magic tape
By incorporating a first connector and a second connector on the Velcro, which can work together, the problem of traditional Velcro being fixed in a specific position is solved, achieving flexible connection and improved comfort.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 深圳多样生命科技有限公司
- Filing Date
- 2025-07-31
- Publication Date
- 2026-07-21
AI Technical Summary
Traditional Velcro fasteners are fixed to the target object, and users can only connect them in a preset position. They cannot flexibly adjust the connection position according to the user's actual needs, resulting in poor user comfort.
Design a hook and loop fastener that, by setting a first connector and a second connector, can cooperate with each other to achieve a flexible connection between the hook and loop fastener body and the target object. Users can choose the installation position according to their needs.
It improves the installation flexibility and comfort of Velcro, adapts to different user body shapes and tightness preferences, and extends the product's lifespan.
Smart Images

Figure CN224522511U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of connection device technology, and more specifically, relates to a Velcro strap. Background Technology
[0002] Currently, traditional Velcro products typically require pre-attachment to the target object, such as clothing or belts, through sewing, bonding, or other fixing methods. However, this method has certain limitations. Taking belts as an example, existing Velcro is usually fixed at both ends of the belt, and users can only connect it at a preset position. It is not possible to flexibly adjust the connection position according to the user's actual needs. For example, different users have different body shapes and different requirements for tightness, making personalized adjustments difficult and affecting the comfort of use. Utility Model Content
[0003] The purpose of this application is to provide a Velcro to solve the technical problem in the prior art where Velcro is usually fixed to the target object and the user can only connect it at a preset position.
[0004] To achieve the above objectives, the technical solution adopted in this application is: to provide a hook and loop fastener, comprising: a hook and loop fastener body; a first connector, wherein the hook and loop fastener body is connected to the first connector; and a second connector; wherein the first connector and the second connector are configured to cooperate with each other to connect the hook and loop fastener body to a target object.
[0005] In one alternative embodiment, the hook and loop fastener body has an adhesive surface and a back surface opposite to the adhesive surface, and a first connector is mounted on the back surface of the hook and loop fastener body.
[0006] In one alternative embodiment, the adhesive surface is a hook surface or a rough surface.
[0007] In one alternative embodiment, the first connector has a connecting end and a supporting end, the Velcro body is fixedly connected to the supporting end of the first connector, and the connecting end of the first connector is connected to the second connector.
[0008] In one alternative embodiment, the first connector includes a female buckle, and the second connector includes a female buckle connected to the female buckle.
[0009] In one alternative embodiment, the second connector includes a female buckle, and the first connector includes a female buckle connected to the female buckle.
[0010] In an alternative embodiment, the Velcro also includes an integration element to which the second connector is attached.
[0011] In one alternative embodiment, one end of the integrated component is connected to one end of the Velcro body.
[0012] In one optional embodiment, a plurality of first connectors are provided, and the plurality of first connectors are connected to the Velcro body at intervals; a plurality of second connectors are correspondingly provided, and the plurality of second connectors are connected to the integrated component at intervals.
[0013] In one alternative embodiment, a plurality of first connectors are arranged in a rectangular array, and a plurality of second connectors are arranged in a rectangular array.
