CN208704006U - A kind of infra-red radiation heating system based on graphene conductive coating - Google Patents

A kind of infra-red radiation heating system based on graphene conductive coating Download PDF

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CN208704006U
CN208704006U CN201821284602.4U CN201821284602U CN208704006U CN 208704006 U CN208704006 U CN 208704006U CN 201821284602 U CN201821284602 U CN 201821284602U CN 208704006 U CN208704006 U CN 208704006U
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graphene
control chip
infra
red radiation
heating system
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CN201821284602.4U
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陈许龙
马元良
孟雷超
张小萍
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Qinghai Nationalities University
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Qinghai Nationalities University
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Abstract

The utility model discloses a kind of infra-red radiation heating systems based on graphene conductive coating.The system includes: graphene heating radiating board, control chip, temperature sensor;Graphene heating radiating board is arranged in household device surface;Graphene heating radiating board includes: conductive plate and graphene conductive dope layer;Graphene conductive dope layer is arranged on conductive plate;Conductive plate is connect with control chip;Temperature sensor is electrically connected with control chip, for indoor temperature where acquiring graphene heating radiating board;The voltage that the temperature value control conductive plate that control chip is used to be acquired according to temperature sensor applies, changes the thermal energy that graphene heating radiating board generates.Using the infra-red radiation heating system based on graphene conductive coating of the utility model, the temperature with controllable heating system, the advantages of avoiding damaging heating system because excessively heating, and security risk can be taken precautions against.

