Magnetic button structure for improving structural stability

By designing a snap-fit ​​part and a recessed structure in the magnetic button structure, combined with the support of the central support and magnetic plate, the problems of fastener deformation and poor fabric connection stability are solved, achieving higher structural stability and connection stability.

CN224179276UActive Publication Date: 2026-05-01WENZHOU HENGWANG HARDWARE JEWELRY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WENZHOU HENGWANG HARDWARE JEWELRY CO LTD
Filing Date
2025-06-23
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Currently, magnetic buttons are prone to deformation during use due to riveting and pressing operations, causing the internal magnetic pads to fail and resulting in insufficient stability in the connection with the fabric.

Method used

By designing the interlocking parts, concave and convex structures of the female and male fasteners, and combining them with the support of the middle support and magnetic plate, the structural stability of the fasteners is enhanced, and the connection stability with the fabric is improved through the fabric connector.

Benefits of technology

It improves the structural stability of the fastener and the connection stability with the fabric, enabling it to withstand certain pressure and avoid deformation and failure of the magnetic clasp.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a magnetic button structure for improving structural stability, which comprises a female fastener and a male fastener, and the female fastener and the male fastener are clamped through a clamping part and are connected in a magnetic manner through a magnetic sheet of the clamping part; the female fastener side cloth connecting piece is connected with the female fastener, and the male fastener side cloth connecting piece is connected with the male fastener; magnetic attraction sheets are integrated in the male fastener and the female fastener; a middle supporting piece is arranged in the female fastener, one end of the middle supporting piece is attached to the inner side face of the female fastener face cover to support the female fastener face cover, and the other end of the middle supporting piece is used for supporting an internal magnetic piece. According to the magnetic button structure, the structural stability of the fastener is improved through a plurality of supporting and connecting structures designed in the fastener, so that the fastener can bear certain pressure; meanwhile, the connection stability with the cloth can be improved through the design of the cloth connecting pieces and the fasteners.
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Description

Magnetic button structure to improve structural stability Technical Field

[0001] This utility model relates to the field of button technology, and in particular to a magnetic button structure for improving structural stability. The structural stability involved in this utility model includes the structural strength of the button body and the firmness of the connection between the button and the fabric. Background Technology

[0002] Compared to traditional buttons, magnetic buttons can quickly and accurately connect two fasteners (male and female) using the magnetic attraction of magnets inside the fastener. Currently, there are various magnetic button structures, but most traditional magnetic buttons have a magnetic sheet inside the outer shell, which is then pressed in using a riveting process. When in use, the magnetic attraction between the male and female fasteners is used to complete the connection and achieve the fastening function.

[0003] However, current magnetic buttons require riveting of the outer shell and internal components, and most are still pressed during use, except for a few magnetic buttons that use a flat surface for mating. Therefore, the stability of the fastener itself has not been resolved. During riveting and pressing operations, the large force applied to the outer shell can cause the fastener to deform. In severe cases, it can cause the internal magnetic plate to fail and damage the electroplating layer on the surface of the main components of the fastener.

[0004] Therefore, based on the above-mentioned technical problems, those skilled in the art urgently need to develop a magnetic button structure to improve structural stability. Summary of the Invention

[0005] The purpose of this invention is to provide a magnetic button structure that improves structural stability. The structure of the button is improved by multiple support and connection structures designed inside, enabling it to withstand certain pressure. At the same time, the design of the fabric connector and the button can improve the connection stability with the fabric.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] This utility model discloses a magnetic button structure for improving structural stability, the magnetic button structure comprising:

[0008] The female fastener and the male fastener are connected by a snap-fit ​​part and by a magnetic attraction piece in the snap-fit ​​part.

[0009] A female fastener-side fabric connector connected to the female fastener, and a male fastener-side fabric connector connected to the male fastener;

[0010] The male fastener's male fastener cover has a raised structure, and the female fastener's female fastener cover has a concave structure that mates with the raised structure, and the raised structure and the concave structure together form the snap-fit ​​portion.

[0011] Both the male fastener and the female fastener have integrated magnetic absorbing pieces.

[0012] The female fastener has a central support inside. One end of the central support is attached to the inner side of the female fastener cover to support the female fastener cover, and the other end of the central support is used to support the internal magnetic piece.