[0014] The beneficial effects of the Velcro provided in this application are as follows: Compared with the prior art, the Velcro in the embodiments of this application, by setting a first connector and a second connector, connects the Velcro body to the first connector. The first connector and the second connector are configured to cooperate with each other to connect the Velcro body to the target object. That is, by cooperating and connecting the first connector and the second connector, the target object is locked, thereby fixing the Velcro body to the target object. This design allows users to choose the installation position of the Velcro according to actual needs, breaking the limitation of traditional Velcro being fixed in a specific position, and improving installation flexibility. For example, when Velcro is used in products such as belts, users can freely choose the connection position of the Velcro according to their own body shape, tightness preference, etc., solving the problem that traditional Velcro cannot adapt to different user needs due to fixed installation, and improving the comfort of use. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this application, 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 this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 A schematic diagram of the structure of the Velcro provided in the embodiments of this application. Figure 1 ;
[0017] Figure 2 A schematic diagram of the structure of the Velcro provided in the embodiments of this application. Figure 2 ;
[0018] Figure 3 A schematic diagram of the mating structure between the Velcro and the target object provided in the embodiments of this application. Figure 1 ;
[0019] Figure 4 A schematic diagram of the mating structure between the Velcro and the target object provided in the embodiments of this application. Figure 2 ;
[0020] Figure 5 A schematic diagram of the structure of the Velcro provided in the embodiments of this application. Figure 3 ;
[0021] Figure 6 A schematic diagram of the structure of the Velcro provided in the embodiments of this application. Figure 4 ;
[0022] Figure 7 A schematic diagram of the mating structure between the Velcro and the target object provided in the embodiments of this application. Figure 3 ;
[0023] Figure 8 A schematic diagram of the mating structure between the Velcro and the target object provided in the embodiments of this application. Figure 4 .
[0024] The following are the labeling elements in the figure:
[0025] 100-Hook and loop fastener; 10-Hook and loop fastener body; 11-Adhesive surface; 12-Back side; 20-First connector; 21-Connecting end; 22-Supporting end; 23-Female fastener; 30-Second connector; 31-Female fastener; 40-Integrated component; 200-Target object. Detailed Implementation
[0026] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.
[0027] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.
[0028] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0029] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.
[0030] Currently, traditional hook and loop fasteners typically require pre-attachment to the target object, such as clothing or belts, through sewing, bonding, or other methods. However, this method has limitations. Once the fastener is fixed to the target object, the user can only connect it at a preset position. Taking belts as an example, existing hook and loop fasteners are usually fixed at both ends of the belt, and users can only connect them at preset positions. They cannot flexibly adjust the connection position according to the user's actual needs, making it difficult to change or reconfigure the position of the fastener. This limits their applicability and flexibility. Furthermore, different users have different body types and different requirements for tightness, making personalized adjustments difficult and affecting comfort.
[0031] Please refer to the following: Figures 1 to 8 The hook and loop fastener 100 provided in the embodiments of this application will now be described. The hook and loop fastener 100 is applied to a target object 200 and includes: a hook and loop fastener body 10; a first connector 20, the hook and loop fastener body 10 being connected to the first connector 20; and a second connector 30; wherein the first connector 20 and the second connector 30 are configured to cooperate with each other to connect the hook and loop fastener body 10 to the target object 200.
[0032] The hook and loop fastener body 10 refers to the basic structure used to achieve the adhesive function, which is achieved through the interlocking of the hook side and the loop side. Specifically, it can be made of fabric material with both hook and loop sides.
[0033] The first connector 20 is a fixing component that is directly connected to the Velcro body 10, used to establish a physical connection with the second connector 30. Specifically, it can be a metal fastener or a plastic snap-fit structure. The second connector 30 is a corresponding component that works in conjunction with the first connector 20. Specifically, it can be implemented using a fastener or slot structure that matches the first connector 20. The two components work together to form a detachable connection.
[0034] Mutual cooperation refers to the adjustable connection between the first connector 20 and the second connector 30 through a mechanical structure. Specifically, it can be achieved by using a snap, buckle, or knob locking mechanism. By changing the connection position of the two, the Velcro body 10 can be flexibly installed.
[0035] Through the cooperative structure of the independently set first connector 20 and second connector 30, the Velcro body 10 can freely choose the installation position, breaking through the limitations of the traditional fixed installation mode. Users can dynamically adjust the connection position according to actual needs, thereby adapting to different body shapes and usage preferences, significantly improving product applicability and user comfort.
[0036] The target object 200 is the object on which the Velcro 100 is applied. Specifically, it can be a component in the clothing and accessories field, such as a belt or backpack; it can also be a sporting or medical health product, such as knee pads, wristbands, posture correctors; or it can be a household item, such as curtain straps or furniture fasteners. Holes can be pre-drilled in the target object 200 for the connector to pass through; when the target object 200 is made of a soft material, the tip of the connector can be directly passed through the target object 200, or the connector can be directly clamped or fastened to the target object 200.
