Magnetic attraction male buckle, magnetic attraction female buckle and magnetic attraction snap buckle combination
By designing a combination of magnetic suction male buckle, magnetic suction female buckle and magnetic suction four-combination buckle, the combination of magnets and elastic parts is used to solve the problem of traditional rope buckle shaking during movement, and a stable and safe clothing connection is achieved.
Patent Information
- Application Number
- CN202422007429.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-19
AI Technical Summary
The rope buckles in traditional clothing are easy to shake during outdoor activities or exercises, and are not safe to use.
A magnetic male buckle, magnetic female buckle and magnetic four-combined buckle are designed. The built-in magnet is adsorbed and fixed with the metal fastener, and combined with the elastic and press fastener design, stable connection and adjustable tightness are achieved.
It provides stable and reliable clothing connections, prevents drawstrings from swinging, improves the stability and safety of the overall structure, and is suitable for outdoor activities and sports scenarios.
Smart Images

Figure CN222982578U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of clothing accessories, and particularly relates to a magnetic male buckle, a magnetic female buckle and a magnetic snap fastener combination. Background Art
[0002] Modern consumers have higher and higher requirements for the convenience of products. Especially in outdoor activities, sports and other scenarios, consumers have higher requirements for the stability of clothing connection, and need the connecting parts to firmly fix the clothing to prevent it from coming apart under strenuous exercise or in harsh environments.
[0003] The rope buckles in traditional clothing and accessories have a single structure and can only adjust the position of the rope buckle. However, during outdoor activities and sports, the rope buckle will swing and come apart under the user's strenuous exercise, which is likely to cause accidental injury.
[0004] Therefore, it is necessary to provide a magnetic male buckle, a magnetic female buckle and a magnetic snap fastener combination to solve the above technical problems. Summary of the Utility Model
[0005] The utility model provides a magnetic male buckle, a magnetic female buckle and a magnetic snap fastener combination to solve the problem that the rope buckle in the prior art is easy to shake and unsafe to use during the use process.
[0006] To solve the above technical problems, the technical solution of the utility model is: a magnetic male buckle, which comprises:
[0007] A first housing, which is a hollow cylindrical structure. One end of the first housing is provided with a first bottom plate. A first rope passing hole for passing a drawstring is provided on the side wall of the first housing. A first plug-in member is arranged on the side of the first bottom plate away from the opening end of the first housing, and the first plug-in member is inserted into a metal female buckle;
[0008] A first pressing buckle, which is slidably connected to the inner wall of the first housing. The other end of the first pressing buckle penetrates through the side of the first housing away from the first bottom plate. The first pressing buckle is provided with a second rope passing hole corresponding to the first rope passing hole;
[0009] A first elastic member, which is arranged in the first housing and located between the first bottom plate and the first pressing buckle. The first elastic member drives the first pressing buckle to press the drawstring tightly; and
[0010] A first magnet, which is arranged between the first elastic member and the first bottom plate. The first magnet makes the magnetic male buckle and the metal female buckle adsorb and fix.
[0011] In the utility model, a first connection groove is arranged on the side of the first bottom plate close to the first pressing buckle, and the first magnet is arranged in the first connection groove.
[0012] In the present utility model, a first sliding groove is provided on the side wall of the first housing;
[0013] The first pressing buckle includes:
[0014] A first sliding part is arranged at one end of the first pressing buckle. The first sliding part is provided with a first slider, and the first slider is slidably connected with the first sliding groove;
[0015] A first extending part is arranged in the middle of the first pressing buckle, and the second rope-passing hole is arranged on the first extending part; and
[0016] A first pressing part is arranged at the other end of the first pressing part, and the first pressing part is used for pressing and controlling.
[0017] In the present utility model, along the movement track of the first pressing buckle, the first pressing buckle includes a first state for threading the rope and a second state for pressing the drawstring;
[0018] When the first pressing buckle is in the first state, the first rope-passing hole is aligned with the second rope-passing hole for threading the drawstring; when the pressing buckle is in the second state, the second rope-passing hole is misaligned with the first rope-passing hole, and the hole wall of the second rope-passing hole presses the drawstring.