[0013] Furthermore, the female fastener includes:

[0014] The female fastener cover has a hollow interior forming a receiving cavity;

[0015] The middle support member is located inside the female fastener cover and near the bottom of the female fastener cover; and

[0016] A female fastener rear cover that is partially embedded inside the female fastener face cover and arranged on the upper part of the female fastener;

[0017] The upper end of the middle support is used to support the magnetic fastener piece of the female fastener, and the portion of the rear cover of the female fastener extending into the interior of the front cover of the female fastener wraps around the magnetic fastener piece of the female fastener.

[0018] The female fastener also includes:

[0019] The female fastener iron support is located at the upper end of the magnetic suction piece of the female fastener, and the female fastener iron support protrudes from the middle of the side facing the rear cover of the female fastener to form the female fastener iron support protrusion.

[0020] Furthermore, the female fastener cover and the male fastener have a groove machined at one end of their protruding structure, and this groove is the concave structure of the snap-fit ​​part.

[0021] The groove position of the female fastener cover has an inwardly folded female fastener cover flange, and the height of the female fastener cover flange is not greater than the height of the protruding structure.

[0022] The middle support has a snap-fit ​​space inside, and the bottom end of the middle support that mates with the female fastener cover has a middle support flange that folds towards the flange of the female fastener cover. The end of the middle support flange is close to the flange of the female fastener cover, and the middle support flange is connected to the inner wall of the female fastener cover.

[0023] Furthermore, the female fastener back cover is divided into a female fastener back cover embedded structure and a female fastener back cover protruding structure;

[0024] The female fastener back cover embedding structure is embedded into the inside of the female fastener face cover through the opening at the upper end of the female fastener face cover, and the female fastener back cover embedding structure part is bent toward the inner side wall of the female fastener face cover to form a receiving space for accommodating the female fastener magnetic piece.

[0025] The body of the female fastener iron support is placed inside the female fastener rear cover embedded structure and is pressed against the surface of the female fastener magnetic sheet through the bent part of the female fastener rear cover embedded structure;

[0026] The center of the protruding structure of the female fastener's rear cover has a first mounting hole.

[0027] Furthermore, the fabric connector on the female fastener side includes:

[0028] The female fastener is connected to the pipe body on the side; and

[0029] The female fastener side end cap is connected to the female fastener side connecting pipe body;

[0030] The female fastener's rear cover protruding structure has a tube through hole that mates with the female fastener's side connecting tube body, and the position where the female fastener's rear cover protruding structure mates with the female fastener's side connecting tube body has an inward and outward convex structure inner flange, and the female fastener's iron support protrusion is partially embedded inside the female fastener's side connecting tube body to support the female fastener's side connecting tube body.

[0031] The female fastener side end cap is connected to the female fastener side connecting piece of the female fastener side connecting pipe body;

[0032] The edge of the female fastener side end cap is folded to form a connecting portion, and the edge of the female fastener side connecting piece is bent toward the inside of the connecting portion to form a connection with the female fastener side end cap.

[0033] Furthermore, the male fastener includes:

[0034] The male fastener cover; and

[0035] A zinc alloy gasket structure is connected to the male fastener cover, and the fabric connector on the male fastener side is connected to the male fastener through the zinc alloy gasket structure;

[0036] A male fastener magnetic clasp is installed between the male fastener cover and the zinc alloy gasket structure.

[0037] Furthermore, the male fastener cover includes an upper protruding structure and a male fastener cover bend formed in the male fastener cover and the zinc alloy gasket structure;

[0038] The zinc alloy gasket structure includes:

[0039] Zinc alloy gasket section; and

[0040] A male fastener-side connection structure is formed on the side where the zinc alloy gasket part mates with the male fastener-side fabric connector;

[0041] The edge of the zinc alloy gasket is embedded in the bent portion of the male fastener cover and connected to the bent portion of the male fastener cover.

[0042] Furthermore, the male fastener side connection structure is divided into:

[0043] The lower protrusion protruding from the center of the zinc alloy gasket; and

[0044] The lower convex ring is located on the outer periphery of the lower convex portion;

[0045] The space between the lower protrusion and the lower protruding ring is the connection space for the fabric connector on the male fastener side.

[0046] Furthermore, the male fastener-side fabric connector includes:

[0047] Male fastener side connection pipe body; and

[0048] The male fastener-side end cap is connected to the male fastener-side connecting pipe body;

[0049] The end of the male fastener-side connecting tube is embedded in the connecting space, and the lower protrusion is embedded inside the male fastener-side connecting tube, and the lower protruding ring presses against the outer wall of the male fastener-side connecting tube;

[0050] The male fastener side end cap is connected to the male fastener side connecting piece of the male fastener side connecting pipe body;

[0051] The edge of the male fastener side end cap is folded to form a connecting portion, and the edge of the male fastener side connecting piece is bent inward toward the connecting portion to form a connection with the male fastener side end cap.

