Split bracelet protection device
Through the design of the split bracelet protection device, the problem of insufficient dimensional adaptability and protection effect in the prior art is solved, and insulation and wound protection are provided, which are suitable for a variety of bracelet sizes and skin with wounds.
Patent Information
- Application Number
- CN202422720852.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-11-08
AI Technical Summary
In the prior art, bracelet protection devices cannot adapt to bracelets of various sizes. The protective wall is too thin and not suitable for traumatic skin, and there is a risk of electric knife burning.
A split bracelet protection device is designed, using an outer protective belt and an inner protective belt, with a bump on the outer belt and a groove on the inner belt. It is clamped with the groove through the bump, combined with insulating elastic materials and patches, to adapt to bracelets of different sizes and protect the wounded skin.
It achieves adaptive protection for bracelets of different sizes, enhances insulation effect, avoids burns from electric knife and skin damage, and is suitable for skin with wounds.
Smart Images

Figure CN223207970U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of human life necessities, in particular to the field of medical auxiliary equipment, in particular to a split bracelet protection device. Background Art
[0002] As living standards improve, people of all ages and genders are wearing jewelry out of a pursuit of beauty or religious beliefs, and more types and materials of expensive jewelry are entering their lives. However, as people's body shapes change, some jewelry, such as bracelets and anklets, become impossible to remove. Wearing bracelets and anklets during surgery increases the risk of surgical infection, instrument-related pressure injuries to the skin, and electrosurgical burns. If a bracelet is damaged during surgery, the patient suffers financial losses and may even lead to medical disputes.
[0003] For bracelets and anklets that cannot be removed, the most commonly used method in clinical practice is to wrap them with gauze. This method is time-consuming and labor-intensive, and is easy to loosen. The above problems will still occur after loosening. In addition, gauze is absorbent and can easily absorb various liquids during the operation, causing contamination.
[0004] In the prior art, there are also technical solutions for protecting bracelets and other accessories by using bracelet protective covers, such as patent CN218528909U (a bracelet protective cover during surgery), which uses a C-shaped hollow protective cover to wrap the bracelet, and then closes and protects the bracelet by clamping at the C-shaped opening; however, this solution also has defects:
[0005] 1. The size of the bracelet protector is fixed and cannot accommodate bracelets of various sizes. Bracelets with too small a diameter cannot be inserted, and bracelets with too large a diameter will leave gaps at the C-shaped opening, making it less practical.
[0006] 2. In order to more easily fit into the gap between the bracelet and the skin, the bracelet protective cover of this solution has extremely thin walls, whether located on the inner ring or the outer ring of the bracelet. When touched by an electric knife, it may cause insulation breakdown and cannot effectively provide protection.
[0007] 3. The bracelet cover is fixed to the skin only by friction, and cannot be used for patients with skin injuries. Summary of the Invention
[0008] The purpose of the utility model is to provide a split bracelet protection device, which solves the technical problems in the prior art that the split bracelet protection device cannot match bracelets of various sizes, the protection wall is too thin, and it is not suitable for skin with trauma.
[0009] A split bracelet protection device includes an outer protective band and an inner protective band, and both the outer protective band and the inner protective band can be bent in their length and width directions. The bottom surface of the outer protective band is evenly paved with protrusions along its length direction, and the top surface of the inner protective band is evenly paved with grooves along its length direction. The spacing between adjacent protrusions is equal to the spacing between adjacent grooves, and any protrusion is engaged with any groove; a connecting band is provided at one end of the inner protective band, the top surface of the connecting band is flush with the top surface of the inner protective band, and a connecting protrusion is provided on the bottom surface of the connecting band, the connecting protrusion is the same size as the protrusion, and the connecting protrusion is engaged with the groove at the other end of the inner protective band; the thickness of the connecting band is smaller than that of the inner protective band, and the thickness of the inner protective band is smaller than that of the outer protective band.
[0010] Furthermore, the bottom surface of the inner protective belt is provided with a patch, which includes a skin contact layer, a dressing layer and an isolation layer. The dressing layer is clamped and fixed by the bottom surface of the isolation layer and the top surface of the skin contact layer respectively, and the top surface of the isolation layer is fixed to the bottom surface of the inner protective belt.
[0011] Furthermore, the outer protection belt and the inner protection belt are both made of insulating elastic material.
[0012] The working principle of this utility model:
[0013] The outer protective belt of the utility model is evenly paved with bumps, and the inner protective belt is evenly paved with grooves. The bracelet is wrapped between the inner and outer protective belts by clamping the bumps and grooves on the edges of the inner and outer protective belts, which is similar to the connection between Lego blocks.
