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CN215379268U - Swift sticky tape that generates heat that uses - Google Patents

Swift sticky tape that generates heat that uses Download PDF

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Publication number
CN215379268U
CN215379268U CN202121726442.6U CN202121726442U CN215379268U CN 215379268 U CN215379268 U CN 215379268U CN 202121726442 U CN202121726442 U CN 202121726442U CN 215379268 U CN215379268 U CN 215379268U
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CN
China
Prior art keywords
temperature
self
limiting heating
layer
heating belt
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN202121726442.6U
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Chinese (zh)
Inventor
厉健克
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiaxing Zhenming Packaging Material Co ltd
Original Assignee
Jiaxing Zhenming Packaging Material Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiaxing Zhenming Packaging Material Co ltd filed Critical Jiaxing Zhenming Packaging Material Co ltd
Priority to CN202121726442.6U priority Critical patent/CN215379268U/en
Application granted granted Critical
Publication of CN215379268U publication Critical patent/CN215379268U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a swift sticky tape that generates heat that uses, includes the heating tape, sets up in the glue film of heating tape one side, sets up in the glue film and keeps away from the leaving type layer of one side of heating tape, sets up in the external insulation layer of heating tape opposite side, the first electrode piece of being connected with the one end of heating tape and the second electrode piece of being connected with the other end of heating tape. Before use, the release layer is only required to be peeled off from the adhesive layer, then the adhesive layer is bonded with a target tool, and the self-temperature-limiting heating belt can be heated after being electrified, so that the temperature is increased; as long as the first electrode plate is not completely cut off, the self-temperature-limiting heating element can be ensured to work in an electrified way; so can laminate on the instrument fast, raise the temperature, be convenient for use when temperature is lower, the area that generates heat from the limit temperature simultaneously has the too high effect of limit temperature.

