Fixing device suitable for magnet and application of fixing device to magnetic wearable product

By using a fixing device consisting of a perforated base and two abutment rings in magnetic wearable products, the difficulty of magnetic attraction and adhesion of magnets is increased, forming a 'V-shaped' structure. This solves the problem of easy magnet attraction and improves ease of use and stability.

CN121796818APending Publication Date: 2026-04-07HEYE HEALTH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-02-26
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In existing magnetic wearable products, the magnets tend to stick together due to attraction, requiring frequent flattening before use, making it difficult to effectively prevent the magnets from sticking together.

Method used

A fixing device consisting of a perforated base and two abutting rings is used. When the fabric layer is folded or rolled, the perforated base and rings increase the difficulty of magnetic attraction and adhesion of the magnets, forming a 'V-shaped' structure to prevent the magnets from being completely adhered.

Benefits of technology

It significantly reduces the difficulty of flattening magnetic wearable products before use, enhances the stability and ease of use of magnets, and reduces the frequency of magnet attraction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of magnetic wearable product structures, and particularly relates to a fixing device suitable for magnets and application of the fixing device to magnetic wearable products. The fixing device structurally comprises a section of abutting base with holes and two sections of abutting ring bodies, wherein one section of the abutting base with the holes is used for being arranged on a cloth layer and connected with the magnets in a sleeved mode, and when the cloth layer is folded or curled and the two magnets get close in a magnetic attraction mode, the other section of the abutting base with the holes is connected in an abutting mode so that the magnetic attraction attaching difficulty of the two magnets can be increased. Wherein the two-section abutting ring body is arranged on the one-section abutting base with the holes and at least connected with the magnets in a sleeved mode, and when the cloth layer is folded or curled and the two magnets get close in a magnetic attraction mode, the two-section abutting ring body abuts against the other two-section abutting ring body so that the magnetic attraction attaching difficulty of the two magnets can be increased.
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Description

Technical Field

[0001] This application belongs to the field of magnetic wearable product structure technology, and in particular relates to a fixing device suitable for magnets and its application in magnetic wearable products. Background Technology

[0002] Common magnetic wearable products include magnetic vests, magnetic shawls, and magnetic belts.

[0003] Generally, the structure of the aforementioned magnetic wearable products mainly consists of the product body and magnets. The magnets are sewn and fixed to the main fabric, thus achieving a basic and relatively stable magnetic wearable effect.

[0004] Specifically, for example, the magnet is round and placed between two layers of fabric. A circular seam is sewn around the edge of the magnet to form a sewn line, and the two layers of fabric are sewn together to effectively fix the magnet in place.

[0005] For example, the utility model patent with authorization announcement number CN215135983U and authorization announcement date of 2021.12.14 discloses a magnetic fixation structure for magnetic therapy used in clothing, which mainly consists of: double-layer clothing fabric, magnetic groove group, U-shaped groove, and cloth strips.

[0006] The magnetic fixing structure in this utility model patent has the following functions and advantages: it uses sewing to form a sealed package, does not use glue, and can easily and quickly fix the magnet without slipping.

[0007] However, in practical use, this magnet fixing structure still has at least the following shortcomings in practicality, specifically:

[0008] The magnetic fixing structure makes it difficult to completely avoid the harmful attraction of the magnets, which means that the clothing needs to be flattened before each use. Even if all the magnets on the same side are set to the same pole, the fabric can still be attracted and stuck together by magnetic force after being twisted. The above-mentioned attraction phenomenon is still difficult to alleviate effectively. Summary of the Invention

[0009] This application provides a fixing device for magnets, and the technical problem to be solved is: how to make the magnets in magnetic wearable products not easily magnetically fixed in a completely sticky manner, thereby at least significantly reducing the difficulty of flattening the magnetic wearable products before use.

[0010] In addition, this application also provides an application of the above-mentioned fixing device in a magnetic wearable product.