[0014] Since the spacing between adjacent protrusions and adjacent grooves is equal, any protrusion can be connected to any groove. When in use, a part of the length can be cut off according to the size of the bracelet and then connected. It is suitable for bracelets of different sizes.
[0015] The inner protective belt is provided with a patch to prevent the inner protective belt from directly contacting the patient's skin, thereby protecting the patient's skin, especially the skin with wounds.
[0016] Compared with the existing technology, the effects of this utility model are positive and obvious:
[0017] 1. The inner protective belt of the utility model is thinner, which is convenient for inserting between the skin and the bracelet; the outer protective belt is thicker and has a better insulation effect.
[0018] 2. The outer protective belt of the utility model is evenly paved with bumps, and the inner protective belt is evenly paved with grooves. The bracelet is wrapped between the inner and outer protective belts by clamping the bumps and grooves on the edges of the inner and outer protective belts. Since the spacing between adjacent bumps and adjacent grooves is equal, a part of the length can be cut off according to the size of the bracelet and then connected when in use. It is suitable for bracelets of different sizes.
[0019] 3. The inner protective belt of the utility model is provided with a patch to protect the patient's skin, especially the skin with wounds. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 .Schematic diagram of the structure of Example 1 of the present utility model before connection.
[0021] Figure 2 . Schematic diagram of the longitudinal cross-sectional structure of Example 1 of the present invention after connection.
[0022] Figure 3 .Schematic diagram of the transverse cross-sectional structure of Example 1 after connection in the utility model.
[0023] Figure 4 .Schematic diagram of the transverse cross-sectional structure of Example 2 of the present utility model after connection.
[0024] In the figure: 1 outer protective belt; 2 inner protective belt; 3 protrusion; 4 groove; 5 connecting belt; 6 connecting protrusion; 7 patch; 8 bracelet. DETAILED DESCRIPTION
[0025] The following examples will further illustrate the present invention, but are not intended to limit the present invention.
[0026] Example 1
[0027] like Figures 1 to 3 As shown, this embodiment provides a split bracelet protection device, which can not only protect bracelets, but is also suitable for wristbands, bracelets, anklets, anklets and other items, hereinafter collectively referred to as "bracelets".
[0028] The split bracelet protection device includes an outer protective belt 1 and an inner protective belt 2. Both the outer protective belt 1 and the inner protective belt 2 can be bent in their length and width directions; the bottom surface of the outer protective belt 1 is evenly laid with protrusions 3 along the length direction, and the top surface of the inner protective belt 2 is evenly laid with grooves 4 along the length direction. The spacing between adjacent protrusions 3 is equal to the spacing between adjacent grooves 4. The protrusions 3 and the grooves 4 are respectively arranged in a matrix on the outer protective belt 1 and the inner protective belt 2. The connection method between the protrusions 3 and the grooves 4 is similar to that of Lego blocks. Any protrusion 3 can be snapped into any groove 4.
[0029] A connecting band 5 is provided at one end of the inner protective band 2, and the top surface of the connecting band 5 is flush with the top surface of the inner protective band 2. A connecting protrusion 6 is provided on the bottom surface of the connecting band 5, and the connecting protrusion 6 is the same size as the protrusion 3. The connecting protrusion 6 is engaged with any groove 4 closest to the edge of the top surface of the other end of the inner protective band 2, so that the inner protective band 2 is connected end to end in a ring shape, which is convenient for placement between the bracelet 8 and the patient's skin; in order to make the inner protective band 2 fit tightly to the inner ring of the bracelet 8, the part of the inner protective band 2 away from the end of the connecting band 5 can be cut off horizontally, and the cutting direction is parallel to the short side of the inner protective band 2. After cutting, the connecting protrusion 6 can still be engaged with the new groove 4 close to the edge of the cut end, thereby achieving the effect of adjusting the diameter of the inner protective band 2 after being connected end to end, thereby matching the size of the inner ring of the bracelet 8.
[0030] Similarly, the outer protective band 1 can also be cut off at either end in a transverse direction, with the cutting direction parallel to the short side of the outer protective band 1, so that the outer protective band 1 matches the outer ring size of the bracelet 8. The longitudinal sides of the outer protective band 1 are connected to the longitudinal sides of the inner protective band 2 through the protrusions 3 and the grooves 4, respectively, so that the bracelet 8 is wrapped between the outer protective band 1 and the inner protective band 2, achieving a protective effect on the bracelet 8.