[0037] The first connector 20 is mounted on the hook and loop fastener body 10, while the second connector 30 can be mounted on the target object 200 or exist independently. When the hook and loop fastener 100 needs to be mounted on the target object 200, the user can select a suitable position to connect the first connector 20 and the second connector 30. This connection can be a snap-on, threaded, magnetic, or other detachable connection method. Alternatively, a disposable fixing method, such as a disposable cable tie, can also be selected.
[0038] The first connector 20 is installed on the hook and loop fastener body 10. The first connector 20 can be connected to one side of the hook and loop fastener body 10, or the hook and loop fastener body 10 can be passed through the first connector 20. As long as the first connector 20 and the second connector 30 are engaged and fixed, the hook and loop fastener body 10 can be fixed to the target object 200.
[0039] The target object 200 is locked in place by the cooperation of the first connector 20 and the second connector 30, thereby fixing the Velcro body 10 to the target object 200. In some embodiments, the first connector 20 can be a plastic buckle 23, which is fixed to the Velcro body 10 by a heat-pressing process. The second connector 30 is a female buckle 31 that matches the female buckle 23 and can exist independently. In use, the user can choose a suitable position according to their waist size, place the female buckle 31 there, and fasten the female buckle 23 on the Velcro body 10 to it. After fastening, the hook side of the Velcro body 10 faces outward and can be bonded to the napped side of the other end of the belt, thereby realizing the closure and adjustment of the belt. When the user needs to adjust the tightness, they only need to unconnect the female buckle 23 and the female buckle 31, choose a new position, and fasten it again. This design allows the belt to adapt to users of different body types and can also adjust the comfort at any time according to wearing habits.
[0040] When the target object 200 can be part of the hook and loop fastener 100 (e.g., a napped surface), only one hook and loop fastener body 10 needs to be set to cooperate with the target object 200. When the target object 200 cannot be part of the hook and loop fastener 100, two hook and loop fasteners 100 can be set separately, one with a hook side and the other with a napped surface. Taking a belt as an example, when the belt itself is made of napped fabric, only the hook and loop fastener body 10 needs to be used. By fixing the hook and loop fastener body 10 to one end of the belt, it can be bonded to the other end of the belt. If the belt itself does not have a napped or hook side, two hook and loop fasteners 100 are fixed to both ends of the belt, one with a hook side and the other with a napped surface, and the two are connected to fix the belt.
[0041] Therefore, users can freely choose the installation position of the Velcro 100 according to their actual needs. For example, in belt applications, users can choose a suitable position to fix the Velcro 100 to the belt according to their own body shape and tightness preference. This design breaks the limitation of traditional Velcro 100 being fixed in a specific position, improving installation flexibility.
[0042] When the detachable first connector 20 and second connector 30 are selected, this design allows for multiple disassembly, assembly, and repositioning. Users can adjust the position of the Velcro 100 as needed, and this repositionable feature further enhances the applicability and lifespan of the Velcro 100. It solves the problem of insufficient flexibility caused by the fixed installation of traditional Velcro 100. Users can freely choose the installation position of the Velcro 100 according to actual needs, improving the product's applicability. In applications such as belts, users can adjust the position of the Velcro 100 according to their body shape and comfort requirements, enhancing the user experience. Furthermore, the repositionable feature extends the product's lifespan and reduces product scrap due to fixed installation.