[0011] The technical solution adopted by this application to solve the above problems is: a fixing device suitable for magnets, the structure of which includes a section of abutting a perforated base and two sections of abutting a ring body;

[0012] The perforated section of the base is used to be set on the fabric layer and fitted with a magnet. When the fabric layer is folded or rolled up and the two magnets are magnetically attracted to each other, it abuts against another perforated section of the base to increase the difficulty of magnetic attraction between the two magnets.

[0013] The two abutting rings are disposed on the base with holes in the first abutting ring and are at least sleeved with the magnets. When the fabric layer is folded or rolled up and the two magnets are magnetically attracted to each other, the two abutting rings abut against the other two abutting rings to increase the difficulty of magnetic attraction between the two magnets.

[0014] When the two magnets are magnetically attracted to each other, the perforated base section and the two abutting ring sections abut in sequence, or only the two abutting ring sections abut.

[0015] A further preferred technical solution is that: the perforated substrate section includes a substrate sheet for sewing onto the fabric layer, a central hole disposed on the substrate sheet for passing through the magnet, and an anti-adhesion upper edge disposed on the substrate sheet.

[0016] A further preferred technical solution is that the substrate is cross-shaped, and the number of anti-adhesion abutments on the upper edge is 4.

[0017] A further preferred technical solution is that the two-section abutment ring includes a central ring disposed on the substrate and fitted with a magnet together with the central hole, and an annular abutment surface disposed on the central ring for preventing adhesion.

[0018] A further preferred technical solution is that the two-section abutment ring body further includes a limiting protruding ring disposed on the central ring and used to engage the upper surface of the magnet.

[0019] A further preferred technical solution includes a connecting strip disposed on any two adjacent substrates.

[0020] A further preferred technical solution is that the connecting strip is pre-bent in a direction away from the fabric layer;

[0021] When the magnetic poles on the same side of two adjacent magnets are opposite poles, the connecting strip bends and deforms before the two anti-adhesion abutment edges come into contact with each other, and is then clamped by the two anti-adhesion abutment edges to increase the difficulty of magnetic adhesion between the two magnets.

[0022] A further preferred technical solution is that the perforated substrate section further includes vent holes disposed on the substrate sheet.

[0023] A further preferred technical solution is that: the perforated substrate section further includes a tensile deformation sewing piece disposed within the vent holes;

[0024] The stitching passes through the ventilation holes, and the stretchable sewing piece is sewn onto the fabric layer. At the same time, the two ends of the connecting strap are pulled up to increase the pre-bending range of the connecting strap.

[0025] An application of the aforementioned magnetic fixing device in magnetic wearable products: the fabric layer is magnetic vest fabric, magnetic shawl fabric, magnetic belt fabric, or the lining fabric of a magnetic outer garment;

[0026] The inner lining fabric is removable from the main fabric of the magnetic outer garment.

[0027] The beneficial effects of this application include at least the following seven points.

[0028] First, when the fabric layer is folded, the two adjacent fixing devices at the fold position are connected by a first abutment base with a hole and a second abutment ring, making it difficult for the two magnets to magnetically adhere to each other. The two magnets and the two fixing devices together form a "V" shape structure, so that the two magnets are only close to each other, rather than facing each other, which greatly reduces the difficulty of flattening the magnetic wearable product before use.

[0029] Secondly, when the fabric layer is folded or rolled up, any two fixing devices that are close to each other will abut against each other in sequence through a perforated base and two abutting rings, or only the two abutting rings. This also makes the two magnets and the two fixing devices form a "V" structure. The two magnets are only close to each other, rather than facing each other, which reduces the difficulty of flattening the magnetic wearable product before use.

[0030] Third, the connecting strap in this fixing device has at least the following three functions:

[0031] A. Connect several perforated base sections into an integral structure to facilitate the production and sewing of the fixing device;

[0032] B. The connecting strip is pre-bent, so that the connecting strip can be further bent between two adjacent fixing devices before the base of the abutting strip hole first abuts, and is eventually clamped by the anti-adhesion abutting top of each of the two bases of the abutting strip hole, thereby further increasing the difficulty of magnetic adhesion of the two magnets.

