Reinforcing device

By designing the application and support components of the reinforcement device and using reinforcing ribs to form a limiting structure, the problem of displacement and damage to the monitoring equipment during use is solved, achieving effective protection of the monitoring equipment and improving the user experience.

CN224112645UActive Publication Date: 2026-04-14WUXI SIYUAN YUNQIAN TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing reinforcement devices cannot effectively protect monitoring equipment, especially when users are active or when subjected to external forces, as they are prone to displacement or damage, affecting monitoring results and user experience.

Method used

A reinforcement device has been designed, including an applicator and a support component. The applicator is used to adhere to the user's skin surface, and the support component includes a support structure and reinforcing ribs. The support structure has an accommodating space, and the connection of the reinforcing ribs forms a limiting structure to prevent the monitoring device from shifting and to protect it from scratches.

Benefits of technology

It effectively prevents the monitoring equipment from shifting and being damaged during use, improves the protection effect of the monitoring equipment, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of medical instruments, and discloses a reinforcing device which is used for improving the protection effect on monitoring equipment. The reinforcing device comprises an attaching component and a supporting component, and the supporting component is connected to the attaching component. The application part is used for being pasted on the skin surface of a user, and the application part is provided with an avoiding hole used for avoiding the monitoring equipment. The supporting component comprises a supporting structure, a containing space is formed in the supporting structure and used for containing monitoring equipment, an opening is formed in the side, close to the attaching component, of the supporting structure, and the opening right faces the avoiding hole. The supporting structure comprises a plurality of reinforcing ribs, and the reinforcing ribs are distributed in the circumferential direction of the receding hole at intervals. In the radial direction of the receding hole, the first ends of the reinforcing ribs are connected to the attaching component, the second ends of the reinforcing ribs extend towards the center of the receding hole, and the second ends of the reinforcing ribs are connected with one another, so that the reinforcing ribs are matched to form a containing space.
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Description

Technical Field

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

[0002] As living standards improve, people are paying more and more attention to their health. Due to the need for health monitoring, users need to wear monitoring devices to track various changes in their bodies. During monitoring, these devices require reinforcement to secure them to the user's skin. However, some reinforcement devices currently on the market do not provide adequate protection, especially when the user is active or subjected to external forces. These devices are prone to displacement or damage, affecting monitoring results and leading to a poor user experience. Utility Model Content

[0003] This invention provides a reinforcement device that can improve the protection of monitoring equipment and ensure the user experience.

[0004] This utility model provides a reinforcement device, including an application component and a support component, wherein the support component is connected to the application component;

[0005] The patch component is used to be adhered to the user's skin surface, and the patch component is provided with avoidance holes for avoiding monitoring equipment;

[0006] The support component includes a support structure, the interior of which is provided with an accommodating space for accommodating the monitoring device, and the support structure has an opening on the side near the patch component, the opening being directly opposite the clearance hole;

[0007] The support structure includes a plurality of reinforcing ribs, which are circumferentially spaced around the clearance hole. Along the radial direction of the clearance hole, the first end of each reinforcing rib is connected to the applicator, and the second end of each reinforcing rib extends toward the center of the clearance hole. The second ends of each reinforcing rib are interconnected so that the plurality of reinforcing ribs cooperate to form the accommodating space.

[0008] The reinforcement device provided by this utility model includes an applicator for attaching to the user's skin and a support component for limiting and protecting the monitoring device. The support structure has an accommodating space interconnected by multiple reinforcing ribs. Because the second ends of each reinforcing rib are interconnected, when the monitoring device is within the accommodating space, the space, in conjunction with its opening, can limit the monitoring device, preventing it from falling out of the support structure. Furthermore, since the second ends of the reinforcing ribs extend to the center of the clearance hole, when the second ends of the reinforcing ribs are interconnected, a limiting structure can be formed on the top of the monitoring device. This limiting structure also prevents external forces from being directly applied to the surface of the monitoring device, avoiding scratches. Therefore, the reinforcement device of this utility model not only limits and protects the monitoring device in position but also prevents scratches, improving the protection effect and ensuring a better user experience.

[0009] In some possible implementations, when the monitoring device is located in the accommodating space, at least a portion of each of the reinforcing ribs is in contact with the surface of the monitoring device.