[0043] Compared with the prior art, the Velcro 100 provided in this application embodiment, by setting a first connector 20 and a second connector 30, connects the Velcro body 10 to the first connector 20. The first connector 20 and the second connector 30 are configured to cooperate with each other to connect the Velcro body 10 to the target object 200. That is, by cooperating with the first connector 20 and the second connector 30, the Velcro body 10 is fixed to the target object 200. This design allows users to choose the installation position of the Velcro 100 according to actual needs, breaking the limitation of the traditional Velcro 100 being fixed in a specific position, and improving installation flexibility. For example, when the Velcro 100 is used in products such as belts, users can freely choose the connection position of the Velcro 100 according to their own body shape, tightness preference, etc., solving the problem that the traditional Velcro 100 cannot adapt to the needs of different users due to fixed installation, and improving the comfort of use.
[0044] Please refer to some embodiments of this application. Figure 1 and Figure 2 The hook and loop fastener body 10 has an adhesive surface 11 and a back surface 12 opposite to the adhesive surface 11, and the first connector 20 is installed on the back surface 12 of the hook and loop fastener body 10.
[0045] The adhesive surface 11 is used to form a detachable fixation with the surface of the target object 200, and can be a hook surface or a rough surface. The back surface 12 is a non-adhesive area, which can be connected to the first connector 20 by mechanical connection, such as by sewing, bonding or heat pressing.
[0046] When the hook and loop fastener body 10 is attached to the target object 200 via the adhesive surface 11, the first connector 20 and the second connector 30 on the back side 12 form a mechanical connection. For example, in a belt application, the hook side of the hook and loop fastener body 10 is fixed to the inner fabric of the belt, and the first connector 20 on the back side 12 is connected and fastened to the second connector 30 on the outer layer of the belt. This ensures the basic fixing strength between the hook and loop fastener body 10 and the target object 200, while avoiding interference of the first connector 20 with the effective contact area of the adhesive surface 11.
[0047] By installing the first connector 20 on the back 12 of the hook and loop fastener body 10, the stability of the hook and loop fastener 100 during use is ensured, the impact on the adhesive surface 11 is avoided, and the normal adhesive function of the hook and loop fastener 100 is maintained. This design allows the hook and loop fastener 100 to be flexibly installed on the target object 200 through the cooperation of the first connector 20 and the second connector 30, improving the application range and ease of use of the hook and loop fastener 100.
[0048] In some embodiments of this application, the adhesive surface 11 is a hook surface or a rough surface.
[0049] The adhesive surface 11 can be either a hook surface or a textured surface. Specifically, the adhesive surface 11 of the hook and loop fastener body 10 can be a hook surface, composed of multiple tiny plastic hooks. This hook-like structure can tightly adhere to the corresponding textured surface to form a strong connection. Alternatively, the adhesive surface 11 of the hook and loop fastener body 10 can be a textured surface, composed of dense fibrous material. This textured surface can tightly adhere to the hook surface to achieve a reliable connection.
[0050] The hooked or textured surface can form a unidirectional adhesive structure, generating a mechanical interlocking force when they are combined. The choice between the hooked and textured surface can be adjusted according to the material of the target object 200 or the usage scenario.
[0051] Because the adhesive surface 11 has a hook or loop structure, the hook and loop fastener 100 can form a tight fit with the corresponding mating surface, thus providing sufficient connection strength. This design allows the hook and loop fastener 100 to adapt to different usage scenarios, such as flexible connection and separation on textiles like clothing and belts. At the same time, the hook or loop structure also facilitates cleaning and maintenance, extending the service life of the hook and loop fastener 100.
[0052] Please refer to some embodiments of this application. Figure 6 The first connector 20 has a connecting end 21 and a supporting end 22. The Velcro body 10 is fixedly connected to the supporting end 22 of the first connector 20, and the connecting end 21 of the first connector 20 is connected to the second connector 30.
[0053] The support end 22 is a planar structure that supports the hook and loop fastener body 10. Its width can be greater than that of the connecting end 21 to increase the contact area. The connecting end 21 is a columnar or sheet-like extension structure with a protrusion or groove at the end for engaging with the second connector 30. The support end 22 and the hook and loop fastener body 10 can be fixed by heat pressing, bonding, or sewing. The connecting end 21 can engage with the second connector 30 by snaps, threads, or magnetic attraction. A transition area is formed between the support end 22 and the connecting end 21.