[0052] Furthermore, the female fastener side connecting piece is machined with a connecting piece through hole, and the copper sheet generated during processing is folded towards the back of the connecting piece through hole, so as to form a double-layer female fastener side connecting piece structure through the folding structure;

[0053] The male fastener side connecting piece is machined with a raised fabric fixing ring.

[0054] In the above technical solution, the magnetic button structure provided by this utility model for improving structural stability has the following beneficial effects:

[0055] The magnetic button structure of this utility model improves the structural stability of the button itself through multiple support and connection structures designed inside the button, enabling it to withstand a certain amount of pressure; at the same time, the design of the fabric connector and the button can improve the connection stability with the fabric. Attached Figure Description

[0056] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.

[0057] Figure 1 is a schematic diagram of the magnetic button structure disclosed in the embodiment of this application for improving structural stability;

[0058] Figure 2 is an exploded view of the magnetic button structure disclosed in the embodiment of this application for improving structural stability;

[0059] Figure 3 is a cross-sectional view of the magnetic button structure disclosed in the embodiment of this application for improving structural stability;

[0060] Figure 4 is a structural schematic diagram of the female fastener of the magnetic button structure disclosed in the embodiments of this application for improving structural stability;

[0061] Figure 5 is an exploded view of the female fastener of the magnetic button structure disclosed in the embodiments of this application for improving structural stability;

[0062] Figure 6 is a cross-sectional view of the female fastener of the magnetic button structure disclosed in the embodiment of this application for improving structural stability;

[0063] Figure 7 is an exploded view of the male fastener of the magnetic button structure disclosed in this application for improving structural stability.

[0064] Figure 8 is an exploded view of the male fastener of the magnetic button structure disclosed in the embodiment of this application for improving structural stability.

[0065] Figure 9 is a structural cross-sectional view of the male fastener of the magnetic button structure disclosed in the embodiment of this application for improving structural stability;

[0066] Figure 10 is an exploded view of the fabric connector on the female fastener side of the magnetic button structure disclosed in the embodiments of this application for improving structural stability.

[0067] Figure 11 is an exploded view of the fabric connector on the female fastener side of the magnetic button structure disclosed in the embodiment of this application for improving structural stability.

[0068] Figure 12 is a cross-sectional view of the fabric connector on the female fastener side of the magnetic button structure disclosed in this application for improving structural stability.

[0069] Figure 13 is an exploded view of the fabric connector on the male fastener side of the magnetic button structure disclosed in the embodiment of this application for improving structural stability.

[0070] Figure 14 is a cross-sectional view of the fabric connector on the male fastener side of the magnetic button structure disclosed in this application for improving structural stability.

[0071] Figure 15 is a schematic diagram of a modified structure of the magnetic button structure disclosed in the embodiments of this application for improving structural stability.

[0072] Figure 16 is an exploded view of a modified magnetic button structure disclosed in this application for improving structural stability.

[0073] Explanation of reference numerals in the attached figures:

[0074] 1. Female fastener; 2. Male fastener; 3. Fabric connector on the side of the female fastener; 4. Fabric connector on the side of the male fastener; 5. Connecting part;

[0075] 101. Female fastener cover; 102. Middle support; 103. Female fastener magnetic clip; 104. Female fastener iron support; 105. Female fastener rear cover;

[0076] 10101. Flanged front cover of female fastener; 10102. Recessed structure;

[0077] 10201, Middle support component flange;

[0078] 10401, Female fastener iron support protrusion;

[0079] 10501, Outward protrusion structure of the female fastener rear cover; 10502, Embedded structure of the female fastener rear cover; 10503, Inner flange of the outward protrusion structure; 10504, First mounting hole;

[0080] 201. Male fastener cover; 202. Zinc alloy gasket structure; 203. Male fastener magnetic clasp;

[0081] 20101, Raised structure; 20102, Bent part of male fastener cover;

[0082] 20201, Zinc alloy gasket section; 20202, Lower protrusion; 20203, Lower protrusion ring; 20204, Connecting space;

[0083] 301. Female fastener side connecting pipe body; 302. Female fastener side end cap;

[0084] 30101, Side tube of female fastener; 30102, Side connecting piece of female fastener; 30103, Through hole of connecting piece;

[0085] 401. Male fastener side connecting pipe body; 402. Male fastener side end cap;

[0086] 40101, Male fastener side tube; 40102, Male fastener side connecting piece; 40103, Raised fabric fixing ring. Detailed Implementation

[0087] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0088] See Figures 1 to 14;

[0089] This embodiment discloses a magnetic button structure for improving structural stability, the magnetic button structure comprising:

[0090] Female fastener 1 and male fastener 2 are connected by snap-fitting parts and magnetically attached by magnetic tabs in the snap-fitting parts.

