A reinforcing device and a wearable device

By introducing positioning components and adhesive layers into the reinforcement device, the device can be easily positioned and stabilized with one hand, solving the problems of inconvenient operation and inaccurate positioning in the existing technology, and improving the stability of the equipment and the continuity of monitoring.

CN224572736UActive Publication Date: 2026-07-31ANDON HEALTH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANDON HEALTH CO LTD
Filing Date
2025-08-11
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing reinforcement devices lack ease of operation, are difficult to put on with one hand, have inaccurate positioning, and are prone to deformation, wrinkling, and displacement, affecting the stability of the equipment and the continuity of monitoring.

Method used

A reinforcement device is designed, including a positioning element and an adhesive layer. The positioning element forms a positioning hole, and the adhesive layer has an adhesive surface on one side. The positioning element is partially located between the adhesive layer and the skin. Accurate positioning and reinforcement are achieved through the positioning hole and the adhesive surface.

Benefits of technology

It improves the positioning accuracy of the reinforcement device, reduces deformation, wrinkles and offset, ensures the stability of the equipment, has a simple structure and simple production process, and reduces processing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a reinforcement device and a wearable device. The reinforcement device includes a positioning member and an adhesive layer. The positioning member has a positioning hole, and the adhesive layer has an adhesive surface on one side, which at least partially covers the adhesive layer and is partially adhered to the user's skin. The positioning member is at least partially located between the adhesive layer and the user's skin. With this configuration, the positioning hole of the reinforcement device can be used to position the installation location of the reinforcement device. The adhesive surface of the reinforcement device is adhered to the user's skin, thereby reinforcing the component to be reinforced. This improves the reinforcement effect of the reinforcement device on the component, and the removal of the reinforcement device will not affect the component. Using this reinforcement device, the installation position of the reinforcement device can be accurately positioned, reducing problems such as deformation, wrinkles, and displacement caused by positioning, effectively avoiding reinforcement failure. Furthermore, the reinforcement device has a simple structure, simple manufacturing process, and low processing cost.
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Description

Technical Field

[0001] This application relates to the field of wearable device technology, and in particular to a reinforcement device and wearable device. Background Technology

[0002] Currently, wearable devices are increasingly widely used in clinical diagnosis, treatment, and personal health management. As an important component of medical devices, surface-mount wearable devices are fixed to the skin surface with medical tape or adhesives to monitor various physiological parameters in real time, enabling continuous data collection and health management. Typical products include, but are not limited to, continuous glucose monitors, insulin infusion pumps, temperature monitoring devices, motion monitoring instruments, and physical therapy and rehabilitation aids. These surface-mount medical devices typically require continuous, long-term wear to ensure data integrity and treatment continuity.

[0003] However, due to factors such as skin movement, friction, scratching, and sweat secretion, existing patch-type devices face problems such as unstable product adhesion and easy detachment, which bring many challenges to clinical applications and seriously affect the safety and monitoring accuracy of the devices.

[0004] For these types of long-term worn medical surface devices, using specially designed reinforcement devices for auxiliary fixation is a key technical approach to improve the stability of device wearing and ensure continuous monitoring and safety.

[0005] However, the reinforcement devices currently used in related technologies suffer from insufficient ease of operation, making it difficult for users to easily wear them with one hand. At the same time, the positioning accuracy is not high, which makes the reinforcement components prone to deformation, wrinkling, and displacement, further weakening or even causing the reinforcement effect to fail, significantly limiting the clinical promotion and user acceptance of the products.

[0006] Therefore, there is an urgent need to develop a reinforcement device that is structurally sound, easy to operate, and possesses high stability and precise positioning capabilities, so as to meet the technical requirements of wearable devices for long-term stable wear. Utility Model Content

[0007] This application provides a reinforcement device and a wearable device to solve the problems in related technologies where reinforcement devices cannot meet the user's single-hand operation needs, are difficult to accurately position, and are prone to deformation, wrinkling, and displacement.

[0008] To solve the above-mentioned technical problems, one technical solution adopted in this application is: to provide a reinforcement device, comprising:

[0009] Positioning element, with positioning holes formed around it;

[0010] An adhesive layer has an adhesive surface on one side, the adhesive surface at least partially covering the adhesive layer, and the adhesive surface is partially adhered to the user's skin;

[0011] The positioning element is at least partially located between the adhesive layer and the user's skin.

[0012] In some embodiments, the portion of the positioning element located between the adhesive layer and the user's skin is connected to the adhesive layer.

[0013] In some embodiments, the positioning element has opposing top and bottom surfaces, and the adhesive layer is attached to the top surface of the positioning element;

[0014] The positioning element is either a continuous closed structure, or a discontinuous structure or a continuous but not closed structure.

[0015] In some embodiments, the adhesive layer is provided with a first through hole, the orthographic projection of the first through hole is located within the orthographic projection of the positioning hole, and the size of the first through hole is not greater than the size of the positioning hole.

[0016] In some embodiments, the positioning member has interconnected sidewalls and a top wall; the sidewalls of the positioning member surround the positioning hole, and the top wall of the positioning member at least partially covers the positioning hole.

[0017] In some embodiments, a portion of the adhesive surface of the adhesive layer is at least partially bonded to the top wall; the edge of the adhesive layer protrudes from the sidewall of the positioning member.

[0018] In some embodiments, the sidewall of the positioning member has a flange, and a portion of the adhesive surface is bonded to the flange of the sidewall of the positioning member.

[0019] In some embodiments, the reinforcement device further includes a release paper layer, which covers one side of the adhesive surface; the release paper layer is provided with a handle.

[0020] In some embodiments, a protective layer is provided on the side of the adhesive layer facing away from the adhesive surface.

[0021] To solve the above-mentioned technical problems, another technical solution adopted in this application is: to provide a wearable device, comprising:

[0022] Firmware to be added;

[0023] The component to be reinforced is reinforced by any of the reinforcement devices described above.

[0024] In some embodiments, the component to be added includes a main body portion;

[0025] In the thickness direction of the adhesive layer, the height of the positioning member is less than or equal to the height of the main body.

[0026] When the reinforcement device is used in conjunction with the part to be reinforced, the positioning element surrounds the periphery of the main body.

[0027] In some embodiments, an adhesive layer is provided on one side of the main body, and the edge of the adhesive layer protrudes from the side of the main body to form a protrusion;

[0028] When used together, the orthographic projection of the protrusion at least partially overlaps with the orthographic projection of the positioning member.

[0029] In some embodiments, the outer edge of the adhesive layer protrudes beyond the outer edge of the adhesive layer in the radial direction and adheres to the user's skin through the adhesive surface.

[0030] The beneficial effects of this application are as follows: Unlike existing technologies, this application discloses a reinforcement device and a wearable device. The reinforcement device includes a positioning element and an adhesive layer. The positioning element has a positioning hole, and the adhesive layer has an adhesive surface on one side, at least partially covering the adhesive layer and adhering to the user's skin. The positioning element is at least partially located between the adhesive layer and the user's skin. With this configuration, the positioning hole of the reinforcement device can be used to position the installation location of the reinforcement device. The adhesive surface of the reinforcement device is adhered to the user's skin, thereby reinforcing the component to be reinforced. This improves the reinforcement effect of the reinforcement device on the component, and the removal of the reinforcement device will not affect the component. Using this reinforcement device, the installation position of the reinforcement device can be accurately positioned, reducing problems such as deformation, wrinkles, and displacement caused by positioning, effectively avoiding reinforcement failure. Furthermore, the reinforcement device has a simple structure, simple manufacturing process, and low processing cost. Attached Figure Description

[0031] To more clearly illustrate the technical solutions in the embodiments of this application 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 this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort, wherein:

[0032] Figure 1 This is a schematic diagram of the structure of a reinforcement device provided in one embodiment of this application;

[0033] Figure 2 yes Figure 1 A schematic diagram of the cross-section of the provided reinforcement device;

[0034] Figure 3 yes Figure 1 Exploded view of the provided reinforcement device;

[0035] Figure 4 This is a schematic diagram of an embodiment of the reinforcement device provided in this application;

[0036] Figure 5 This is a schematic diagram of another embodiment of the reinforcement device provided in one embodiment of this application;

