Clothes
By setting up a magnetic connection structure between garment layers, the problem of garment layers slipping and shifting during wear is solved, enabling compatible coordination of different styles and functional layers and improving the flexibility and convenience of garment combinations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- ANTA (CHINA) CO LTD
- Filing Date
- 2026-03-09
- Publication Date
- 2026-05-05
AI Technical Summary
In the field of functional clothing, existing technologies are prone to relative slippage or shifting between different layers, which affects wearing comfort and the stability of the overall garment shape. Furthermore, it is difficult to achieve compatibility and coordination between functional layers of different styles or series, which limits the flexibility of wearing combinations.
It uses multiple independently wearable garment layers, each with a connecting structure and a magnetic connection structure. Any two garment layers can be detachably and magnetically connected through the magnetic connection structure. Various types of magnetic connection structures are included to meet the needs of different garment layers.
It achieves compatibility and coordination between different styles of functional layers, prevents adjacent garment layers from shifting, improves the flexibility and ease of operation of dressing combinations, and solves the problem of inconvenience in putting on and taking off clothes.
Smart Images

Figure CN121970941A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of clothing, and more particularly to a garment. Background Technology
[0002] In the field of functional clothing, multi-layered structural designs are typically employed to adapt to different climates and usage scenarios. However, during wear, these layers are prone to relative slippage or shifting, affecting comfort and the overall stability of the garment's shape. Furthermore, cross-style combinations are difficult to achieve, limiting the possibilities for interoperability between functional layers and thus impacting the flexibility of garment combinations. Summary of the Invention
[0003] This application provides a garment that aims to solve the technical problem of how to achieve compatibility and coordination between different style functional layers while preventing relative movement between adjacent garment layers, thereby improving the flexibility of wearing combinations.
[0004] This application provides a garment comprising: multiple independently wearable garment layers, each garment layer having a connection structure for connecting with other garment layers, the connection structure being provided with a magnetic connection structure, any two garment layers being detachably connected by magnetic connection structure, so as to realize the stacking or individual wearing of garment layers in the garment.
[0005] In some embodiments, the magnetic connection structure has multiple types, including:
[0006] First magnetic connection structure: includes at least one first magnetic element, and at least one first magnetic element is disposed on the connection structure; The second magnetic connection structure includes a support member and at least one second magnetic member. The support member is disposed on the connection structure and extends along the extension direction of the connection structure. The support member is used to limit local warping of the connection structure. At least one second magnetic member is disposed on the support member.
[0007] In some embodiments, the number of magnetic connection structures is one; or... There are multiple magnetic connection structures, which are spaced apart along the extension direction of the connection structure.
[0008] In some embodiments, the magnetic connection structure has multiple types, and multiple magnetic connection structures are independently selected from one of the multiple types.
[0009] In some embodiments, the number of first magnetic attractors is one, and the first magnetic attractor is integrally formed and disposed along the extending direction of the support member; or, There are multiple first magnetic components, which are connected end to end in sequence along the extension direction of the connecting structure, or multiple first magnetic components are spaced apart along the extension direction of the connecting structure.
[0010] In some embodiments, the number of second magnetic elements is one, and the second magnetic element is integrally formed and disposed along the extending direction of the support member; or, There are multiple second magnetic components, which are connected end to end in sequence along the extension direction of the support component, or multiple second magnetic components are spaced apart along the extension direction of the support component.
[0011] In some embodiments, the first magnetic attractor is at least one of a magnetic strip, a magnetic sheet, a magnetic block, and a magnetic column; And / or, the second magnetic element is at least one of a magnetic strip, a magnetic sheet, a magnetic block, or a magnetic column.
[0012] In some embodiments, the support member encloses at least one second magnetic member.
[0013] In some embodiments, the garment layer includes two oppositely arranged placket structures, each placket structure including an opening portion and a covering portion; The opening and closing part cooperates with the opening and closing part of another placket structure to connect or separate the two placket structures of the garment layer; The covering part, as a connecting structure, is provided on the inner side of the garment layer and on the side of the opening and closing part facing away from the other opening and closing part. A covering space with an insertion port is provided between the covering part and the inner side of the garment layer. The opening direction of the insertion port faces away from the opening and closing part, and at least part of the opening and closing part of other garment layers is inserted into the covering space.
