Magnetic buckle easy on-off shoes

The magnetic snap fastening system solves the problem of existing shoes being difficult to put on and take off, allowing shoes to be put on and taken off without bending over, thus improving efficiency and stability when wearing the shoes.

CN118078015BActive Publication Date: 2025-12-05ANTA (CHINA) CO LTD
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Patent Information

Application Number
CN202410428900.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-10
Publication Date
2025-12-05
Estimated Expiration
2044-04-10

AI Technical Summary

Technical Problem

Existing shoe designs make it inconvenient for pregnant women, the elderly, and people with lower back discomfort to put on and take off shoes, especially since shoelaces are difficult to tighten or loosen.

Method used

The shoe uses a magnetic fastening assembly, including first and second magnetic components and a rotating shaft. The magnetic attraction makes the shoe easy to put on and take off. The heel can switch between the first and second states. In the first state, the foot is fixed, and in the second state, the shoe opening is opened for easy putting on and taking off.

Benefits of technology

It allows for easy putting on and taking off of shoes without bending over, improving efficiency and ensuring that shoes do not easily fall off while being worn.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a magnetic fastening easy-to-put-on-and-off shoe, a vamp of which comprises a forepart and a heel part; the heel part is adapted to transform between a first state and a second state under the action of external force, in the first state, the heel part is close to the forepart and cooperates with the forepart to form a shoe opening of the vamp; in the second state, the heel part is away from the forepart and makes the shoe opening open; two first magnetic fastening parts are respectively fixedly installed on the two sides of the rear part of the forepart; a rotating shaft is rotatably installed on the bottom of the shoe around an axis perpendicular to the front-rear direction of the shoe bottom, two ends of the rotating shaft are connected with two second magnetic fastening parts respectively; the two second magnetic fastening parts are fixedly installed on the two sides of the heel part; when the heel part is in the first state, the position corresponding first magnetic fastening part and the position corresponding second magnetic fastening part are mutually buckled in the front-rear direction and are fixed through magnetic attraction; when the heel part transforms from the first state to the second state, the position corresponding first magnetic fastening part and the position corresponding second magnetic fastening part are buckled. The shoe can be conveniently put on and off without bending the waist.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of shoes, in particular to a magnetic fastening easy-to-wear shoe. BACKGROUND

[0002] In order to enable a user to wear a shoe and ensure that the shoe does not fall off the foot, a shoelace or similar fastener is generally provided on the shoe, and the user needs to loosen the fastener before putting on the shoe and tighten the fastener after the foot enters the shoe. However, for pregnant women, the elderly and people with waist discomfort, it is inconvenient to bend over to tighten the shoelace, and some shoes have a shoe opening that is not wide enough, so a shoe horn or hand assistance is needed to easily put on the shoe. SUMMARY

[0003] The present application aims to overcome the above-mentioned defects or problems in the background art and provide a magnetic fastening easy-to-wear shoe that can be easily put on and taken off by a user without bending over.

[0004] To achieve the above-mentioned purpose, the present application adopts the following technical solutions:

[0005] Technical solution one: a magnetic fastening easy-to-wear shoe, comprising a body; the body comprises a sole, an upper and a magnetic fastening assembly; the upper comprises a forefoot part and a heel part that are apart from each other and connected to the sole; the heel part is adapted to be transformed between a first state and a second state under the action of an external force, when the heel part is in the first state, it is close to the forefoot part and cooperates with the forefoot part to form a shoe opening of the upper; when the heel part is in the second state, it is away from the forefoot part and causes the shoe opening to open; the heel part uses the part connected to the sole as the basis for positioning when the state is transformed; the magnetic fastening assembly comprises a first magnetic fastening part, a second magnetic fastening part and a rotating shaft; two first magnetic fastening parts are respectively fixedly installed on the two sides of the rear of the forefoot part; the rotating shaft is rotatably installed on the sole about an axis perpendicular to the front-rear direction of the sole, and its two ends are exposed on both sides of the sole and connected to two second magnetic fastening parts; two second magnetic fastening parts are fixedly installed on both sides of the heel part; the first magnetic fastening part is provided with a first magnetic fastening part, and the second magnetic fastening part is provided with a second magnetic fastening part; when the heel part is in the first state, the position corresponding first magnetic fastening part and second magnetic fastening part are mutually buckled in the front-rear direction and fixed by magnetic attraction; when the heel part is transformed from the first state to the second state, the position corresponding first magnetic fastening part and second magnetic fastening part are disconnected, and the second magnetic fastening part rotates about the axis of the rotating shaft with the heel part.