[0037] Figure 6 This is a schematic diagram of another embodiment of the reinforcement device provided in this application;

[0038] Figure 7 This is a schematic diagram of the structure of a reinforcement device provided in one embodiment of this application;

[0039] Figure 8 This is a schematic diagram of an embodiment of the reinforcement device provided in this application;

[0040] Figure 9 This is a schematic diagram of another embodiment of the reinforcement device provided in one embodiment of this application;

[0041] Figure 10 This is a schematic diagram of another embodiment of the reinforcement device provided in this application;

[0042] Figure 11 This is a longitudinal cross-sectional schematic diagram of another embodiment of the reinforcement device provided in one embodiment of this application;

[0043] Figure 12 This is a longitudinal cross-sectional schematic diagram of another embodiment of the reinforcement device provided in one embodiment of this application;

[0044] Figure 13 This is a longitudinal cross-sectional schematic diagram of another embodiment of the reinforcement device provided in one embodiment of this application;

[0045] Figure 14 This is a longitudinal cross-sectional schematic diagram of another embodiment of the reinforcement device provided in one embodiment of this application;

[0046] Figure 15 This is a longitudinal cross-sectional schematic diagram of an embodiment of the reinforcement device provided in this application;

[0047] Figure 16 This is a longitudinal cross-sectional schematic diagram of another embodiment of the reinforcement device provided in one embodiment of this application;

[0048] Figure 17 This is a longitudinal cross-sectional schematic diagram of another embodiment of the reinforcement device provided in this application;

[0049] Figure 18This is a longitudinal cross-sectional schematic diagram of an embodiment of the reinforcement device provided in this application;

[0050] Figure 19 This is a longitudinal cross-sectional schematic diagram of another embodiment of the reinforcement device provided in one embodiment of this application;

[0051] Figure 20 This is a longitudinal cross-sectional schematic diagram of the reinforcement device and the component to be reinforced of a wearable device provided in an embodiment of this application in an assembled state;

[0052] Figure 21 yes Figure 20 A schematic diagram of one embodiment of the wearable device to be reinforced.

[0053] Explanation of icon numbers:

[0054] 300. Wearable device; 200. Component to be reinforced; 201. Adhesive layer; 202. Fourth through hole; 203. Main body; 100. Reinforcing device; 1. Positioning component; 11. Positioning hole; 12. Side wall; 121. Flange; 13. Top wall; 131. Third through hole; 14. Notch; 15. Cut; 2. Adhesive layer; 21. Adhesive surface; 22. First through hole; 23. Second through hole; 3. Release paper layer; 31, first release paper layer; 311, annular body part; 312, cutting line; 313, sub-release paper; 314, first sub-release paper; 315, second sub-release paper; 316, adhesive part; 317, folding part; 32, handle; 321, first sub-handle; 322, second sub-handle; 33, second release paper layer; 331, body part; 4, protective layer; 41, fifth through hole. Detailed Implementation

[0055] The technical solutions of the embodiments of this application 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 this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0056] The terms "first," "second," and "third" used in the embodiments of this application are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first," "second," or "third" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or devices.

[0057] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0058] See Figures 1 to 14 This application provides a reinforcement device 100, including a positioning member 1 and an adhesive layer 2. The positioning member 1 is arranged to form a positioning hole 11. The adhesive layer 2 has an adhesive surface 21 on one side, and the adhesive surface 21 at least partially covers the adhesive layer 2. During use or in use, the positioning member 1 is at least partially located between the adhesive layer 2 and the user's skin.

[0059] The term "in use" as used in this document refers to the process of installing the reinforcement device 100 onto the component to be reinforced 200 (see [reference]). Figure 21 During the installation process; "in use" means that the reinforcement device 100 has been installed on the component to be reinforced 200.

[0060] The positioning element 1 is located between the adhesive layer 2 and the user's skin and is connected to the adhesive layer 2. The connection between the two can be achieved by bonding through the adhesive surface 21 or by welding or other connection methods.

[0061] Specifically, in some embodiments, see Figures 1 to 7 The positioning element 1 has a top surface and a bottom surface, and the adhesive surface 21 is connected to the top surface of the positioning element 1.

[0062] It is understood that the reinforcement device 100 provided in this application can be used to reinforce the component 200 (see [link]). Figure 21For reinforcement, specifically, before wearing the reinforcement device 100, the component to be reinforced 200 is already adhered to the skin. The positioning hole 11 formed by the positioning element 1 of the reinforcement device 100 determines the wearing position of the reinforcement device 100, positioning it for installation onto the component to be reinforced 200. The adhesive layer 2 of the reinforcement device 100 is connected to the top surface of the positioning element 1 and covers the positioning hole 11, allowing contact between the adhesive layer 2 at the positioning hole 11 and the component to be reinforced 200. The adhesive surface 21 around the positioning hole 11 is used for contact with the skin to reinforce the component to be reinforced 200. Using the above-mentioned reinforcement device 100, positioning is convenient during wear, accurately determining the installation position of the reinforcement device 100, and installing it onto the component to be reinforced 200, reducing problems such as device misalignment caused by positioning and effectively lowering the risk of detachment. Furthermore, the reinforcement device 100 includes an interconnected adhesive layer 2 and a positioning element 1, which is simple to manufacture, highly feasible, easy to use, simple in structure, simple in production process, and low in processing cost. Removing the reinforcement device 100 will not affect the continued fixation of the component to be reinforced 200 to the user's skin.

[0063] For details, see Figures 1 to 7 The adhesive layer 2 can be a pressure-sensitive adhesive tape, etc., and the adhesive surface 21 of the adhesive layer 2 can be an adhesive surface. The adhesive layer 2 can include a substrate layer (not shown) and an adhesive layer (not shown) disposed on the surface of the substrate layer, wherein the substrate layer can include one or more substrates, and the adhesive layer can be a pressure-sensitive adhesive. Specifically, the adhesive layer 2 can be die-cut into the required shape using a mold.

[0064] In some embodiments, the adhesive surface 21 of the adhesive layer 2 can cover the adhesive layer 2. The reinforcement device 100 is installed on the part to be reinforced 200. The adhesive layer 2 at the position corresponding to the positioning hole 11 is bonded to the surface of the part to be reinforced 200. The adhesive layer 2 of the adhesive layer 2 around the positioning part 1 is applied to the user's skin, thereby wearing the reinforcement device 100 on the skin and the reinforcement device 100 reinforces the part to be reinforced 200.

[0065] In some embodiments, the adhesive surface 21 of the adhesive layer 2 may be provided corresponding to the position of the positioning member 1 and the surface of the substrate layer surrounding the positioning member 1. No adhesive layer is provided on the surface of the substrate layer corresponding to the positioning hole 11; instead, a substrate layer or other non-adhesive film layer is provided at the position corresponding to the positioning hole 11. The adhesive surface 21 of the adhesive layer 2 may completely cover the substrate layer on the surface of the adhesive layer 2, but a film layer may be provided at the substrate layer corresponding to the positioning hole 11 to cover the adhesive surface 21. When the reinforcing device 100 is installed onto the part to be reinforced 200, the adhesive layer 2 at the position corresponding to the positioning hole 11 contacts the surface of the part to be reinforced 200 but does not adhere.

[0066] The adhesive layer 2 can be any shape, such as circular, elliptical, rectangular, or rhomboid, or it can be any irregular shape. In some embodiments, the shape of the adhesive layer 2 can match the shape of the component to be reinforced 200, but the size of the adhesive layer 2 is larger than the size of the component to be reinforced 200, so that the adhesive surface 21 of the adhesive layer 2 can contact both the surface of the component to be reinforced 200 and the user's skin, so that the component to be reinforced 200 can be reinforced by the adhesive layer 2. In other embodiments, the shape of the adhesive layer 2 may not match the shape of the component to be reinforced 200, and can be set to any shape as needed.

[0067] The material of the positioning component 1 is not limited; it can be either a soft or hard material. For example, the positioning component 1 can be made of any material such as foam, expanded polyethylene (PE), plastic parts, or pressure-sensitive adhesive tape of a certain thickness. The positioning component 1 serves a positioning function, determining the position of the reinforcement device 100 when it is installed onto the part to be reinforced 200. In this embodiment, the positioning component 1 and the adhesive layer 2 are fixedly connected together by bonding or welding, which is a simple process and easy to manufacture.