[0014] In some embodiments, the garment layer includes a placket structure, which serves as a connecting structure; and / or, Garment layering includes a collar, which serves as a connecting structure; and / or, The garment layer includes sleeves, which serve as connecting structures.
[0015] In some embodiments, the magnetic connection structure disposed on the placket structure is distributed along the length direction of the placket structure; The magnetic connection structure on the collar is located at the center of the back of the collar. The magnetic connection structure is located on the inside of the sleeve.
[0016] The beneficial effects of this invention are as follows: The garment consists of multiple independently wearable garment layers. Each garment layer has a connecting structure for connecting with other garment layers. The connecting structure is equipped with a magnetic connection structure. Any two garment layers can be detachably attached to each other through the magnetic connection structure, so as to realize the stacking and combination of garment layers in the garment or wearing them individually.
[0017] In practical applications, the magnetic connection structure enables users to layer different garment pieces together or wear garment pieces that can be worn on both sides. Even after flipping the inside and outside of different garment pieces, or even a particular garment piece, the magnetic connection structure allows them to adhere to each other. This prevents adjacent garment pieces from shifting and solves the problems of poor compatibility and inconvenience in putting on and taking off garment pieces that result from one-to-one binding between garment pieces from different series. It also enables compatibility and coordination between different styles and functional layers, improving the flexibility of wearing combinations. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the structure of two garment layers overlapping according to an embodiment of the present invention; Figure 2 This is a partial structural diagram of an obscured space provided in an embodiment of the present invention; Figure 3 This is one of the partial structural schematic diagrams of the second magnetic attraction structure provided in the embodiments of the present invention; Figure 4 This is a second partial structural schematic diagram of the second magnetic attraction structure provided in the embodiment of the present invention; Figure 5 This is a partial structural schematic diagram of the first magnetic attraction structure provided in an embodiment of the present invention; Figure 6 This is a partial structural diagram of the first magnetic attraction structure and the second magnetic attraction structure used in combination, as provided in an embodiment of the present invention.
[0020] Explanation of icon numbers: 20. Garment layer; 21. Connecting structure; 22. Placket structure; 221. Opening / closing part; 222. Covering part; 23. Covering space; 24. Insertion port; 25. Collar; 26. Sleeve; 30. Magnetic connection structure; 31. First magnetic connection structure; 311. First magnetic component; 32. Second magnetic connection structure; 321. Second magnetic component; 322. Support component. Detailed Implementation
[0021] Before introducing the embodiments of this application, the technical terms and background technology involved in this application will be introduced first.
[0022] In the field of functional clothing, to adapt to different climates and usage scenarios, multi-layered structural designs are typically employed, layering garments with different functions. For example, a protective outer layer is combined with a warm inner layer to achieve overall performance enhancement. In related technologies, different functional layers are generally designed and produced as independent garments, allowing users to choose their layering method according to environmental changes. This layered design approach is adaptable, allowing for adjustments to performance by adding or removing layers, and is therefore widely used in related products. However, current problems include the fact that, due to the independent structural design of each functional layer and the lack of stable connections between adjacent layers, relative slippage or shifting can easily occur during wear, affecting comfort and the overall stability of the garment's shape. Furthermore, the lack of a unified matching relationship between functional layers of different styles or series hinders cross-style combinations, limiting the possibilities for layer coordination and thus impacting the flexibility of garment combinations.
[0023] In summary, clothing in the related technologies suffers from the problem that different layers are prone to relative slippage or shifting during wear, affecting wearing comfort and the stability of the overall garment shape. To address these issues, this application provides a garment that not only prevents relative shifting between adjacent garment layers but also solves the problems of poor compatibility and inconvenience in putting on and taking off garments caused by one-to-one binding of garment layers from different series. This achieves compatibility and coordination between functional layers of different styles, improving the flexibility of garment combinations.
[0024] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0025] Please see Figure 1 As shown, Figure 1 This is a schematic diagram of the structure of two clothing layers being stacked according to an embodiment of the present invention.