[0033] C. By stretching and deforming the sewing sheet, the stitching can further enhance the advantages of the connecting strip mentioned above, increasing the difficulty of magnetic attraction and bonding of the two magnets.

[0034] Fourth, the protruding ring for limiting the position in this fixing device has at least the following two functions:

[0035] A. The upper surface of the magnet, that is, the end face of the magnet away from the fabric layer, can be used to fix the magnet even if it is not sewn into the fabric layer.

[0036] B. Even if the two magnets are magnetically attached, they can be appropriately separated in the middle by two protruding rings, which can reduce the difficulty of separating the two magnets and reduce the difficulty of flattening the magnetic wearable product before use.

[0037] Fifth, the ventilation holes in this fixing device also serve at least the following three functions:

[0038] A. Basic breathable and heat-dissipating functions;

[0039] B. Provide a position indicator function for the suture to prevent the suture from getting too close to or too far from the magnet. The former may damage the sewing needle, while the latter may loosen and fall off the base plate.

[0040] C. By combining the sewn piece for stretching deformation, the pre-bending range of the connecting strip is further increased, forming a larger bending trend away from the direction of the fabric layer. Ultimately, it can be effectively clamped by the two anti-adhesion abutments, increasing the difficulty of magnetic adhesion between the two magnets.

[0041] Sixth, the aforementioned first-stage and second-stage abutment actions further enhance and refine the effect, meaning the seam can relatively forcefully press the upper surface grooves into the base sheet. When the fabric layer is folded or rolled, it can first cause the base sheet to bend and deform at the upper surface grooves. The reaction force of this deformation can appropriately increase the difficulty of further folding and rolling the base sheet, ultimately strengthening and supplementing the aforementioned first-stage and second-stage abutment actions.

[0042] Seventh, when this fixing device is used in magnetic wearable products, it has outstanding versatility and a wide range of applications, and it is equally applicable even if the magnet is not fixed to the fabric layer. Attached Figure Description

[0043] Figure 1 This is a schematic diagram showing the positional structure of the perforated base and the two abutting rings in this application.

[0044] Figure 2 This is a schematic diagram showing the position and shape of the central hole in this application from a downward viewing angle.

[0045] Figure 3This is a schematic diagram showing the position and shape of the connecting strip in this application.

[0046] Figure 4 This is a schematic diagram of the first structure of the fixing device in this application.

[0047] Figure 5 This is a schematic diagram of the second structure of the fixing device in this application.

[0048] Figure 6 This is a schematic diagram of one shape of the suture in this application.

[0049] Figure 7 This is a schematic diagram showing the layers in which the magnet is sewn and fixed within the fabric layer in this application.

[0050] Figure 8 This is a schematic diagram showing the position of the magnet placed only on the fabric layer in the vertical cross-section of this application.

[0051] Figure 9 This is a schematic diagram showing the position and shape of the sewn piece used for stretching deformation in this application. The circular lines in the diagram represent the boundaries of the cut-off portion.

[0052] Figure 10 This is a schematic diagram of the pre-bent shape of the connecting strip in this application.

[0053] Figure 11 This is a schematic diagram illustrating the principle of increasing the pre-bending amplitude of the connecting strip using the stitched sheet for tensile deformation in this application.

[0054] Figure 12 This is a schematic diagram of the mutual contact of the two anti-adhesion abutments on the top of the two strips in this application.

[0055] Figure 13 This is a schematic diagram showing the position of the two anti-adhesion abutments on the upper part of the two strips in this application, which clamp the bent connecting strip.

[0056] Figure 14 This is a schematic diagram showing the positions where the two anti-adhesion abutments on the top and the two annular anti-adhesion abutments on the cross-sections are in contact in this application.

[0057] Figure 15 This is a schematic diagram of the mutual contact of the annular contact surfaces used for anti-adhesion in this application.

[0058] Figure 16 This is a schematic diagram showing the location of the grooves on the upper surface in this application.