[0019] In the present utility model, two groups of first rope-passing holes are provided, and the two groups of first rope-passing holes are oppositely arranged on both sides of the first housing;
[0020] Two groups of second rope-passing holes are provided, and the two groups of second rope-passing holes correspond to the two groups of first rope-passing holes one by one.
[0021] The present utility model also provides a magnetic female buckle, which includes:
[0022] A second housing, which is a hollow cylindrical structure. One end of the second housing is provided with a second bottom plate, and the side wall of the second housing is provided with a second rope-passing hole for threading the drawstring;
[0023] A second pressing buckle is slidably connected with the inner wall of the second housing. The other end of the second pressing buckle penetrates through the side of the second housing away from the second bottom plate, and the second pressing buckle is provided with a second rope-passing hole corresponding to the second rope-passing hole;
[0024] A second elastic member is arranged in the second housing and is located between the second bottom plate and the second pressing buckle. The second elastic member drives the second pressing buckle to press the drawstring; and
[0025] A second magnet is arranged between the second elastic member and the second bottom plate. The second magnet makes the magnetic female buckle adsorb and fix with the metal male buckle;
[0026] On the side of the second base plate away from the open end of the second housing, a second insertion slot is provided, and the second insertion slot is inserted with a male metal buckle.
[0027] In the present utility model, a second connection slot is provided on the second base plate close to the second pressing buckle, and the second magnet is arranged in the second connection slot.
[0028] In the present utility model, a positioning post is provided on the second base plate close to the second pressing buckle, and the positioning post is located in the second connection slot;
[0029] The second magnet is provided with a positioning hole, and the positioning post is inserted into the positioning hole.
[0030] In the present utility model, a second sliding groove is provided on the side wall of the second housing;
[0031] The second pressing buckle includes:
[0032] A second sliding part is arranged at one end of the second pressing buckle. The second sliding part is provided with a second slider, and the second slider is slidably connected with the second sliding groove;
[0033] A second extending part is arranged in the middle of the second pressing buckle, and the second rope-passing hole is arranged in the second extending part; and
[0034] A second pressing part is arranged at the other end of the second pressing part, and the second pressing part is used for pressing and controlling.
[0035] The present utility model also provides a magnetic snap fastener combination, which includes:
[0036] A magnetic male buckle, which includes a first housing and a first magnet arranged in the first housing. One end of the first housing is provided with a first base plate, and a first insertion part is arranged on the side of the first base plate away from the open end of the first housing; and
[0037] A magnetic female buckle, which includes a second housing and a second magnet arranged in the second housing. One end of the second housing is provided with a second base plate, and a second insertion slot is arranged on the side of the second base plate away from the open end of the second housing;
[0038] The first insertion part is inserted into the second insertion slot, the magnetic poles of the first magnet and the second magnet are opposite, and the first magnet and the second magnet adsorb each other.
[0039] Compared with the prior art, the beneficial effects of the present utility model are as follows: In the combination of the magnetic male buckle, magnetic female buckle and magnetic snap fastener of the present utility model, the magnetic male buckle is adsorbed and fixed to the metal female port through the built-in first magnet. This magnetic connection method provides a stable and reliable connection and is not easily loosened or detached due to external forces. The sliding connection design between the first press button and the inner wall of the first housing enables users to press the drawstring to be tightened and released through a simple pressing operation. Users can adjust the tightness of the drawstring according to their needs. When the magnetic male buckle is connected to the metal female port, due to the adsorption force of the first magnet, the connected drawstring can be effectively prevented from swinging, improving the stability and safety of the overall structure.
[0040] The magnetic female buckle is adsorbed and fixed to the metal male buckle through the built-in second magnet. The sliding connection design between the second press button and the inner wall of the second housing enables users to press the drawstring to be tightened and released through a simple pressing operation. When the magnetic female buckle is connected to the metal male buckle, due to the adsorption force of the second magnet, the connected drawstring can be effectively prevented from swinging, improving the stability and safety of the overall structure.
[0041] When the clothing needs to be closed, the magnetic male buckle and the magnetic female buckle in the magnetic snap fastener combination are also adsorbed and fixed to each other through the magnets inside, which not only improves the stability of the magnetic snap fastener combination but also avoids the swinging of the drawstring when the clothing is closed. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following briefly introduces the drawings required for use in the embodiments. The drawings described below are only the corresponding drawings of some embodiments of the present utility model.
