Dynamic blood glucose detection fixing adhesive tape
By adopting a half-folded release paper structure in the dynamic blood glucose detection fixing tape, the problem of unstable fixation of the prior art traditional Chinese medicine tape in the tearing operation is solved, and more stable bonding of the tape tearing and detection equipment is achieved, improving the accuracy of monitoring.
Patent Information
- Application Number
- CN202421795927.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The medical tape of the existing implantable dynamic blood glucose monitoring sensor is prone to instability or dirt due to improper manual tearing of the membrane during long-term use, which will affect the fitting effect of the detection equipment and lead to monitoring errors.
Dynamic blood sugar detection fixing tape is used, which includes non-woven tape, release paper that can be tear-free on the glue-coated surface of the non-woven tape, and a protective film of the non-coated surface. The release paper folds in half along the center line and fits different parts of the non-woven tape to form a structure that is easy to separate and pinch with fingers in order to stably tear off the non-woven tape.
Through the improved tape structure, operation is more convenient, avoiding deformation and wrinkling of non-woven tape, ensuring the quality and effective use of the tape, thus ensuring the stable fit between the detection equipment and the human body, reducing monitoring errors, and improving the accuracy of the test results.
Smart Images

Figure CN222948294U_ABST
Abstract
Description
Technical field:
[0001] The utility model relates to the technical field of medical equipment, in particular to a dynamic blood sugar detection fixing tape. Background technology:
[0002] With the popularization and simplification of human health monitoring equipment, more and more miniature medical monitoring equipment has penetrated into daily households. The application of wearable medical testers enables people to monitor various indicators of the body in real time without leaving home, so the data accuracy of home sensors is very important. Through big data analysis, human factors account for 90% of the measurement errors of wearables. Among them, for implantable dynamic blood glucose monitoring sensors, the fitting effect of medical tape is very important when used for a long time. After investigating the abnormal feedback population, the failure of medical tape is the main reason for the deviation of implantable dynamic blood glucose monitoring sensors. It is caused by the wrong way of manually tearing the film. It seems simple for users to tear off the release paper when experiencing the product, but if it is not operated properly, the medical tape will be unstable or dirty.
[0003] Taking the existing implantable dynamic blood glucose monitoring sensor as an example, its structure is as follows Figure 1 As shown, the implantable dynamic blood glucose monitoring sensor includes a detection device 11 and a needle 12. The structure of the medical adhesive tape 2 adapted to the implantable dynamic blood glucose monitoring sensor is as shown in FIG. Figure 2 As shown, it is a two-layer structure design. The medical adhesive tape 2 includes a non-woven single-sided adhesive tape 21 and a release paper 22. The release paper 22 is broken in the middle to form a two-piece structure, namely, a first release paper 221 and a second release paper 222 attached to the non-woven single-sided adhesive tape 21. The small-sized first handle 223 at the end of the first release paper 221 and the small-sized second handle 224 at the end of the second release paper 222 are slightly protruded from the non-woven single-sided adhesive tape 21. During use, the first handle 223 and the second handle 224 at the end of the first release paper 221 are pinched with both hands to hold the first handle 223 and the second handle 224 at the end of the second release paper 222. The second handle 224 at the end of the paper 222 is used to tear the first release paper 221 and the second release paper 222 off the non-woven single-sided adhesive 21. However, since the first handle 223 and the second handle 224 are slightly protruding from the non-woven single-sided adhesive 21, when the first release paper 221 and the second release paper 222 are torn off the non-woven single-sided adhesive 21, the non-woven single-sided adhesive 21 is easily deformed, resulting in failure to fit the human body later, causing the detection device 11 to be offset, affecting the function of the detection device 11, causing monitoring errors, and affecting the final test results.
[0004] Alternatively, the release paper 22 is a one-piece structure. When tearing it off from the non-woven single-sided adhesive 21, one hand pinches the handle of the release paper 22 and the other hand pinches the non-woven single-sided adhesive 21 and then tears it off outwards. This is more likely to cause the non-woven single-sided adhesive 21 to deform, and the above-mentioned technical problems also exist.
[0005] In view of this, the inventor proposes the following technical solution. Utility model content:
[0006] The utility model aims to overcome the deficiencies of the prior art and provide a dynamic blood sugar detection fixing tape.