[0059] Figure 17 This is a schematic diagram of the bending deformation of the substrate at the groove on the upper surface in this application.

[0060] The meanings of the markings in the diagram are as follows.

[0061] 1. A base with a hole in the first section; 2. A ring body with a second section; 3. A connecting strip.

[0062] 101. Base sheet, 102. Center hole, 103. Anti-adhesion upper edge, 104. Ventilation hole, 105. Stitching sheet for stretching and deformation, 101-1. Upper surface groove;

[0063] Central ring 201, anti-adhesion annular abutment 202, limiting protruding ring 203;

[0064] a) Fabric layer, b) Magnet, c) Seam, d) Protruding position of the base sheet, e) Further bending position of the connecting strip. Detailed Implementation

[0065] The following description is merely a preferred embodiment of this application and is not intended to limit the scope of this application.

[0066] As attached Figure 1 - Appendix Figure 17 As shown, a fixing device suitable for magnets has a structure including a section of abutting a perforated base 1 and two sections of abutting a ring body 2.

[0067] The perforated base 1 is used to be set on the fabric layer a and fitted with magnet b. When the fabric layer a is folded or rolled up and the two magnets b are magnetically attracted to each other, it is used to increase the difficulty of magnetic attraction between the two magnets b by abutting against another perforated base 1.

[0068] The two-section abutting ring 2 is disposed on the one-section abutting perforated base 1 and is at least sleeved with the magnet b. When the fabric layer a is folded or rolled up and the two magnets b are magnetically attracted to each other, the two-section abutting ring 2 is abutted against to increase the difficulty of magnetic attraction between the two magnets b.

[0069] When the two magnets b are magnetically attracted to each other, the perforated base 1 and the two abutting rings 2 abut in sequence, or only the two abutting rings 2 abut.

[0070] In this embodiment, the fixing device is manufactured by integral molding, and the material is silicone, rubber, or plastic. One segment of the perforated substrate 1 and one segment of the abutment ring 2 together constitute a repeating unit of the fixing device. When this fixing device is used in a magnetic wearable product, the number of the repeating units is, for example, 2-50; specific examples can be found in the appendix. Figure 4 , 5 .

[0071] The reason why this fixing device makes it difficult for the magnets in wearable magnetic products to be magnetically fixed in a completely adhered manner is mainly due to the following two reasons.

[0072] First, to prevent the fabric layer a from frequently folding and sticking together, the magnetic poles on the same side of all the magnets b are set to be the same pole. At this time, it is difficult for two adjacent magnets b to stick together magnetically. However, after the fabric layer a is rolled up, some of the magnets b have been flipped over, so there is a tendency for magnets b to stick together magnetically.

[0073] In the above situation, generally the two adjacent magnets b have their respective corresponding two-segment abutment rings 2 abutting, allowing the two magnets b to form a "V-shaped" structure and remain in this state. This prevents the two magnets b from completely magnetically adhering to each other in a parallel manner. For details, please refer to the appendix. Figure 15 .

[0074] Secondly, when the magnetic pole orientation of the magnets b on fabric layer a is not uniformly set, there may be a magnetic attraction tendency between two adjacent magnets b. In this case, the corresponding fixing devices first have two perforated bases 1 abutting together. As the two magnets b move closer, the two two-section abutting rings 2 abutting together, ultimately forming a roughly "V-shaped" structure as described above. This also prevents two adjacent magnets b from completely magnetically adhering together. For details, please refer to the attached document. Figure 14 .

[0075] The above sequence of arrival corresponds to the main meaning of the phrase "section one, section two".

[0076] Finally, the following three points need special explanation.

[0077] Firstly, one of the prerequisites for preventing magnet b from completely magnetically adhering to each other is that the size parameters of magnet b, fixing device, distance between adjacent magnet b, and distance between adjacent fixing devices have been appropriately adjusted and set to ensure that the above-mentioned contact phenomenon can and easily occur.

[0078] Secondly, when the magnetic pole orientation of magnet b on fabric layer a is not uniformly set, the first type of contact action mentioned above can also be triggered and take effect.