Description

A kind of infra-red radiation heating system based on graphene conductive coating
Technical field
It warms oneself technical field the utility model relates to infra-red radiation, more particularly to a kind of based on graphene conductive coating Infra-red radiation heating system.
Background technique
The heating of graphene conductive coating is after being powered to graphene conductive coating, and the carbon atom in coating does Blang's fortune It is dynamic, generate various phonons, ion, electronics.It rubs between these atomic groups, collide and generate heat, heat is further through 5-14um Far infrared electromagnetic radiation come out, to achieve the effect that heat transfer.
Existing heating technology relevant to graphene functionalized material mainly concentrate and household small appliance combination On, heating system after powered up can continuous heating radiations heat energy, after space temperature reaches certain value can also continuous heating, cause Space temperature is excessively high, damage heating system, the problems such as there are some potential safety problemss.
Utility model content
The purpose of the utility model is to provide a kind of infra-red radiation heating systems based on graphene conductive coating, and having can The temperature for regulating and controlling heating system, the advantages of avoiding damaging heating system because excessively heating, and security risk can be taken precautions against.
To achieve the above object, the utility model provides following scheme:
A kind of infra-red radiation heating system based on graphene conductive coating, comprising:
Graphene heating radiating board, control chip, temperature sensor;
The graphene heating radiating board is arranged in household device surface, specifically includes: conductive plate and graphene conductive apply The bed of material;The graphene conductive dope layer is arranged on the conductive plate;
The conductive plate is connect with the control chip;The temperature sensor is electrically connected with the control chip, is used for Indoor temperature where acquiring the graphene heating radiating board;The control chip is used to be acquired according to the temperature sensor Temperature value control the voltage that the conductive plate applies, change the thermal energy that the graphene heating radiating board generates.
Optionally, the graphene heating radiating board, further includes:
First waterproof insulating layer, the first earth leakage protective layer, the second waterproof insulating layer and the second earth leakage protective layer;
The first earth leakage protective layer is arranged in graphene conductive dope layer upper surface;First waterproof insulating layer The upper surface of the first earth leakage protective layer is set;The second earth leakage protective layer is arranged in the conductive plate lower surface;Institute The second waterproof insulating layer is stated to be arranged in the second earth leakage protective layer lower surface;First waterproof insulating layer, first leakage Electrical protection, second waterproof insulating layer, the second earth leakage protective layer, the conductive plate and the graphene conductive coating The overall thickness of layer is no more than 1cm.
Optionally, the graphene heating radiating board is clipped between two layers of protective layer, is fixedly arranged on household device surface.
Optionally, the infra-red radiation heating system based on graphene conductive coating, further includes:
Voltage display;The voltage display is connect with the control chip, for showing the graphene heating spoke Penetrate the voltage of plate application.
Optionally, the infra-red radiation heating system based on graphene conductive coating, further includes:
Temperature indicator, the temperature indicator are connect with the control chip, for showing the graphene heating spoke Indoor temperature value where penetrating plate.
Optionally, the infra-red radiation heating system based on graphene conductive coating, further includes:
Humidity sensor, humidifier and wetness display unit;The humidity sensor is connect with the control chip;It is described to add Wet device is connect with the control chip;The wetness display unit is connect with the control chip, for showing that the graphene adds Indoor humidity value where heat radiation plate;The humidity value that the control chip is used to be acquired according to the humidity sensor controls institute State the start and stop of humidifier.
Optionally, the infra-red radiation heating system based on graphene conductive coating, further includes:
Alarm, the alarm are connect with the control chip, for sending out in the temperature value or humidity value exception Warning message out.
Compared with prior art, the utility model has the beneficial effects that
The utility model proposes a kind of infra-red radiation heating systems based on graphene conductive coating, by according to temperature The voltage that the temperature value control graphene heating radiating board of sensor acquisition applies, changes the heat that graphene heating radiating board generates Can, to realize the temperature adjustable of heating system, avoid because of energy waste caused by excessively heating and damage heating system, And security risk can be taken precautions against;
In addition, control chip is acquired according to humidity sensor by setting humidity sensor, humidifier and wetness display unit Humidity value control the start and stop of the humidifier, to realize that the humidity of heating system is controllable, avoid because inner temperature of room is higher And it dries.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Needed in attached drawing be briefly described, it should be apparent that, the accompanying drawings in the following description is only the utility model Some embodiments for those of ordinary skill in the art without any creative labor, can also basis These attached drawings obtain other attached drawings.
Fig. 1 is the infra-red radiation heating system structure chart based on graphene conductive coating in the utility model embodiment;
Fig. 2 is that graphene heating radiating board is fixedly arranged on the cross-sectional view on household device surface in the utility model embodiment;
Fig. 3 is graphene heating radiating board structure chart in the utility model embodiment.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
The purpose of the utility model is to provide a kind of infra-red radiation heating systems based on graphene conductive coating, and having can The temperature for regulating and controlling heating system, the advantages of avoiding damaging heating system because excessively heating, and security risk can be taken precautions against.
To keep the above objects, features, and advantages of the utility model more obvious and easy to understand, with reference to the accompanying drawing and have Body embodiment is described in further detail the utility model.
Fig. 1 is the infra-red radiation heating system structure chart based on graphene conductive coating in the utility model embodiment.Such as Shown in Fig. 1, the infra-red radiation heating system based on graphene conductive coating, comprising: graphene heating radiating board 1, control chip 2, temperature sensor 3, temperature indicator 4, humidity sensor 5, humidifier 6, wetness display unit 7, voltage display 8 and alarm 9.Graphene heating radiating board 1 is connect with control chip 2;The temperature sensor 3 is electrically connected with the control chip 2, is used for Indoor temperature where acquiring the graphene heating radiating board;The control chip 2 according to the temperature sensor 3 for adopting The temperature value of collection controls the voltage that the graphene heating radiating board 1 applies, and changes what the graphene heating radiating board 1 generated Thermal energy.Voltage display 8 is connect with the control chip 2, the voltage applied for showing the graphene heating radiating board 1. Temperature indicator 4 is connect with the control chip 2, for indoor temperature value where showing the graphene heating radiating board. The humidity sensor 5 is connect with the control chip 2;The humidifier 6 is connect with the control chip 2;The humidity is aobvious Show that device 7 is connect with the control chip 2, for indoor humidity value where showing the graphene heating radiating board;The control Coremaking piece 2 is used to control the start and stop of the humidifier 6 according to the humidity value that the humidity sensor 5 acquires.The alarm 9 with The control chip 2 connects, for the alert in the temperature value or humidity value exception.
Fig. 2 is that the utility model embodiment graphene heating radiating board is fixedly arranged on the cross-sectional view on household device surface.Such as Shown in Fig. 2, the graphene heating radiating board 1 is clipped between the first protective layer 101 and the second protective layer 102, passes through screw 103 It is fixedly arranged on household device surface 105 across card slot 104.A wiring is opened up on household device surface 105 and the second protective layer 102 Through-hole 106 is electrically connected for graphene heating radiating board 1 with control chip 2.
Fig. 3 is graphene heating radiating board structure chart in the utility model embodiment.As shown in figure 3, the graphene adds Heat radiation plate 1 includes: the first waterproof insulating layer 201, the first earth leakage protective layer 202, graphene conductive dope layer 203, conductive plate 204, the second earth leakage protective layer 205 and the second waterproof insulating layer 206;The setting of graphene conductive dope layer 203 is led described On battery plate 204;The first earth leakage protective layer 202 is arranged in 203 upper surface of graphene conductive dope layer;Described first is anti- The upper surface of the first earth leakage protective layer 202 is arranged in water insulating layer 201;The second earth leakage protective layer 205 is arranged in institute State 204 lower surface of conductive plate;Second waterproof insulating layer 206 is arranged in 205 lower surface of the second earth leakage protective layer;It is described First waterproof insulating layer 201, the first earth leakage protective layer 202, second waterproof insulating layer 206, second electric leakage are protected The overall thickness of sheath 205, the conductive plate 204 and the graphene conductive dope layer 203 is no more than 1cm.
The working principle of graphene heating radiating board is: after being subject to the voltage of 30V or so to conductive plate, graphene conductive is applied The bed of material can have electric current to pass through because of the high conductivity of graphene, which generates heat due to the modification to graphene, Electric energy is effectively converted into thermal energy, and thermal energy radiation is gone out in the form of infra-red radiation, to reach infra-red radiation heating Purpose, the heating of the functionalization material can change with the variation of operating voltage, pass through regulation heating graphene heating radiation The temperature of plate avoids damaging heating system because excessively heating, and can take precautions against security risk.
Household device surface protective layer can be made of special protective materials, mainly to furniture device surface base and graphene Heating radiation layer plays a protective role, and can be specifically chosen according to the difference of household device surface base.Graphene heating Radiant panel can carry out flexible modulation for heating space size, the graphene heating radiating board for multiple indoor different locations of arranging in pairs or groups, Effective multi-stage irradiation is formed, good heating effect can be reached.
It should be noted that the utility model only need using it is existing have the data of input are output to display equipment Display controls equipment output voltage according to temperature value, controls equipment start-stop according to humidity value and according to temperature value or humidity value The function of the main control chip of the utility model can be realized in the chip of the function of control alarm equipment alarm, the function of main control chip Realization belongs to the prior art.
Specific case used herein is expounded the principles of the present invention and embodiment, above embodiments Explanation be merely used to help understand the method and its core concept of the utility model;Meanwhile for the general technology of this field Personnel, based on the idea of the present invention, there will be changes in the specific implementation manner and application range.In conclusion The content of the present specification should not be construed as a limitation of the present invention.