[0043] Figure 1 A three-dimensional view of the magnetic male buckle in the preferred embodiment of the present utility model in the use state.
[0044] Figure 2 A cross-sectional view of the magnetic male buckle in the preferred embodiment of the present utility model.
[0045] Figure 3 An exploded view of the structure of the magnetic male buckle in the preferred embodiment of the present utility model.
[0046] Figure 4 A three-dimensional view of the magnetic female buckle in the preferred embodiment of the present utility model in the use state.
[0047] Figure 5 A cross-sectional view of the magnetic female buckle in the preferred embodiment of the present utility model.
[0048] Figure 6 An exploded view of the structure of the magnetic female buckle in the preferred embodiment of the present utility model.
[0049] Figure 7 Schematic diagram of the magnetic snap fastener combination of the preferred embodiment of the present utility model.
[0050] Figure 8 Cross-sectional view of the magnetic snap fastener combination of the preferred embodiment of the present utility model.
[0051] Figure 9 Usage state diagram of the magnetic male snap of the preferred embodiment of the present utility model.
[0052] Figure 10 Usage state diagram of the magnetic snap fastener combination of the preferred embodiment of the present utility model.
[0053] Reference numerals: 10, magnetic snap fastener combination; 11, magnetic male snap; 111, first housing; 1111, first threading hole; 1112, first bottom plate; 1113, first plug-in member; 1114, first connection groove; 1115, first sliding groove; 112, first pressing button; 1121, first sliding portion; 11211, first slider; 1122, first extension portion; 11221, second threading hole; 1123, first pressing portion; 113, first elastic member; 114, first magnet; 12, magnetic female snap; 121, second housing; 1211, third threading hole; 1212, second bottom plate; 1213, second plug-in slot; 1214, second connection groove; 1215, positioning post; 1216, second sliding groove; 122, second pressing button; 1221, second sliding portion; 12211, second slider; 1222, second extension portion; 12221, fourth threading hole; 1223, second pressing portion; 123, second elastic member; 124, second magnet; 1241, positioning hole; 21, metal female snap; 211, first plug-in slot; 22, metal male snap; 221, second plug-in member. Detailed implementation manners
[0054] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative efforts fall within the protection scope of the present utility model.
[0055] In the figures, units with similar structures are denoted by the same reference numerals.
[0056] In the terms of the present utility model, words such as "first" and "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance, nor as limiting the order of precedence.
[0057] Please refer to Figure 1 and Figure 2, where Figure 1 is a three-dimensional view of the magnetic male buckle in the preferred embodiment of the present utility model in use. Figure 2 is a cross-sectional view of the magnetic male buckle in the preferred embodiment of the present utility model.
[0058] The following is a preferred embodiment of a magnetic male buckle, a magnetic female buckle, and a magnetic four-in-one buckle combination provided by the present utility model that can solve the above technical problems.
[0059] A preferred embodiment of the magnetic male buckle, magnetic female buckle, and magnetic four-in-one buckle combination provided by the present utility model is as follows: A magnetic male buckle 11, which includes a first housing 111, a first pressing buckle 112, a first elastic member 113, and a first magnet 114. The first housing 111 is a hollow cylindrical structure. One end of the first housing 111 is provided with a first bottom plate 1112. The side wall of the first housing 111 is provided with a first rope-passing hole 1111 for threading a drawstring. On the side of the first bottom plate 1112 away from the opening end of the first housing 111, a first plug-in member 1113 is provided, and the first plug-in member 1113 is inserted into the metal female buckle 21. In this embodiment, the metal female buckle 21 is provided with a first plug-in groove 211, and the first plug-in member 1113 is inserted into the first plug-in groove 211.
[0060] The first pressing buckle 112 is slidably connected to the inner wall of the first housing 111. The other end of the first pressing buckle 112 penetrates through the side of the first housing 111 away from the first bottom plate 1112. The first pressing buckle 112 is provided with a second rope-passing hole 11221 corresponding to the first rope-passing hole 1111; the first elastic member 113 is arranged in the first housing 111 and is located between the first bottom plate 1112 and the first pressing buckle 112. The first elastic member 113 drives the first pressing buckle 112 to press the drawstring tightly; the first magnet 114 is arranged between the first elastic member 113 and the first bottom plate 1112. The first magnet 114 makes the magnetic male buckle 11 and the metal female buckle 21 adsorb and fix.