[0079] Thirdly, the function of this fixing device is mainly to trigger the formation of the above-mentioned "V-shaped" structure as much as possible when the fabric layer a is folded or rolled up, rather than, and cannot completely prevent the magnets b from being parallel to each other and magnetically attracted to each other.

[0080] The perforated substrate 1 includes a substrate 101 for sewing onto the fabric layer a, a central hole 102 disposed on the substrate 101 for passing through the magnet b, and an anti-adhesion upper edge 103 disposed on the substrate 101.

[0081] In this embodiment, magnet b is a commercially available product, and its shape is a disc. The shape of the central hole 102 is also circular, and its diameter is larger than that of magnet b. This allows magnet b to be fully and appropriately squeezed into the central hole 102 even when it is covered by multiple layers of fabric.

[0082] Furthermore, the anti-adhesion abutment upper edge 103 can be a chamfered edge, a cut edge, or a raw right-angled edge.

[0083] The substrate 101 is cross-shaped, and the number of anti-adhesion abutments on the upper edge 103 is 4.

[0084] In this embodiment, the thickness of the substrate 101 is 1.0-3.0 mm.

[0085] The two-section abutment ring 2 includes a central ring 201 disposed on the substrate 101 and sleeved with the magnet b together with the central hole 102, and an annular abutment surface 202 for anti-adhesion disposed on the central ring 201.

[0086] In this embodiment, the inner diameter of the central ring 201 is equal to the diameter of the central hole 102, and their centers coincide. The anti-adhesion annular abutment surface 202 is formed on the upper end face and annular surface of the central ring 201, and is a complete annular circle.

[0087] The two-section abutment ring 2 also includes a limiting protruding ring 203 disposed on the central ring 201 and used to engage the upper surface of the magnet b.

[0088] In this embodiment, the inner diameter of the limiting protruding ring 203 is smaller than the diameter of the magnet b, thereby blocking the limiting magnet b.

[0089] When magnet b is sewn inside fabric layer a, the limiting protruding ring 203 can reinforce magnet b, thereby improving the installation stability of magnet b and the fixing device.

[0090] When magnet b is simply placed on fabric layer a, the limiting protruding ring 203 needs to cover and block magnet b relatively significantly to prevent it from falling off. In this case, the radial thickness of the limiting protruding ring 203 needs to be relatively large.

[0091] The structure of the fixing device also includes a connecting strip 3 disposed on any two adjacent substrates 101.

[0092] In this embodiment, the connecting strip 3 and the abutment strip hole base 1 are integrally formed, with the former being thinner than the latter. In the thickness direction of the abutment strip hole base 1, the connecting strip 3 is positioned relatively lower, at least in the upper half of the thickness of the base sheet 101, close to the fabric layer a. The lower surface of the base sheet 101 is flush with the lower surface of the connecting strip 3.

[0093] One of the functions of the connecting strip 3 is to connect several of the abutment strip hole bases 1 into an integral structure, which facilitates the production and sewing of the fixing device.

[0094] Specifically, for any one of the abutment-patterned base 1 segments, one connecting strip 3 can be provided at each of the four end positions corresponding to the four anti-adhesion abutment upper edges 103. Therefore, the number of connecting strips 3 on the abutment-patterned base 1 segment can be one, two, three, or four.

[0095] The connecting strip 3 is pre-bent in a direction away from the fabric layer a;

[0096] When the magnetic poles on the same side of two adjacent magnets b are opposite poles, the connecting strip 3 bends and deforms before the two anti-adhesion upper edges 103 abut against each other, and is then clamped by the two anti-adhesion upper edges 103 to increase the difficulty of magnetic adhesion between the two magnets b.