[0026] This application provides a garment comprising multiple independently wearable garment layers 20. Each garment layer 20 has a connection structure 21 for connecting with other garment layers 20. The connection structure 21 is provided with a magnetic connection structure 30. Any two garment layers 20 can be detachably connected by magnetic connection structure 30, so as to realize the stacking or individual wearing of the garment layers 20 in the garment.
[0027] In practical applications, garments within a series often coordinate in color, print, and pattern. Furthermore, different series may vary in thickness, softness, and outerwear functions (waterproof, windproof, bulletproof, acid-resistant, etc.). When multiple garment layers 20 from the same or different series need to be worn together, the corresponding magnetic connection structures 30 of different garment layers 20 approach each other, and the magnetic force causes the two garment layers 20 to quickly adhere together. Because the magnetic connection structure 30 adheres to the connection structure 21, multiple garment layers 20 are fixed together, restricting relative slippage or movement during wear, thus maintaining the stability of the overall garment shape. Unlike the continuous engagement of traditional zippers, the magnetic connection structure 30 achieves fixation instantaneously upon partial contact. Disassembly only requires applying appropriate peeling force, eliminating the need for segmented operation, thereby shortening dressing and undressing time and improving ease of use. The magnetic connection structure 30 replaces the traditional zipper connection, enabling different series of garment layers 20 to be stacked together or to be worn on both sides of the garment layer 20. After the inside and outside of different series of garment layers 20 or a certain garment layer 20 is turned inside out, they can still be connected by magnetic connection structure 30. This solves the problem of poor compatibility and inconvenience of putting on and taking off garment layers 20 caused by one-to-one binding of different series of garment layers 20.
[0028] In this embodiment, the garment layer 20 includes clothing with different functions such as a windproof layer, a waterproof layer, a thermal layer, and a sweat-absorbing layer. The connecting structure 21 can be garment material in areas such as the shoulder, side seam, collar 25, placket, or sleeve. There can be multiple connecting structures 21 or just one. A connecting structure 21 can have multiple magnetic connecting structures 30 or just one magnetic connecting structure 30. The magnetic connecting structure 30 is composed of magnets, such as neodymium iron boron permanent magnets. The surface of the magnet can be covered with a flexible protective layer to prevent wear on the fabric. The flexible protective layer can be made of high-strength fabric (such as nylon or polyester), thermoplastic polyurethane (TPU) film, silicone sheet, or elastic rubber sheet. The material must have a certain degree of elasticity and flexibility to adapt to the bending or stretching of the garment layer 20, while also being wear-resistant and washable. The magnetic connecting structure 30 is fixed to the garment layer 20 by sewing, heat-sealing, or embedding. The magnetic connection structure 30 of different styles of garment layers 20 all follow the same layout standard to ensure cross-style compatibility.
[0029] In some embodiments, see Figure 2 , Figure 5 and Figure 6 The magnetic connection structure 30 has various types, including: First magnetic connection structure 30: includes at least one first magnetic element 311, and at least one first magnetic element 311 is disposed on connection structure 21; The second magnetic connection structure 32 includes a support member 322 and at least one second magnetic member 321. The support member 322 is disposed on the connection structure 21 and extends along the extension direction of the connection structure 21. The support member 322 is used to limit the local warping of the connection structure 21. At least one second magnetic member 321 is disposed on the support member 322.
[0030] In practical applications, the first magnetic connection structure 30 is suitable for connection structures 21 that are soft, of moderate thickness, and subject to relatively small local forces, such as the inner side of the sleeve 26; the second magnetic connection structure 32 is suitable for connection structures 21 that are prone to local warping, such as the placket structure 22. When garment layers 20 are stacked, the magnetic force of the first magnetic connection structure 30 immediately establishes an adsorption effect locally, ensuring rapid fixation between layers. For areas of the connection structure 21 that are prone to warping, the support member 322 of the second magnetic connection structure 32 provides rigid support, maintaining the flatness of the connection structure 21 and allowing the second magnetic member 321 to fully contact the magnetic area of the corresponding garment layer 20, thereby ensuring the stability of the adsorption force. The support member 322 and the magnetic member work together to ensure that garment layers 20 of different materials and thicknesses can be firmly connected under the action of magnetic force, while preventing local warping that could lead to adsorption failure. By setting two types of magnetic connection structures 30 and 32, different types of magnetic connection structures 30 can be set at different connection structures 21 according to the actual thickness, flexibility or design style of the garment, thereby improving the flexibility of garment design.