Description

Swift sticky tape that generates heat that uses
Technical Field
The utility model relates to the field of protective articles, in particular to a heating adhesive tape capable of being used quickly.
Background
On some tools, such as axe handles, hammer handles, chair armrests, etc., a protective structure convenient for contacting with human body is required to be added, so as to improve friction performance and skin-friendly performance, prevent slipping during use, avoid damaging human body, and protect the tools, such as the non-slip mat disclosed in chinese patent CN206154245U and the hand-held tools comprising the non-slip mat. When the air temperature is low, especially in high latitude areas, the user feels very cold when using these tools, and the use experience is poor, so it is necessary to improve the protective structure, increase the temperature of the target tool, and facilitate the use of the user.
SUMMERY OF THE UTILITY MODEL
In view of the above, the utility model provides a quick-use heating adhesive tape which can be quickly attached to a tool, can increase the temperature, and is convenient to use when the temperature is low, so as to solve the above problems.
A heating adhesive tape capable of being used quickly comprises a self-temperature-limiting heating tape, an adhesive layer arranged on one side of the self-temperature-limiting heating tape, a release layer arranged on one side of the adhesive layer far away from the self-temperature-limiting heating tape, and an external insulating layer arranged on the other side of the self-temperature-limiting heating tape; the self-temperature-limiting heating belt comprises a layer of self-temperature-limiting heating body, two layers of internal insulating layers which are respectively arranged at two sides of the self-temperature-limiting heating body, and two first electrode plates which are respectively arranged at two ends of one layer of internal insulating layer along the length direction; one opposite sides of the two first electrode plates are respectively electrically connected with the self-temperature-limiting heating body through first conductive pieces, and the first conductive pieces penetrate through the internal insulating layer.
Further, the thickness of the first electrode plate is 0.1-0.5 mm.
Further, the side of the self-temperature-limiting heating belt with the first electrode plate faces the external insulating layer or the adhesive layer.
Furthermore, a first identification area is arranged at the position, corresponding to the first electrode plate, of one side, far away from the self-temperature-limiting heating belt, of the external insulating layer.
Further, the glue layer is an acrylic acid adhesive layer or a synthetic rubber adhesive layer.
Further, the release layer is a release film.
Further, the release layer is release paper.
Furthermore, the external insulating layer is a composite cloth, and the composite cloth is provided with a dipped cloth glued with the heating belt and a spinning cloth positioned on one side of the dipped cloth far away from the heating belt.
A heating adhesive tape capable of being used quickly comprises a self-temperature-limiting heating tape, an adhesive layer arranged on one side of the self-temperature-limiting heating tape, a release layer arranged on one side of the adhesive layer far away from the self-temperature-limiting heating tape, and an external insulating layer arranged on the other side of the self-temperature-limiting heating tape; the self-temperature-limiting heating belt comprises a layer of self-temperature-limiting heating body, two layers of internal insulating layers respectively arranged at two sides of the self-temperature-limiting heating body, and a plurality of second electrode plates arranged on one layer of the internal insulating layers at intervals; the two ends of the second electrode plate along the length direction of the self-temperature-limiting heating body are respectively electrically connected with the self-temperature-limiting heating body through a second conductive piece, and the second conductive piece penetrates through the internal insulating layer.
Furthermore, a second identification area is arranged at the position, corresponding to each second electrode plate, of one side, away from the self-temperature-limiting heating belt, of the external insulating layer.
Compared with the prior art, the rapid-use heating adhesive tape comprises a heating tape, an adhesive layer arranged on one side of the heating tape, a release layer arranged on one side of the adhesive layer far away from the heating tape, an external insulating layer arranged on the other side of the heating tape, a first electrode plate connected with one end of the heating tape and a second electrode plate connected with the other end of the heating tape. Before use, the release layer is only required to be peeled off from the adhesive layer, then the adhesive layer is bonded with a target tool, and the self-temperature-limiting heating belt can be heated after being electrified, so that the temperature is increased; as long as the first electrode plate is not completely cut off, the self-temperature-limiting heating element can be ensured to work in an electrified way; so can laminate fast on the instrument, raise the temperature, be convenient for use when temperature is lower, the area that generates heat from the limit temperature simultaneously still has the effect that the limiting temperature is too high, prevents to scald the user.
Drawings
Embodiments of the utility model are described below with reference to the accompanying drawings, in which:
fig. 1 is a schematic view of a layered structure of a first embodiment of a quick-use heat-generating adhesive tape according to the present invention.
Fig. 2 is a schematic structural view of the first self-limiting heating belt in fig. 1.
Fig. 3 is a schematic top view of a first embodiment of a quick-use heat-generating tape according to the present invention.
Fig. 4 is a schematic view of a layered structure of a second embodiment of the instant heat-generating adhesive tape provided by the present invention.
Fig. 5 is a schematic structural view of the second self-limiting heating belt in fig. 1.
Fig. 6 is a schematic top view of a second embodiment of a quick-use heat-generating tape according to the present invention.
Detailed Description
Specific embodiments of the present invention will be described in further detail below based on the drawings. It should be understood that the description herein of embodiments of the utility model is not intended to limit the scope of the utility model.
Referring to fig. 1 to 3, in the first embodiment of the instant heating tape, the first embodiment of the instant heating tape sequentially includes a release layer 30, a glue layer 20, a self-temperature-limiting heating tape 10, and an external insulating layer 40 from bottom to top.
The glue layer 20 is arranged on one side of the self-temperature-limiting heating belt 10, and the external insulating layer 40 is arranged on the other side of the self-temperature-limiting heating belt 10.
The release layer 30 is disposed on one side of the adhesive layer 20 away from the self-temperature-limiting heating belt 10.