[0097] In this embodiment, the details are as follows: Figure 10 , 13 As shown, the connecting strip 3, combined with its specific curved shape, has the following new function:

[0098] If two adjacent magnets b have opposite magnetic poles on the same side, they tend to magnetically attract and stick together. At this time, the connecting strip 3 has a pre-bent feature, so it can be sandwiched in the middle by the two anti-sticking abutment strips 103 that were originally directly abutting each other. This makes the opening angle of the above-mentioned "V-shaped" structure larger, and relatively more difficult to close the opening. Ultimately, the effect of increasing the difficulty of magnetic attraction and sticking of the two magnets b is significantly enhanced.

[0099] The perforated substrate 1 also includes vent holes 104 disposed on the substrate 101.

[0100] In this embodiment, four ventilation holes 104 are provided on a single substrate 101, which are located on the inner side of the four anti-adhesion abutment upper edges 103 respectively.

[0101] The air vent 104 is rectangular or circular in shape.

[0102] The perforated substrate 1 also includes a stretchable sewing piece 105 disposed within the vent hole 104;

[0103] The sewing thread c passes through the ventilation hole 104 and sews the stretchable sewing piece 105 onto the fabric layer a. At the same time, it pulls up both ends of the connecting band 3 to increase the pre-bending range of the connecting band 3.

[0104] In this embodiment, four stitches c are provided on a single segment of the abutment-with-hole base 1, respectively located on the opposite inner side of the anti-adhesion upper edge 103. One stitch c can fix multiple segments of the abutment-with-hole base 1 at the same time.

[0105] Alternatively, the suture c may not pass through the vent hole 104, i.e., it may be located radially outside the vent hole 104. In this case, one of the prominent functions and advantages of the suture c is as follows.

[0106] The seam c is pressed out on the upper surface of the substrate 101 to form an upper surface groove 101-1. When the fabric layer a is folded or rolled, the fabric layer a first causes the substrate 101 to bend and deform at the position of the upper surface groove 101-1. The bending and deformation phenomenon can generate a reaction force on the fabric layer a. This reaction force can appropriately increase the difficulty of further folding and rolling of the fabric layer a, ultimately strengthening and supplementing the abutting action of the first section abutting the perforated substrate 1 and the second section abutting the ring 2.

[0107] This strengthening and supplementing effect is effective in both cases, whether the suture c passes through the vent 104 or not. Please refer to the appendix for details. Figure 16 , 17 .

[0108] At the same time, this strengthening and supplementing effect can occur and disappear at any time, and it does not contradict the effect of the connecting band 3 being sandwiched and deformed by the two substrates 101 described below. The two can be performed simultaneously and are independent of each other. The ultimate goal of these two effects is the same: to prevent the two magnets b from rotating and getting closer together as much as possible, otherwise the magnets b would easily be completely magnetically attracted and stuck together.

[0109] On the other hand, in the thickness direction of the substrate 101, the connecting strip 3 is positioned relatively low, that is, close to the fabric layer a. Conversely, the stretching and deformation sewing piece 105 is positioned relatively high, that is, far away from the fabric layer a.

[0110] On the other hand, the stretchable sewing piece 105 is rectangular in shape, with only one side edge adjacent to the anti-adhesion abutment upper edge 103 connected to the base sheet 101 as an integral structure. See the attached document for details. Figure 9 .

[0111] Therefore, the sewing thread c can pull the stretching sewing piece 105 downwards relatively slightly, causing deformation in the area between the anti-adhesion upper edge 103 and the ventilation hole 104, ultimately lifting both ends of the connecting band 3 upwards, further increasing the pre-bending range of the connecting band 3, making it easier for the connecting band 3 to be clamped by the two anti-adhesion upper edges 103, as shown in the attached figure. Figure 13 The gain effect shown is enhanced.

[0112] In addition, it should be noted that:

[0113] The reason why the connecting strip 3 is not designed with a large bending range during production is mainly to reduce the variable range of the distance between two adjacent sections of the abutment strip hole base 1. Otherwise, there will be obvious positional deviations between the several fixing devices arranged linearly in the horizontal and vertical directions.

