Wearable sensor adhesive tape
By adding a non-woven hat to the sensor tape and covering the sensor, the problem of the sensor being easily contacted with external items is solved, and the working quality and service life of the sensor are guaranteed.
Patent Information
- Application Number
- CN202422230588.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-11
AI Technical Summary
Existing wearable sensor tape cannot protect the sensor, which makes the sensor easy to come into contact with external items, affecting the working quality and service life.
A non-woven hat is added to the sensor tape to cover the sensor through a cover to avoid direct contact with external items, and fix the sensor through iron nickel-plated male and female buckles and electrode buckles.
Effectively protect sensors, ensure their working quality and service life, and enhance market competitiveness.
Smart Images

Figure CN223232690U_ABST
Abstract
Description
Technical field:
[0001] The utility model relates to the technical field of sensor adhesive tape products, in particular to a wearable sensor adhesive tape. Background technology:
[0002] With the rapid development of science and technology, sensor technology has been increasingly used in machinery manufacturing, transportation, petrochemicals, medical and health care, and other fields, and is gradually penetrating into people's daily lives. It can be said that the level of sensor technology is an important indicator of a country's degree of scientific and technological modernization.
[0003] For example, wearable sensors for contact with the skin have also come into being, and the tape used to fit and fix the wearable sensors on the skin is also particularly important. It is necessary to ensure that the wearable sensors are positioned in the original position of the skin, thereby ensuring the quality of detection.
[0004] like Figure 1-2 As shown, a wearable sensor 2 is attached to the skin with an adhesive tape 1, the adhesive tape 1 includes a first single-sided adhesive non-woven fabric 11 for attachment and fixation to the skin, a second single-sided adhesive non-woven fabric 12, a silver chloride bottom nail 13, an iron-nickel-plated male buckle 14, a hydrogel 15, and a release film 16. The silver chloride bottom nail 13 is passed through the second single-sided adhesive non-woven fabric 12 from bottom to top, and the iron-nickel-plated male buckle 14 is pressed and fixed on the silver chloride bottom nail 13 from top to bottom, and cooperates with the silver chloride bottom nail 13 to clamp and fix the second single-sided adhesive non-woven fabric 12. The second single-sided adhesive non-woven fabric The cloth 12 is adhered and fixed to the non-adhesive surface of the upper end of the second single-sided adhesive non-woven fabric 12. The hydrogel 15 is placed in the central hole 111 of the first single-sided adhesive non-woven fabric 11 and contacts the lower end surface of the silver chloride bottom nail 13. The release film 16 is adhered and fixed to the adhesive surface of the lower end of the first single-sided adhesive non-woven fabric 11 and covers the hydrogel 15. When the wearable sensor 2 is assembled with the tape 1, the electrode female buckle 21 is provided on the lower end surface of the wearable sensor 2, and the electrode female buckle 21 is fastened and fixed with the iron nickel-plated male buckle 14, so that the wearable sensor 2 is fixed on the tape 1.
[0005] The above-mentioned tape 1 has the following shortcomings: the above-mentioned tape 1 cannot protect the wearable sensor 2, so that the wearable sensor 2 is directly exposed outside the tape 1, which is easy to come into contact with external objects, thereby affecting the working quality of the wearable sensor 2 and cannot guarantee the service life of the wearable sensor 2.
[0006] In view of this, the inventors propose the following technical solutions. Utility model content:
[0007] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a wearable sensor adhesive tape.