[0006] Based on the technical solution one, the second technical solution is that two sides of the heel part are provided with side wings extending towards the forepart; the second magnetic attraction member is fixed to the inner side of the side wing; when the heel part is in the first state, the side wing at least partially overlaps with the forepart, so that the second magnetic attraction member is magnetically attracted and buckled with the first magnetic attraction member.

[0007] Based on the second technical solution, the third technical solution is that the connecting part of the heel part and the sole is located at the rear side of the second magnetic attraction member on the upper side surface of the sole.

[0008] Based on the third technical solution, the fourth technical solution is that the connecting part of the heel part and the sole is provided with an opening, and the second magnetic attraction member passes through the opening.

[0009] Based on the third or fourth technical solution, the fifth technical solution is that the second magnetic attraction member is provided with a rod part, one end of which is connected with the rotating shaft rod, and the other end is provided with the second magnetic buckling part.

[0010] Based on the fifth technical solution, the sixth technical solution is that the magnetic buckling assembly further comprises a limiting rod, two ends of the limiting rod are respectively connected with two ends of the rotating shaft rod, and the limiting rod is arranged around the rear side of the heel of the sole.

[0011] Based on the sixth technical solution, the seventh technical solution is that the first magnetic attraction member is further provided with a fixed part, the fixed part is fixedly installed on the outer side of the forepart, the first magnetic buckling part is formed by upward extension of the fixed part; the second magnetic buckling part is formed by downward extension of the end part of the rod part.

[0012] Based on the seventh technical solution, the eighth technical solution is that the first magnetic buckling part is provided with a first magnet, the second magnetic buckling part is provided with a second magnet, and the first magnet is suitable for magnetic attraction with the second magnet.

[0013] Based on the eighth technical solution, the ninth technical solution is that the first magnetic attraction member and the second magnetic attraction member are fixedly installed on the vamp by sewing, hot melting and / or bonding.

[0014] Based on the ninth technical solution, the tenth technical solution is that the rear end of the connecting part of the forepart and the sole is connected to the front end of the connecting part of the heel part and the sole.

[0015] From the above description of the present application, the present application has the following beneficial effects compared with the prior art:

[0016] The magnetic buckle easy-to-wear shoe provided by the technical solution one has a vamp formed by a forefoot part and a heel part, wherein the forefoot part is used for inserting the user's foot, and the heel part is used for limiting the user's heel to fix the user's foot in the inner cavity of the shoe; wherein the heel part can be deformed relative to the sole, when the heel part is in the first state, the heel part is not deformed, and the heel part cooperates with the forefoot part to form a shoe opening; when the heel part is in the second state, the heel part is actually folded and deformed backward, so that the shoe opening is opened, at this time the user can insert the foot into the inner cavity of the shoe, and then the heel part can recover from the second state to the first state, thereby fixing the user's foot; in this process, since the heel part is easy to deform, a structure for limiting the deformation of the heel part needs to be provided, and the magnetic buckle assembly is provided in the present solution, the first magnetic attraction part is arranged on the forefoot part, the second magnetic attraction part is arranged on the heel part, the rotating shaft rod is rotatably installed on the sole, and the second magnetic attraction part can rotate relative to the sole with the rotating shaft rod; at the same time, the first magnetic attraction part is provided with a first magnetic attraction part, and the second magnetic attraction part is provided with a second magnetic attraction part; when the heel part is in the first state, the first magnetic attraction part and the second magnetic attraction part are buckled and fixed by magnetic attraction; if the user's foot is in the inner cavity of the shoe at this time, the magnetic buckle assembly can limit the heel part to prevent the heel part from deforming under stress; when the shoe needs to be worn, the foot can act on the rear top end of the heel part to make the second magnetic attraction part and the first magnetic attraction part disengage, at this time the heel part is folded and deformed backward, the second magnetic attraction part rotates relative to the sole with the heel part, so that the shoe opening is opened, and after the user's foot is inserted into the inner cavity of the shoe, the heel part is folded forward under the stress of the heel part itself and recovers to the first state, and the first magnetic attraction part and the second magnetic attraction part are buckled and fixed by magnetic attraction; similarly, when the shoe is to be taken off, force is applied to the rear top end of the heel part, so that the heel part is folded backward, the foot can easily leave the inner cavity of the shoe, and the action of taking off the shoe is completed; therefore, the magnetic buckle easy-to-wear shoe can facilitate the user to wear and take off the shoe, and when the shoe is normally worn, the heel part is fixed by the magnetic buckle assembly, and the user's foot in the inner cavity of the shoe is fixed, thereby avoiding the shoe from falling off.