[0091] The female fastener side fabric connector 3 is connected to the female fastener 1, and the male fastener side fabric connector 4 is connected to the male fastener 2;

[0092] The male fastener 2 has a male fastener cover 201 with a protruding structure 20101, and the female fastener 1 has a female fastener cover 101 with a concave structure 10102 that mates with the protruding structure 20101. The protruding structure 20101 and the concave structure 10102 form a snap-fit ​​part.

[0093] Both male fastener 2 and female fastener 1 have integrated magnetic absorbing pieces.

[0094] The female fastener 1 has a middle support 102 inside. One end of the middle support 102 is attached to the inner side of the female fastener cover 101 to support the female fastener cover 101, and the other end of the middle support 102 is used to support the internal magnetic piece.

[0095] Specifically, this embodiment discloses a novel magnetic button structure, which aims to solve the problems of fastener deformation under stress and poor stability of connection with fabric. The magnetic button structure of this embodiment mainly includes four parts: female fastener 1, male fastener 2, fabric connector 3 on the female fastener side, and fabric connector 4 on the male fastener side. Among them, female fastener 1 and male fastener 3 are connected by a snap-fit ​​part and a magnetic piece integrated inside the snap-fit ​​part, which achieves the effect of magnetic connection and avoids the problem of separation caused by lateral tension by using the snap-fit ​​part, resulting in better installation stability.

[0096] Secondly, in order to improve its structural strength and integrate the female fastener magnetic piece 103, the female fastener 1 in this embodiment has a middle support 102 inside and a female fastener rear cover 105 on the top. The middle support 102 and the female fastener rear cover 105 support and wrap the female fastener magnetic piece 103, so that it forms a strong energy-concentrating ring magnetic attraction structure with the iron support. In addition, the fastener structure of this application has multiple bending structures to improve structural strength, which will be described in detail below.

[0097] Preferably, the female fastener 1 in this embodiment includes:

[0098] The female fastener cover 101 has a hollow interior forming a receiving cavity.

[0099] The middle support 102 is located inside the female fastener cover 101 and is arranged near the bottom of the female fastener cover 101; and

[0100] The female fastener rear cover 105 is partially embedded inside the female fastener face cover 101 and arranged on the upper part of the female fastener 1;

[0101] The upper end of the middle support 102 is used to support the magnetic fastener 103 of the female fastener, and the part of the female fastener rear cover 105 extending into the interior of the female fastener face cover 101 wraps the female fastener magnetic fastener 103.

[0102] In this embodiment, the female fastener 1 further includes:

[0103] The female fastener iron support 104 is located at the upper end of the female fastener magnetic absorbing piece 103, and the female fastener iron support 104 protrudes from the middle of the side facing the female fastener rear cover 105 to form a female fastener iron support protrusion 10401.

[0104] First, let's analyze the overall structure of the female fastener 1 in this embodiment. It includes a female fastener face cover 101, a middle support 102, a female fastener magnetic absorbing piece 103, a female fastener iron support 104, and a female fastener rear cover 105. In this embodiment, all components are formed by stamping with a stamping machine, and the components are connected into a whole by riveting.

[0105] Secondly, the space inside the female fastener cover 101 in this embodiment is used to integrate the middle support 102, the female fastener magnetic piece 103, the female fastener iron support 104, and the female fastener rear cover 105 of this embodiment.

[0106] Furthermore, based on the above description of each component of the female fastener 1, this embodiment further defines the connection relationship of each structure of the female fastener 1, as well as the part that strengthens the structural strength of each structure. Specifically, in this embodiment, the female fastener cover 101 and the male fastener 2's protruding structure 20101 have a groove processed at one end, and this groove is the inner concave structure 10102 of the snap-fit ​​part; firstly, the inner concave structure 10102 processed by the female fastener cover 101 cooperates with the male fastener 2's protruding structure 20101 to form a snap-fit ​​part, which serves as a snap-fit ​​structure, thereby preventing the female fastener 1 and male fastener 2 from being pulled apart during use due to lateral forces, thus improving the stability of the connection.