[0008] In order to solve the above technical problems, the utility model adopts the following technical solutions: the wearable sensor tape includes a first single-sided adhesive non-woven fabric for adhering and fixing to the skin, a second single-sided adhesive non-woven fabric, a silver chloride bottom nail, an iron-nickel-plated male buckle, a hydrogel, and a release film. The silver chloride bottom nail is passed through the second single-sided adhesive non-woven fabric from bottom to top, the iron-nickel-plated male buckle is pressed and fixed on the silver chloride bottom nail from top to bottom, and cooperates with the silver chloride bottom nail to clamp and fix the second single-sided adhesive non-woven fabric. The second single-sided adhesive non-woven fabric is adhered and fixed to the non-adhesive surface of the upper end of the second single-sided adhesive non-woven fabric. The hydrogel It is placed at the center hole of the first single-sided adhesive non-woven fabric and in contact with the lower end surface of the silver chloride bottom nail. The release film is adhered and fixed to the adhesive surface of the lower end of the first single-sided adhesive non-woven fabric and covers the hydrogel; the iron-nickel-plated male buckle is exposed outside the upper end of the first single-sided adhesive non-woven fabric and is used to be fixed with the electrode female buckle of the sensor. A non-woven fabric cap is also fixed to the upper end surface of the first single-sided adhesive non-woven fabric by double-sided tape. The non-woven fabric cap has a accommodating space for accommodating the sensor, and covers the sensor by wrapping the accommodating space, and the non-woven fabric cap also covers the outside of the second single-sided adhesive non-woven fabric.
[0009] Furthermore, in the above technical solution, the non-woven hat includes a hat body with a U-shaped cross-section and a brim integrally formed on the outer periphery of the lower end of the hat body and extending horizontally. The brim is fixed to the upper end surface of the first single-sided adhesive non-woven fabric through the double-sided tape.
[0010] Furthermore, in the above technical solution, the double-sided tape is ring-shaped.
[0011] Furthermore, in the above technical solution, the first single-sided adhesive non-woven fabric is provided with a first C-shaped broken groove on the periphery of the center hole, so that a first folding portion that can be folded outward is formed in the middle of the first single-sided adhesive non-woven fabric, and the first folding portion has the center hole; the size of the first folding portion is less than or equal to the size of the second single-sided adhesive non-woven fabric, and the second single-sided adhesive non-woven fabric is adhered and fixed to the first folding portion.
[0012] Furthermore, in the above technical solution, both ends of the first broken wire groove are provided with first fracture grooves with enlarged sizes.
[0013] Furthermore, in the above technical solution, the release film is provided with a second breaking groove corresponding to the position of the first breaking groove, so that a second folding portion that can be folded outward is formed in the middle of the release film, and the second folding portion is fixed to the first folding portion.
[0014] Furthermore, in the above technical solution, the second folding portion and the first folding portion have the same size.
[0015] After adopting the above technical solution, the present invention has the following beneficial effects compared with the existing technology: the present invention adds a non-woven fabric cap, and the sensor is covered by the cover, thereby preventing the sensor from directly contacting external objects, thereby ensuring the working quality of the sensor, and also ensuring the service life of the sensor, making the present invention extremely competitive in the market. Description of the drawings:
[0016] Figure 1 It is a three-dimensional diagram of a wearable sensor;
[0017] Figure 2 This is an exploded view of the tape used for wearable sensors;
[0018] Figure 3 It is a three-dimensional exploded view of the present utility model. Specific implementation method:
[0019] The present invention will be further described below with reference to specific embodiments and accompanying drawings.
[0020] See Figure 3 As shown, a wearable sensor tape is provided. The tape 3 includes a first single-sided adhesive non-woven fabric 31 for adhering and fixing to the skin, a second single-sided adhesive non-woven fabric 32, a silver chloride bottom nail 33, an iron-nickel-plated male buckle 34, a hydrogel 35, and a release film 36. The silver chloride bottom nail 33 is passed through the second single-sided adhesive non-woven fabric 32 from bottom to top, and the iron-nickel-plated male buckle 34 is pressed and fixed on the silver chloride bottom nail 33 from top to bottom, and cooperates with the silver chloride bottom nail 33 to clamp and fix the second single-sided adhesive non-woven fabric 32. The second single-sided adhesive non-woven fabric 32 is adhered and fixed to the non-adhesive surface at the upper end of the second single-sided adhesive non-woven fabric 32. The hydrogel 35 is placed at the center hole 311 of the first single-sided adhesive non-woven fabric 31 and contacts the lower end surface of the silver chloride bottom nail 33. The release film 36 is adhered and fixed to the first single-sided adhesive non-woven fabric 31. The adhesive surface of the lower end of the adhesive non-woven fabric 31 is adhered to the skin, thereby ensuring that the sensor 2 is fixed to the skin, and the hydrogel 35 also adheres to the skin. The hydrogel 35 is used to enhance the signal and transmit the signal to the electrode female buckle 21 of the sensor 2 through the silver chloride bottom nail 33 and the iron nickel-plated male buckle 34, so that the sensor 2 receives the signal and achieves the purpose of detection.