[0017] In the technical solution two, side wings are arranged on both sides of the heel part, the second magnetic attraction part is fixedly arranged on the side wing, the side wing is overlapped with the forefoot part to make the positions of the first magnetic attraction part and the second magnetic attraction part coincide, so as to facilitate the magnetic attraction and buckling of the two, and at the same time, the side wing can reduce the connecting part of the heel part and the sole, thereby improving the deformation ability of the heel part and reducing the resistance of the heel part during deformation.

[0018] In the technical solution three, the connecting part of the heel part and the sole is located at the rear side of the second magnetic attraction part, so as to avoid the second magnetic attraction part interfering with the deformation process of the heel part when the heel part is folded and deformed backward.

[0019] In the fourth aspect, the second magnetic attraction element is arranged at the connecting part of the heel and the sole, and the opening is arranged at the connecting part of the heel and the sole, and the second magnetic attraction element passes through the opening. The second magnetic attraction element is arranged to avoid interfering with the deformation of the heel.

[0020] In the fifth aspect, the second magnetic attraction element is arranged with a rod part, and the rotating shaft rod is arranged at the rear of the sole, so that the second magnetic attraction element and the heel can be folded back to a large angle.

[0021] In the sixth aspect, the magnetic attraction and fastening assembly further comprises a limiting rod. When the heel is folded back, the second magnetic attraction element is also rotated back, and the limiting rod is rotated downward and abuts against the rear end of the sole at a certain angle, so as to limit the continuous rotation of the second magnetic attraction element and avoid damage caused by the excessive deformation of the heel.

[0022] In the seventh aspect, the first magnetic attraction element is arranged with a fixed part, so as to be arranged on the forefoot part, and the first magnetic attraction and fastening part is arranged conveniently.

[0023] In the eighth aspect, the first magnet and the second magnet are arranged, the first magnetic attraction and fastening part and the second magnetic attraction and fastening part can be attracted to each other under the action of the magnet, so as to drive the first magnetic attraction element and the second magnetic attraction element to approach each other, and the first magnetic attraction and fastening part and the second magnetic attraction and fastening part reach the state of mutual fastening.

[0024] In the ninth aspect, the first magnetic attraction element and the second magnetic attraction element can be fixed on the vamp by sewing, hot melting and / or bonding according to the different materials of the first magnetic attraction element and the second magnetic attraction element.

[0025] In the tenth aspect, the rear end of the connecting part of the forefoot part and the sole is connected to the front end of the connecting part of the heel and the sole, so as to ensure that there is no gap between the forefoot part and the heel at the connecting part of the sole, and improve the overall performance, comfort and safety of the shoe. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following briefly introduces the drawings needed in the embodiment description. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0027] Figure 1 The schematic diagram of the shoe provided by the embodiment of the present application in the first state;

[0028] Figure 2 The schematic diagram of the shoe provided by the embodiment of the present application in the second state;

[0029] Figure 3 The schematic diagram of the shoe provided by the embodiment of the present application in the third state;Figure 1 Enlarged view of part A.

[0030] Explanation of reference numerals:

[0031] Body 1; sole 2; upper 3; magnetic attraction fastening assembly 4; forefoot 5; heel 6; toe 7; first magnetic attraction member 8; second magnetic attraction member 9; rotating shaft 10; first magnetic attraction fastening portion 11; second magnetic attraction fastening portion 12; side wing 13; hole 14; rod portion 15; limiting rod 16; fixed portion 17; first magnet 18; second magnet 19. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are preferred embodiments of the present application, and should not be regarded as exclusion of other embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0033] In the claims, the specification, and the above drawings of the present application, unless otherwise explicitly limited, the terms such as "first", "second", or "third" are used only to distinguish different objects, and are not used to describe a particular order.

