CN221205869U - Temperature control heat pad with graphene heating film - Google Patents

Temperature control heat pad with graphene heating film Download PDF

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Publication number
CN221205869U
CN221205869U CN202322589202.1U CN202322589202U CN221205869U CN 221205869 U CN221205869 U CN 221205869U CN 202322589202 U CN202322589202 U CN 202322589202U CN 221205869 U CN221205869 U CN 221205869U
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China
Prior art keywords
temperature control
insulator
thermal pad
heating film
graphene heating
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CN202322589202.1U
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Chinese (zh)
Inventor
马旭
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Hangzhou Mulanjin Electronic Technology Co ltd
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Hangzhou Mulanjin Electronic Technology Co ltd
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Abstract

The utility model discloses a temperature control heat pad with a graphene heating film, which comprises a temperature control heat pad shell, wherein one side of the temperature control heat pad shell is provided with a zipper, the inner side of the temperature control heat pad shell is provided with a frame body, an expansion air bag is arranged on the temperature control heat pad shell in a protruding mode, the graphene heating film is arranged in the frame body and comprises a base layer, copper strip current carrying strips are arranged on two sides of the base layer, electrodes of the base layer are connected with connecting wires, the top of the base layer is provided with an upper insulator, the top of the upper insulator is provided with an upper protection layer, the bottom of the base layer is provided with a lower insulator, and the bottom of the lower insulator is provided with a lower protection layer; according to the utility model, the graphene heating film heats to enable heat to be transferred to the surface of the expansion air bag through the through hole, the convex expansion air bag expands to further perform thermal therapy massage on a user lying on the temperature control heat cushion, and the thermal therapy massage device has a muscle relaxing effect on people who work for a long time and are tired.