Claims (7)

1. a kind of infra-red radiation heating system based on graphene conductive coating characterized by comprising
Graphene heating radiating board, control chip, temperature sensor;
The graphene heating radiating board is arranged in household device surface, specifically includes: conductive plate and graphene conductive dope layer; The graphene conductive dope layer is arranged on the conductive plate;
The conductive plate is connect with the control chip;The temperature sensor is electrically connected with the control chip, for acquiring Indoor temperature where the graphene heating radiating board;The temperature that the control chip is used to be acquired according to the temperature sensor Angle value controls the voltage that the conductive plate applies, and changes the thermal energy that the graphene heating radiating board generates.
2. the infra-red radiation heating system according to claim 1 based on graphene conductive coating, which is characterized in that described Graphene heating radiating board, further includes:
First waterproof insulating layer, the first earth leakage protective layer, the second waterproof insulating layer and the second earth leakage protective layer;
The first earth leakage protective layer is arranged in graphene conductive dope layer upper surface;The first waterproof insulating layer setting In the upper surface of the first earth leakage protective layer;The second earth leakage protective layer is arranged in the conductive plate lower surface;Described Two waterproof insulating layers are arranged in the second earth leakage protective layer lower surface;First waterproof insulating layer, first electric leakage are protected Sheath, second waterproof insulating layer, the second earth leakage protective layer, the conductive plate and the graphene conductive dope layer Overall thickness is no more than 1cm.
3. the infra-red radiation heating system according to claim 1 based on graphene conductive coating, which is characterized in that described Graphene heating radiating board is clipped between two layers of protective layer, is fixedly arranged on household device surface.
4. the infra-red radiation heating system according to claim 1 based on graphene conductive coating, which is characterized in that described Infra-red radiation heating system based on graphene conductive coating, further includes:
Voltage display;The voltage display is connect with the control chip, for showing the graphene heating radiating board The voltage of application.
5. the infra-red radiation heating system according to claim 1 based on graphene conductive coating, which is characterized in that described Infra-red radiation heating system based on graphene conductive coating, further includes:
Temperature indicator, the temperature indicator is connect with the control chip, for showing the graphene heating radiating board The indoor temperature value in place.
6. the infra-red radiation heating system according to claim 1 based on graphene conductive coating, which is characterized in that described Infra-red radiation heating system based on graphene conductive coating, further includes:
Humidity sensor, humidifier and wetness display unit;The humidity sensor is connect with the control chip;The humidifier It is connect with the control chip;The wetness display unit is connect with the control chip, for showing the graphene heating spoke Indoor humidity value where penetrating plate;The humidity value control that the control chip is used to be acquired according to the humidity sensor is described to be added The start and stop of wet device.
7. the infra-red radiation heating system according to claim 6 based on graphene conductive coating, which is characterized in that described Infra-red radiation heating system based on graphene conductive coating, further includes:
Alarm, the alarm are connect with the control chip, for issuing report in the temperature value or humidity value exception Alert information.
CN201821284602.4U 2018-08-10 2018-08-10 A kind of infra-red radiation heating system based on graphene conductive coating Active CN208704006U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821284602.4U CN208704006U (en) 2018-08-10 2018-08-10 A kind of infra-red radiation heating system based on graphene conductive coating

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821284602.4U CN208704006U (en) 2018-08-10 2018-08-10 A kind of infra-red radiation heating system based on graphene conductive coating

Publications (1)

Publication Number Publication Date
CN208704006U true CN208704006U (en) 2019-04-05

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821284602.4U Active CN208704006U (en) 2018-08-10 2018-08-10 A kind of infra-red radiation heating system based on graphene conductive coating

Country Status (1)

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CN (1) CN208704006U (en)

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