[0034] In the claims, the specification, and the above drawings of the present application, unless otherwise explicitly limited, for orientation words, such as the terms "center", "transverse", "longitudinal", "horizontal", "vertical", "top", "bottom", "inner", "outer", "upper", "lower", "front", "back", "left", "right", "clockwise", "counterclockwise", etc. indicate the orientation or positional relationship based on the orientation and position relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation or be constructed and operated in a particular orientation, so it cannot be understood as limiting the specific protection scope of the present application.

[0035] In the claims, the specification, and the above drawings of the present application, unless otherwise explicitly limited, such as the terms "fixedly connected" or "fixedly connected", should be understood broadly, that is, any connection mode between the two without displacement relationship and relative rotation relationship, that is, it includes non-detachable fixed connection, detachable fixed connection, integration and fixed connection through other devices or elements.

[0036] In the claims, the specification, and the above drawings of the present application, the terms "include", "have" and their variants are intended to mean "contain but not limited to".

[0037] Reference Figure 1It shows a structure of the magnetic attraction buckle easy-to-wear and easy-to-take-off shoe provided by the embodiment of the present application. It should be noted that Figure 1 It shows the structure when the shoe is in the first state. In addition, reference is made to Figure 2 It shows the structure when the shoe is in the second state. Regarding Figure 1 and Figure 2 , the differences will be described below.

[0038] Reference is made to Figure 1 and Figure 2 , the magnetic attraction buckle easy-to-wear and easy-to-take-off shoe comprises a body 1, the body 1 comprising a sole 2, an upper 3 and a magnetic attraction buckle assembly 4. In addition to the body 1, the shoe can also comprise a shoelace, a decorative piece and other components, and the embodiment mainly describes the body 1 of the shoe.

[0039] The sole 2 of the body 1 is of a conventional structure and can be formed by a combination of an upper sole and a middle sole. The upper sole can be made of nylon, rubber or other relatively wear-resistant materials, and the middle sole can be made of a high-molecular foaming material such as EVA, so as to provide better rebound and shock absorption performance.

[0040] The upper 3 of the body 1 is fixed on the sole 2 by sewing, bonding or other methods, and the material of the upper 3 can be mesh cloth, foam or the like. The upper 3 comprises a forefoot part 5 and a heel part 6 which are separated from each other and connected to the sole 2. The heel part 6 is adapted to be transformed between the first state and the second state under the action of an external force. When the heel part 6 is in the first state, it is close to the forefoot part 5 and cooperates with the forefoot part 5 to form a shoe opening 7 of the upper 3. When the heel part 6 is in the second state, it is away from the forefoot part 5 and causes the shoe opening 7 to be opened. The heel part 6 uses the part connected to the sole 2 as the basis for positioning when the state is transformed.

[0041] Specifically, reference is made to Figure 1 The forefoot part 5 comprises the other part of the upper 3 except the heel part 6, and its approximate range corresponds to the position of the toes to the instep of the foot, that is, the position for configuring a tongue. The lower edge of the forefoot part 5 is combined on the sole 2 to form the connecting part of the forefoot part 5 and the sole 2. The heel part 6 corresponds to the heel of the foot and can be wrapped around the positions on both sides of the heel of the foot. The lower edge of the heel part 6 is also combined on the sole 2 to form the connecting part of the heel part 6 and the sole 2. At the same time, the rear end of the connecting part of the forefoot part 5 and the sole 2 is connected to the front end of the connecting part of the heel part 6 and the sole 2. This ensures that there is no gap between the forefoot part 5 and the heel part 6 at the connecting part with the sole 2, and improves the integrity, wearing comfort and safety of the shoe.