[0107] Secondly, in this embodiment, the groove position of the female fastener cover 101 has an inwardly folded female fastener cover flange 10101, and the height of the female fastener cover flange 10101 is not greater than the height of the protrusion structure 20101; in this embodiment, the groove position of the female fastener cover 101 and the part that mates with the protrusion structure 20101 of the male fastener 2 form a bend to form the female fastener cover flange 10101. This female fastener cover flange 10101 can avoid scratches on the surface of the protrusion structure due to the sharp edges without flange structure, effectively solve the wear of the electroplated layer due to the sharp edges without flange structure, and has a certain snap-fit ​​guiding function.

[0108] Based on the structure of the female fastener cover 101 described above, a snap-fit ​​space is formed inside the middle support 102 in this embodiment. This snap-fit ​​space is mainly used to accommodate the protruding structure 20101 when the male fastener 2 is inserted. Through the design of this snap-fit ​​space, the protruding structure 20101 and the concave structure 10102 can be snapped together. It can also bring the magnetic pieces inside the male fastener 2 and the female fastener 1 closer to each other to achieve magnetic connection. At the same time, the bottom end of the middle support 102 of this embodiment that mates with the female fastener cover 101 has a middle support flange 10201 that folds towards the flange 10101 of the female fastener cover. The end of the middle support flange 10201 is close to the flange 10101 of the female fastener cover, and the middle support flange 10201 is connected to the inner wall of the female fastener cover 101.

[0109] In this embodiment, the middle support 102 is provided with a middle support flange 10201 on the side of the middle support 102 that mates with the female fastener cover 101 in order to support the female fastener cover 101. The middle support flange 10201 supports the bottom wall of the female fastener cover 101 and supports the female fastener magnetic piece 103 and the female fastener iron support 104 inside, and fits tightly with the female fastener rear cover 105 above.

[0110] Preferably, in this embodiment, the female fastener back cover 105 is divided into a female fastener back cover embedded structure 10502 and a female fastener back cover protruding structure 10501;

[0111] The female fastener back cover embedding structure 10502 is embedded into the interior of the female fastener face cover 101 through the opening at the upper end of the female fastener face cover 101, and part of the female fastener back cover embedding structure 10502 is bent toward the inner side wall of the female fastener face cover 101 to form a receiving space for accommodating the female fastener magnetic piece 103.

[0112] The body of the female fastener iron support 104 is placed inside the female fastener rear cover embedding structure 10502 and is pressed against the surface of the female fastener magnetic piece 103 through the bent part of the female fastener rear cover embedding structure 10502.

[0113] The center of the female fastener's rear cover protruding structure 10501 has a first mounting hole 10504.

[0114] This embodiment further defines the structure of the female fastener back cover 105, which is divided into two regions: the female fastener back cover embedded structure 10502 and the female fastener back cover protruding structure 10501, which are integrally formed. The female fastener back cover embedded structure 10502 is located inside the female fastener face cover 101, while the female fastener back cover protruding structure 10501 is exposed to the outside through the through hole at the upper end of the female fastener face cover 101, serving as a connection structure with the fabric connector 3 on the female fastener side.

[0115] In this embodiment, the female fastener back cover embedding structure 10502 is designed as a bent structure according to the thickness and width of the female fastener magnetic piece 103 and the female fastener iron support 104, so as to wrap the female fastener magnetic piece 103 and the female fastener iron support 104, and together with the lower middle support 102, it positions and fixes the female fastener magnetic piece 103.

[0116] Based on the structure of the female fastener 1 described above, this embodiment further defines the structure of the female fastener-side fabric connector 3, specifically: the female fastener-side fabric connector 3 includes a female fastener-side connecting tube 301; and a female fastener-side end cap 302 connected to the female fastener-side connecting tube 301.

[0117] Among them, the female fastener rear cover protruding structure 10501 has a tube through hole that mates with the female fastener side connecting tube 301, and the female fastener rear cover protruding structure 10501 mates with the female fastener side connecting tube 301 with an inward and outward protruding structure inner flange 10503, and the female fastener iron support protrusion 10401 is partially embedded in the female fastener side connecting tube 301 to support the female fastener side connecting tube 301;

[0118] The female fastener side end cap 302 is connected to the female fastener side connecting piece 30102 of the female fastener side connecting pipe body 301;

[0119] The edge of the female fastener side end cap 302 is folded to form a connecting portion 5, and the edge of the female fastener side connecting piece 30102 is bent toward the inside of the connecting portion 5 to form a connection with the female fastener side end cap 302.

