformed to both sides, so that the length-direction cut 203 can be opened and the magnet a can be taken out. The same applies when a new magnet a is inserted.

[0058] It should be noted that:

[0059] First, the term "length direction" in the length direction cut 203 refers to the fact that its cutting direction is the length direction of the circular tube 201;

[0060] Second, each of the aforementioned anti-fall ring units 2 includes one of the aforementioned lengthwise cutouts 203, which has two formed openings in this integral structure of the blocking ring 202 and the circular tube 201;

[0061] Third, the line connecting the two forming openings can be parallel or perpendicular to the length direction of the height difference supplementary strip unit 4, each with its own advantages and disadvantages. For example, the attached... Figure 1 As shown, the direction of the connecting line is parallel to the length direction. The advantage is that the length direction at the cut 203 is less likely to deform and open accidentally, and the magnet a is less likely to fall out accidentally. The disadvantage is that when the magnet a needs to be removed, the two height difference supplement strip units 4 need to be removed in advance and temporarily.

[0062] The slotted composite unit 3 includes a countersunk hole 301 disposed on the base plate 101, and an adhesive groove 302 disposed on the lower surface of the base plate 101, communicating with the countersunk hole 301, and used for injecting adhesive d.

[0063] In this embodiment, the adhesive groove 302 connects all the countersunk holes 301 arranged in a row on this side. The adhesive groove 302 is rectangular in shape, and the countersunk holes 301 can be used for installing bolts e and / or injecting adhesive d. For the former, please refer to the attached diagram. Figure 7 The latter method can be found in the appendix. Figure 9 .

[0064] The slotted composite unit 3 also includes a dual-purpose ring 303 disposed within the countersunk hole 301 and used to engage the height difference supplement strip unit 4 and the blocking bolt e.

[0065] In this embodiment, the dual-purpose ring 303 and the base plate 101 are integrally formed, and its inner diameter is appropriately smaller than the size of the bolt e head, so that the bolt e can be inserted and is relatively difficult to fall out. This is especially important and practical when the height difference supplement strip unit 4 is not used.

[0066] On the other hand, the dual-purpose marking on the dual-purpose ring 303 refers to its function in addition to the first one mentioned above, namely: serving as the engagement position of the insertion structure on the height difference supplementary strip unit 4.

[0067] Compared to the base plate 101 portion in the countersunk hole 301 area, the dual-purpose ring 303 can form a relatively larger amplitude, thus providing a relatively greater locking strength. This is one of the reasons for setting the dual-purpose ring 303.

[0068] The height difference supplement strip unit 4 includes a cuboid strip 401 disposed on the base plate 101 and used together with the anti-fall ring unit 2 to support the magnetic therapy device plate c, and a locking cylinder 402 disposed on the cuboid strip 401 and used to insert into the countersunk hole 301.

[0069] In this embodiment, the length of the cuboid strip 401 is equal to or slightly less than the length of the base plate 101, its width is set to twice the width plus the outer diameter of the blocking ring 202, which is equal to or slightly less than the width of the base plate 101, and its thickness is set so that the upper surface is roughly flush with the upper surface of the anti-fall ring unit 2.

[0070] The rectangular strip 401 and the engaging cylinder 402 are integrally formed, and the position and number of the engaging cylinder 402 correspond to the countersunk hole 301. When this fastener is used with bolt e, the engaging cylinder 402 can be pressed onto bolt e or not.

[0071] The height difference supplement strip unit 4 also includes a weight reduction cavity 403 disposed on the cuboid strip 401.

[0072] In this embodiment, the length direction of the weight reduction cavity 403 is the same as the length direction of the cuboid strip 401, and both ends of the former can be exposed, neither can be exposed, or only one end can be exposed.

[0073] Accordingly, the width and thickness of the weight reduction cavity 403 should not be too large, that is, the wall thickness of the height difference supplement strip unit 4 should not be too small, so as to avoid significantly reducing the structural strength of the height difference supplement strip unit 4.

[0074] The height difference supplement strip unit 4 also includes a fixing magnetic piece 404 disposed on the engaging cylinder 402.

[0075] In this embodiment, the general method of using the fixing magnetic piece 404 is as follows:

[0076] When the mounting surface b and / or bolt e are made of iron, the fixing magnetic plate 404 can be magnetically fixed to it, thereby reducing the probability of the height difference supplement strip unit 4 accidentally falling off.