[0042] Wherein, based on the material characteristics of the upper 3, it has good deformation characteristics. For the forefoot 5, since its lower edge is connected to the sole 2, and extends from the toes to the instep, the forefoot 5 is difficult to deform in the form of folding forward, etc. And for the heel 6, it only corresponds to the heel part of the foot 6, and the upper side of the heel 6 does not need to be completely closed like the forefoot 5, so the heel 6 can be folded back to deform. In Figure 1 , the heel 6 is in the first state, at this time the heel 6 is not subjected to external force, based on the material of the heel 6 and its composite state with the sole 2, the heel 6 cooperates with the forefoot 5 to form the shoe opening 7; in Figure 2 , the heel 6 is in the second state, at this time the heel 6 is subjected to external force and is folded back to deform, the shoe opening 7 is opened, and it is convenient for the user's foot to enter the inner cavity of the shoe. It should be noted that the heel 6 changes from the first state to the second state, and the connecting part of the heel 6 and the sole 2 does not change, and the deformation of the heel 6 is realized based on the material characteristics of the heel 6 itself. And by applying force to the rear top end of the heel 6, the heel 6 can be easily folded back.

[0043] Referring to Figure 1 and Figure 2The magnetic fastening assembly 4 comprises a first magnetic fastening part 8, a second magnetic fastening part 9 and a rotating shaft 10. The two first magnetic fastening parts 8 are respectively fixedly installed on the two sides of the rear of the forefoot part 5. The rotating shaft 10 is rotatably installed on the sole 2 around an axis perpendicular to the front-rear direction of the sole 2, and the two ends of the rotating shaft 10 are exposed on the two sides of the sole 2 and connected with the two second magnetic fastening parts 9 respectively. The two second magnetic fastening parts 9 are fixedly installed on the two sides of the heel part 6. The first magnetic fastening part 8 is provided with a first magnetic fastening part 11, and the second magnetic fastening part 9 is provided with a second magnetic fastening part 12. When the heel part 6 is in the first state, the position corresponding first magnetic fastening part 11 and second magnetic fastening part 12 are buckled and fixed in the front-rear direction. When the heel part 6 changes from the first state to the second state, the position corresponding first magnetic fastening part 11 and second magnetic fastening part 12 are buckled and fixed in the front-rear direction. The second magnetic fastening part 9 rotates around the axis of the rotating shaft 10 with the heel part 6. In addition, the magnetic fastening assembly 4 further comprises a limiting rod 16, the two ends of the limiting rod 16 are respectively connected with the two ends of the rotating shaft 10, and the limiting rod 16 is arranged on the rear side of the heel of the sole 2. The second magnetic fastening part is provided with a rod part 15, one end of the rod part 15 is connected with the rotating shaft 10, and the other end of the rod part 15 is provided with the second magnetic fastening part 12. At the same time, the first magnetic fastening part 8 is provided with a fixed part 17, the fixed part 17 is fixedly installed on the outer side of the forefoot part 5, and the first magnetic fastening part 11 is formed by extending upward from the fixed part 17. The second magnetic fastening part 12 is formed by extending downward from the end of the rod part 15. The first magnetic fastening part 11 is provided with a first magnet 18, the second magnetic fastening part 12 is provided with a second magnet 19, and the first magnet 18 is suitable for magnetic cooperation with the second magnet 19.

[0044] Among them, the two sides of the heel part 6 are provided with side wings 13 extending towards the forefoot part 5, and the second magnetic fastening part 9 is fixed on the inner side of the side wing 13. When the heel part 6 is in the first state, the side wing 13 at least partially overlaps with the forefoot part 5, so that the second magnetic fastening part 9 is magnetically fastened with the first magnetic fastening part 8.

[0045] Specifically, referring to Figure 1 and Figure 2 , the heel part 6 extends forward to be provided with a side wing 13, and the side wing 13 has an overlapping part with the forefoot part 5, so that the heel part 6 can be placed on the forefoot part 5 through the side wing 13. At the same time, the side wing 13 can facilitate the installation of the second magnetic fastening part 9.

[0046] Referring to Figure 1 and Figure 2The rotating shaft rod 10 is a straight rod which is arranged through the heel part 6 of the sole 2 along the left-right direction and can rotate relative to the sole 2 along a rotating shaft line which is perpendicular to the front-rear direction. The limiting rod 16 is an arc-shaped rod which is connected to the two ends of the rotating shaft rod 10 and passes through the rear end of the sole 2, and the distance between the limiting rod 16 and the rear end of the sole 2 is relatively small. When the rotating shaft rod 10 rotates backward, the limiting rod 16 will rotate downward until it stops against the rear end of the sole 2. By arranging the limiting rod 16, the rotating range of the rotating shaft rod 10 can be limited.