The self-temperature-limiting heating belt 10 includes a layer of self-temperature-limiting heating element 11, two layers of internal insulating layers 12 respectively disposed at both sides of the self-temperature-limiting heating element 11, and two first electrode sheets 13 respectively disposed at both ends of one of the layers of internal insulating layers 12 along the length direction.
The opposite sides of the two first electrode plates 13 are respectively electrically connected with the self-temperature-limiting heating body 11 through a first conductive piece 14, and the first conductive piece 14 penetrates through the internal insulating layer 12. Therefore, as long as the first electrode plate 13 is not completely cut off, the self-temperature-limiting heating body 11 can be electrified to work when the first electrode plate 13 is connected with an external power supply.
The self-temperature-limiting heating body 11 is made of high-density polyethylene, nano nickel powder, graphene, nano conductive carbon black powder and a particulate high polymer, wherein the percentage content of the high-density polyethylene is 66% -75%, and the percentage content of the nano nickel powder is1 to 5 percent of graphene, 0.2 to 0.5 percent of nano conductive carbon black powder, 5 to 20 percent of granular high molecular polymer, and the expansion rate of the granular high molecular polymer is PIKHz 10-6m/mk~150Х10-6m/mk。
When the self-temperature-limiting heating element 11 is powered on and heats, the particulate high molecular polymer will expand, and when the temperature of the self-temperature-limiting heating element reaches the set maximum temperature, the particulate high molecular polymer expands to the maximum, so that the electrical connection among the nano nickel powder, the graphene and the nano conductive carbon black powder is blocked, the resistance inside the heating element tends to infinity, and the current of the heating element approaches infinity, so that the temperature does not rise any more, and the purpose of self-temperature limitation is achieved.
The internal insulation layer 12 is made of polyester resin.
The thickness of the first electrode sheet 13 is 0.1-0.5mm, and the thickness is thinner, so that the cutting is convenient.
The first conductive member 14 is a flexible conductive wire or layer.
The side of the self-temperature-limiting heating tape 10 having the first electrode sheet 13 may face the external insulating layer 40 and may also face the adhesive layer 20.
The glue layer 20 may be an acrylic glue layer or a synthetic rubber glue layer.
The release layer 30 may be a release film or a release paper, and the release layer may be peeled off from the adhesive layer 20 before use, and then the adhesive layer 20 is bonded to a target tool. The release layer 30 is directly bonded to the adhesive layer 20.
The outer insulating layer 40 is a composite cloth having a good skin-friendly property, and can increase friction. The composite cloth is provided with a dipped cloth which is glued with the self-temperature-limiting heating belt 10 and a spinning cloth which is arranged on one side of the dipped cloth far away from the self-temperature-limiting heating belt 10.
The side of the external insulation layer 40 away from the self-temperature-limiting heating tape 10 is provided with a first identification area 41 corresponding to the position of the first electrode sheet 13 to inform a user of the position of the first electrode sheet 13, so that the user can conveniently connect the two first electrode sheets 51 with an external power supply.
Referring to fig. 4 to 6, in the second embodiment of the quick-use heating tape according to the present invention, compared to the first embodiment, the plurality of second electrode pads 15 are spaced on the self-temperature-limiting heating tape 10, so that a user can cut a predetermined length of the quick-use heating tape as desired, and connect the second electrode pads 15 at two ends of the cut quick-use heating tape with an external power source, so that the length of the quick-use heating tape can be flexibly adjusted.
The two ends of the second electrode sheet 15 along the length direction of the self-temperature-limiting heating element 11 are electrically connected with the self-temperature-limiting heating element 11 through a second conductive piece 16, and the second conductive piece 16 penetrates through the internal insulation layer 12. The user can cut at any position of the middle part of the second conductive member 16, and both cut parts of the second conductive member 16 can be electrically connected with the self temperature limiting heating body 11 through the second conductive member 16.
A second identification area 42 is arranged at a position, corresponding to each second electrode plate 15, of one side of the external insulation layer 40, which is far away from the self-temperature-limiting heating tape 10, so as to inform a user of the position of each second electrode plate 15, facilitate the user to cut at the position with the second electrode plate 15, and connect the cut second electrode plates 15 at two ends of the quick-use heating tape with an external power supply.
Compared with the prior art, the quick-use heating adhesive tape comprises a self-temperature-limiting heating belt 10, an adhesive layer 20 arranged on one side of the self-temperature-limiting heating belt 10, a release layer 30 arranged on one side of the adhesive layer 20 far away from the self-temperature-limiting heating belt 10, and an external insulating layer 40 arranged on the other side of the self-temperature-limiting heating belt 10; the self-temperature-limiting heating belt 10 comprises a layer of self-temperature-limiting heating body 11, two layers of internal insulating layers 12 respectively arranged at two sides of the self-temperature-limiting heating body 11, and two first electrode plates 13 respectively arranged at two ends of one layer of the internal insulating layers 12 along the length direction; the opposite sides of the two first electrode plates 13 are respectively electrically connected with the self-temperature-limiting heating body 11 through a first conductive piece 14, and the first conductive piece 14 penetrates through the internal insulating layer 12. Before use, the release layer is only required to be peeled off from the adhesive layer, then the adhesive layer is bonded with a target tool, and the self-temperature-limiting heating belt 10 can be heated after being electrified to improve the temperature; as long as the first electrode plate 13 is not completely cut off, the self-temperature-limiting heating element 11 can be ensured to be electrified to work; so can laminate on the instrument fast, raise the temperature, be convenient for use when temperature is lower, the area 10 that generates heat from the limit temperature still has the effect that the limiting temperature is too high simultaneously, prevents to scald the user.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the scope of the present invention, and any modifications, equivalents or improvements that are within the spirit of the present invention are intended to be covered by the following claims.