[0120] In this embodiment, the inner flange 10503 of the outer protruding structure 10501 of the female fastener can cooperate with the outer wall of the female fastener side connecting tube 301, which not only forms a guiding and embedding structure with the female fastener side connecting tube 301, but also increases the connection area with the female fastener side connecting tube 301. The flange structure improves the connection stability with the fabric. The flange can cooperate with the rolled-up female fastener side connecting tube 301 to prevent the female fastener side connecting tube 301 from being easily pulled out.

[0121] Meanwhile, this embodiment further defines the connection structure between the female fastener-side connecting piece 30102 and the female fastener-side end cap 302. Firstly, the two are stamped together as a single unit. A connecting portion 5, formed by a folding design, is designed on the edge of the female fastener-side end cap 302. Note that this connecting portion 5 is also involved in the connection between the male fastener-side end cap 402 and the male fastener-side connecting piece 40102; therefore, the connection structure of the male fastener-side end cap 402 is described only in this context. The internal space of the connecting portion 5 is a curved embedding groove. Based on the bending length and angle of the embedding groove within the connecting portion 5, the edge of the female fastener-side connecting piece 30102 is designed to match it. Thus, after the edge is embedded, a stamping connection is performed to make it a single unit, improving structural stability.

[0122] The above text details the structure of the female fastener 1 and the female fastener-side connector 3, as well as the connection structure of the female fastener 1 and the female fastener-side connector 3. The following text further explains the structure and connection structure of the male fastener 2 and the male fastener-side connector 4.

[0123] Preferably, the male fastener 2 in this embodiment includes a male fastener cover 201; and a zinc alloy gasket structure 202 connected to the male fastener cover 201, and the fabric connector 4 on the male fastener side is connected to the male fastener 2 through the zinc alloy gasket structure 202.

[0124] A male fastener magnetic plate 203 is installed between the male fastener cover 201 and the zinc alloy gasket structure 202.

[0125] In this embodiment, the male fastener cover 201 includes an upper protruding structure 20101 and a male fastener cover bending portion 20102 formed in the male fastener cover 201 cooperating with the zinc alloy gasket structure 202.

[0126] The zinc alloy gasket structure 202 includes a zinc alloy gasket portion 20201; and a male fastener-side connection structure formed on the side of the zinc alloy gasket portion 20201 that mates with the male fastener-side fabric connector 4.

[0127] The edge of the zinc alloy gasket 20201 is embedded in the male fastener cover bend 20102 and connected to the male fastener cover bend 20102.

[0128] The male fastener 2 in this embodiment includes two parts: a male fastener cover 201 and a zinc alloy gasket structure 202. The upper part of the male fastener cover 201 is a protruding structure 20101, which is formed by stamping. The space inside the protruding structure 20101 is used to install the male fastener magnetic piece 203. At the same time, the lower part of the male fastener cover 201 is the part that connects with the zinc alloy gasket structure 202. The male fastener cover 201 forms a structure that connects with the zinc alloy gasket by utilizing the male fastener cover bending part 20102 formed at its lower part, and is stamped and connected as a whole.

[0129] Secondly, the male fastener side connection structure of this embodiment is divided into a lower protrusion 20202 protruding from the center of the zinc alloy gasket; and a lower protrusion ring 20203 located on the outer periphery of the lower protrusion 20202.

[0130] The space between the lower protrusion 20202 and the lower protrusion ring 20203 is the connection space 20204 of the male fastener side fabric connector 4.

[0131] The male fastener-side connection structure of this embodiment is divided into a lower protrusion 20202 and a lower protrusion ring 20203. The lower protrusion ring 20203 is located on the outer periphery of the lower protrusion 20202, and the space 20204 between the lower protrusion ring 20203 and the lower protrusion 20202 serves as the connection structure for the male fastener-side connecting tube 401 of the male fastener-side fabric connector 4. By using the lower protrusion ring 20203 to clamp the male fastener-side connecting tube 401 on the outside, the stability of the connection is improved. At the same time, the connection stability with the fabric can also be improved through this connection.

[0132] Preferably, the male fastener-side fabric connector 4 in this embodiment includes a male fastener-side connecting tube 401; and a male fastener-side end cap 402 connected to the male fastener-side connecting tube 401;

[0133] The end of the male fastener-side connecting tube 401 is embedded in the connecting space, and the lower protrusion 20202 is embedded inside the male fastener-side connecting tube 401, and the lower protrusion ring 20203 presses against the outer wall of the male fastener-side connecting tube 401.