[0010] In some possible implementations, the orthographic projection of the opening onto the projection plane coincides with the orthographic projection of the monitoring device onto the projection plane, the projection plane being a plane perpendicular to the axis of the clearance hole.

[0011] In some possible implementations, the second end of the reinforcing rib contacts the top surface of the monitoring device.

[0012] In some possible implementations, the support component further includes a connecting structure, the support structure being connected to the applicator via the connecting structure;

[0013] The opening is provided in the connecting structure, and the first end of the reinforcing rib is connected to the inner wall of the opening.

[0014] In some possible implementations, the connecting structure and the supporting structure are an integral structure.

[0015] In some possible implementations, each of the reinforcing ribs is an integral structure.

[0016] In some possible implementations, the reinforcing rib has a perforation near the first end.

[0017] In some possible implementations, the patch includes a substrate layer, an adhesive layer, and a release layer stacked sequentially, with the support member connected to the side of the substrate layer opposite to the adhesive layer, and the release layer covering the adhesive layer.

[0018] In some possible implementations, the patch further includes an adhesive clearance layer located on the side of the adhesive layer opposite to the substrate layer;

[0019] Both the adhesive layer and the adhesive gap layer are annular structures, and the adhesive layer and the adhesive gap layer are coaxially arranged. Along the radial direction of the adhesive layer, the outer ring edge of the adhesive gap layer is located between the outer ring edge of the adhesive layer and the inner ring edge of the adhesive layer. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of a structure in which the monitoring device is located inside the reinforcement device in an embodiment of this utility model;

[0021] Figure 2 This is a schematic diagram of an overall structure of the reinforcement device in an embodiment of this utility model;

[0022] Figure 3 This is a schematic diagram of a supporting component in one embodiment of the present utility model;

[0023] Figure 4 for Figure 3 A bottom view of the central support component;

[0024] Figure 5 This is an exploded structural diagram of the reinforcement device in an embodiment of this utility model;

[0025] Figure 6 This is a process state diagram of the reinforcement device being installed on the monitoring equipment in an embodiment of this utility model;

[0026] Figure 7 This is a schematic diagram showing the reinforcement device covering the monitoring equipment in an embodiment of this utility model.

[0027] In the picture:

[0028] 10-Monitoring equipment; 100-Applying component; 101-Avoidance hole; 110-Substrate layer; 120-Adhesive layer; 130-Adhesive clearance layer; 140-Release layer; 141-First release part; 142-Second release part; 143-Peeling wing; 200-Supporting component; 210-Connecting structure; 211-Opening; 220-Supporting structure; 221-Reinforcing rib; 2211-First reinforcing part; 2212-Second reinforcing part; 222-Limiting surface; 223-Hollowout. Detailed Implementation

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0030] refer to Figure 1 The reinforcement device in this embodiment of the present invention may include an application component 100 and a support component 200, with the support component 200 connected to the application component 100. The application component 100 is used to adhere to the user's skin surface, and the support component 200 is used to support the monitoring device 10 worn on the user's skin surface. The combined action of the application component 100 and the support component 200 achieves a protective effect for the monitoring device 10.

[0031] Specifically, refer to Figure 1 and Figure 2 The patch component 100 has a first surface and a second surface. The first surface can contact the user's skin surface, and the second surface can be used to connect the support component 200. The patch component 100 may be provided with a clearance hole 101. When the reinforcement device in this embodiment is pasted on the user's skin surface, the monitoring device can pass through the clearance hole 101. At this time, the patch component 100 can not only make close contact with the user's skin, so that the reinforcement device can be firmly pasted on the user's skin surface, but also the patch component 100 will not cover the monitoring device 10, thus preventing the monitoring device 10 from having poor air permeability.

[0032] Please refer to the above. Figures 2 to 4 The support component 200 includes a connecting structure 210 and a support structure 220. The connecting structure 210 can be directly fixed to the second surface of the application component 100, and the support structure 220 is connected to the side of the connecting structure 210 opposite to the application component 100. The connecting structure 210 can be annular in shape, with an opening 211 in its center, which faces the clearance hole 101. For example, the size of the opening 211 can be the same as the size of the clearance hole 101. In this case, the inner wall of the opening 211 can be aligned with the inner wall of the clearance hole 101 so that the monitoring device 10 can pass through the opening 211 and extend into the support structure 220.