[0021] The structure of the sensor 2 is as follows Figure 2 shown.
[0022] The present invention primarily incorporates the following improvements: a non-woven cap 38 is secured to the upper surface of the first single-sided adhesive non-woven fabric 31 via double-sided adhesive tape 37. This cap 38 has a space for accommodating the sensor 2 and covers the sensor 2 via the space. Furthermore, this cap 38 also covers the exterior of the second single-sided adhesive non-woven fabric 32. In other words, the present invention incorporates the non-woven cap 38 and covers the sensor 2 with the cover, thereby preventing direct contact between the sensor 2 and external objects, thereby ensuring the sensor 2's operating quality and longevity, making the present invention highly competitive in the market.
[0023] The non-woven fabric cap 38 comprises a cap body 381 having a U-shaped cross section and a brim 382 integrally formed on the periphery of the lower end of the cap body 381 and extending horizontally. The brim 382 is fixed to the upper end surface of the first single-sided adhesive non-woven fabric 31 by the double-sided adhesive tape 37, and its assembly structure is simple and easy to operate. The double-sided adhesive tape 37 is ring-shaped.
[0024] Before leaving the factory, the non-woven fabric cap 38 has been fixed on the first single-sided adhesive non-woven fabric 31. If the sensor 2 needs to be installed later, the utility model has made the following design: the first single-sided adhesive non-woven fabric 31 is provided with a first C-shaped broken line groove 312 on the periphery of the center hole 311, so that a first folding portion 313 that can be folded outward is formed in the middle of the first single-sided adhesive non-woven fabric 31, and the first folding portion 313 has the center hole 311; the size of the first folding portion 313 is less than or equal to the size of the second single-sided adhesive non-woven fabric 32, and the second single-sided adhesive non-woven fabric 32 is fixed on the first folding portion 313, that is, the silver chloride bottom nail 33 and the iron nickel-plated male buckle 34 are both placed The first folding portion 313 is on the first folding portion 313 and moves as the first folding portion 313 is folded upward. In actual use, after the first folding portion 313 is folded outward relative to the first single-sided adhesive non-woven fabric 31 to expose the first single-sided adhesive non-woven fabric 31, the silver chloride base nail 33 and the iron-nickel-plated male buckle 34 are also exposed outside the first single-sided adhesive non-woven fabric 31. At this time, the electrode female buckle 21 of the sensor 2 is fastened and fixed to the iron-nickel-plated male buckle 34, so that the entire sensor 2 is also fixed to the first folding portion 313. After completion, the first folding portion 313 is reset to allow the sensor 2 to pass into the accommodating space of the non-woven fabric cap 38. The operation steps are simple and easy to operate, making it extremely convenient to use.
[0025] Both ends of the first breaking groove 312 are provided with first fracture grooves 314 with enlarged sizes, so that the first folding portion 313 is not easily torn and separated from the first single-sided adhesive non-woven fabric 31 .
[0026] Correspondingly, the release film 36 is provided with a second break line groove 361 corresponding to the position of the first break line groove 312, forming a second folding portion 362 in the middle of the release film 36 that can be folded outward. This second folding portion 362 is affixed to the first folding portion 313. The second folding portion 362 is the same size as the first folding portion 313, so the sensor 2 can be installed in the accommodating space of the non-woven cap 38 without removing the release film 36. The steps are simple and easy to operate, making it extremely convenient to use.