[0134] The male fastener side end cap 402 is connected to the male fastener side connecting piece 40102 of the male fastener side connecting pipe body 401;

[0135] The edge of the male fastener side end cap 402 is folded to form a connecting portion 5, and the edge of the male fastener side connecting piece 40102 is bent toward the inside of the connecting portion 5 to form a connection with the male fastener side end cap 402.

[0136] In a preferred embodiment, the female fastener side connecting piece 30102 of this embodiment is processed with a connecting piece through hole 30103, and the copper sheet generated during processing is folded towards the back of the connecting piece through hole 30103, so as to form a double-layer female fastener side connecting piece structure through the folding structure; the double-layer female fastener side connecting piece structure can further strengthen the structural strength of this part and avoid deformation under stress.

[0137] Secondly, the male fastener side connecting piece 40102 in this embodiment is machined with a raised fabric fixing ring 40103. This raised fabric fixing ring 40103 can prevent stretch marks, achieving an aesthetically pleasing and non-slip effect, while also allowing it to contact the fabric, further increasing the connection stability with the fabric.

[0138] Referring to Figures 15 and 16, as an extended embodiment of this application, the structures of the female fastener 1, male fastener 2, female fastener-side fabric connector 3, and male fastener-side fabric connector 4 can be modified in many ways. For example, the structure of the male fastener side or the male fastener-side connector can be designed as a needle-like structure. Correspondingly, the structure of the female fastener side or the female fastener-side connector side can be designed to cooperate with the needle-like structure. At the same time, the male fastener-side fabric connector can be designed as a flat structure, which can provide better concealment when connected to the fabric and can be basically flush with the fabric.

[0139] In the above technical solution, the magnetic button structure provided by this utility model for improving structural stability has the following beneficial effects:

[0140] The magnetic button structure of this utility model improves the structural stability of the button itself through multiple support and connection structures designed inside the button, enabling it to withstand a certain amount of pressure; at the same time, the design of the fabric connector and the button can improve the connection stability with the fabric.

[0141] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A magnetic button structure for improving structural stability, characterized in that, The magnetic button structure includes: a female fastener (1) and a male fastener (2), the female fastener (1) and the male fastener (2) being snapped together by a snap-fit ​​part and connected by a magnetic fastener piece in the snap-fit ​​part; a female fastener side fabric connector (3) connected to the female fastener (1) and a male fastener side fabric connector (4) connected to the male fastener (2); the male fastener cover (201) of the male fastener (2) has a protruding structure (20101), and the female fastener cover (101) of the female fastener (1) has a structure that is connected to the male fastener (2) by a magnetic fastener piece. The protruding structure (20101) is matched with the concave structure (10102), and the protruding structure (20101) and the concave structure (10102) constitute the snap-fit ​​part; both the male fastener (2) and the female fastener (1) have integrated magnetic absorbing pieces; the female fastener (1) has a middle support (102) inside, one end of the middle support (102) is attached to the inner side of the female fastener cover (101) to support the female fastener cover (101), and the other end of the middle support (102) is used to support the internal magnetic absorbing piece.

2. The magnetic button structure for improving structural stability according to claim 1, characterized in that, The female fastener (1) includes: a female fastener cover (101), the interior of which is hollow to form a receiving cavity; a middle support (102) located inside the female fastener cover (101) and near the bottom of the female fastener cover (101); and a female fastener rear cover (105) partially embedded inside the female fastener cover (101) and located on the upper part of the female fastener (1); the upper end of the middle support (102) is used for To support the magnetic absorbing piece (103) of the female fastener, the portion of the female fastener rear cover (105) extending into the interior of the female fastener face cover (101) encloses the magnetic absorbing piece (103) of the female fastener; the female fastener (1) also includes: a female fastener iron support (104) located at the upper end of the female fastener magnetic absorbing piece (103), and the female fastener iron support (104) protrudes from the middle of the side facing the female fastener rear cover (105) to form a female fastener iron support protrusion (10401).

3. The magnetic button structure for improving structural stability according to claim 2, characterized in that, The female fastener cover (101) and the male fastener (2) have a groove at one end that mates with the protruding structure (20101), and this groove is the concave structure (10102) of the snap-fit ​​part; the groove of the female fastener cover (101) has an inwardly folded female fastener cover flange (10101), and the height of the female fastener cover flange (10101) is not greater than the height of the protruding structure (20101); the middle support piece (102) An interlocking space is formed inside, and the bottom end of the middle support (102) and the female fastener cover (101) have a middle support flange (10201) that folds towards the female fastener cover flange (10101), and the end of the middle support flange (10201) is close to the female fastener cover flange (10101), and the middle support flange (10201) is connected to the inner wall of the female fastener cover (101).