[0068] Positioning element 1 can be a continuous structure along the surface of adhesive layer 2, specifically, such as Figure 1 and Figure 3 As shown, the positioning element 1 can be a continuous closed structure, or, as... Figure 4 and Figure 6 As shown, the positioning element 1 can also be a continuous but not closed structure; or, as... Figure 5 As shown, the positioning element 1 can also be a discontinuous structure.

[0069] In one embodiment, the positioning element 1 can be a continuous closed structure; for example, the positioning element 1 can be a closed ring (e.g., Figures 1 to 3 The positioning element 1 forms the positioning hole 11. Specifically, the term "ring" as used herein refers to any regular ring structure such as a circular ring, rectangular ring, rhomboid ring, or elliptical ring, or any other irregular ring structure. The inner and outer rings of the ring-shaped positioning element 1 can have the same or different shapes. For example, both the inner and outer rings of the ring-shaped positioning element 1 can be any shape such as a circular ring, or the inner ring of the ring-shaped positioning element 1 can be any shape such as an elliptical ring, and the outer ring can be any shape different from the inner ring, such as a circular ring.

[0070] In some embodiments, the inner ring shape of the annular positioning member 1 can match the shape of the part to be reinforced 200, the size of the positioning hole 11 formed by the positioning member 1 can be larger than the size of the part to be reinforced 200, the positioning member 1 is sleeved on the periphery of the part to be reinforced 200, and the inner peripheral wall of the positioning member 1 may not contact or may partially contact the outer peripheral wall of the part to be reinforced 200, depending on the installation position of the positioning member 1; or, the size of the positioning hole 11 formed by the positioning member 1 can be equal to the size of the part to be reinforced 200, the positioning member 1 is sleeved on the periphery of the part to be reinforced 200, the positioning member 1 and the part to be reinforced 200 are in transition fit, and the inner peripheral wall of the positioning member 1 is in full contact with the outer peripheral wall of the part to be reinforced 200.

[0071] In some embodiments, the inner ring shape of the positioning member 1 may not match the shape of the component to be reinforced 200. For example, the outer periphery of the component to be reinforced 200 may be approximately elliptical or any other shape, but the inner ring of the positioning member 1 may be a circular ring or any other shape different from that of the component to be reinforced 200. The dimensions between the two are sufficient to allow the positioning member 1 to be fitted onto the outer periphery of the component to be reinforced 200.

[0072] In other embodiments, the positioning element 1 may not be ring-shaped. Specifically, the positioning element 1 can be set to any other shape, as long as the positioning element 1 can cooperate with the component to be added 200 to determine the position of the positioning element 1. This application does not limit this.

[0073] In another embodiment, the positioning element 1 may be a continuous but not closed structure, or the positioning element 1 may be a discontinuous structure. In a specific embodiment, such as Figure 4 As shown, the positioning element 1 can be an open ring. Specifically, the positioning element 1 can be an ring with a notch 14, for example, it can be C-shaped. The presence of the notch 14 makes the positioning element 1 form a continuous but not closed structure. Specifically, the positioning element 1 is broken at the notch 14 position, and the two sidewalls of the notch 14 do not contact each other.

[0074] In another specific implementation, such as Figure 6 As shown, the positioning element 1 is an open annular shape. For example, the positioning element 1 can specifically be an annular shape with a slit 15. Specifically, the slit 15 is defined as a tiny gap that cuts open a continuous, closed annular shape. The presence of the slit 15 makes the positioning element 1 form a continuous but not closed structure. Specifically, the positioning element 1 is broken at the slit 15 position. In the original state of the reinforcing device 100, the two ends of the slit 15 do not contact each other. If opposing forces are applied to the two ends of the slit 15, the two ends can make contact.

[0075] In other embodiments, the positioning element 1 may also be a discontinuous structure, such as... Figure 5As shown, in one specific embodiment, the positioning element 1 can be an annular ring with multiple spaced-apart notches 14. The presence of multiple notches 14 causes the positioning element 1 to form a discontinuous structure including multiple spaced segments. The positioning element 1 is broken at the multiple notches 14, and the multiple spaced-apart segments together form the positioning hole 11. For example, the positioning element 1 can be an annular ring with any number of notches 14, such as two, three, or four, and the multiple notches 14 cut the positioning element 1 into any number of spaced-apart segments, such as two, three, or four segments. The number, size, and shape of the notches 14 can be arbitrarily set as needed, and this application does not limit them.

[0076] It is understood that in this embodiment, by setting the positioning element 1 as a continuous but not closed structure, or by directly setting the positioning element 1 as a discontinuous structure, the installation position of the reinforcement device 100 is positioned using the positioning hole 11 of the positioning element 1. When the adhesive layer 2 corresponding to the position of the positioning hole 11 has an adhesive layer, after bonding the adhesive surface 21 corresponding to the position of the positioning hole 11 to the part to be reinforced 200, the positioning element 1 can be peeled off from the surface of the adhesive layer 2 at the discontinuous or unclosed position of the positioning element 1. Specifically, the positioning element 1 can be peeled off at the above-mentioned notch 14 or cut 15 position, so that the remaining adhesive surface 21 of the adhesive layer 2 can directly contact and bond with the user's skin.

[0077] In other embodiments, after the installation position of the reinforcement device 100 is determined by the positioning element 1, the positioning element 1 may not need to be removed. That is, the positioning element 1 may not be removed at discontinuous or non-closed positions. The positioning element 1 can still be placed on the periphery of the part to be reinforced 200, and directly bonded to the skin by the adhesive layer 2, fixing the positioning element 1 between the adhesive layer 2 and the user's skin. Whether the positioning element 1 is removed can be designed according to actual needs, and this application does not limit this.

[0078] In other embodiments, the positioning element 1 may not be annular. It can be set as a continuous but not closed structure of any shape as needed, or it can be set as a discontinuous structure of any shape. As long as the positioning element 1 can be used to position the installation position of the reinforcement device 100, it is acceptable.

[0079] In one specific embodiment, the positioning element 1 can be positioned corresponding to the center of the adhesive layer 2. Specifically, the outer ring shape of the positioning element 1 can be the same as or different from the shape of the adhesive layer 2, and the center of the positioning element 1 can be aligned with the center of the adhesive layer 2. It can be understood that positioning the positioning element 1 corresponding to the center of the adhesive layer 2 allows the adhesive layer 2 to completely cover the positioning element 1, and at various positions along the circumference of the positioning element 1, there are partial adhesive surfaces 21 located on the outside of the positioning element 1, facilitating contact and adhesion with the user's skin.

[0080] In other embodiments, the positioning element 1 may not correspond to the center position of the adhesive layer 2. At various positions along the circumference of the positioning element 1, the width of the adhesive surface 21 located on the outer side of the positioning element 1 may be unequal. That is, the width of the adhesive surface 21 may be larger at some positions and smaller at others. However, it is necessary to ensure that the adhesive layer 2 adheres to the user's skin on all sides after the reinforcement device 100 is installed. The positional relationship between the positioning element 1 and the adhesive layer 2 can be designed as needed, as long as the adhesive layer 2 can provide a firm and reliable reinforcement to the part to be reinforced 200 and prevent the part to be reinforced 200 from falling off. This application does not impose any limitations on this.

[0081] In one embodiment, such as Figure 7 As shown, the adhesive layer 2 of the reinforcing device 100 may be provided with a first through hole 22. In some embodiments, the first through hole 22 is provided corresponding to the positioning hole 11, and the size of the first through hole 22 is not larger than the size of the positioning hole 11. Specifically, the orthographic projection of the first through hole 22 is located within the orthographic projection of the positioning hole 11.