[0061] The magnetic male buckle 11 realizes adsorption and fixation with the metal female buckle 21 (or the magnetic female buckle 12) through the built-in first magnet 114. This design not only provides a stable connection but also allows users to quickly connect and disconnect according to needs, realizing the functions of being fixable and adjustable. When the magnetic male buckle 11 and the metal female buckle 21 (or the magnetic female buckle 12) are tightly adsorbed, due to the adsorption force of the first magnet 114, it can effectively prevent unnecessary swinging of the connected drawstring or other components. It is applicable to various scenarios requiring stable connection, such as backpacks, clothes, shoes, etc., and has strong adaptability.
[0062] Combined Figure 2 and Figure 3 , the structure of the magnetic male buckle 11 is elaborated in detail as follows:
[0063] In this embodiment, a first connection groove 1114 is provided on the first bottom plate 1112 near the first press button 112, and the first magnet 114 is arranged in the first connection groove 1114, so that the first magnet 114 can be stably installed at a specified position, avoiding the displacement or detachment of the first magnet 114.
[0064] In this embodiment, a first sliding groove 1115 is provided on the side wall of the first housing 111; the first press button 112 includes a first sliding part 1121, a first extension part 1122 and a first pressing part 1123; the first sliding part 1121 is arranged at one end of the first press button 112, and a first sliding block 11211 is arranged on the first sliding part 1121, and the first sliding block 11211 is slidably connected with the first sliding groove 1115; the first extension part 1122 is arranged in the middle of the first press button 112, and a second rope passing hole 11221 is arranged on the first extension part 1122; the first pressing part 1123 is arranged at the other end of the first pressing part 1123, and the first pressing part 1123 is used for pressing and controlling the magnetic male buckle 11. The first housing 111 is slidably connected with the first sliding groove 1115 through the first sliding block 11211, improving the connection stability between the first press button 112 and the first housing 111.
[0065] In this embodiment, along the movement track of the first press button 112, the first press button 112 includes a first state for passing the rope and a second state for pressing the drawstring; when the first press button 112 is in the first state, the first rope passing hole 1111 is aligned with the second rope passing hole 11221 for passing the drawstring; when the first press button 112 is in the second state, the second rope passing hole 11221 is misaligned with the first rope passing hole 1111, and the hole wall of the second rope passing hole 11221 presses the drawstring. The user can easily switch the state according to needs, which is convenient for passing the rope and can press the drawstring when needed, improving the flexibility of use.
[0066] In this embodiment, there are two groups of first rope passing holes 1111, and the two groups of first rope passing holes 1111 are oppositely arranged on both sides of the first housing 111; there are two groups of second rope passing holes 11221, and the two groups of second rope passing holes 11221 correspond to the two groups of first rope passing holes 1111 one by one. The double-hole design increases the connection strength and stability, and is suitable for thicker drawstrings or scenarios requiring higher connection strength.
[0067] Combined Figure 4 and Figure 5 and, Figure 4 is a three-dimensional view of the use state of the magnetic female buckle of the preferred embodiment of the present utility model. Figure 5 is a cross-sectional view of the magnetic female buckle of the preferred embodiment of the present utility model.
[0068] The present utility model provides a magnetic female buckle 12, which includes a second housing 121, a second pressing buckle 122, a second elastic member 123 and a second magnet 124. The second housing 121 is a hollow cylindrical structure. One end of the second housing 121 is provided with a second bottom plate 1212, and the side wall of the second housing 121 is provided with a third rope-passing hole 1211 for threading a drawstring; the second pressing buckle 122 is slidably connected to the inner wall of the second housing 121, and the other end of the second pressing buckle 122 penetrates through the side of the second housing 121 away from the second bottom plate 1212. The second pressing buckle 122 is provided with a fourth rope-passing hole 12221 corresponding to the second rope-passing hole 11221.