Description

Temperature control heat pad with graphene heating film
Technical Field
The utility model relates to the technical field of temperature control thermal pads, in particular to a temperature control thermal pad with a graphene heating film.
Background
The graphene has stable electric heating and far infrared self-heating performance, after the graphene heating wire is electrified, a large number of free electrons are excited by electric energy to generate irregular transition movement so as to generate tunnel effect, a large amount of heat is generated, the heat generated by the tunnel effect is immediately absorbed by the graphene and a wave collecting group in the composite high polymer material, and then the heat is transmitted outwards in a far infrared mode by means of the high-efficiency heat transmission characteristic of the graphene, and the far infrared has stronger penetrating power and radiation force.
The existing temperature control thermal pad adopts a graphene heating film as a heating body, realizes accurate control of temperature through a control circuit, avoids potential safety hazards of a traditional electric blanket, but only plays a role in temperature conduction, plays a role in relaxing muscles for people who work fatigue for a long time, and is unfavorable for protection of electronic elements in the graphene heating film due to the fact that layering occurs easily when the graphene heating film is used for a long time, so that the use effect of the temperature control thermal pad is poor.
Disclosure of utility model
The utility model aims to provide a temperature control heat pad with a graphene heating film, so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a thermal pad of accuse temperature with film that graphite alkene generates heat, includes thermal pad casing of accuse temperature, one side of thermal pad casing of accuse temperature is provided with the zip fastener, and the inboard of thermal pad casing of accuse temperature is provided with the framework, and the protrusion is provided with the inflation gasbag on the thermal pad casing of accuse temperature, and the inside of framework is provided with the film that generates heat of graphite alkene, and the film that generates heat of graphite alkene includes the basic unit, and the both sides of basic unit all are provided with copper bar carrier bar, and the electrode of basic unit is connected with the connecting wire, and the top of basic unit is provided with the insulator, and the top of going up the insulator is provided with the protective layer, and the bottom of basic unit is provided with down the insulator, and the bottom of insulator is provided with down the protective layer.
Preferably, through holes are formed in the frame body, and the inflatable air bags and the through holes are correspondingly arranged.
Preferably, the connecting wire penetrates through the frame body and the temperature control heat cushion shell respectively, and one end of the connecting wire is connected with a power supply through a gear switch.
Preferably, the lower insulator and the upper insulator are provided with protrusions, and the protrusions are embedded in predetermined grooves of the base layer.
Preferably, a plurality of expansion air bags are arranged and distributed in a 'field' -shaped structure along the temperature control heat cushion shell.
Preferably, the upper protective layer and the lower protective layer are made of PET polyester films.
Preferably, the lower insulator and the upper insulator are made of polyimide films.
Compared with the prior art, the utility model has the beneficial effects that:
1. According to the utility model, the graphene heating film heats to enable heat to be transferred to the surface of the expansion air bag through the through hole, the convex expansion air bag expands to further perform thermal therapy massage on a user lying on the temperature control heat cushion, and the thermal therapy massage device has a muscle relaxing effect on people who work for a long time and are tired.
2. According to the utility model, the lower insulator, the upper protective layer, the lower protective layer and the base layer are matched in a layered pressure bonding manner, so that a relatively compact graphene heating film is formed, meanwhile, the protrusions are embedded into the preset grooves of the base layer, the contact area of the lower insulator, the upper protective layer, the lower protective layer and the base layer is increased, the compactness is further improved, the phenomenon that layering is easy to occur when the graphene heating film is used for a long time is reduced, and the protection of electronic elements in the graphene heating film is facilitated, so that the use effect of the temperature control heat pad is ensured.
Drawings
Fig. 1 is a schematic structural diagram of a temperature control thermal pad with a graphene heating film.
Fig. 2 is a schematic diagram of a layered structure of a graphene heating film according to the present utility model.
Fig. 3 is a cross-sectional view of the temperature control thermal pad of the present utility model.
In the figure: a temperature control heat cushion shell 1; a slide fastener 2; a frame 21; a through hole 22; an inflatable balloon 3; a connecting wire 4; a graphene heating film 5; copper bar current carrying bar 51; a lower insulator 52; an upper insulator 53; an upper protective layer 54; a lower protective layer 55; a protrusion 56; a base layer 57.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1 to 3, the present utility model provides a technical solution: the utility model provides a temperature control thermal pad with graphite alkene film that generates heat, includes temperature control thermal pad casing 1, and one side of temperature control thermal pad casing 1 is connected with zip fastener 2, and the inboard fixedly connected with framework 21 of temperature control thermal pad casing 1, framework 21 use latex to make as the filler, have certain toughness, have offered through-hole 22 on the framework 21, and temperature control thermal pad casing 1 adopts knitting surface fabric.
The expansion air bags 3 are fixedly connected to the upper portion of the temperature control heat cushion shell 1 in a protruding mode, the model of each expansion air bag 3 can be selected according to actual working conditions, the expansion air bags 3 and the through holes 22 are correspondingly arranged, the graphene heating film 5 is arranged in the frame 21, the expansion air bags 3 are arranged in a plurality, and the expansion air bags 3 are distributed in a 'field' -shaped structure along the temperature control heat cushion shell 1.
The graphene heating film 5 comprises a base layer 57, copper strip current-carrying strips 51 are adhered to two sides of the base layer 57, connecting wires 4 are connected to electrodes of the base layer 57, the connecting wires 4 penetrate through the frame 21 and the temperature control heat cushion shell 1 respectively, one end of each connecting wire 4 is connected with a power supply through a gear switch, and a temperature regulator is installed on the gear switch, so that the prior art is omitted.
The top of the base layer 57 is adhered with the upper insulator 53, the top of the upper insulator 53 is adhered with the upper protective layer 54, the bottom of the base layer 57 is adhered with the lower insulator 52, the bottom of the lower insulator 52 is adhered with the lower protective layer 55, the lower insulator 52 and the upper insulator 53 are provided with the protrusions 56, the protrusions 56 and the lower insulator 52 and the upper insulator 53 are respectively in an integrated structure, and the protrusions 56 are embedded into the preset grooves of the base layer 57.
The upper protective layer 54 and the lower protective layer 55 are made of PET polyester film, and the lower insulator 52 and the upper insulator 53 are made of polyimide film.
When in actual use, the graphene heating film 5 heats to enable heat to be transferred to the surface of the expansion air bag 3 through the through hole 22, the convex expansion air bag 3 expands to further carry out heat treatment massage on a user lying on the temperature control heat cushion, and the effect of relaxing muscles is achieved for people who work for a long time; through the layering pressurization bonding cooperation between insulator 52, insulator 53, last protective layer 54, lower protective layer 55 and the basic unit 57 down, form more inseparable graphite alkene heating film, protruding 56 imbeds in the predetermined groove of basic unit 57 simultaneously, increase the area of contact between them, further improve the compactness, reduce the phenomenon that layering appears easily in long-time use graphite alkene heating film, be favorable to the protection of the electronic component in the graphite alkene heating film to guarantee the result of use of accuse temperature heat pad.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a temperature control thermal pad with graphite alkene film that generates heat, includes temperature control thermal pad casing (1), its characterized in that: one side of accuse temperature thermal pad casing (1) is provided with zip fastener (2), the inboard of accuse temperature thermal pad casing (1) is provided with framework (21), the protrusion is provided with inflation gasbag (3) on accuse temperature thermal pad casing (1), the inside of framework (21) is provided with graphite alkene film (5) that generates heat, graphite alkene film (5) are including basic unit (57), both sides of basic unit (57) all are provided with copper bar carrier bar (51), the electrode of basic unit (57) is connected with connecting wire (4), the top of basic unit (57) is provided with insulator (53), the top of going up insulator (53) is provided with protective layer (54), the bottom of basic unit (57) is provided with insulator (52) down, the bottom of insulator (52) is provided with protective layer (55) down.
2. The temperature control thermal pad with graphene heating film according to claim 1, wherein: the frame body (21) is provided with through holes (22), and the inflatable air bags (3) and the through holes (22) are correspondingly arranged.
3. The temperature control thermal pad with graphene heating film according to claim 1, wherein: the connecting wire (4) penetrates through the frame body (21) and the temperature control heat cushion shell (1) respectively, and one end of the connecting wire (4) is connected with a power supply through a gear switch.
4. The temperature control thermal pad with graphene heating film according to claim 1, wherein: the lower insulator (52) and the upper insulator (53) are provided with protrusions (56), and the protrusions (56) are embedded in predetermined grooves of the base layer (57).
5. The temperature control thermal pad with graphene heating film according to claim 1, wherein: the expansion air bags (3) are arranged in a plurality, and the expansion air bags (3) are distributed in a 'field' -shaped structure along the temperature control heat cushion shell (1).
6. The temperature control thermal pad with graphene heating film according to claim 1, wherein: the upper protective layer (54) and the lower protective layer (55) are made of PET polyester films.
7. The temperature control thermal pad with graphene heating film according to claim 1, wherein: the lower insulator (52) and the upper insulator (53) are made of polyimide films.
CN202322589202.1U 2023-09-23 2023-09-23 Temperature control heat pad with graphene heating film Active CN221205869U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322589202.1U CN221205869U (en) 2023-09-23 2023-09-23 Temperature control heat pad with graphene heating film

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322589202.1U CN221205869U (en) 2023-09-23 2023-09-23 Temperature control heat pad with graphene heating film

Publications (1)

Publication Number Publication Date
CN221205869U true CN221205869U (en) 2024-06-25

Family

ID=91549484

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322589202.1U Active CN221205869U (en) 2023-09-23 2023-09-23 Temperature control heat pad with graphene heating film

Country Status (1)

Country Link
CN (1) CN221205869U (en)

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