[0007] In order to solve the above technical problems, the utility model adopts the following technical scheme: the dynamic blood glucose detection fixing tape includes a non-woven tape, a release paper that is adhered to the adhesive surface of the non-woven tape and can be torn off, and a protective film that is adhered to the non-adhesive surface of the non-woven tape. The number of the release papers is two, which are the first release paper and the second release paper respectively. The first release paper and the second release paper are both folded along their center lines, wherein half of the first release paper is adhered to half of the adhesive surface of the non-woven tape, and half of the second release paper is adhered to the other half of the adhesive surface of the non-woven tape, so that half of the first release paper is connected to half of the second release paper and completely covers the adhesive surface of the non-woven tape, and the other half of the first release paper is adhered to and connected to the other half of the second release paper and protrudes out of the non-woven tape, and is not connected.
[0008] Furthermore, in the above technical solution, a first handle is formed on the outer side of the other half of the first release paper.
[0009] Furthermore, in the above technical solution, a second handle is formed on the outer side of the other half of the second release paper.
[0010] Furthermore, in the above technical solution, the protective film is a transparent film, and a third handle is formed on one side of the transparent film, and a colored identification film is also combined and fixed on the third handle.
[0011] Furthermore, in the above technical solution, the colored identification film is a blue original film.
[0012] Furthermore, in the above technical solution, the transparent film is integrally formed from a transparent PET material.
[0013] After adopting the above technical scheme, the utility model has the following beneficial effects compared with the prior art: when using the utility model, the other half of the first release paper and the other half of the second release paper are separated by both hands, and they are pinched and then torn outwards, so that the first release paper and the second release paper can be torn off the non-woven tape, so that the non-woven tape can be used. Since the other half of the first release paper and the other half of the second release paper are fitted and butted against each other and protrude out of the non-woven tape, they are easily separated and pinched by fingers, and better force can be applied, so that the first release paper and the second release paper are easily torn off relative to the non-woven tape, and the operation is extremely convenient, and the other half of the first release paper and the other half of the second release paper are torn off to both sides along the center of the non-woven tape, which can effectively avoid the phenomenon of wrinkles on the non-woven tape, thereby ensuring the quality and effective use of the non-woven tape, so that it can be successfully fitted to the human body in the later stage, without causing deviation of the detection equipment, ensuring the function of the detection equipment, and without causing monitoring errors, so that the final test result has a high accuracy rate. Description of the drawings:
[0014] Figure 1 It is the structural diagram of the testing equipment;
[0015] Figure 2 It is a structural diagram of a Chinese medical adhesive tape in the prior art;
[0016] Figure 3 It is a structural diagram of the utility model. Specific implementation method:
[0017] The utility model is further described below in conjunction with specific embodiments and drawings.
[0018] See Figure 3As shown, a dynamic blood glucose detection fixing tape is provided, which includes a non-woven tape 3, a release paper adhered to the adhesive surface of the non-woven tape 3 and can be torn off, and a protective film 5 adhered to the non-adhesive surface of the non-woven tape 3. The number of the release papers is two, which are a first release paper 41 and a second release paper 42. The first release paper 41 and the second release paper 42 are both folded along their center lines, wherein half of the first release paper 41 is adhered to half of the adhesive surface of the non-woven tape 3, and half of the second release paper 42 is adhered to the other half of the adhesive surface of the non-woven tape 3, so that half of the first release paper 41 is connected to half of the second release paper 42 and completely covers the adhesive surface of the non-woven tape 3, and the other half of the first release paper 41 is connected to the other half of the second release paper 42 and protrudes out of the non-woven tape 3 without being connected. When the utility model is used, the other half of the first release paper 41 and the other half of the second release paper 42 are separated by two hands, pinched and then torn outwards, so that the first release paper 41 and the second release paper 42 can be torn off the non-woven tape 3, so that the non-woven tape 3 can be used. Since the other half of the first release paper 41 and the other half of the second release paper 42 are fitted and docked and protrude from the non-woven tape 3, they are easily separated and pinched by fingers, and can be better used to apply force, so that it is easy to tear the first release paper 41 and the second release paper 42 relative to the non-woven tape 3, and the operation is extremely convenient. The other half of the first release paper 41 and the other half of the second release paper 42 are torn off from both sides along the center of the non-woven tape 3, which can effectively avoid the phenomenon of wrinkles on the non-woven tape 3, thereby ensuring the quality and effective use of the non-woven tape 3, so that it can be successfully fitted with the human body in the later stage, without causing the detection equipment to be offset, ensuring the function of the detection equipment, and without causing monitoring errors, so that the final test result has a high accuracy rate.