[0033] like Figure 3As shown, the support structure 220 may include a plurality of reinforcing ribs 221, which are circumferentially spaced around the opening 211. Along the radial direction of the opening 211, a first end of the reinforcing rib 221 may be connected to the inner wall of the opening 211, and a second end extends toward the center of the opening 211. Furthermore, the second ends of each reinforcing rib 221 are interconnected, so that each reinforcing rib 221 cooperates to form an accommodating space for accommodating the monitoring device 10.

[0034] It is understandable that when the monitoring device 10 extends into the receiving space through the opening 211, the second ends of each reinforcing rib 221 are interconnected, forming a limiting structure on the top surface of the monitoring device 10. This prevents the monitoring device 10 from falling off the side of the support structure 220 away from the opening 211, thus effectively limiting the monitoring device 10. Furthermore, since the second ends of the reinforcing ribs 221 extend towards the center of the opening 211, the interconnected portions of the second ends of each reinforcing rib 221 can partially cover the top surface of the monitoring device 10. When an external force is applied to the side of the support structure 220 away from the adhesive component 100, the reinforcing ribs 221 can also protect the monitoring device 10, preventing the external force from being directly applied to the monitoring device 10, thereby avoiding scratches or damage to the monitoring device 10.

[0035] Continue to refer to Figure 3 The reinforcing rib 221 can be approximately L-shaped. Specifically, the reinforcing rib 221 may include a first reinforcing part 2211 and a second reinforcing part 2212 connected to each other. The first reinforcing part 2211 is connected to the inner wall of the opening 211, one end of the second reinforcing part 2212 is connected to the first reinforcing part 2211, and the other ends of each second reinforcing part 2212 are connected to each other. The first reinforcing part 2211 may extend along a first preset direction, which may be parallel to the axis of the opening 211, or the first preset direction may have a small angle with the axis of the opening 211, so that there is a certain distance between the second reinforcing part 2212 and the connecting structure 210 in the axial direction of the opening 211.

[0036] The second reinforcing part 2212 can extend along a second preset direction, which can be perpendicular to the axis of the opening 211, or the second preset direction has a small angle with the direction perpendicular to the axis of the opening 211. In this way, when the second reinforcing parts 2212 are connected to each other, a relatively gentle limiting surface 222 can be formed to better limit the monitoring device 10.

[0037] In some embodiments, a projection plane is preset, which can be regarded as a plane perpendicular to the axis of the clearance hole 101. When the monitoring device 10 extends into the accommodating space through the opening 211, the orthographic projection of the monitoring device 10 on the projection plane can coincide with the orthographic projection of the opening 211 on the projection plane, so that the opening 211 can contact the outer surface of the monitoring device 10 along the circumference of the monitoring device 10, thereby achieving the effect of limiting the monitoring device 10 in the radial direction.

[0038] Furthermore, at least a portion of the reinforcing rib 221 may also contact the surface of the monitoring device 10 to achieve the effect of limiting the monitoring device 10 in the radial or axial direction. For example, combined with... Figure 1 and Figure 3 The first reinforcing part 2211 can extend along the side profile of the monitoring device 10 so that the first reinforcing part 2211 can be close to the side of the monitoring device 10, thereby cooperating with the opening 211 to further limit the monitoring device 10 in the radial direction.

[0039] As an optional implementation, the limiting surface 222 formed by the interconnection of the second reinforcing parts 2212 can also contact the top surface of the monitoring device 10, so that the second reinforcing parts 2212 limit the monitoring device 10 in the axial direction. It can be understood that in this embodiment, the accommodating space is designed to be similar to the outer contour of the monitoring device 10, so that the support structure 220 can fully limit the monitoring device 10, prevent the monitoring device 10 from shaking relative to the support structure 220, and better protect the monitoring device 10.

[0040] It is worth noting that the reinforcement device in this embodiment can be used to limit and protect the circular monitoring device 10. When the monitoring device 10 is of other shapes (e.g., square, triangular), the shape of the accommodating space and the shape of the opening 211 are also adapted to the shape of the monitoring device 10.