[0031] In this embodiment, the specific size, shape, and material of the magnetic components are not limited, and can be adjusted according to the actual thickness, flexibility, or design style of the clothing. For example, the first magnetic component 311 and the second magnetic component 321 can both be blocks or sheets with a circular or polygonal cross-section, or integrally formed elongated magnetic strips with a circular or polygonal cross-section, or elongated magnetic strips formed by sequentially connecting multiple magnetic pillars or magnetic beads. The elongated magnetic strips can extend along the extension direction of the connecting structure 21. When there are multiple first magnetic components 311, the multiple first magnetic components 311 can be arranged at intervals, or sequentially connected end to end to form an elongated magnetic strip. When there are multiple second magnetic components 321, the arrangement method of the first magnetic components is the same, and will not be described in detail here.
[0032] In some embodiments, reference is made to Figure 3 and Figure 4The support member 322 encloses at least one second magnetic member 321.
[0033] It should be noted that the support component 322 is not the flexible protective layer mentioned earlier, but a material with a certain degree of rigidity. Its function is to prevent local warping of the connecting structure 21 from causing the magnetic attraction component to fail. The material of the support component 322 can be a polymer material (polypropylene (PP), polycarbonate (PC), ABS, nylon (PA), polyamide modified material, glass fiber reinforced polymer composite (FRP)), lightweight aluminum alloy strip, or composite fiber strip. The second magnetic attraction component 321 can be fixed to the support component 322 by embedding, snapping, or threading. For example, a reserved hole or groove can be opened on the support component 322, and the second magnetic attraction component 321 can be embedded and fixed by clamping or hot pressing. Alternatively, the second magnetic attraction component 321 can be embedded or embedded in the support component 322 during the manufacturing process by injection molding or hot pressing, so that it is firmly fixed in the support component 322. Industrial adhesives such as epoxy resin, polyurethane glue, or acrylic glue can also be used to bond the second magnetic attraction component 321 to the surface of the support component 322, with the adhesive layer evenly distributed to ensure stable attraction force. The support member 322 can have pre-drilled holes or perforations along its edge and be fixed to the connecting structure 21 of the garment layer 20 by stitching to ensure stability during wear and washing. For heat-melting polymer support members 322, they can be combined with the material of the garment layer 20 (such as polyester, nylon, or blended fabric) by hot pressing or ultrasonic welding, so that the support member 322 is fixed along the connecting structure 21. Alternatively, special fabric adhesive or industrial adhesive can be used to bond the support member 322 to the front or back of the connecting structure 21 of the garment layer 20 to form a non-removable or removable adhesive structure. Channels or pre-drilled positions can also be made in the connecting structure 21 of the garment layer 20, and the support member 322 can be directly embedded into the channel, and with the help of Velcro, buckles, or press structures, it can be detachably fixed.
[0034] In some embodiments, see Figure 1 , Figure 4 and Figure 6 The number of magnetic connection structures 30 is one, which can be either a first magnetic connection structure or a second magnetic connection structure; or, There are multiple magnetic connection structures 30, and the multiple magnetic connection structures 30 are spaced apart along the extension direction of the connection structure 21.
[0035] The magnetic connection structure 30 has multiple types, and multiple magnetic connection structures 30 are independently selected from one of the multiple types. That is, multiple magnetic connection structures 30 include at least one type of magnetic connection structure 30. Multiple magnetic connection structures 30 can all be first magnetic structures, or all be second magnetic structures, or some can be first magnetic structures and others are second magnetic structures.
[0036] In practical applications, a magnetic connection structure 30 can be set on the connection structure 21 of a garment layer 20, and either a first magnetic connection structure or a second magnetic connection structure can be selected. Alternatively, multiple magnetic connection structures 30 can be arranged along the extension direction of the connection structure 21. The multiple magnetic connection structures 30 can be arranged sequentially or alternately, using a mixture of the first and second magnetic connection structures, or only the first or second magnetic connection structure can be used. The choice between the first and second magnetic connection structures depends on whether the connection structure 21 needs a support member 322 to maintain a certain rigidity.