[0027] In summary, the present invention adds a non-woven fabric cap 38 and covers the sensor 2 with a cover, thereby preventing the sensor 2 from directly contacting external objects, thereby ensuring the working quality of the sensor 2 and also ensuring the service life of the sensor 2, making the present invention extremely competitive in the market.
[0028] 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 based on the structure, features and principles described in the scope of the patent application of the present invention should be included in the scope of the patent application of the present invention.
Claims
1. A wearable sensor adhesive tape, comprising a first single-sided adhesive non-woven fabric (31) for adhering and fixing to the skin, a second single-sided adhesive non-woven fabric (32), a silver chloride bottom nail (33), an iron-nickel-plated male buckle (34), a hydrogel (35), and a release film (36), wherein the silver chloride bottom nail (33) is passed through the second single-sided adhesive non-woven fabric (32) from bottom to top, and the iron-nickel-plated male buckle (34) is pressed and fixed on the silver chloride bottom nail (33) from top to bottom, and cooperates with the silver chloride bottom nail (33) to clamp and fix the second single-sided adhesive non-woven fabric (32), and the second single-sided adhesive non-woven fabric (32) is fixed to the skin. The adhesive non-woven fabric (32) is adhered and fixed to the non-adhesive surface of the upper end of the second single-sided adhesive non-woven fabric (32); the hydrogel (35) is placed at the central hole (311) of the first single-sided adhesive non-woven fabric (31) and contacts the lower end surface of the silver chloride bottom nail (33); the release film (36) is adhered and fixed to the adhesive surface of the lower end of the first single-sided adhesive non-woven fabric (31) and covers the hydrogel (35); the iron-nickel-plated male buckle (34) is exposed outside the upper end of the first single-sided adhesive non-woven fabric (31) and is used to be snap-fastened with the electrode female buckle (21) of the sensor (2), characterized in that: A non-woven fabric cap (38) is also fixed to the upper end surface of the first single-sided adhesive non-woven fabric (31) by means of double-sided adhesive (37). The non-woven fabric cap (38) has a storage space for accommodating the sensor (2) and covers the sensor (2) by wrapping the storage space. The non-woven fabric cap (38) also covers the outside of the second single-sided adhesive non-woven fabric (32).
2. The wearable sensor adhesive tape according to claim 1, characterized in that: The non-woven fabric cap (38) comprises a cap body (381) with a U-shaped cross section and a brim (382) integrally formed on the periphery of the lower end of the cap body (381) and extending horizontally. The brim (382) is fixedly attached to the upper end surface of the first single-sided adhesive non-woven fabric (31) via the double-sided adhesive tape (37).
3. The wearable sensor adhesive tape according to claim 2, characterized in that: The double-sided tape (37) is ring-shaped.
4. A wearable sensor adhesive tape according to any one of claims 1 to 3, characterized in that: The first single-sided adhesive non-woven fabric (31) is provided with a first C-shaped breaking groove (312) on the periphery of the central hole (311), so that a first folding portion (313) that can be folded outward is formed in the middle of the first single-sided adhesive non-woven fabric (31), and the first folding portion (313) has the central hole (311); the size of the first folding portion (313) is smaller than or equal to the size of the second single-sided adhesive non-woven fabric (32), and the second single-sided adhesive non-woven fabric (32) is adhered and fixed on the first folding portion (313).
5. The wearable sensor adhesive tape according to claim 4, characterized in that: Both ends of the first breaking groove (312) are provided with first fracture grooves (314) with enlarged sizes.
6. The wearable sensor adhesive tape according to claim 4, characterized in that: The release film (36) is provided with a second breaking line groove (361) corresponding to the position of the first breaking line groove (312), so that a second folding portion (362) that can be folded outward is formed in the middle of the release film (36), and the second folding portion (362) is fixedly attached to the first folding portion (313).
7. The wearable sensor adhesive tape according to claim 6, characterized in that: The second folding portion (362) has the same size as the first folding portion (313).