[0019] The non-woven tape 3 has a hole 30 at the center, and the inner diameter of the hole 30 is slightly larger than the outer diameter of the detection device, so that when the non-woven tape 3 is covered on the detection device, the inner cavity of the hole 30 of the non-woven tape 3 can be rolled up, and then fit on the outer surface of the detection device, and the non-woven tape 3 can also pass through the detection device and ensure a stable connection with the detection device, thereby ensuring that the detection device can be more stably positioned on the human skin. Correspondingly, the first release paper 41 and the second release paper 42 have a first hole and a second hole at the center, respectively.
[0020] A first handle 411 is formed on the outer side of the other half of the first release paper 41 , which is easier to hold by hand.
[0021] A second handle 421 is formed on the outer side of the other half of the second release paper 42, which is easier to hold by hand.
[0022] The protective film 5 is a transparent film, and a third handle 51 is formed on one side of the transparent film, and a colored identification film 6 is also fixed on the third handle 51. By adding the colored identification film 6, it can play a limited foolproof role, that is, it can prevent the protective film 5 from being torn off.
[0023] The colored identification film 6 is a blue original film, and its color difference with the protective film 5 is more obvious, so that the effect is more foolproof.
[0024] The transparent film is integrally formed from a transparent PET material.
[0025] In summary, when the present invention is used, the other half of the first release paper 41 and the other half of the second release paper 42 are separated by both hands, pinched and then torn outwards, so that the first release paper 41 and the second release paper 42 can be torn off the non-woven tape 3, so that the non-woven tape 3 can be used. Since the other half of the first release paper 41 and the other half of the second release paper 42 are fitted and docked and protrude from the non-woven tape 3, they are easily separated and pinched by fingers, and can be better used to apply force, so that it is easy to tear the first release paper 41 and the second release paper 42 relative to the non-woven tape 3, and the operation is extremely convenient. The other half of the first release paper 41 and the other half of the second release paper 42 are torn off from both sides along the center of the non-woven tape 3, which can effectively avoid the phenomenon of wrinkles on the non-woven tape 3, thereby ensuring the quality and effective use of the non-woven tape 3, so that it can be successfully fitted with the human body in the later stage, without causing the detection equipment to be offset, ensuring the function of the detection equipment, and without causing monitoring errors, so that the final test result has a high accuracy rate.
[0026] Of course, the above description is only a specific embodiment of the present invention and is not intended to limit the scope of implementation of the present invention. Any equivalent changes or modifications made according to the structure, characteristics and principles described in the patent application scope of the present invention should be included in the patent application scope of the present invention.
Claims
1. A dynamic blood glucose test fixing tape, comprising a non-woven tape (3), a release paper attached to the adhesive surface of the non-woven tape (3) and capable of being torn off, and a protective film (5) attached to the non-adhesive surface of the non-woven tape (3), characterized in that: The number of the release papers is two, namely a first release paper (41) and a second release paper (42). The first release paper (41) and the second release paper (42) are both folded in half along their center lines, wherein half of the first release paper (41) is bonded to half of the adhesive surface of the non-woven tape (3), and half of the second release paper (42) is bonded to the other half of the adhesive surface of the non-woven tape (3), so that half of the first release paper (41) and half of the second release paper (42) are butted against each other and completely cover the adhesive surface of the non-woven tape (3), and the other half of the first release paper (41) and the other half of the second release paper (42) are butted against each other and protrude out of the non-woven tape (3) without being connected.
2. A continuous blood glucose monitoring fixing tape according to claim 1, characterized in that: A first handle (411) is formed on the outer side of the other half of the first release paper (41).
3. A continuous blood glucose monitoring fixing tape according to claim 2, characterized in that: A second handle (421) is formed on the outer side of the other half of the second release paper (42).
4. A dynamic blood glucose monitoring fixing tape according to any one of claims 1 to 3, characterized in that: The protective film (5) is a transparent film, and a third handle (51) is formed on one side of the transparent film. A colored identification film (6) is also fixedly connected to the third handle (51).
5. A continuous blood glucose monitoring fixing tape according to claim 4, characterized in that: The colored identification film (6) is a blue original film.
6. A continuous blood glucose monitoring fixing tape according to claim 5, characterized in that: The transparent film is integrally formed from a transparent PET material.