[0069] The second elastic member 123 is arranged inside the second housing 121 and is located between the second bottom plate 1212 and the second pressing buckle 122. The second elastic member 123 drives the second pressing buckle 122 to press the drawstring tightly. The second magnet 124 is arranged between the second elastic member 123 and the second bottom plate 1212. The second magnet 124 enables the magnetic female buckle 12 to be adsorbed and fixed to the metal male buckle 22. A second insertion slot 1213 is arranged on the side of the second bottom plate 1212 away from the opening end of the second housing 121, and the second insertion slot 1213 is inserted into the metal male buckle 22. In this embodiment, the metal male buckle 22 is arranged on the clothing fabric. The metal male buckle 22 can be inserted into the metal female buckle 21. In addition, a second insertion member 221 is arranged on one side of the metal male buckle 22, and the second insertion member 221 is inserted into the second insertion slot 1213.
[0070] The magnetic female buckle 12 is adsorbed and fixed to the metal male buckle 22 (or magnetic male buckle 11) through the built-in second magnet 124. This magnetic connection method provides a stable and reliable connection and is not easily loosened or detached due to external forces. The sliding connection design of the second pressing buckle 122 and the inner wall of the second housing 121 enables the user to press the drawstring tightly and release it through a simple pressing operation. The user can adjust the tightness of the drawstring as needed. When the magnetic female buckle 12 is tightly connected to the metal male buckle 22 (or magnetic male buckle 11), due to the adsorption force of the second magnet 124, it can effectively prevent unnecessary swinging of the connected drawstring or other components, improving the stability and safety of the overall structure.
[0071] Furthermore, a second insertion slot 1213 is arranged on the side of the second bottom plate 1212 away from the opening end of the second housing 121, and the second insertion slot 1213 is inserted into the metal male buckle 22, improving the stability and convenience of the connection between the magnetic female buckle 12 and the metal male buckle 22 (or magnetic male buckle 11).
[0072] Combined Figure 5 and Figure 6 , the structure of the magnetic female buckle 12 in this embodiment is elaborated in detail as follows:
[0073] In this embodiment, a second connection groove 1214 is provided on the second base plate 1212 near the second pressing buckle 122, and the second magnet 124 is arranged in the second connection groove 1214. The design of the connection groove and the positioning post 1215 ensures the stable installation of the second magnet 124 and improves the stability of the entire female buckle structure.
[0074] In this embodiment, a positioning post 1215 is provided on the second base plate 1212 near the second pressing buckle 122, and the positioning beads are located in the second connection groove 1214; the second magnet 124 is provided with a positioning hole 1241, and the positioning post 1215 is inserted into the positioning hole 1241 to prevent the second magnet 124 from shaking. In this embodiment, the positioning post 1215 and the second insertion groove 1213 are integrally formed by stamping the second base plate 1212, which is convenient for production, and has a thin and light structure and strong practicability.
[0075] In this embodiment, a second sliding groove 1216 is provided on the side wall of the second housing 121; the second pressing buckle 122 includes a second sliding part 1221, a second extending part 1222 and a second pressing part 1223; the second sliding part 1221 is arranged at one end of the second pressing buckle 122, the second sliding part 1221 is provided with a second sliding block 12211, and the second sliding block 12211 is slidably connected with the second sliding groove 1216; the second extending part 1222 is arranged in the middle of the second pressing buckle 122, and the second rope passing hole 11221 is arranged in the second extending part 1222; the second pressing part 1223 is arranged at the other end of the second pressing part 1223, and the second pressing part 1223 is used for pressing and controlling. The sliding connection between the second sliding block 12211 and the second sliding groove 1216 improves the connection stability between the second housing 121 and the second pressing buckle 122.
[0076] In this embodiment, along the movement track of the second pressing buckle 122, the second pressing buckle 122 includes a third state for threading the rope and a fourth state for pressing the drawstring; when the second pressing buckle 122 is in the third state, the fourth rope passing hole 12221 is aligned with the third rope passing hole 1211 for passing through the drawstring; when the pressing buckle is in the fourth state, the fourth rope passing hole 12221 is misaligned with the third rope passing hole 1211, and the hole wall of the fourth rope passing hole 12221 presses the drawstring.