[0082] Specifically, the top surface of the component to be reinforced 200 can be provided with a fourth through hole 202 (see...). Figure 21 After the reinforcement device 100 is installed, the fourth through hole 202 needs to be exposed through the first through hole 22 set in the adhesive layer 2. The first through hole 22 can expose the fourth through hole 202 completely or partially. That is, the position and size of the first through hole 22 are determined according to the position and size of the fourth through hole 202 on the part to be reinforced 200 to be reinforced by the reinforcement device 100, and no specific limitation is made here. Moreover, the size of the first through hole 22 is not larger than the size of the positioning hole 11, so that at the position of the positioning hole 11, there will still be part of the adhesive layer 2 in contact with the surface of the part to be reinforced 200. It should be noted that in this case, since the adhesive layer 2 still has a part of its area in contact with the top surface of the part to be reinforced 200 after the reinforcement device 100 is installed, there are no excessive restrictions on the positioning part 1, as long as the installation position of the reinforcement device 100 can be determined. At the same time, the first through hole 22 also reduces the contact area between the adhesive layer 2 of the reinforcing device 100 and the part to be reinforced 200, thereby reducing the impact on the fixing effect of the part to be reinforced 200 during the replacement of the reinforcing device 100.

[0083] In other embodiments, the size of the first through hole 22 can be equal to the size of the inner circumference of the positioning hole 11, that is, their orthographic projections overlap. In this case, it should be noted that the positioning member 1 needs to apply a compressive force to the sidewall of the component to be reinforced 200 in a direction parallel to the component to be reinforced 200, that is, it can fix the component to be reinforced 200 in a direction parallel to the component to be reinforced 200. Of course, in other cases, the positioning member 1 may not apply force to the component to be reinforced 200. Depending on the situation, the shape and size of the positioning member 1 can be designed according to the requirements, and no further limitation is made here. In other embodiments, the size of the first through hole 22 can be between the inner and outer circumference of the positioning hole 11, that is, the orthographic projection of the first through hole 22 is located between the outer and inner circumference projections of the positioning hole 11. In this case, it should be noted that the stability of the connection relationship between the positioning member 1 and the adhesive layer 2 is important, the rest is the same as the previous embodiment, and will not be described again here.

[0084] In other embodiments, the adhesive layer 2 of the reinforcing device 100 may not have the first through hole 22, such as... Figures 1 to 6 As shown, the adhesive layer 2 does not have a first through hole 22 at the position corresponding to the positioning hole 11. The adhesive layer 2 located in the positioning hole 11 is in contact with the surface of the component to be reinforced 200. The adhesive layer 2 can provide a more secure and reliable reinforcement to the component to be reinforced 200, which is more conducive to preventing the component to be reinforced 200 from falling off.

[0085] In one embodiment, see Figures 8 to 14 The reinforcement device 100 may further include a release paper layer 3, which is disposed on the adhesive surface 21 of the adhesive layer 2. Specifically, the release paper layer 3 is disposed on the adhesive surface 21 of the adhesive layer 2 to protect the adhesive surface 21, preventing dust and other contaminants from affecting its adhesion. It also prevents the user's hand from directly contacting the adhesive surface 21 when wearing the reinforcement device 100, which could affect the adhesion of the adhesive surface 21 or cause the adhesive layer 2 to be stretched and deformed, resulting in the adhesive surface 21 not being able to effectively bond with the component to be reinforced 200 or the user's skin, thereby affecting the reinforcement effect of the reinforcement device 100 on the component to be reinforced 200 and causing reinforcement failure.

[0086] Specifically, in some implementation methods, such as Figures 8 to 10 As shown, the release paper layer 3 includes a first release paper layer 31, which covers the adhesive surface 21 located on the periphery of the positioning member 1. By providing the first release paper layer 31, the adhesive surface 21 located on the periphery of the positioning member 1 can be protected, preventing dust and other contaminants from affecting the adhesive surface 21 and thus the adhesion between the adhesive surface 21 and the user's skin, thereby preventing the reinforcement device 100 from failing.

[0087] In this embodiment, the adhesive layer 2 at the position corresponding to the positioning hole 11 may not include an adhesive layer. The adhesive layer 2 at the position corresponding to the positioning hole 11 may include a substrate layer, or the adhesive layer 2 at this position may be other non-adhesive film layer structures. The above structure ensures that the adhesive layer 2 at the position corresponding to the positioning hole 11 will not have the problem of the adhesive surface 21 being contaminated by dust or other contaminants. The adhesive layer 2 at the position corresponding to the positioning hole 11 does not need to be provided with a release paper layer 3 to protect its adhesive layer. Therefore, the first release paper layer 31 covers the adhesive surface 21 located on the periphery of the positioning member 1 and will not affect the performance of the reinforcement device 100.

[0088] Alternatively, in this embodiment, the adhesive layer 2 at the position corresponding to the positioning hole 11 includes an adhesive layer, and the adhesive layer 2 at the position corresponding to the positioning hole 11 has an adhesive surface 21. The reinforcing device 100 can be stored in an independently sealed packaging bag. The packaging bag has a accommodating space, and the reinforcing device 100 is housed within the sealed accommodating space. By storing the reinforcing device 100 in a sealed packaging bag, the packaging bag itself can protect the adhesive surface 21 inside the positioning member 1, preventing the adhesive surface 21 inside the positioning member 1 from being contaminated by dust or other contaminants before the reinforcing device 100 is used, thus avoiding affecting the adhesiveness of the adhesive surface 21 inside the positioning member 1. When the reinforcing device 100 needs to be used, the packaging bag can be torn off first, the reinforcing device 100 can be taken out of the packaging bag, and then the reinforcing device 100 can be installed onto the part to be reinforced 200. In this embodiment, the packaging bag of the reinforcing device 100 is used to protect the adhesive surface 21 inside the positioning member 1, and the release paper layer 3 does not need to be set separately at the adhesive surface 21 corresponding to the positioning hole 11.

[0089] For details, see Figures 8 to 10 The first release paper layer 31 includes an annular body portion 311. Specifically, in some embodiments, the shape of the annular body portion 311 is the same as the shape of the adhesive surface 21 on the periphery of the positioning member 1, and the annular body portion 311 covers the adhesive surface 21 located on the periphery of the positioning member 1. Before using the reinforcing device 100 to reinforce the part to be reinforced 200, the first release paper layer 31 covering the adhesive surface 21 of the adhesive layer 2 can be peeled off to expose the adhesive surface 21 of the adhesive layer 2. Then, the reinforcing device 100 is installed and worn on the part to be reinforced 200. After the installation position of the reinforcing device 100 is positioned by the positioning hole 11 of the positioning member 1, it is convenient for the adhesive surface 21 to adhere to the user's skin, thereby reinforcing the part to be reinforced 200 by the adhesive layer 2 of the reinforcing device 100.

[0090] In one specific implementation, such as Figure 8As shown, the annular body portion 311 of the first release paper layer 31 can be a continuous closed annular structure. The entire surface of the annular body portion 311 covers the adhesive surface 21 located around the positioning member 1. For example, the positioning member 1 is annular, and the adhesive layer 2 is circular. The annular body portion 311 can be set to a closed annular shape corresponding to the shape of the adhesive surface 21 around the positioning member 1. In other embodiments, the positioning member 1 or the adhesive layer 2 can be set to any other regular or irregular shape. The annular body portion 311 can be set to any regular or irregular annular shape corresponding to the shape of the adhesive surface 21 around the positioning member 1, as long as the annular body portion 311 can cover and protect the adhesive surface 21 around the positioning member 1.

[0091] In some implementations, see Figure 9 and Figure 10 The first release paper layer 31 may be provided with at least one cutting line 312, which can cut the annular body portion 311 of the first release paper layer 31. Specifically, the cutting line 312 can be any regular or irregular line such as a straight line, curve, or zigzag line.

[0092] In one specific implementation, such as Figure 9 As shown, the cutting line 312 can be set as one, and the annular body part 311 is broken at the position of the cutting line 312. One cutting line 312 can cut the continuous closed annular body part 311 into a continuous but not closed annular structure.

[0093] In another specific implementation, such as Figure 10 As shown, multiple cutting lines 312 can be provided. For example, two, three, four, five, or any number of cutting lines 312 can be provided. Multiple cutting lines 312 can be provided at intervals along the circumference of the annular body portion 311. Multiple cutting lines 312 can cut the annular body portion 311 into at least two sub-release papers 313. Specifically, multiple cutting lines 312 can cut the annular body portion 311 into two, three, four, five, or any number of sub-release papers 313. At least two sub-release papers 313 are distributed sequentially along the circumference of the adhesive layer 2 and together cover the adhesive surface 21 located on the periphery of the positioning member 1.