[0054] In some embodiments, the planar structure of the support end 22 is fitted and fixed to the back surface 12 of the hook and loop fastener body 10, ensuring that the load is evenly transmitted to the first connector 20 when the body is under tension; the protrusion of the connection end 21 is embedded in the groove of the second connector 30, forming a mechanical interlock. When the user adjusts the installation position of the hook and loop fastener 100, the joint between the connection end 21 and the second connector 30 bears shear force, while the support end 22 reduces the pressure per unit area through large-area contact. This design allows the hook and loop fastener body 10 to maintain positional adjustability during adjustment while avoiding connection failure caused by local stress concentration.
[0055] Users can flexibly adjust the installation position of the Velcro 100 according to actual needs, no longer limited to a preset fixed position. The adjustable connection method improves the flexibility and adaptability of the Velcro 100.
[0056] Please refer to some embodiments of this application. Figures 1 to 8 The first connector 20 includes a female buckle 23, and the second connector 30 includes a female buckle 31 connected to the female buckle 23.
[0057] Please refer to some embodiments of this application. Figures 1 to 8 The second connector 30 includes a female buckle 31, and the first connector 20 includes a female buckle 23 connected to the female buckle 31.
[0058] The male buckle 23 can be a raised structure, while the female buckle 31 can be a recessed structure; the two engage through shape matching. The engagement methods of the male buckle 23 and female buckle 31 include, but are not limited to, press-fit, rotation-locking, or plug-in fixing. The male buckle 23 may be equipped with barbs or elastic components to enhance the locking effect with the female buckle 31, and the inner wall of the female buckle 31 may be provided with guide grooves or limiting bosses to guide the insertion direction of the male buckle 23. The materials of the male buckle 23 and female buckle 31 can be metal, plastic, or composite materials to meet the strength requirements of different scenarios. For example, the male buckle 23 can be made of nylon, and the female buckle 31 can be made of polycarbonate; when they engage, they generate moderate frictional resistance, ensuring connection stability while facilitating manual separation.
[0059] The male buckle 23 and the female buckle 31 can be detachably connected or fixedly connected. For example, in some embodiments, the male buckle 23 and the female buckle 31 can be designed as anti-theft buckles or plastic seals. That is, when not installed, the desired installation position can be selected arbitrarily. After installation, it is fixed at one time and requires specific tools to remove, thus ensuring the stability of the connection when used by the user.
[0060] When a user attaches the Velcro body 10 to the target object 200, pressing the male buckle 23 causes it to engage with the recessed area of the female buckle 31. The barbs or elastic components of the male buckle 23 and the limiting structure on the inner wall of the female buckle 31 form a mechanical interlock, thereby fixing the Velcro body 10 to the surface of the target object 200. During this process, the directional engagement of the male buckle 23 and the female buckle 31 avoids the risk of misalignment during connection, while allowing the user to release the lock by applying a separation force in a specific direction, achieving quick disassembly. For example, in a belt application, the user can select the engagement position of the male buckle 23 and the female buckle 31 according to their waist size to adapt to different tightness requirements, without relying on pre-set fixing points.
[0061] In some embodiments, the male snap fastener 23 and the female snap fastener 31 may be made of plastic. The male snap fastener 23 is cylindrical, and the female snap fastener 31 is annular. The male snap fastener 23 is located on the back 12 of the hook and loop fastener body 10, and the female snap fastener 31 is attached to the target object 200 during use. In use, the male snap fastener 23 is inserted into the female snap fastener 31, and the hook and loop fastener body 10 is connected to the target object 200 through the snap fastening structure. The design of the male snap fastener 23 and the female snap fastener 31 allows the position of the hook and loop fastener body 10 on the target object 200 to adapt to different usage needs.