[0077] Combined Figure 7 and Figure 8 , Figure 7 is a schematic diagram of the magnetic snap fastener combination of the preferred embodiment of the present invention. Figure 8 is a cross-sectional view of the magnetic snap fastener combination of the preferred embodiment of the present invention.
[0078] The present utility model further provides a magnetic snap fastener combination 10, which includes a magnetic male snap 11 and a magnetic female snap 12; the magnetic male snap 11 includes a first housing 111 and a first magnet 114 disposed within the first housing 111. One end of the first housing 111 is provided with a first bottom plate 1112, and a first plug-in member 1113 is disposed on one side of the first bottom plate 1112 away from the open end of the first housing 111. The magnetic female snap 12 includes a second housing 121 and a first magnet 114 disposed within the second housing 121. One end of the second housing 121 is provided with a second bottom plate 1212, and a second plug-in groove 1213 is disposed on one side of the second bottom plate 1212 away from the open end of the second housing 121.
[0079] In this embodiment, the magnetic male snap 11 includes a first housing 111, a first pressing snap 112, a first elastic member 113, and a first magnet 114. The first housing 111 is a hollow cylindrical structure. One end of the first housing 111 is provided with a first bottom plate 1112. A first rope-passing hole 1111 for passing a drawstring is provided on the side wall of the first housing 111. A first plug-in member 1113 is disposed on one side of the first bottom plate 1112 away from the open end of the first housing 111.
[0080] The first pressing snap 112 is slidably connected to the inner wall of the first housing 111. The other end of the first pressing snap passes through the side of the first housing 111 away from the first bottom plate 1112. The first pressing snap 112 is provided with a second rope-passing hole 11221 corresponding to the first rope-passing hole 1111; the first elastic member 113 is disposed within the first housing 111 and is located between the first bottom plate 1112 and the first pressing snap 112. The first elastic member 113 drives the first pressing snap 112 to press the drawstring tightly; the first magnet 114 is disposed between the first elastic member 113 and the first bottom plate 1112.
[0081] The magnetic snap female buckle 12 includes a second housing 121, a second pressing buckle 122, a second elastic member 123, and a second magnet 124. The second housing 121 is a hollow cylindrical structure. One end of the second housing 121 is provided with a second bottom plate 1212, and the side wall of the second housing 121 is provided with a third rope passing hole 1211 for threading a drawstring; the second pressing buckle 122 is slidably connected to the inner wall of the second housing 121, and the other end of the second pressing buckle penetrates through the side of the second housing 121 away from the second bottom plate 1212. The second pressing buckle 122 is provided with a fourth rope passing hole 12221 corresponding to the second rope passing hole 11221. The second elastic member 123 is arranged in the second housing 121 and is located between the second bottom plate 1212 and the second pressing buckle 122. The second elastic member 123 drives the second pressing buckle 122 to press the drawstring tightly. The second magnet 124 is arranged between the second elastic member 123 and the second bottom plate 1212. A second insertion groove 1213 is arranged on the side of the second bottom plate 1212 away from the opening end of the second housing 121. The other detailed structures of the magnetic snap male buckle 11 and the magnetic snap female buckle 12 in this embodiment are the same as those in the above embodiment and will not be elaborated here.
[0082] The first insertion member 1113 is inserted into the second insertion groove 1213, so that the magnetic snap male buckle 11 and the magnetic snap female buckle 12 can be quickly and firmly connected together, improving the connection stability and efficiency, and avoiding the misconnection of the magnetic snap male buckle 11 and the magnetic snap female buckle 12. The magnetic poles of the first magnet 114 and the second magnet 124 are opposite, and the first magnet 114 and the second magnet 124 attract each other, effectively preventing unnecessary swinging of the connected drawstring or other components, and improving the stability and safety of the overall structure during the use of the magnetic snap four-piece buckle combination 10.
[0083] The working principle of the present utility model:
[0084] I. The working principle of the magnetic snap male buckle 11:
[0085] The magnetic snap male buckle 11 is mainly composed of a first housing 111, a first pressing buckle 112, a first elastic member 113, and a first magnet 114. Its working principle is as follows:
[0086] (1) The first pressing buckle 112 is in a position of pressing the drawstring tightly under the drive of the first elastic member 113, that is, the second rope passing hole 11221 is misaligned with the first rope passing hole 1111, and the hole wall of the second rope passing hole 11221 presses the passing drawstring to prevent it from loosening.