[0031] The outer and inner protective bands 1 and 2 are made of medical silicone, which is both insulating and elastic. The connecting band 5 is thinner than the inner protective band 2, which is thinner than the outer protective band 1. The inner protective band 2 is thinner than the outer protective band 1, making it easier to insert between the skin and the bracelet 8. The outer protective band 1 is thicker than the inner protective band 2, providing better insulation and collision protection, preventing instrument-related pressure injuries and burns caused by accidental contact with the electrosurgical knife. The connecting band 5 is thinner than the inner protective band 2, minimizing the thickness of the inner protective band 2 after connection.
[0032] The usage of this embodiment:
[0033] 1. According to the size of the inner ring of the bracelet 8, cut off the part of the inner protective band 2 away from the connecting band 5, so that the diameter of the inner protective band 2 after connecting the end is slightly smaller than the inner ring of the bracelet 8;
[0034] 2. According to the size of the outer ring of the bracelet 8, cut off part of the outer protective belt 1 at any end, so that the diameter of the outer protective belt 1 after connecting the end is slightly larger than the outer ring of the bracelet 8.
[0035] 3. Connect the inner protective belt 2 end to end. The connecting belt 5 at one end of the inner protective belt 2 engages with the groove 4 at the other end of the inner protective belt 2 through the connecting protrusion 6, thereby fixing the inner protective belt 2 into a ring shape.
[0036] 4. Insert the inner protective belt 2 between the bracelet 8 and the patient's skin, and place the bracelet 8 coaxially in the middle of the inner protective belt 2.
[0037] 5. Cover the outer protective band 1 on the outer ring of the bracelet 8, and the edge parts of the long sides of the outer protective band 1 are respectively connected with the edge parts of the long sides of the inner protective band 2 through the protrusions 3 and the grooves 4 one by one, so that the entire bracelet 8 is wrapped between the inner and outer protective bands to achieve protection.
[0038] Example 2
[0039] like Figure 4 As shown, this embodiment is a preferred embodiment of the first embodiment. A dressing 7 is attached to the bottom surface of the inner protective strip 2. Dressing 7 uses a medical sterile wound dressing, such as the 3M Tegaderm wound dressing, and is suitable for covering and protecting acute wounds such as cuts, burns, abrasions, and intravenous infusion sites. Dressing 7 comprises a skin-contact layer, a dressing layer, and an isolation layer. The dressing layer is clamped and secured by the bottom and top surfaces of the isolation layer. The skin-contact layer is made of a cotton-containing stretch fabric for enhanced contact comfort. The isolation layer connects the inner protective strip 2 to the dressing 7, with the top surface of the isolation layer adhered to the bottom surface of the inner protective strip 2. The dressing layer contains a dressing that sterilizes and reduces inflammation, preventing wound infection.
[0040] The patch 7 can prevent the inner protective band 2 from directly contacting the patient's skin, thereby protecting the patient's skin, especially the skin with wounds.
[0041] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A split bracelet protection device, characterized by: The invention comprises an outer protective belt (1) and an inner protective belt (2), wherein the outer protective belt (1) and the inner protective belt (2) can be bent in their length direction and width direction, the bottom surface of the outer protective belt (1) is evenly provided with protrusions (3) along its length direction, and the top surface of the inner protective belt (2) is evenly provided with grooves (4) along its length direction, the spacing between adjacent protrusions (3) is equal to the spacing between adjacent grooves (4), and any protrusion (3) is engaged with any groove (4); A connecting belt (5) is provided at one end of the inner protective belt (2), the top surface of the connecting belt (5) is flush with the top surface of the inner protective belt (2), and a connecting protrusion (6) is provided at the bottom surface of the connecting belt (5), the connecting protrusion (6) is the same size as the protrusion (3), and the connecting protrusion (6) is engaged with the groove (4) at the other end of the inner protective belt (2); The thickness of the connecting belt (5) is smaller than that of the inner protective belt (2), and the thickness of the inner protective belt (2) is smaller than that of the outer protective belt (1).
2. A split bracelet protection device according to claim 1, characterized in that: The bottom surface of the inner protective belt (2) is provided with a patch (7), and the patch (7) includes a skin contact layer, a dressing layer and an isolation layer. The dressing layer is clamped and fixed by the bottom surface of the isolation layer and the top surface of the skin contact layer respectively, and the top surface of the isolation layer is fixed to the bottom surface of the inner protective belt (2).
3. The split bracelet protection device according to claim 1, characterized in that: The outer protective belt (1) and the inner protective belt (2) are both made of insulating elastic material.