[0062] In other embodiments, the second connector 30 includes a female buckle 23, and the first connector 20 includes a female buckle 31 connected to the female buckle 23. The female buckle 31 is mounted on the back side 12 of the Velcro body 10. When it is necessary to install the Velcro body 10 onto the target object 200, the female buckle 23 can be passed through a pre-drilled hole on the target object 200, and then the female buckle 31 can be fastened onto the female buckle 23, thereby achieving a detachable connection between the Velcro 100 and the target object 200.
[0063] The combination of male and female fasteners 23 and 31 allows the Velcro body 10 to be flexibly positioned on the target object 200, solving the positional limitations caused by traditional fixed installation methods. This design increases the flexibility of the Velcro 100, allowing users to choose the appropriate installation position according to their actual needs. For products such as belts, users can adjust the position of the Velcro 100 according to their body shape and comfort requirements, improving the product's applicability and comfort.
[0064] Please refer to some embodiments of this application. Figures 1 to 8 The Velcro 100 also includes an integral part 40, to which the second connector 30 is connected.
[0065] By setting up the integration component 40, multiple second connectors 30 that might otherwise be scattered and installed independently can be integrated together to form a structural unit, avoiding the tedious process of precisely installing multiple small parts one by one on the target object 200.
[0066] As a whole, the relative positions and spacing between the second connectors 30 on the integrated component 40 can be set and guaranteed during manufacturing, avoiding problems such as misalignment and skewing that may be caused by scattered installation, and ensuring the reliability of the connection and the regularity of the appearance.
[0067] The integrated component 40 can also serve as a reinforcing component, especially when materials such as metal or hard plastic are used, it can improve the overall strength and durability of the target object 200 in the connection area and prevent deformation caused by repeated opening and closing of the Velcro 100.
[0068] The material of the integrated component 40 can also be the same textile or polymer material as the target object 200. The second connector 30 is fixed to the surface of the integrated component 40 by sewing, heat pressing, or bonding. The integrated component 40 provides a clearly defined operating area, making it easier for users to align, disassemble, or adjust, thus improving ease of use.
[0069] With the cooperation of the integrated component 40 and the second connector 30, the user can choose the installation position of the Velcro 100 according to actual needs, making installation easier.
[0070] Please refer to some embodiments of this application. Figure 5One end of the integrated component 40 is connected to one end of the Velcro body 10.
[0071] The connection method between the integrated component 40 and the hook and loop fastener body 10 includes sewing, bonding, or threaded connection, and it can also be integrally molded. One end of the integrated component 40 is fixedly connected to one end of the hook and loop fastener body 10, while the other end remains free. The length of the integrated component 40 can be set to be the same as or shorter than the hook and loop fastener body 10.
[0072] In use, the user does not need to operate the two separate components (first connector 20 and second connector 30) separately. Simply open the entire Velcro 100, clamp the target object 200, engage the first connector 20 and second connector 30 to secure them, and then release to complete the fixation. This avoids the steps required for precise alignment and fastening of the first connector 20 and second connector 30 in a separate design, greatly improving ease of use and speed, especially suitable for frequent installation and disassembly or use in environments where operation is inconvenient. All components (i.e., Velcro body 10, first connector 20, second connector 30, and integrated component 40) are integrated into a compact whole.
[0073] Please refer to some embodiments of this application. Figures 1 to 8 Multiple first connectors 20 are provided, and multiple first connectors 20 are connected to the Velcro body 10 at intervals; multiple second connectors 30 are provided, and multiple second connectors 30 are connected to the integrated component 40 at intervals.
[0074] The number of first connectors 20 and the number of second connectors 30 can be set to multiple, and the two can be set to correspond to each other, or the number of one can be greater than the number of the other.
[0075] When a single connection point bears the full tensile force, it is prone to becoming a weak link, leading to the connector being pulled out or the hook and loop fastener body 10 tearing. Multiple first connectors 20 disperse the tensile force acting on the hook and loop fastener body 10, making the stress distribution more even. Multiple spaced connection points can also effectively limit the rotation and warping of the hook and loop fastener body 10 or the integrated component 40, allowing the hook and loop fastener body 10 to adhere more firmly to the integrated component 40, maintaining flatness and improving the rigidity and stability of the overall structure.