[0087] (2) When the user needs to thread the rope, press the other end (the first pressing part 1123) of the first pressing buckle 112, so that the first pressing buckle 112 slides along the first sliding groove 1115, and the first elastic member 113 is compressed. At this time, the first rope passing hole 1111 is aligned with the second rope passing hole 11221, and the user can thread the drawstring through these two holes.
[0088] (3) After threading the rope, release the first press button 112. The first elastic member 113 resumes its deformation and pushes the first press button 112 back to the position where it compresses the drawstring, i.e., the second rope threading hole 11221 is misaligned with the first rope threading hole 1111, compressing the drawstring.
[0089] (4) When the magnetic male buckle 11 approaches the metal female buckle 21 (or the magnetic female buckle 12 in the magnetic snap fastener), due to the magnetic force of the first magnet 114, the two will be tightly adsorbed together, achieving quick connection. This adsorption force can effectively prevent the connected drawstring from swaying.
[0090] II. Working principle of the magnetic female buckle 12:
[0091] (1) The second press button 122 is in the position of compressing the drawstring under the drive of the second elastic member 123, and the second insertion slot 1213 is ready to be inserted into the metal male buckle 22 (or the first insertion member 1113 in the magnetic male buckle 11).
[0092] (2) The user presses the other end (the second pressing part 1223) of the second press button 122, causing the second press button 122 to slide along the second sliding groove 1216. The second elastic member 123 is compressed, and the third rope threading hole 1211 is aligned with the fourth rope threading hole 12221, allowing the drawstring to pass through.
[0093] (3) After threading the rope, release the second press button 122. The second elastic member 123 resumes its deformation and pushes the second press button 122 back to the position of compressing the drawstring.
[0094] (4) When the magnetic female buckle 12 approaches the metal male buckle 22 (or the magnetic male buckle 11), due to the magnetic force of the second magnet 124, the two will be tightly adsorbed together. This adsorption force can also effectively prevent the connected drawstring from swinging.
[0095] III. Working principle of the magnetic snap fastener combination 10:
[0096] The magnetic snap fastener combination 10 is composed of a magnetic male buckle 11 and a magnetic female buckle 12, and its working principle combines the characteristics of the above two; when the clothing is open, the magnetic male buckle 11 and the magnetic female buckle 12 are magnetically fixed to the metal female buckle 21 and the metal male buckle 22 on the clothing respectively through the magnets inside them, preventing the drawstrings connected to them from swaying, as Figure 9 shown.
[0097] When the clothing needs to be closed, the metal female buckle 21 and the metal male buckle 22 are snapped together, and at the same time, the magnetic male buckle 11 and the magnetic female buckle 12 are also magnetically adsorbed and fixed to each other through the magnets inside them. This double fixation method not only improves the connection stability but also avoids the swaying of the drawstring when the clothing is closed, as Figure 10 shown.
[0098] In this way, the usage process of the magnetic male buckle, magnetic female buckle and magnetic snap fastener combination of this preferred embodiment is completed.
[0099] In summary, although the present utility model has been disclosed above with the preferred embodiments, the above preferred embodiments are not intended to limit the present utility model. Those of ordinary skill in the art can make various changes and modifications without departing from the spirit and scope of the present utility model. Therefore, the protection scope of the present utility model shall be subject to the scope defined by the claims.
Claims
1. A magnetic male buckle, characterized in that: include: The first shell is a hollow cylindrical structure, one end of the first shell is provided with a first bottom plate, the side wall of the first shell is provided with a first rope threading hole for threading a draw rope, and the first bottom plate is provided with a first plug-in component on a side away from the opening end of the first shell, and the first plug-in component is plugged with a metal female buckle; a first push buckle, slidably connected to the inner wall of the first shell, the other end of the first push buckle passes through the first shell away from the first bottom plate, and the first push buckle is provided with a second rope threading hole corresponding to the first rope threading hole; A first elastic member is disposed in the first shell and is located between the first bottom plate and the first press buckle, and the first elastic member drives the first press buckle to press the drawstring; as well as The first magnet is arranged between the first elastic member and the first bottom plate, and the first magnet enables the magnetic male buckle to be adsorbed and fixed to the metal female buckle.