[0094] It is understood that by providing at least one cutting line 312 in the first release paper layer 31, the annular body portion 311 is cut into an unclosed structure by the at least one cutting line 312, or the annular body portion 311 is cut into at least two sub-release papers 313. The release paper can be peeled off from the adhesive surface 21 of the outer periphery of the positioning member 1 from the cutting line 312 position of the first release paper layer 31, so as to expose the adhesive surface 21 of the outer periphery of the positioning member 1, thereby facilitating its adhesion to the user's skin and reinforcing the member 200 to be reinforced.

[0095] That is, during the process of positioning the installation position of the reinforcement device 100 using the positioning component 1, the outer part of the adhesive surface 21 of the positioning component 1 is still protected by the first release paper layer 31. This prevents dust or the user's hand from directly contacting the outer part of the adhesive surface 21 of the positioning component 1 during the above operation, which would affect the adhesiveness of the adhesive surface 21 at that position. It also prevents the user's hand from contacting the outer part of the adhesive surface 21 of the positioning component 1, causing the adhesive layer 2 to wrinkle or deform, thereby affecting the reliability and firmness of the adhesion between the outer part of the positioning component 1 and the user's skin, and causing the problem that the outer part of the positioning component 1 cannot effectively adhere to the user's skin.

[0096] In one embodiment, the cutting line 312 is provided as two, such as Figure 10 As shown, two cutting lines 312 are spaced apart from each other along the circumference of the annular body portion 311. The annular body portion 311 is broken at the positions of the two cutting lines 312. The two cutting lines 312 cut the annular body portion 311 into two sub-release papers 313. The two sub-release papers 313 together cover the adhesive surface 21 located on the periphery of the positioning member 1.

[0097] In one specific embodiment, the two cutting lines 312 can be located on the same diameter of the annular body portion 311, and the two sub-release papers 313 can have the same shape, that is, the two sub-release papers 313 can be symmetrically distributed. The above arrangement can make it easier to tear off the two sub-release papers 313, the tearing efficiency of the sub-release papers 313 is higher, and it can also effectively avoid wrinkles or deformation of the adhesive layer 2 during the tearing off of the sub-release papers 313.

[0098] In other embodiments, the two sub-release sheets 313 may have different shapes, may be asymmetrically distributed, and the two cutting lines 312 may be located on different diameters of the annular body portion 311. For example, one sub-release sheet 313 may be a superior arc, and the other may be a inferior arc. Alternatively, the annular body portion 311 itself may be an asymmetrical or irregular annular structure, and the two cutting lines 312 may cut the annular body portion 311 into two asymmetrical sub-release sheets 313. The specific number, shape, and location of the cutting lines 312 can be designed according to actual needs, and this application does not limit this.

[0099] In some implementations, see Figures 8 to 10The first release paper layer 31 also includes at least one handle 32 connected to the annular body portion 311. Specifically, the handle 32 can be connected to any position on the annular body portion 311. For example, the handle 32 can be connected to the surface of the annular body portion 311 opposite to the adhesive surface 21, or the handle 32 can be connected to the side of the annular body portion 311 and protrude from the edge of the adhesive layer 2. The handle 32 can be one, two, three, or any other number. It can be understood that with the above configuration, it is easier to peel the first release paper layer 31 from the adhesive surface 21 of the adhesive layer 2, reducing the difficulty of operation, and also avoiding the problem of wrinkling of the adhesive layer 2 when peeling off the first release paper layer 31.

[0100] Specifically, in one particular implementation, such as Figure 8 As shown, the annular body portion 311 of the first release paper layer 31 can be a continuous closed ring. A handle 32 can be attached to the side of the annular body portion 311 and protrude from the edge of the adhesive layer 2. Specifically, the number of handles 32 can be one, two, or any number. By providing handles 32, the user can directly peel the first release paper layer 31 from the adhesive surface 21 of the adhesive layer 2 from the position of the handle 32. For example, as... Figure 8 As shown, there are two handles 32, which are respectively located at opposite ends of the same diameter of the annular body 311. The user can directly contact the two handles 32 with their hands and bend the annular body 311 from the position of the two handles 32 toward the center of the reinforcing device 100 to peel off the first release paper layer 31. Alternatively, there is one handle 32, which is located on any diameter of the annular body 311. The user can press or pinch the reinforcing device 100 with one hand and pull the handle 32 with the other hand to pull the annular body 311 from the position of the handle 32 toward the other end of the diameter where the handle 323 is located, thereby peeling off the first release paper layer 31.

[0101] In other implementations, such as Figure 9 and Figure 10As shown, the first release paper layer 31 may be provided with at least one cutting line 312. The cutting line 312 cuts the annular body portion 311 into a continuous but not closed annular shape or into at least two sub-release papers 313. The handle 32 may be connected to the side of the annular body portion 311 and protrude from the edge of the adhesive layer 2. The number of handles 32 may be one, two, or any number. For example, the first release paper may be provided with one cutting line 312, and a handle 32 may be connected to the side of the annular body portion 311. The handle 32 may be offset from the cutting line 312, or it may be set adjacent to the cutting line 312. Specifically, the handle 32 being set adjacent to the cutting line 312 means that the side of the handle 32 is flush with the cutting line 312, so that the user's hand can contact the handle 32 and pull the handle 32 to peel the first release paper layer 31 from the position of the cutting line 312 to the adhesive layer 2; or, the first release paper layer 31 may be set with one cutting line 312 and the side of the annular body portion 311. The release liner 31 may be provided with two or more cutting lines 312. At least two cutting lines 312 cut the annular body 311 into at least two sub-release sheets 313. The number of handles 32 may be the same as the number of sub-release sheets 313. Each sub-release sheet 313 may have a corresponding handle 32 connected to its side. The handles 32 and the cutting lines 312 may be staggered or adjacent to each other, so that the corresponding sub-release sheet 313 can be more easily peeled off from the adhesive surface 21 by the user's hand contacting each handle 32.

[0102] In some implementations, such as Figure 9 and Figure 10 As shown, the first release paper layer 31 may be provided with at least one cutting line 312, and at least one handle 32 is connected to the side of the annular body portion 311. The handle 32 is correspondingly arranged with the cutting line 312, and each cutting line 312 can cut the corresponding handle 32 into a first sub-handle 321 and a second sub-handle 322. It can be understood that, with the above arrangement, the first sub-handle 321 and the second sub-handle 322 are located on opposite sides of the cutting line 312, and the first release paper layer 31 can be torn off from both the first sub-handle 321 position and the second sub-handle 322 position on both sides of the cutting line 312. The user's hand can contact the first sub-handle 321 and the second sub-handle 322 respectively, which facilitates the simultaneous tearing off of the first release paper layer 31 from both sides of the cutting line 312, and helps to improve the removal efficiency of the first release paper layer 31.

[0103] For example, such as Figure 9As shown, the first release paper layer 31 is provided with a cutting line 312, and a handle 32 is connected to the side of the annular body 311. The handle 32 is positioned corresponding to the cutting line 312. One cutting line 312 cuts the corresponding handle 32 into a first sub-handle 321 and a second sub-handle 322. The first sub-handle 321 and the second sub-handle 322 are located on opposite sides of the cutting line 312, allowing the user's hand to contact the first sub-handle 321 and the second sub-handle 322 respectively, facilitating the simultaneous removal of the first release paper layer 31 from both sides of the cutting line 312, thus improving the removal efficiency of the first release paper layer 31; or, as Figure 10 As shown, the first release paper layer 31 is provided with two spaced cutting lines 312. The two cutting lines 312 cut the annular body part 311 into two sub-release papers 313. Two handles 32 are connected to the side of the annular body part 311. The two handles 32 are arranged one-to-one with the two cutting lines 312. Each cutting line 312 cuts its corresponding handle 32 into a first sub-handle 321 and a second sub-handle 322. This makes it easy for the user to peel off the two sub-release papers 313 from the adhesive surface 21 from the positions of the first sub-handle 321 and the second sub-handle 322 corresponding to the cutting line 312. This helps to improve the tearing efficiency of the first release paper layer 31, thereby improving the wearing efficiency of the reinforcement device 100. It also helps to avoid the problem of wrinkling and deformation of the adhesive layer 2 when tearing off the first release paper layer 31, thus avoiding reinforcement failure.