Claims (10)

1. The utility model provides a swift use sticky tape that generates heat which characterized in that: the self-temperature-limiting heating belt comprises a self-temperature-limiting heating belt, a glue layer arranged on one side of the self-temperature-limiting heating belt, a release layer arranged on one side of the glue layer far away from the self-temperature-limiting heating belt, and an external insulating layer arranged on the other side of the self-temperature-limiting heating belt; the self-temperature-limiting heating belt comprises a layer of self-temperature-limiting heating body, two layers of internal insulating layers which are respectively arranged at two sides of the self-temperature-limiting heating body, and two first electrode plates which are respectively arranged at two ends of one layer of internal insulating layer along the length direction; one opposite sides of the two first electrode plates are respectively electrically connected with the self-temperature-limiting heating body through first conductive pieces, and the first conductive pieces penetrate through the internal insulating layer.
2. A quick use heat generating adhesive tape according to claim 1, wherein: the thickness of the first electrode plate is 0.1-0.5 mm.
3. A quick use heat generating adhesive tape according to claim 1, wherein: the self-temperature-limiting heating belt is provided with an insulating layer or an adhesive layer, wherein one side of the first electrode plate faces the outside.
4. A quick use heat generating adhesive tape according to claim 1, wherein: and a first identification area is arranged at the position, corresponding to the first electrode plate, of one side, far away from the self-temperature-limiting heating belt, of the external insulating layer.
5. A quick use heat generating adhesive tape according to claim 1, wherein: the adhesive layer is an acrylic adhesive layer or a synthetic rubber adhesive layer.
6. A quick use heat generating adhesive tape according to claim 1, wherein: the release layer is a release film.
7. A quick use heat generating adhesive tape according to claim 1, wherein: the release layer is release paper.
8. A quick use heat generating adhesive tape according to claim 1, wherein: the external insulating layer is composite cloth which is provided with dipped cloth glued with the self-temperature-limiting heating belt and spinning cloth positioned on one side of the dipped cloth far away from the self-temperature-limiting heating belt.
9. The utility model provides a swift use sticky tape that generates heat which characterized in that: the self-temperature-limiting heating belt comprises a self-temperature-limiting heating belt, a glue layer arranged on one side of the self-temperature-limiting heating belt, a release layer arranged on one side of the glue layer far away from the self-temperature-limiting heating belt, and an external insulating layer arranged on the other side of the self-temperature-limiting heating belt; the self-temperature-limiting heating belt comprises a layer of self-temperature-limiting heating body, two layers of internal insulating layers respectively arranged at two sides of the self-temperature-limiting heating body, and a plurality of second electrode plates arranged on one layer of the internal insulating layers at intervals; the two ends of the second electrode plate along the length direction of the self-temperature-limiting heating body are respectively electrically connected with the self-temperature-limiting heating body through a second conductive piece, and the second conductive piece penetrates through the internal insulating layer.
10. A quick use heat generating adhesive tape of claim 9, wherein: and a second identification area is arranged at the position, corresponding to each second electrode plate, of one side, far away from the self-temperature-limiting heating belt, of the external insulating layer.
CN202121726442.6U 2021-07-27 2021-07-27 Swift sticky tape that generates heat that uses Expired - Fee Related CN215379268U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121726442.6U CN215379268U (en) 2021-07-27 2021-07-27 Swift sticky tape that generates heat that uses

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121726442.6U CN215379268U (en) 2021-07-27 2021-07-27 Swift sticky tape that generates heat that uses

Publications (1)

Publication Number Publication Date
CN215379268U true CN215379268U (en) 2021-12-31

Family

ID=79612310

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121726442.6U Expired - Fee Related CN215379268U (en) 2021-07-27 2021-07-27 Swift sticky tape that generates heat that uses

Country Status (1)

Country Link
CN (1) CN215379268U (en)

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20211231