[0047] With reference to Figure 3 The two first magnetic attraction members 8 are arranged on the outer side surfaces of the two sides of the forefoot part 5, and the first magnetic attraction member 8 on one side is taken as an example for illustration. The fixed part 17 of the first magnetic attraction member 8 is a block-shaped member which is fixedly installed on the forefoot part 5, and a first magnetic attraction fastening part 11 is formed on the rear end of the fixed part 17 and extends upward, and the first magnetic attraction fastening part 11 and the fixed part 17 form a lying "L" shaped structure. A first magnet 18 is arranged on the first magnetic attraction fastening part 11.

[0048] With reference to Figure 3 The two second magnetic attraction members 9 are arranged on the inner side surfaces of the two side wings 13 of the heel part 6, and the second magnetic attraction member 9 on one side is taken as an example for illustration. The rear end of the rod part 15 of the second magnetic attraction member 9 is connected to one end of the rotating shaft rod 10, and a second magnetic attraction fastening part 12 is arranged on the front end of the rod part 15 and extends downward from the front end of the rod part 15, and the second magnetic attraction fastening part 12 and the rod part 15 form a "L" shaped structure which corresponds to the first magnetic attraction member 8. A second magnet 19 is arranged on the second magnetic attraction fastening part 12. Since the shapes and positions of the first magnetic attraction fastening part 11 and the second magnetic attraction fastening part 12 correspond to each other, when the heel part 6 is in the first state, the first magnetic attraction fastening part 11 and the second magnetic attraction fastening part 12 can be fastened to each other. When the heel part 6 changes from the second state to the first state, the first magnetic attraction fastening part 11 and the second magnetic attraction fastening part 12 can not be fastened correctly, and at this time, the first magnet 18 and the second magnet 19 can attract each other, so that the first magnetic attraction fastening part 11 and the second magnetic attraction fastening part 12 can be fastened to each other in the correct position.

[0049] When the heel 6 is forced to fold back, the second magnetic member 9 is driven to rotate around the rotating shaft 10, so that the first magnetic fastening part 11 and the second magnetic fastening part 12 are disengaged. At this time, the shoe opening 7 is open, and the user's foot can be inserted into the shoe. After the foot is completely inserted into the shoe, the heel 6 restores the deformation under the action of the first magnet 18 and the second magnet 19, and the first magnetic fastening part 11 and the second magnetic fastening part 12 are re-engaged. At this time, as long as the rear end of the heel 6 is not forced, the first magnetic fastening part 11 and the second magnetic fastening part 12 will not easily disengage. It should be understood that by adjusting the positions of the first magnetic member 8 and the second magnetic member 9, the purpose of not easily disengaging them when the shoe is normally worn can be better achieved.

[0050] Since the rod part 15 of the second magnetic member 9 is arranged at the side wing 13 of the heel 6 and needs to be connected to the rotating shaft 10, the second magnetic member 9 may interfere with the heel 6, making the heel 6 not easy to rotate. Therefore, in this embodiment, the connecting part of the heel 6 and the shoe sole 2 is provided with an opening 14, and the second magnetic member 9 passes through the opening 14. Through the opening 14, the rod part 15 of the second magnetic member 9 can interfere with the heel 6. It should be noted that the opening 14 should be an elongated hole extending in the front-rear direction. Of course, as another embodiment, the connecting part of the heel 6 and the shoe sole 2 is located at the rear side of the second magnetic member 9 at the upper surface position of the shoe sole 2. In this way, the rod part 15 of the second magnetic member 9 is always located in front of the connecting part of the heel 6 and the shoe sole 2, and does not interfere with the heel 6.

[0051] The first magnetic member 8 and the second magnetic member 9 can be made of metal or plastic. Depending on the material, the first magnetic member 8 and the second magnetic member 9 can be fixedly installed on the shoe upper 3 by sewing, hot melting and / or bonding.