[0104] In some implementations, such as Figure 11 and Figure 12 As shown, the first release paper layer 31 of the reinforcing device 100 may simultaneously include a first sub-release paper 314 and a second sub-release paper 315, wherein the first sub-release paper 314 and the second sub-release paper 315 are respectively located on opposite sides of the positioning member 1 in the radial direction, and the first sub-release paper 314 and the second sub-release paper 315 together cover a portion of the adhesive surface 21 located on the periphery of the positioning member 1.

[0105] Specifically, such as Figure 11 As shown, Figure 11 The diagram shows a longitudinal cross-section of one embodiment of the reinforcing device 100. Both the first sub-release paper 314 and the second sub-release paper 315 include an adhesive portion 316 and a folded portion 317 connected to each other. The adhesive portion 316 adheres to and covers a portion of the adhesive surface 21 located around the positioning member 1. The folded portion 317 is located on the side of the adhesive portion 316 away from the adhesive layer 2. Specifically, both the first sub-release paper 314 and the second sub-release paper 315 can be structures formed by folding a complete annular body portion 311. The adhesive portion 316 is not folded but remains adhered to the adhesive surface 21. The folded portion 317 is a structure formed by folding the portion of the annular body portion 311 other than the adhesive portion 316 to the side of the adhesive portion 316 away from the adhesive layer 2.

[0106] It is understandable that when wearing the reinforcement device 100, the user's hand can directly contact the folded portion 317 of the first release paper 314 and the second release paper 315. Thus, by tearing off the folded portion 317, the adhesive portion 316 can be removed from the adhesive surface 21, making it easier to remove the first release paper layer 31. While using the first release paper layer 31 to protect the adhesive surface 21, it also helps to improve the wearing efficiency of the reinforcement device 100.

[0107] In some embodiments, handles 32 may also be provided on the sides of the first sub-release paper 314 and the second sub-release paper 315. Specifically, the handles 32 may be connected to the side of the folded portion 317, thereby making it easier to tear off the first sub-release paper 314 and the second sub-release paper 315. In other embodiments, handles 32 may not be provided on the first sub-release paper 314 and the second sub-release paper 315, and the first sub-release paper 314 and the second sub-release paper 315 may be torn off directly by contacting the folded portion 317.

[0108] In some implementations, such as Figure 12 As shown, the release paper layer 3 of the reinforcing device 100 also includes a second release paper layer 33, which can cover the portion of the adhesive surface 21 exposed through the positioning hole 11. That is, in this embodiment, the adhesive layer 2 at the position corresponding to the positioning hole 11 has an adhesive layer, and the second release paper layer 33 covers the adhesive layer surface exposed by the positioning hole 11.

[0109] It is understood that by setting the second release paper layer 33, the second release paper layer 33 can protect the part of the adhesive surface 21 exposed through the positioning hole 11, thereby preventing dust and other contaminants from affecting the adhesive surface 21 and thus affecting the adhesion of the adhesive surface 21. This, in turn, affects the bonding stability and reliability of the part of the adhesive surface 21 exposed through the positioning hole 11 to the surface of the component to be reinforced 200 after the reinforcement device 100 is positioned, which is beneficial to improving the reliability of the reinforcement device 100.

[0110] In some embodiments, the second release paper layer 33 may only cover the portion of the adhesive surface 21 exposed through the positioning hole 11, or the second release paper layer 33 may simultaneously cover both the portion of the adhesive surface 21 exposed through the positioning hole 11 and a portion of the first release paper layer 31. The size of the second release paper layer 33 can be designed as needed, and this application does not limit it.

[0111] Furthermore, in some embodiments, the second release paper layer 33 may include a body portion 331 and a handle 32. The body portion 331 covers the portion of the adhesive surface 21 exposed through the positioning hole 11. The handle 32 is connected to the body portion 331. Specifically, the handle 32 may be directly connected to the side of the body portion 331, or it may be directly connected to the surface of the body portion 331 facing away from the adhesive layer 2, so that the user can directly contact the handle 32, thereby making it easier to peel off the second release paper layer 33 from the portion of the adhesive surface 21 exposed through the positioning hole 11, and facilitating the bonding of the portion of the adhesive surface 21 exposed through the positioning hole 11 to the component to be reinforced 200. By providing the handle 32, the wearing efficiency of the reinforcement device 100 can be improved, avoiding problems such as wrinkles and deformation of the adhesive layer 2 caused by the difficulty in peeling off the second release paper layer 33.

[0112] In some implementations, such as Figure 13 As shown, the reinforcing device 100 includes a release paper layer 3, which is disposed on the side of the positioning member 1 away from the adhesive layer 2. The projection of the release paper layer 3 onto the adhesive layer 2 completely covers the adhesive layer 2. Specifically, as shown... Figure 13 As shown, a portion of the release paper layer 3 is bonded to the adhesive surface 21 surrounding the positioning element 1, a portion of the release paper layer 3 is in contact with the surface of the positioning element 1 away from the adhesive layer 2, and another portion of the release paper layer 3 covers the positioning hole 11. It can be understood that by covering the entire adhesive layer 2, the positioning element 1, and the positioning hole 11 with the release paper layer 3, the same release paper layer 3 can simultaneously protect the adhesive surface 21 surrounding the positioning element 1 and the corresponding positions of the adhesive layer 2 at the positioning hole 11, preventing dust and other contaminants from affecting the adhesive surface 21 and its adhesion. Specifically, in this embodiment, the adhesive layer 2 at the position corresponding to the positioning hole 11 may or may not have an adhesive layer, depending on the design requirements.

[0113] In this embodiment, the release paper layer 3 may also be provided with a cutting line 312 and / or a handle 32. The structure and specific arrangement of the cutting line 312 and the handle 32 can refer to the relevant description in any of the above embodiments or can be modified based on the above structure to achieve the same or similar effects, which will not be repeated here.

[0114] In some implementations, such as Figure 14 As shown, the reinforcement device 100 may also include a protective layer 4, which can cover the surface of the adhesive layer 2 facing away from the adhesive surface 21. The protective layer 4 can be used to support and protect the adhesive layer 2. Specifically, it can be used to protect the side of the adhesive layer 2 facing away from the positioning member 1. The setting of the protective layer 4 can increase the stiffness of the adhesive layer 2, making it easier to use the reinforcement device 100 and reducing problems such as wrinkles and deformation of the adhesive layer 2 during the wearing process of the reinforcement device 100.

[0115] In one specific implementation, such as Figure 14 As shown, the protective layer 4 is provided with a handle 32. The handle 32 can be attached to the side of the protective layer 4, or it can be attached to the surface of the protective layer 4 away from the adhesive layer 2. The handle 32 of the protective layer 4 is provided to facilitate the removal of the protective layer 4 from the surface of the adhesive layer 2 away from the positioning member 1 after the reinforcement device 100 is worn. The shape and size of the handle 32 of the protective layer 4 can be designed as needed.

[0116] In other embodiments, the protective layer 4 may not have a handle 32, and can be designed as needed.

[0117] In other embodiments, the reinforcement device 100 may also include independent adhesive components and positioning components 1. The adhesive components may include an adhesive layer 2 and a release paper layer 3. That is, before the reinforcement device 100 is worn, the adhesive components and positioning components 1 of the reinforcement device 100 are two independent structural components and are not bonded together. Specifically, the adhesive layer 2 has an adhesive surface 21. Before the reinforcement device 100 is worn, the release paper layer 3 covers the adhesive surface 21 of the adhesive layer 2, and the positioning component 1 is not yet bonded to the adhesive surface 21 of the adhesive layer 2. When it is necessary to wear the device, the release paper layer 3 on the adhesive surface 21 of the adhesive layer 2 can be removed first to expose the adhesive surface 21 of the adhesive layer 2. Then, the positioning member 1 is bonded to the adhesive surface 21 of the adhesive layer 2 to fix the two together. After the assembly of the reinforcement device 100 is completed, the positioning member 1 positions the installation position of the reinforcement device 100. The reinforcement device 100 is then worn on the user's body, and the reinforcement device 100 reinforces the part to be reinforced 200 to prevent the part to be reinforced 200 from falling off. In this embodiment, the adhesive member and the positioning member 1 of the reinforcement device 100 are two independent structures, which is beneficial to the reuse of the positioning member 1.