[0076] When the number of first connectors 20 is connected to the number of second connectors 30, multiple first connectors 20 can be connected to multiple second connectors 30 in a corresponding manner, or some first connectors 20 can be connected to some second connectors 30. For example, the first connector 20 is provided with multiple sub-buckles 23. By selecting sub-buckles 23 at different positions to cooperate with the female buckle 31, multi-point fixation of the Velcro body 10 and the target object 200 can be achieved.
[0077] By fixing at multiple points, the connection strength can be improved, and a stable surface or line connection can be achieved, ensuring the stress balance of the interlocking structure.
[0078] Please refer to some embodiments of this application. Figures 1 to 8 Multiple first connectors 20 are arranged in a rectangular array, and multiple second connectors 30 are arranged in a rectangular array.
[0079] The first connectors 20 are arranged in a grid pattern along the horizontal and vertical directions on the surface of the hook and loop fastener body 10, while the second connectors 30 are arranged in a corresponding grid pattern at equal intervals on the surface of the integrated component 40. When the user mates the hook and loop fastener body 10 with the integrated component 40, the rectangular array of the first connectors 20 and the second connectors 30 forms a crisscrossing positioning grid. The user can move the hook and loop fastener body 10 horizontally or vertically to make any one of the first connectors 20 connect point-to-point with the corresponding second connector 30. Alternatively, multiple arrayed first connectors 20 can be connected to multiple corresponding second connectors 30. Through the row-and-column aligned connection point layout, multiple connectors form a planar support structure, dispersing the force of a single-point connection and improving connection stability.
[0080] The rectangular array provides a more stable geometry, enhancing the device's resistance to deformations (such as bending and twisting) caused by external forces. This arrangement ensures the integrity of the overall structure even when subjected to non-uniform external forces.
[0081] A multi-point selectable connection structure is achieved through a rectangular array arrangement, creating a matrix-like connection selection mode between the Velcro body 10 and the integrated component 40. During the assembly of the target object 200, the user can select different combinations of rows and columns of connectors according to actual needs, effectively expanding the freedom of position adjustment. This solves the problem of non-adjustable tightness caused by traditional single-point fixing, allowing users of different body types to obtain a suitable fixing effect.
[0082] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A type of hook and loop fastener, applied to a target object, characterized in that, include: The Velcro itself; The first connector is connected to the Velcro body. as well as Second connector; The first connector and the second connector are configured to cooperate with each other to attach the Velcro body to the target object.
2. The Velcro as described in claim 1, characterized in that, The hook and loop fastener body has an adhesive surface and a back surface opposite to the adhesive surface, and the first connector is mounted on the back surface of the hook and loop fastener body.
3. The Velcro as described in claim 2, characterized in that, The bonding surface is either a hooked surface or a rough surface.
4. The Velcro as described in claim 1, characterized in that, The first connector has a connecting end and a supporting end. The Velcro body is fixedly connected to the supporting end of the first connector, and the connecting end of the first connector is connected to the second connector.
5. The Velcro as described in claim 1, characterized in that, The first connector includes a female buckle, and the second connector includes a female buckle connected to the female buckle.
6. The Velcro as described in claim 1, characterized in that, The second connector includes a female buckle, and the first connector includes a female buckle connected to the female buckle.
7. The Velcro as described in any one of claims 1 to 6, characterized in that, The Velcro also includes an integrated component, to which the second connector is attached.
8. The Velcro as described in claim 7, characterized in that, One end of the integrated component is connected to one end of the Velcro body.
9. The Velcro as described in claim 7, characterized in that, Multiple first connectors are provided, and the multiple first connectors are connected to the Velcro body at intervals; The second connector is provided in multiple forms, and the multiple second connectors are connected to the integrated component at intervals.
10. The Velcro as described in claim 9, characterized in that, The first connectors are arranged in a rectangular array, and the second connectors are arranged in a rectangular array.