[0052] The magnetic buckle easy-to-wear shoe provided by the embodiment comprises a vamp 3, a sole 2, and a magnetic buckle assembly 4. The vamp 3 is formed by cooperation of a forefoot part 5 and a heel part 6. The forefoot part 5 is used for inserting the user's foot, and the heel part 6 is used for limiting the user's heel to fix the user's foot in the inner cavity of the shoe. The heel part 6 can be deformed relative to the sole 2. When the heel part 6 is in a first state, the heel part 6 is not deformed, and the heel part 6 cooperates with the forefoot part 5 to form a shoe opening 7. When the heel part 6 is in a second state, the heel part 6 is actually folded and deformed backward, so that the shoe opening 7 is opened. At this time, the user can insert the foot into the inner cavity of the shoe. Then, the heel part 6 can recover from the second state to the first state, so as to fix the user's foot. In this process, because the heel part 6 is easy to deform, a structure for limiting the deformation of the heel part 6 is needed. In the present scheme, the magnetic buckle assembly 4 is provided. The first magnetic buckle part 8 of the magnetic buckle assembly 4 is arranged on the forefoot part 5, the second magnetic buckle part 9 is arranged on the heel part 6, and the rotating shaft rod 10 is rotatably arranged on the sole 2. The second magnetic buckle part 9 can rotate relative to the sole 2 along with the rotating shaft rod 10. Meanwhile, the first magnetic buckle part 8 is provided with a first magnetic buckle part 11, and the second magnetic buckle part 9 is provided with a second magnetic buckle part 12. When the heel part 6 is in the first state, the first magnetic buckle part 11 and the second magnetic buckle part 12 are buckled and fixed by magnetic attraction. If the user's foot is in the inner cavity of the shoe at this time, the magnetic buckle assembly 4 can limit the heel part 6 to prevent the heel part 6 from being deformed under stress. When the shoe needs to be worn, the foot can act on the rear top end of the heel part 6 to make the second magnetic buckle part 12 and the first magnetic buckle part 11 disengage. At this time, the heel part 6 is folded and deformed backward, the second magnetic buckle part 9 rotates relative to the sole 2 along with the heel part 6, so that the shoe opening 7 is opened. After the user's foot is inserted into the inner cavity of the shoe, the heel part 6 is folded forward under the stress of the heel part 6 itself and recovers to the first state. Under the magnetic attraction, the first magnetic buckle part 11 and the second magnetic buckle part 12 are buckled and fixed. Similarly, when the shoe is taken off, the force is applied to the rear top end of the heel part 6, so that the heel part 6 is folded backward, the foot can easily leave the inner cavity of the shoe, and the action of taking off the shoe is completed. Therefore, the magnetic buckle easy-to-wear shoe can facilitate the user to wear and take off the shoe. When the shoe is normally worn, the magnetic buckle assembly 4 fixes the heel part 6, and then fixes the user's foot in the inner cavity of the shoe, so as to avoid the shoe from falling off.

[0053] The description of the above specification and embodiments is used to explain the protection scope of the present application, but does not constitute a limitation on the protection scope of the present application. Through the inspiration of the present application or the above embodiments, those skilled in the art can obtain the modification, equivalent replacement or other improvement of the embodiments of the present application or one part of the technical features by combining the common knowledge, the ordinary technical knowledge in the art and / or the prior art through logical analysis, reasoning or limited test, which should be included in the protection scope of the present application.