[0037] In some embodiments, see Figure 5 and Figure 6 The number of first magnetic attractors 311 is one, and the first magnetic attractor 311 is integrally formed and disposed along the extension direction of the connecting structure 21; or, There are multiple first magnetic attractors 311, which are connected end to end in sequence along the extension direction of the connecting structure 21, or multiple first magnetic attractors 311 are spaced apart along the extension direction of the support member 322.
[0038] In practical applications, the integrally molded first magnetic component 311 can be a rigid neodymium iron boron or ferrite, or a flexible rubber magnet or rare earth permanent magnet sheet. It can also be a strip or sheet magnet formed by injection molding a composite of polymer materials and magnetic powder, achieving a semi-rigid or semi-flexible effect. The balance between flexibility and attraction force can be controlled according to requirements. When there are multiple first magnetic components 311, each component is a magnetic column or block, and multiple first magnetic components 311 are sequentially connected end-to-end to form a magnetic strip.
[0039] In some embodiments, see Figure 6 The number of second magnetic attractors 321 is one, and the second magnetic attractor 321 is integrally formed and arranged along the extending direction of the support member 322; or, There are multiple second magnetic attractors 321. Multiple second magnetic attractors 321 are connected end to end in sequence along the extension direction of the support member 322, or multiple second magnetic attractors 321 are spaced apart along the extension direction of the support member 322.
[0040] In practical applications, the integrally molded second magnetic component 321 can be made of rigid neodymium iron boron or ferrite, or it can be made of flexible rubber magnet, or it can be made of polymer material and magnetic powder composite injection molding to form a strip or sheet magnet. The flexibility and attraction force can be controlled according to the requirements. When there are multiple second magnetic components 321, the second magnetic component 321 is a magnetic column or magnetic block, and multiple second magnetic components 321 are connected end to end to form a magnetic strip.
[0041] In some embodiments, see Figure 6The first magnetic attractor 311 is at least one of a magnetic strip, a magnetic sheet, a magnetic block, and a magnetic column; And / or, the second magnetic attractor 321 is at least one of a magnetic strip, a magnetic sheet, a magnetic block, and a magnetic column.
[0042] In practical applications, the magnetic strips are made of rubber magnets or polymer composite magnetic materials. They can be cut into continuous strips and integrally formed along the extension direction of the support 322, or connected end-to-end sequentially, or formed by magnetic columns being magnetically connected end-to-end sequentially. The magnetic strips are flexible and can conform to the curves of the garment layer 20. The magnetic sheets are usually made of neodymium iron boron or ferrite material, with a thickness ranging from 0.5 to 3 mm. They are rectangular or circular and can be fixed to the support 322 by sewing, gluing, or ultrasonic welding, suitable for localized adsorption reinforcement. The magnetic blocks are relatively large and have strong adsorption force. They can be fixed individually to the support 322 or the connecting structure 21 to support the weight of larger garment layers 20 or for localized fixation needs. The cross-section of the magnetic columns can be circular, polygonal, or other shapes. The outer diameter of the magnetic columns can be 1 mm, 2 mm, 3 mm, etc. The magnetic columns can be magnetically connected end-to-end along the support 322 or the connecting structure 21 to form magnetic strips, or they can be spaced apart like magnetic blocks and magnetic sheets.
[0043] In some embodiments, reference is made to Figure 2 The garment layer 20 includes two oppositely arranged placket structures 22, each placket structure 22 including an opening and closing part 221 and a covering part 222; The opening and closing part 221 cooperates with the opening and closing part 221 of another placket structure 22 to connect or separate to control the opening and closing of the two placket structures 22 of the garment layer 20; The blocking part 222 serves as a connecting structure 21 and is disposed inside the garment layer 20 and located on the side of the opening and closing part 221 facing away from the other opening and closing part 221. A blocking space 23 with an insertion port 24 is provided between the blocking part 222 and the inner side of the garment layer 20. The opening direction of the insertion port 24 faces away from the opening and closing part 221, and at least a portion of the opening and closing part 221 of the other garment layer 20 is inserted into the blocking space 23.