[0118] For example, the release paper layer 3 may include the first release paper layer 31 and the second release paper layer 33 described above. The first release paper layer 31 covers the portion of the adhesive surface 21 used for bonding with the user's skin, and the second release paper layer 33 covers the portion of the adhesive surface 21 used for bonding with the surface of the component to be reinforced 200. Alternatively, the release paper layer 3 may further include a third release paper layer, which covers the portion of the adhesive surface 21 used for bonding with the top surface of the positioning component 1. The shape of the third release paper layer may or may not match the shape of the top surface of the positioning component 1. The size of the third release paper layer may be greater than or equal to the size of the top surface of the positioning component 1 to ensure that after the third release paper layer is removed, the top surface of the positioning component 1 can be exposed after the third release paper layer is removed. The adhesive surface 21 provides a stable and reliable bond, thereby bonding the positioning element 1 to the adhesive layer 2. Alternatively, the second release paper layer 33 can simultaneously cover both the portion of the adhesive surface 21 used for bonding to the surface of the component to be reinforced 200 and the portion of the adhesive surface 21 used for bonding to the top surface of the positioning element 1. In this case, a third release paper layer is not required; after removing the second release paper layer 33, the top surface of the positioning element 1 can be directly bonded to the exposed portion of the adhesive surface 21. Alternatively, the release paper layer 3 can be a sheet-like structure that completely covers the adhesive layer 2. When the reinforcement device 100 needs to be worn, the entire release paper layer 3 is peeled off from the adhesive layer 2, exposing the entire adhesive surface 21 of the adhesive layer 2, so that the positioning element 1 can be bonded to the adhesive surface 21. These configurations facilitate the assembly and wearing of the reinforcement device 100, and make it easier to use the reinforcement device 100 to position and reinforce the component to be reinforced 200.

[0119] It is understood that when the fixing device 100 is not in use, the release paper layer 3 can completely cover the adhesive layer 2 on the side in contact with the user's skin, forming a single integral structure. The release paper 3 can also be divided into multiple sub-release papers, which together cover the adhesive layer 2 on the side in contact with the user's skin. It has various variations, all described in the above embodiments, and will not be repeated here. Alternatively, the release paper 3 can only cover the portion of the adhesive layer 2 outside the positioning hole 11 formed by the positioning member 1. The adhesive layer 2 within the positioning hole 11 can be protected by placing a packaging bag around the entire reinforcing device 100, by using separate sub-release papers, or by using a protective film. Specifically, the structure and specific arrangement of the adhesive layer 2 and release paper layer 3 of the adhesive member, as well as the structure and specific arrangement of the positioning member 1, can all refer to the relevant descriptions in the above embodiments or be modified based on the above structures to achieve the same or similar effects as in the above embodiments, and will not be repeated here.

[0120] In another embodiment, such as Figures 15 to 17As shown, the reinforcement device 100 includes a positioning element 1 and an adhesive layer 2. The positioning element 1 has interconnected sidewalls 12 and a top wall 13. The sidewalls 12 of the positioning element 1 form a positioning hole 11, and the top wall 13 of the positioning element 1 covers the positioning hole 11. The adhesive layer 2 has an adhesive surface 21, a portion of which is connected to the positioning element 1. The edge of the adhesive layer 2 protrudes from the sidewalls 12 of the positioning element 1.

[0121] That is, unlike the reinforcement device 100 in other embodiments described above, in this embodiment, the positioning member 1 of the reinforcement device 100 includes a top wall 13, which directly covers the positioning hole 11 formed by its side wall 12, rather than being directly covered by the adhesive layer 2. In this embodiment, the positioning member 1 includes both a side wall 12 and a top wall 13. The positioning hole 11 formed by the side wall 12 of the positioning member 1 can be used to position the installation position of the reinforcement device 100. During the wearing of the reinforcement device 100, the edge of the adhesive layer 2 protrudes from the side wall 12 of the positioning member 1, so that the adhesive surface 21 of the adhesive layer 2 protruding from the side wall 12 of the positioning member 1 adheres to the user's skin, fixing the positioning member 1 between the adhesive layer 2 and the user's skin, thus reinforcing the part to be reinforced 200. After the reinforcement device 100 is adhered to the user's skin, the top wall 13 of the positioning member 1 can contact the surface of the part to be reinforced 200, which helps to improve the reliability of the reinforcement device 100. Furthermore, by configuring the reinforcement device 100 with the above-described structure, it is also convenient to replace the adhesive layer 2.

[0122] In some implementations, such as Figure 15 and Figure 17 As shown, the adhesive surface 21 of the adhesive layer 2 is bonded to the top wall 13 of the positioning member 1, thereby achieving a fixed connection between the adhesive layer 2 and the positioning member 1.

[0123] In one specific implementation, such as Figure 17 As shown, the adhesive layer 2 can completely cover the top wall 13 of the positioning element 1. That is, the adhesive layer 2 can be a sheet-like structure, for example, the adhesive layer 2 can be any regular or irregular shape such as circle, rectangle, rhombus, or ellipse. The size of the adhesive layer 2 is larger than the outer perimeter of the top wall 13 of the positioning element 1, so that the adhesive layer 2 covers the top wall 13 of the positioning element 1, and the edge of the adhesive layer 2 protrudes from the side wall 12 of the positioning element 1, ensuring that the adhesive surface 21 of the adhesive layer 2 protruding from the side wall 12 of the positioning element 1 is effectively adhered to the user's skin, thereby ensuring the adhesion effect between the adhesive layer 2 and the user's skin.

[0124] In another specific implementation, such as Figure 15As shown, the adhesive layer 2 is provided with a second through hole 23. The adhesive layer 2 can be annular. Part of the adhesive surface 21 of the adhesive layer 2 is bonded to part of the top wall 13 of the positioning member 1, and the second through hole 23 exposes part of the top wall 13 of the positioning member 1. By bonding part of the adhesive surface 21 of the adhesive layer 2 to part of the top wall 13 of the positioning member 1, the adhesive layer 2 and the positioning member 1 are fixedly connected. At the same time, another part of the adhesive surface 21 of the adhesive layer 2 extends to protrude from the side wall 12 of the positioning member 1, so that the part of the adhesive surface 21 protruding from the side wall 12 of the positioning member 1 can be effectively adhered to the user's skin. The second through hole 23 exposes part of the top wall 13 of the positioning member 1, which can effectively save the material cost of the adhesive layer 2.

[0125] In other implementations, such as Figure 16 As shown, the adhesive surface 21 can also be bonded to the side wall 12 of the positioning member 1. By bonding the adhesive surface 21 to the side wall 12 of the positioning member 1, the adhesive layer 2 and the positioning member 1 are fixedly connected.

[0126] In one specific implementation, such as Figure 16 As shown, the adhesive layer 2 has a second through-hole 23. The adhesive layer 2 can be annular. The sidewall 12 of the positioning member 1 has a flange 121, which can extend circumferentially along the positioning member 1. Part of the adhesive surface 21 of the adhesive layer 2 is bonded to the flange 121 of the sidewall 12 of the positioning member 1, and the second through-hole 23 exposes the top wall 13 of the positioning member 1. That is, the adhesive surface 21 of the adhesive layer 2 near the second through-hole 23 is bonded to the flange 121 of the sidewall 12 of the positioning member 1, realizing the fixed connection between the adhesive layer 2 and the positioning member 1. The other part of the adhesive surface 21 of the adhesive layer 2 protrudes from the flange 121 of the sidewall 12 of the positioning member 1, for reliable adhesion to the user's skin. The size of the second through-hole 23 of the adhesive layer 2 is greater than or equal to the outer circumferential size of the top wall 13 of the positioning member 1, so that the second through-hole 23 can completely expose the top wall 13 of the positioning member 1. The above configuration can effectively save the material cost of the adhesive layer 2 and also achieve a reliable connection between the adhesive layer 2 and the positioning member 1. At the same time, during the wearing of the reinforcement device 100, the adhesive layer 2 of the reinforcement device 100 is less likely to wrinkle or deform, thus reducing the reinforcement effect.