Claims

1. A magnetic fastening easy-on and easy-off shoe, characterized in that it comprises a body (1); the body (1) comprises a sole (2), an upper (3) and a magnetic fastening assembly (4); the upper (3) comprises a forefoot portion (5) and a heel portion (6) which are separated from each other and are both connected to the sole (2); the heel portion (6) is adapted to be transformed between a first state and a second state by an external force, the heel portion (6) is close to the forefoot portion (5) and cooperates with the forefoot portion (5) to form a shoe opening (7) of the upper (3) when it is in the first state, the heel portion (6) is away from the forefoot portion (5) and makes the shoe opening (7) open when it is in the second state, and the heel portion (6) uses the part connected to the sole (2) as the basis for positioning when the state is transformed; the magnetic fastening assembly (4) comprises a first magnetic fastening member (8), a second magnetic fastening member (9) and a rotating shaft (10); two first magnetic fastening members (8) are fixedly installed on the two sides of the rear of the forefoot portion (5) respectively; the rotating shaft (10) is rotatably installed on the sole (2) around an axis perpendicular to the front-rear direction of the sole (2), the two ends of the rotating shaft (10) are exposed on the two sides of the sole (2) and are connected to two second magnetic fastening members (9) respectively; two second magnetic fastening members (9) are fixedly installed on the two sides of the heel portion (6); the first magnetic fastening member (8) is provided with a first magnetic fastening part (11), and the second magnetic fastening member (9) is provided with a second magnetic fastening part (12); when the heel portion (6) is in the first state, the first magnetic fastening part (11) and the second magnetic fastening part (12) corresponding in position are mutually buckled in the front-rear direction and are fixed by magnetic attraction; when the heel portion (6) is transformed from the first state to the second state, the first magnetic fastening part (11) and the second magnetic fastening part (12) corresponding in position are buckled, the second magnetic fastening member (9) rotates around the axis of the rotating shaft (10) with the heel portion (6).

2. The magnetic fastening easy-on and easy-off shoe according to claim 1, characterized in that the two sides of the heel portion (6) are provided with side wings (13) extending towards the forefoot portion (5); the second magnetic fastening member (9) is fixed to the inner side of the side wing (13); when the heel portion (6) is in the first state, the side wing (13) at least partially coincides with the forefoot portion (5) so that the second magnetic fastening member (9) is magnetically attracted and buckled with the first magnetic fastening member (8).

3. The magnetic fastening easy-on and easy-off shoe according to claim 1 or 2, characterized in that the connecting part of the heel portion (6) to the sole (2) is located on the rear side of the second magnetic fastening member (9) in the position of the upper side surface of the sole (2).

4. The magnetic fastening easy-on and easy-off shoe according to claim 3, characterized in that the connecting part of the heel portion (6) to the sole (2) is provided with an opening (14), and the second magnetic fastening member (9) passes through the opening (14).

5. The magnetic fastening easy-on and easy-off shoe according to claim 3 or 4, characterized in that ​ ​ ​ 3. The magnetic fastening easy on-off shoe according to claim 2, wherein the magnetic fastening easy on-off shoe is characterized by comprising a plurality of the magnetic fastening easy on-off shoe according to claim 2. ​ ​ ​ ​ ​ The second magnetic attraction member (9) is provided with a rod portion (15), one end of which is connected to the rotating shaft rod (10), and the other end is provided with the second magnetic attraction fastening portion (12).

6. The magnetic attraction fastening easy-to-put-on-and-off shoe according to claim 5, characterized in that, The magnetic attraction fastening assembly (4) further comprises a limiting rod (16), two ends of which are respectively connected to two ends of the rotating shaft rod (10), and which is arranged around the rear side of the heel of the shoe sole (2).

7. The magnetic attraction fastening easy-to-put-on-and-off shoe according to claim 6, characterized in that, The first magnetic attraction member (8) is further provided with a fixing portion (17), which is fixedly installed on the outer side of the forefoot portion (5), and the first magnetic attraction fastening portion (11) is formed by upward extension of the fixing portion (17); and the second magnetic attraction fastening portion (12) is formed by downward extension of the end portion of the rod portion (15).

8. The magnetic attraction fastening easy-to-put-on-and-off shoe according to claim 7, characterized in that, The first magnetic attraction fastening portion (11) is provided with a first magnet (18), and the second magnetic attraction fastening portion (12) is provided with a second magnet (19), and the first magnet (18) is adapted to be magnetically attracted to the second magnet (19).

9. The magnetic attraction fastening easy-to-put-on-and-off shoe according to claim 8, characterized in that, The first magnetic attraction member (8) and the second magnetic attraction member (9) are fixedly installed on the shoe upper (3) by sewing, hot melting and / or adhesion.

10. The magnetic attraction fastening easy-to-put-on-and-off shoe according to claim 9, characterized in that, The rear end of the connecting portion between the forefoot portion (5) and the shoe sole (2) is connected to the front end of the connecting portion between the heel portion (6) and the shoe sole (2).

Citation Information

Patent Citations

  • Magnetically-buckled shoes easy to put on and take off

    CN221949306U