4. The magnetic button structure for improving structural stability according to claim 3, characterized in that, The female fastener back cover (105) is divided into a female fastener back cover embedded structure (10502) and a female fastener back cover protruding structure (10501). The female fastener back cover embedded structure (10502) is embedded into the female fastener face cover (101) through the opening at the upper end of the female fastener face cover (101), and the female fastener back cover embedded structure (10502) is bent towards the inner side wall of the female fastener face cover (101) to form a receiving space for accommodating the female fastener magnetic piece (103). The body of the female fastener iron support (104) is placed in the female fastener back cover embedded structure (10502) and pressed against the surface of the female fastener magnetic piece (103) through the bent part of the female fastener back cover embedded structure (10502). A first mounting hole (10504) is formed in the center of the female fastener back cover protruding structure (10501).

5. The magnetic button structure for improving structural stability according to claim 4, characterized in that, The fabric connector (3) on the female fastener side includes: a female fastener side connecting tube (301); and a female fastener side end cap (302) connected to the female fastener side connecting tube (301); the female fastener rear cover protruding structure (10501) has a tube through hole that mates with the female fastener side connecting tube (301), and the female fastener rear cover protruding structure (10501) and the female fastener side connecting tube (301) have an inward and outward convex structure inner flange (10503) at the mating position, and the female fastener iron support protrusion. (10401) Partially embedded inside the female fastener side connecting tube (301) to support the female fastener side connecting tube (301); the female fastener side end cap (302) is connected to the female fastener side connecting piece (30102) of the female fastener side connecting tube (301); the edge of the female fastener side end cap (302) is folded to form a connecting part (5), and the edge of the female fastener side connecting piece (30102) is bent toward the inside of the connecting part (5) to form a connection with the female fastener side end cap (302).

6. The magnetic button structure for improving structural stability according to claim 5, characterized in that, The male fastener (2) includes: the male fastener cover (201); and a zinc alloy gasket structure (202) connected to the male fastener cover (201), and the male fastener side fabric connector (4) is connected to the male fastener (2) through the zinc alloy gasket structure (202); a male fastener magnetic clasp (203) is installed between the male fastener cover (201) and the zinc alloy gasket structure (202).

7. The magnetic button structure for improving structural stability according to claim 6, characterized in that, The male fastener cover (201) includes an upper protruding structure (20101) and a male fastener cover bend (20102) formed on the male fastener cover (201) and the zinc alloy gasket structure (202); the zinc alloy gasket structure (202) includes: a zinc alloy gasket part (20201); and a male fastener side connection structure formed on the side of the zinc alloy gasket part (20201) that mates with the male fastener side fabric connector (4); the edge of the zinc alloy gasket part (20201) is embedded in the male fastener cover bend (20102) and connected to the male fastener cover bend (20102).

8. The magnetic button structure for improving structural stability according to claim 7, characterized in that, The male fastener side connection structure is divided into: a lower protrusion (20202) protruding from the center of the zinc alloy gasket (20201); and a lower protrusion ring (20203) located on the outer periphery of the lower protrusion (20202); the space between the lower protrusion (20202) and the lower protrusion ring (20203) is the connection space (20204) of the male fastener side fabric connector (4).

9. The magnetic button structure for improving structural stability according to claim 8, characterized in that, The male fastener-side fabric connector (4) includes: a male fastener-side connecting tube (401); and a male fastener-side end cap (402) connected to the male fastener-side connecting tube (401); the end of the male fastener-side connecting tube (401) is embedded in the connecting space (20204), and the lower protrusion (20202) is embedded inside the male fastener-side connecting tube (401), and the lower protrusion ring (20203) presses against the outer wall of the male fastener-side connecting tube (401); the male fastener-side end cap (402) is connected to the male fastener-side connecting piece (40102) of the male fastener-side connecting tube (401); the edge of the male fastener-side end cap (402) is folded to form a connecting part (5), and the edge of the male fastener-side connecting piece (40102) is bent toward the inside of the connecting part (5) to form a connection with the male fastener-side end cap (402).

10. The magnetic button structure for improving structural stability according to claim 9, characterized in that, The female fastener side connecting piece (30102) is machined with a connecting piece through hole (30103), and the copper sheet generated during processing is folded towards the back of the connecting piece through hole (30103) to form a double-layer female fastener side connecting piece structure through the folding structure; the male fastener side connecting piece (40102) is machined with a raised fabric fixing ring (40103).