[0127] In other embodiments, the adhesive layer 2 may not be annular; it may be set to any other arbitrary shape, as long as the adhesive surface 21 protruding from the side wall 12 of the positioning member 1 can effectively adhere to the user's skin, thereby achieving effective reinforcement of the member to be reinforced 200.

[0128] In some implementations, see Figure 15 and Figure 16The top wall 13 of the positioning component 1 may be provided with a third through hole 131, the diameter of which is smaller than the diameter of the positioning hole 11. Specifically, the third through hole 131 of the top wall 13 of the positioning component 1 may intersect with the fourth through hole 202 on the surface of the component to be reinforced 200 (see...). Figure 21 The holes can be aligned or partially misaligned, as long as at least part of the fourth through hole 202 can be exposed through the third through hole 131.

[0129] Furthermore, the adhesive layer 2 has the aforementioned second through hole 23, which exposes at least a portion of the third through hole 131, so that the part to be reinforced 200 can be vented through the second through hole 23 of the adhesive layer 2 and the third through hole 131 of the top wall 13 of the positioning member 1. The shape, size, and location of the second through hole 23 and the third through hole 131 can be specifically set as needed, and this application does not limit them.

[0130] See Figure 18 In some embodiments, the positioning member 1 of the reinforcement device 100 includes a top wall 13, which directly covers the positioning hole 11 formed by the positioning member 1's own top wall 13 covering its side wall 12. The bottom of the side wall 12 is provided with a flange 121, and the adhesive layer 2 can be connected to the top surface of the flange 121. It should be noted that other technical features in this embodiment can be applied to any of the above embodiments, and will not be repeated here.

[0131] In other embodiments, this embodiment is a further improvement on the previous embodiment, which will not be described in detail here. See [link to previous embodiment]. Figure 19 The adhesive layer 2 is connected to the top wall 13 of the positioning component 1. The adhesive layer 2 and the positioning component 1 can be connected or separated at the factory, and the user can assemble them by himself during use.

[0132] See Figure 20 and Figure 21 An embodiment of this application also provides a wearable device 300, which includes a component 200 to be reinforced, which can be reinforced by the reinforcement device 100 in any of the above embodiments.

[0133] Specifically, the positioning hole 11 of the positioning member 1 of the reinforcement device 100 is used to position the installation position of the reinforcement device 100, and to install the reinforcement device 100 onto the component to be reinforced 200 and the user's body. In one specific embodiment, the size of the positioning hole 11 and the size of the component to be reinforced 200 are configured such that the component to be reinforced 200 can be locked into the positioning hole 11, and the positioning member 1 reinforces the component to be reinforced 200, which more effectively prevents the component to be reinforced 200 from falling off and further improves the reliability of the reinforcement device 100.

[0134] Specifically, in some embodiments, the height of the positioning member 1 is less than or equal to the height of the component to be reinforced 200 in the thickness direction of the adhesive layer 2. When the reinforcing device 100 is used in conjunction with the component to be reinforced 200, when the adhesive layer 2 covers the positioning hole 11 (e.g.) Figures 1 to 14 As shown), the portion of the adhesive layer 2 exposed through the positioning hole 11 of the positioning member 1 is in contact with the top surface of the component to be reinforced 200; specifically, when the adhesive layer 2 at the position corresponding to the positioning hole 11 has an adhesive layer, the portion of the adhesive surface 21 exposed through the positioning hole 11 is bonded to the top surface of the component to be reinforced 200; when the adhesive layer 2 at the position corresponding to the positioning hole 11 does not have an adhesive layer, the substrate of the adhesive layer 2 can directly contact the top surface of the component to be reinforced 200, but is not bonded. When the positioning member 1 includes a top wall 13 (e.g. Figures 15 to 17 As shown), the top wall 13 of the positioning component 1 is in contact with the top surface of the component to be added 200.

[0135] In some implementations, see Figure 21 The component to be reinforced 200 includes a main body 203 and an adhesive layer 201. The adhesive layer 201 is disposed at the bottom of the main body 203, on the side of the main body 203 away from the adhesive layer 2. The adhesive layer 201 is used to adhere to the user's skin to fix the component to be reinforced 200 to the user's body.

[0136] In one embodiment, the edge of the adhesive layer 201 protrudes from the side of the main body 203 of the component to be reinforced 200, forming a protrusion. After the reinforcement device 100 is installed, in the radial direction, the outer edge of the adhesive layer 2 protrudes from the outer edge of the adhesive layer 201 and is bonded to the user's skin through the adhesive surface 21. The orthographic projection of the protrusion at least partially overlaps with the orthographic projection of the positioning member 1, that is, the adhesive surface 21 of the reinforcement device 100 does not contact the adhesive layer 201 of the component to be reinforced 200. This avoids the situation where, when the reinforcement device 100 needs to be replaced later, the adhesive surface 21 of the reinforcement device 100 is in contact with the adhesive layer 201 of the component to be reinforced 200, causing the adhesive layer 201 to be pulled when the adhesive layer 2 is removed, thus affecting the adhesion effect between the adhesive layer 201 of the component to be reinforced 200 and the user's skin. Specifically, the side wall 12 of the positioning member 1 may or may not contact the protrusion of the adhesive layer 201, as long as the reinforcement device 100 can be used to reinforce the member 200 to be reinforced.

[0137] In any of the above embodiments, the positioning element 1 and the adhesive layer 2 can be set separately, that is, they are assembled before use. The adhesive layer 2 can be cut to a more suitable shape and size according to the user's personal situation.

[0138] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.

Claims

1. A reinforcement device, characterized in that, include: Positioning element, with positioning holes formed around it; An adhesive layer has an adhesive surface on one side, the adhesive surface at least partially covering the adhesive layer, and the adhesive surface is partially adhered to the user's skin; The positioning element is at least partially located between the adhesive layer and the user's skin.

2. The reinforcement device according to claim 1, characterized in that, The portion of the positioning element located between the adhesive layer and the user's skin is connected to the adhesive layer.

3. The reinforcement device according to claim 2, characterized in that, The positioning element has a top surface and a bottom surface opposite each other, and the adhesive layer is connected to the top surface of the positioning element; The positioning element is either a continuous closed structure, or a discontinuous structure or a continuous but not closed structure.

4. The reinforcement device according to claim 3, characterized in that, The adhesive layer is provided with a first through hole, the orthographic projection of the first through hole is located within the orthographic projection of the positioning hole, and the size of the first through hole is not greater than the size of the positioning hole.

5. The reinforcement device according to claim 2, characterized in that, The positioning element has interconnected sidewalls and a top wall; the sidewalls of the positioning element surround the positioning hole, and the top wall of the positioning element at least partially covers the positioning hole.

6. The reinforcement device according to claim 5, characterized in that, At least a portion of the adhesive surface of the adhesive layer is bonded to the top wall; the edge of the adhesive layer protrudes from the side wall of the positioning member.

7. The reinforcement device according to claim 5, characterized in that, The sidewall of the positioning element has a flange, and part of the adhesive surface is bonded to the flange of the sidewall of the positioning element.

8. The reinforcement device according to any one of claims 1-7, characterized in that, The reinforcement device also includes a release paper layer, which covers one side of the adhesive surface; the release paper layer is provided with a handle.

9. The reinforcement device of claim 8, wherein, The adhesive layer has a protective layer on the side opposite to the adhesive surface.

10. A wearable device, characterized by, include: Firmware to be added; The component to be reinforced is reinforced by the reinforcement device as described in any one of claims 1-9.

11. The wearable device according to claim 10, characterized in that, The component to be added includes a main body; In the thickness direction of the adhesive layer, the height of the positioning member is less than or equal to the height of the main body. When the reinforcement device is used in conjunction with the part to be reinforced, the positioning element surrounds the periphery of the main body.

12. The wearable device according to claim 11, characterized in that, An adhesive layer is provided on one side of the main body, and the edge of the adhesive layer protrudes from the side of the main body to form a protrusion. When used together, the orthographic projection of the protrusion at least partially overlaps with the orthographic projection of the positioning member.

13. The wearable device according to claim 12, characterized in that, In the radial direction, the outer edge of the adhesive layer protrudes beyond the outer edge of the adhesive layer and adheres to the user's skin through the adhesive surface.