[0077] The magnetic locating piece 404 for fixing is made of the same material as magnet a, and its shape is cylindrical with a vertical dimension smaller than that of the cylinder 402 for engaging.

[0078] The height difference supplement strip unit 4 also includes a cover sheet 405 disposed on the fixing magnetic sheet 404.

[0079] In this embodiment, the material and cross-sectional shape of the cover plate 405 are consistent with those of the locking cylinder 402. The installation method of the fixing magnetic piece 404 can be considered as follows: first, the locking cylinder 402 is unevenly divided into two parts; then, the fixing magnetic piece 404 is placed between the two parts; finally, the locking cylinder 402, the fixing magnetic piece 404, and the cover plate 405 are arranged sequentially to form a complete cylindrical structure. These three parts can be integrally formed or bonded together in pairs.

[0080] The main function of the cover plate 405 is to prevent the fixing magnetic plate 404 from directly impacting the bolt e and to prevent the fixing magnetic plate 404 from breaking.

[0081] The embodiments of this application have been described in detail above with reference to the accompanying drawings. However, this application is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various modifications can be made without departing from the spirit of this application. These are non-inventive modifications and are protected by patent law as long as they are within the scope of the claims of this application.

Claims

1. A modular magnet fixing component for a magnetotherapy device, characterized in that: The structure includes a perforated base plate unit (1) for fitting a magnet (a), an anti-fall ring unit (2) disposed on the perforated base plate unit (1) for engaging the magnet (a), a slotted composite unit (3) disposed on the perforated base plate unit (1) for screwing and / or bonding the mounting surface (b), and a strip unit (4) disposed on the perforated base plate unit (1) and engaging with the slotted composite unit (3), and together with the anti-fall ring unit (2) for supplementing the height difference of the magnetic therapy device plate (c).

2. The modular magnet fixing component for a magnetic therapy device according to claim 1, characterized in that: The perforated base plate unit (1) includes a base plate (101) with the slotted composite unit (3) and a circular hole (102) on the base plate (101) for attaching the magnet (a).

3. A modular magnet fixing component for a magnetic therapy device according to claim 2, characterized in that: The anti-fall ring unit (2) includes a round tube (201) disposed on the base plate (101) and used together with the round hole (102) to sleeve the magnet (a), and a blocking ring (202) disposed on the round tube (201) and used to engage the end face of the magnet (a).

4. A modular magnet fixing component for a magnetic therapy device according to claim 3, characterized in that: The anti-fall ring unit (2) also includes a lengthwise cut (203) provided on the blocking ring (202) and the tube (201) for bending and deforming the tube (201) when the magnet (a) needs to be removed.

5. A modular magnet fixing component for a magnetic therapy device according to claim 2, characterized in that: The slotted composite unit (3) includes a countersunk hole (301) provided on the base plate (101) and an adhesive groove (302) provided on the lower surface of the base plate (101), communicating with the countersunk hole (301) and used for injecting adhesive (d).

6. A modular magnet fixing component for a magnetic therapy device according to claim 5, characterized in that: The slotted composite unit (3) also includes a dual-purpose ring (303) disposed in the countersunk hole (301) and used to engage the height difference supplement strip unit (4) and the blocking bolt (e).

7. A modular magnet fixing component for a magnetic therapy device according to claim 5, characterized in that: The height difference supplement strip unit (4) includes a cuboid strip (401) disposed on the base plate (101) and used together with the anti-fall ring unit (2) to support the magnetic therapy device plate (c), and a locking cylinder (402) disposed on the cuboid strip (401) and used to insert into the countersunk hole (301).

8. A modular magnet fixing component for a magnetic therapy device according to claim 7, characterized in that: The height difference supplement strip unit (4) also includes a weight reduction cavity (403) disposed on the cuboid strip (401).

9. A modular magnet fixing component for a magnetic therapy device according to claim 7, characterized in that: The height difference supplement strip unit (4) also includes a fixing magnetic piece (404) disposed on the engaging cylinder (402).

10. A modular magnet fixing component for a magnetotherapy device according to claim 9, characterized in that: The height difference supplement strip unit (4) also includes a cover sheet (405) disposed on the fixing magnetic sheet (404).