[0044] In practical applications, the placket structure 22 of the garment layer 20 is prone to unstable direct contact, misalignment, or sliding between the opening and closing parts 221 of one garment layer 20 and another during layering or individual wearing, resulting in decreased wearing comfort and an uneven overall appearance. Furthermore, the lack of uniformity in the placket opening and closing parts 221 of different styles or sizes when layered makes cross-style combinations incompatible, increases the difficulty of putting on and taking off, and affects the efficiency of quick dressing and undressing in changing environments. When two adjacent garment layers 20 are layered, the connecting structures 21 of the different garment layers 20 are interconnected. The opening and closing part 221 of the inner garment layer 20 is inserted into the covering space 23 of the outer garment layer 20, thereby limiting deformation, local lifting, or misalignment / sliding of the opening and closing part 221 of the inner garment layer 20, while not affecting the connection between the two opening and closing parts 221 of the outer garment layer 20.
[0045] In this embodiment, the garment layer 20 has two opposing placket structures 22 arranged along a symmetrical axis. Each placket structure 22 includes an opening / closing portion 221 and a covering portion 222. The opening / closing portion 221 can be a standardized operable structure such as a zipper, snap, magnetic strip, or buttonhole, which can be connected or separated by cooperating with the opening / closing portion 221 of the other placket structure 22. The opening direction of the insertion port 24 is opposite to that of the opening / closing portion 221, and its width and height can be set according to the size of the opening / closing portion 221, so that the opening / closing portions 221 of garment layers 20 of different styles, sizes, or series can be inserted without interfering with the original opening / closing action. The material of the covering portion 222 can be a flexible fabric, lightweight fiber, or elastic composite material to ensure smooth deformation during insertion and maintain the covering effect after restoring its shape.
[0046] In some embodiments, reference is made to Figure 1 The garment layer 20 includes a placket structure 22, which serves as a connecting structure 21; and / or, The garment layer 20 includes a collar 25, which serves as a connecting structure 21; and / or, The garment layer 20 includes a sleeve 26, which serves as a connecting structure 21.
[0047] In practical applications, the connecting structures 21 of the placket structure 22, collar 25, and sleeve 26 can be magnetically attracted to the corresponding connecting structures 21 of other garment layers 20. This ensures that the garment layers 20 are restrained in multiple key areas, including the front, neck, and sleeves, preventing relative slippage or shifting between layers and ensuring a smooth overall garment shape during wear, reducing wrinkles and twisting. Furthermore, multi-point magnetic fixation allows the garment layers 20 to better conform to the body's curves, improving localized friction and looseness, and enhancing wearing comfort.
[0048] In some embodiments, reference is made to Figure 1The magnetic connection structure 30 provided on the placket structure 22 is distributed along the length direction of the placket structure 22; The magnetic connection structure 30 is located at the center of the back neck of the collar 25. The magnetic connection structure 30 is located on the inside of the sleeve 26.
[0049] In practical applications, the magnetic connection structure 30 on the placket is distributed along the length direction, ensuring that the garment layers 20 in the front area are evenly fixed longitudinally. This effectively prevents slippage up and down or forward and backward during layering, ensuring a smooth fit between layers and enhancing the overall stability of the garment. The magnetic connection structure 30 on the collar 25 is located at the center of the back neckline, fixing the garment layers 20 in the neck area and preventing misalignment or rotation of the layers at the neck during wearing. It also allows for quick alignment and compatible combination of back necklines for different styles or functional layers. The magnetic connection structure 30 on the inside of the sleeve 26 restrains the sleeve garment layers 20 to fit snugly against the inner garment, preventing slippage or loosening of the sleeve layers, improving the comfort and fit of the sleeves, and preventing sleeve twisting or bunching during activity.
[0050] In this embodiment, the magnetic connection structure 30 at the placket may include a plurality of spaced magnets, or a magnetic strip extending along the length of the placket structure 22. The magnetic connection structure 30 of the collar 25 may be a magnetic sheet, a magnetic block, or a magnetic strip. The magnetic connection structure 30 disposed on the collar 25 may be disposed only at the center of the back neck, or it may be disposed at the collar point and / or along the extension direction of the collar 25. The magnetic connection structure 30 on the inner side of the sleeve 26 may be a magnetic sheet, a magnetic block, or a magnetic strip. The magnetic connection structure 30 disposed on the sleeve 26 may also be a magnetic strip or spaced magnetic sheets or magnetic blocks disposed around the sleeve 26 or along the length of the sleeve 26.