2. The magnetic male buckle according to claim 1, characterized in that: A first connecting groove is disposed on one side of the first bottom plate close to the first pressing buckle, and the first magnet is disposed in the first connecting groove.
3. The magnetic male buckle according to claim 1, characterized in that: The side wall of the first shell is provided with a first sliding groove; The first press buckle comprises: A first sliding portion, disposed at one end of the first push buckle, the first sliding portion being provided with a first slider, the first slider being slidably connected to the first sliding groove; A first extension portion is disposed in the middle of the first push buckle, and the second rope threading hole is disposed in the first extension portion; and The first pressing portion is arranged at the other end of the first pressing portion, and the first pressing portion is used for pressing operation.
4. The magnetic male buckle according to claim 1, characterized in that: Along the movement trajectory of the first push buckle, the first push buckle includes a first state for threading a rope and a second state for pressing the drawstring; when the first push buckle is in the first state, the first rope threading hole is aligned with the second rope threading hole for threading the drawstring; When the push buckle is in the second state, the second rope threading hole is misaligned with the first rope threading hole, and the hole wall of the second rope threading hole presses the drawstring tightly.
5. The magnetic male buckle according to claim 4, characterized in that: The first rope threading holes are provided in two groups, and the two groups of the first rope threading holes are arranged oppositely on two sides of the first shell; The second rope threading holes are provided in two groups, and the two groups of the second rope threading holes correspond one to one to the two groups of the first rope threading holes.
6. A magnetic female buckle, characterized in that: include: The second shell is a hollow cylindrical structure, one end of the second shell is provided with a second bottom plate, and the side wall of the second shell is provided with a second rope threading hole for threading a drawstring; A second push buckle is slidably connected to the inner wall of the second shell, the other end of the second push buckle passes through the second shell away from the second bottom plate, and the second push buckle is provided with a second rope threading hole corresponding to the second rope threading hole; A second elastic member is disposed in the second shell and between the second bottom plate and the second press buckle, and the second elastic member drives the second press buckle to press the drawstring tightly; as well as A second magnet is disposed between the second elastic member and the second bottom plate, and the second magnet enables the magnetic female buckle to be adsorbed and fixed to the metal male buckle; A second plugging groove is provided on a side of the second bottom plate away from the opening end of the second shell, and the second plugging groove is plugged with a metal male buckle.
7. The magnetic female buckle according to claim 6, characterized in that: A second connecting groove is disposed on one side of the second bottom plate close to the second pressing buckle, and the second magnet is disposed in the second connecting groove.
8. The magnetic female buckle according to claim 7, characterized in that: A positioning column is provided on one side of the second bottom plate close to the second press buckle, and the positioning column is located in the second connecting groove; The second magnet is provided with a positioning hole, and the positioning column is plugged into the positioning hole.
9. The magnetic female buckle according to claim 8, characterized in that: The side wall of the second shell is provided with a second slide groove; The second press buckle comprises: A second sliding portion, disposed at one end of the second push buckle, the second sliding portion being provided with a second slider, the second slider being slidably connected to the second sliding groove; A second extension portion is disposed in the middle of the second push buckle, and the second rope threading hole is disposed in the second extension portion; and The second pressing portion is arranged at the other end of the second pressing portion, and the second pressing portion is used for pressing operation.
10. A magnetic snap-on assembly, characterized in that: include: A magnetic male buckle, comprising a first shell and a first magnet disposed in the first shell, a first bottom plate disposed at one end of the first shell, and a first plug-in component disposed at a side of the first bottom plate away from an open end of the first shell; as well as A magnetic female buckle, comprising a second shell and a second magnet disposed in the second shell, a second bottom plate being disposed at one end of the second shell, and a second plugging slot being disposed at a side of the second bottom plate away from an opening end of the second shell; The first connector is plugged into the second connector slot, the first magnet and the second magnet have opposite magnetic poles, and the first magnet and the second magnet are attracted to each other.