[0041] Continue to refer to Figure 3 The first reinforcing part 2211 and the second reinforcing part 2212 can be an integral structure to ensure the strength of the reinforcing rib 221. Each reinforcing rib 221 can also be an integral structure, and the reinforcing rib 221 and the connecting structure 210 can also be an integral structure. This can prevent the reinforcing rib 221 and the connecting structure 210 from breaking during use, thereby ensuring the overall strength of the support component 200.

[0042] Furthermore, as mentioned earlier, adjacent reinforcing ribs 221 are spaced apart, meaning there is a certain gap between adjacent reinforcing ribs 221, making the support structure 220 a non-enclosed structure. This improves the air permeability of the reinforcement device and reduces the chance of user allergies.

[0043] The middle part of the first reinforcing part 2211 may also be provided with a hollow 223. The hollow 223 can not only enhance the aesthetics of the reinforcing device, but also further improve the air permeability of the reinforcing device.

[0044] Please refer to the above. Figure 4 and Figure 5 The application component 100 may include a substrate layer 110, an adhesive layer 120, an adhesive clearance layer 130, and a release layer 140 stacked sequentially. The substrate layer 110, adhesive layer 120, adhesive clearance layer 130, and release layer 140 are coaxially arranged and each has a clearance hole 101. The connecting structure 210 is fixedly connected to the side of the substrate layer 110 away from the adhesive layer 120. For example, the connecting structure 210 has a plane on the side facing the substrate layer 110 so that the connecting structure 210 can adhere to the surface of the substrate layer 110. Furthermore, the connecting structure 210 can also be fixed to the substrate layer 110 by welding, thereby increasing the contact area between the connecting structure 210 and the substrate layer 110 and improving the fixing effect between them.

[0045] Release layer 140 covers adhesive layer 120, and release layer 140 ensures the adhesion of adhesive layer 120 when the reinforcement device is not in use. When the reinforcement device is required, release layer 140 can be peeled off from adhesive layer 120, and then adhesive layer 120 can be adhered to the user's skin surface.

[0046] The adhesive clearance layer 130 is located on the side of the adhesive layer 120 opposite to the substrate layer 110. Due to the clearance hole 101, both the adhesive layer 120 and the adhesive clearance layer 130 are annular structures. Along the radial direction of the adhesive layer 120, the outer ring edge of the adhesive clearance layer 130 can be located between the inner ring edge and the outer ring edge of the adhesive layer 120. That is to say, the adhesive clearance layer 130 is only partially attached to the surface of the adhesive layer 120.

[0047] In this embodiment, the adhesive gap-avoiding layer 130 is non-adhesive. When the reinforcement device is attached to the user's skin surface using the adhesive layer 120, the portion of the adhesive layer 120 located at the outer edge of the adhesive gap-avoiding layer 130 can adhere to the user's skin surface, while the portion directly opposite the adhesive gap-avoiding layer 130 will not have an adhesive effect. Since the monitoring device 10 is also attached to the user's skin surface via adhesive layer when the user wears it, the adhesive gap-avoiding layer 130 prevents direct contact between the adhesive layer 120 and the adhesive layer of the monitoring device 10. Therefore, the adhesive layer of the monitoring device 10 and the attachment points of the adhesive layer 120 on the user's skin surface will not overlap. When the reinforcement device is removed from the user's body, the adhesive layer 120 will not damage the adhesive layer of the monitoring device 10, thus preventing the monitoring device 10 from being removed along with the reinforcement device.

[0048] As an alternative implementation scheme, such as Figure 5 As shown, the release layer 140 may include a first release portion 141 and a second release portion 142, which are symmetrically arranged. The first release portion 141 can adhere to one half of the adhesive layer 120, and the second release portion 142 can adhere to the other half of the adhesive layer 120. Furthermore, the first release portion 141 and the second release portion 142 may each be provided with a peeling wing 143. When the release layer 140 is adhered to the adhesive layer 120 and the application component 100 is attached to the user's skin surface, the end of the peeling wing 143 protrudes from the outer ring edge of the release layer 140, so that the user can manually lift the peeling wing 143 to peel the first release portion 141 or the second release portion 142 off the adhesive layer 120.