[0051] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative positional relationship and movement of each component in a specific posture. If the specific posture changes, the directional indication will also change accordingly.
[0052] It should also be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on the other component or may be connected to an intermediary component. When a component is referred to as being "connected to" another component, it can be directly connected to the other component or indirectly connected to the other component through an intermediary component.
[0053] Furthermore, the use of terms such as "first" and "second" in this invention is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this invention.
[0054] The above description is merely a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made using the contents of the present invention's specification and drawings under the inventive concept of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.
Claims
1. A garment, characterized in that, The garment includes multiple independently wearable garment layers. Each garment layer has a connection structure for connecting with other garment layers. The connection structure is provided with a magnetic connection structure. Any two garment layers can be detachably attached to each other through the magnetic connection structure, so as to realize the stacking or individual wearing of the garment layers in the garment.
2. The clothing according to claim 1, characterized in that, The magnetic connection structure has several types, including: First magnetic connection structure: includes at least one first magnetic element, wherein the at least one magnetic element is disposed on the connection structure; The second magnetic connection structure includes a support member and at least one second magnetic member. The support member is disposed on the connection structure and extends along the extension direction of the connection structure. The support member is used to limit local warping of the connection structure. The at least one second magnetic member is disposed on the support member.
3. The clothing according to claim 1 or 2, characterized in that, The number of magnetic connection structures is one; or... The number of magnetic connection structures is multiple, and the multiple magnetic connection structures are spaced apart along the extension direction of the connection structure. The magnetic connection structures include multiple types, and the multiple magnetic connection structures include at least one type of magnetic connection structure.
4. The clothing according to claim 3, characterized in that, The magnetic connection structure has multiple types, and multiple magnetic connection structures are independently selected from one of the multiple types.
5. The clothing according to claim 2, characterized in that, The number of the first magnetic attractor is one, and the first magnetic attractor is integrally formed and disposed along the extension direction of the connecting structure; or, There are multiple first magnetic components, which are connected end to end in sequence along the extension direction of the connecting structure, or multiple first magnetic components are spaced apart along the extension direction of the support.
6. The clothing according to claim 2, characterized in that, The number of the second magnetic attractor is one, and the second magnetic attractor is integrally formed and arranged along the extending direction of the support member; or, There are multiple second magnetic components, which are connected end to end in sequence along the extension direction of the support, or the multiple second magnetic components are spaced apart along the extension direction of the support.
7. The garment according to claim 6, characterized in that, The support member encloses at least one of the second magnetic elements.
8. The clothing according to claim 2, characterized in that, The first magnetic attractor is at least one of a magnetic strip, a magnetic sheet, a magnetic block, and a magnetic column; And / or, the second magnetic element is at least one of a magnetic strip, a magnetic sheet, a magnetic block, and a magnetic column.
9. The garment according to claim 1, characterized in that, The garment layer includes two oppositely arranged placket structures, each placket structure including an opening and closing portion and a covering portion; The opening and closing portion cooperates with the opening and closing portion of another placket structure to connect or separate them to control the opening and closing of the two placket structures of the garment layer; The shielding part, as the connecting structure, is disposed on the inner side of the garment layer and located on the side of the opening and closing part facing away from the other opening and closing part. A shielding space with an insertion port is provided between the shielding part and the inner side of the garment layer. The opening direction of the insertion port is facing away from the opening and closing part, and is used for at least a portion of the opening and closing part of the other garment layer to be inserted into the shielding space.
10. The garment according to claim 1, characterized in that, The garment layer includes a placket structure, which serves as the connecting structure; and / or, The garment layer includes a collar, which serves as the connecting structure; and / or, The garment layer includes a sleeve, which serves as the connecting structure.
11. The garment according to claim 10, characterized in that, The magnetic connection structure disposed on the placket structure is distributed along the length direction of the placket structure; The magnetic connection structure of the collar is located at the center of the back of the collar. The magnetic connection structure is located on the inside of the sleeve.