[0114] Application of the aforementioned magnetic fixing device in magnetic wearable products: Fabric layer a is magnetic vest fabric, magnetic shawl fabric, magnetic belt fabric, or inner lining fabric of magnetic outerwear;

[0115] The inner lining fabric is removable from the main fabric of the magnetic outer garment.

[0116] In this embodiment, fabric layer a is generally a multi-layered structure, such as including various types of fabrics or films. The fixing device is disposed on the inner side of fabric layer a.

[0117] Furthermore, the shape of the lining fabric can be referenced, for example, in the appendix. Figure 6 The detachable connection between it and the main fabric of the magnetic outer garment includes magnetic attachment, Velcro fasteners, and zipper connections.

[0118] 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 fixing device suitable for magnets, characterized in that: The structure includes a perforated substrate (1) and two abutting rings (2); The perforated substrate (1) is used to be set on the fabric layer (a) and fitted with magnets (b). When the fabric layer (a) is folded or rolled up and the two magnets (b) are magnetically attracted to each other, the perforated substrate (1) is used to increase the difficulty of magnetic attraction between the two magnets (b). The two-section abutting ring (2) is disposed on the one-section abutting perforated base (1) and is at least sleeved with the magnet (b). When the fabric layer (a) is folded or rolled up and the two magnets (b) are magnetically attracted to each other, the two-section abutting ring (2) is abutted to increase the difficulty of magnetic attraction between the two magnets (b). When the two magnets (b) are magnetically attracted to each other, the perforated base (1) and the two abutting rings (2) abut in sequence, or only the two abutting rings (2) abut.

2. The fixing device for magnets according to claim 1, characterized in that: The perforated substrate (1) includes a substrate sheet (101) for sewing onto the fabric layer (a), a central hole (102) disposed on the substrate sheet (101) for passing through the magnet (b), and an anti-adhesion upper edge (103) disposed on the substrate sheet (101).

3. A fixing device suitable for magnets according to claim 2, characterized in that: The substrate (101) is cross-shaped, and the number of anti-adhesion abutments (103) is 4.

4. A fixing device suitable for magnets according to claim 2, characterized in that: The two-section abutment ring (2) includes a central ring (201) disposed on the substrate (101) and fitted together with the magnet (b) through the central hole (102), and an anti-adhesion annular abutment surface (202) disposed on the central ring (201).

5. A fixing device suitable for magnets according to claim 4, characterized in that: The two-section abutment ring (2) also includes a limiting protruding ring (203) disposed on the central ring (201) and used to engage the upper surface of the magnet (b).

6. A fixing device suitable for magnets according to claim 2, characterized in that: It also includes a connecting strip (3) disposed on any two adjacent substrates (101).

7. A fixing device suitable for magnets according to claim 6, characterized in that: The connecting strip (3) is pre-bent in a direction away from the fabric layer (a); When the magnetic poles on the same side of two adjacent magnets (b) are opposite poles, the connecting strip (3) is bent and deformed before the two anti-adhesion upper edges (103) abut against each other, and is then clamped by the two anti-adhesion upper edges (103) to increase the difficulty of magnetic adhesion between the two magnets (b).

8. A fixing device for magnets according to claim 7, characterized in that: The perforated substrate (1) further includes vent holes (104) disposed on the substrate (101).

9. A fixing device for magnets according to claim 8, characterized in that: The perforated substrate (1) further includes a stretchable sewing piece (105) disposed within the vent (104). In this process, the sewing thread (c) passes through the ventilation hole (104), and the stretching and deformation sewing piece (105) is sewn onto the fabric layer (a). At the same time, the two ends of the connecting band (3) are pulled up to increase the pre-bending range of the connecting band (3).

10. The application of a magnetic fixing device as described in any one of claims 1-9 in a magnetic wearable product, characterized in that: The fabric layer (a) is magnetic vest fabric, magnetic shawl fabric, magnetic belt fabric, or the lining fabric of a magnetic outer garment; The inner lining fabric is removable from the main fabric of the magnetic outer garment.

Citation Information

Patent Citations

  • Magnet fixing structure for magnetic therapy of bedding and clothing

    CN215135983U