[0049] refer to Figure 6 and Figure 7 When the reinforcement device is required, it can first be placed over the monitoring device 10, so that the monitoring device 10 is located inside the support structure 220. Then, by using the peeling wings 143, the first release part 141 or the second release part 142 is peeled off first, and the exposed part of the adhesive layer 120 is pasted to the skin surface. Then, the other release part is peeled off and pasted to the skin surface. In this way, when pasting the reinforcement device to the user's skin surface, it helps to align the reinforcement device, so that the reinforcement device can be pasted in the preset position.

[0050] In some embodiments, the material of the substrate layer 110 may be, for example, non-woven fabric. Non-woven fabric is relatively soft and can achieve complete adhesion to the user's skin surface, thereby improving the adhesion effect of the reinforcement device. The hardness of the support member 200 is greater than that of the application member 100, so that the reinforcement device will not easily deform and compress the monitoring device 10 during use. For example, the overall material of the support member 200 may be polypropylene, which, while ensuring a certain strength, also has a certain degree of flexibility. When external forces are applied to the support member 200, it will not easily break, thereby ensuring the support strength of the support member 200.

[0051] In summary, the reinforcement device in this utility model can improve the protection effect of monitoring equipment and ensure the user's experience.

[0052] Obviously, those skilled in the art can make various modifications and variations to the embodiments of this utility model without departing from the spirit and scope of this utility model. Therefore, if these modifications and variations of this utility model fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.

Claims

1. A reinforcement device for use in situations where, It includes an application component and a support component, wherein the support component is connected to the application component; The patch component is used to be adhered to the user's skin surface, and the patch component is provided with avoidance holes for avoiding monitoring equipment; The support component includes a support structure, the interior of which is provided with an accommodating space for accommodating the monitoring device, and the support structure has an opening on the side near the patch component, the opening being directly opposite the clearance hole; The support structure includes a plurality of reinforcing ribs, which are circumferentially spaced around the clearance hole. Along the radial direction of the clearance hole, the first end of each reinforcing rib is connected to the applicator, and the second end of each reinforcing rib extends toward the center of the clearance hole. The second ends of each reinforcing rib are interconnected so that the plurality of reinforcing ribs cooperate to form the accommodating space.

2. The reinforcement device according to claim 1, characterized in that, When the monitoring device is located in the accommodating space, at least a portion of each of the reinforcing ribs is in contact with the surface of the monitoring device.

3. The reinforcement device according to claim 2, characterized in that, The orthographic projection of the opening on the projection plane coincides with the orthographic projection of the monitoring device on the projection plane, and the projection plane is a plane perpendicular to the axis of the clearance hole.

4. The reinforcement device according to claim 2 or 3, characterized in that, The second end of the reinforcing rib is in contact with the top surface of the monitoring device.

5. The reinforcement device according to claim 1, characterized in that, The support component further includes a connecting structure, and the support structure is connected to the application component through the connecting structure; The opening is provided in the connecting structure, and the first end of the reinforcing rib is connected to the inner wall of the opening.

6. The reinforcement device according to claim 5, characterized in that, The connecting structure and the supporting structure are an integral structure.

7. The reinforcement device according to claim 1, characterized in that, Each of the reinforcing ribs is an integral structure.

8. The reinforcement device according to claim 1, characterized in that, The reinforcing rib has a perforation near the first end.

9. The reinforcement device according to claim 1, characterized in that, The application component includes a substrate layer, an adhesive layer, and a release layer stacked sequentially. The support component is connected to the side of the substrate layer away from the adhesive layer, and the release layer covers the adhesive layer.

10. The reinforcement device according to claim 9, characterized in that, The adhesive patch further includes an adhesive gap-avoiding layer, which is located on the side of the adhesive layer opposite to the substrate layer; Both the adhesive layer and the adhesive gap layer are annular structures, and the adhesive layer and the adhesive gap layer are coaxially arranged. Along the radial direction of the adhesive layer, the outer ring edge of the adhesive gap layer is located between the outer ring edge of the adhesive layer and the inner ring edge of the adhesive layer.