CN207555721U - Graphene heating glass component based on photoelectric functional - Google Patents

Graphene heating glass component based on photoelectric functional Download PDF

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Publication number
CN207555721U
CN207555721U CN201721763767.5U CN201721763767U CN207555721U CN 207555721 U CN207555721 U CN 207555721U CN 201721763767 U CN201721763767 U CN 201721763767U CN 207555721 U CN207555721 U CN 207555721U
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Prior art keywords
glass
graphene
photoelectric functional
glass component
heating
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CN201721763767.5U
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余海明
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ZHEJIANG MINGSHUO ENERGY-SAVING TECHNOLOGY Inc
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ZHEJIANG MINGSHUO ENERGY-SAVING TECHNOLOGY Inc
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Abstract

The utility model belongs to heating technology field more particularly to a kind of graphene heating glass component based on photoelectric functional.It solves the problems such as prior art design is unreasonable.Include glass based on the graphene heating glass component of photoelectric functional, photovoltaic chip is equipped in glass outer surface, several graphene conductive heating films being set in distance are equipped in the inner surface of glass, conducting wire is connected on the photovoltaic chip and the guiding is electrically connected with graphene conductive heating film in parallel or in series.The utility model has the advantage of:It is at low cost and with heat insulating function.

Description

Graphene heating glass component based on photoelectric functional
Technical field
The utility model belongs to heating technology field more particularly to a kind of graphene heating glass group based on photoelectric functional Part.
Background technology
Nowadays, in more cold winter, indoor heating is generally carried out.
Indoor heating has electrical heating and floor heating heating etc. mode.
At present, existing heating system, at least has the following technical problems:
Firstth, it is higher to consume higher and use cost for energy consumption.
Secondth, it does not have heat-insulated function to existing window, causes room heater fluid capacitance that leakage easily occurs.
Utility model content
The purpose of this utility model be in view of the above-mentioned problems, provide it is a kind of at low cost and with heat insulating function based on photoelectricity The graphene heating glass component of function.
In order to achieve the above objectives, the utility model employs following technical proposal:It is supplied based on the graphene of photoelectric functional Warm glass assembly includes glass, and photovoltaic chip is equipped in glass outer surface, and several be set in distance is equipped in the inner surface of glass Graphene conductive heating film, conducting wire is connected on the photovoltaic chip and the guiding and graphite in parallel or in series Alkene conductive exothermal film is electrically connected.
Electric energy is converted light energy by photovoltaic chip, graphene conductive heating film can be powered, not only Good energy-conserving action is played, and further improves the comfort of heating, cost is lower and more convenient to use.
By designing above-mentioned structure, heat-insulated effect can also be played, good heat insulation function can be played.
Graphene conductive heating film, there is no electric leakage, the danger got an electric shock, waterproof, anti-corrosion, fire prevention, safety is high.
In the above-mentioned graphene heating glass component based on photoelectric functional, the graphene conductive heating film along Glass width direction is set.
The design of the program, it is indoor dark caused by being completely blocked to avoid sunlight.
In the above-mentioned graphene heating glass component based on photoelectric functional, the graphene conductive heating film along Glass vertical direction is set.
The design of the program, it is indoor dark caused by being completely blocked to avoid sunlight.
In the above-mentioned graphene heating glass component based on photoelectric functional, the graphene conductive heating film is bullet Property graphene conductive heating film.
That is, the ductility with radial direction and broadwise.
In the above-mentioned graphene heating glass component based on photoelectric functional, the graphene conductive heating film includes Flame-resistant insulation layer, flame-resistant insulation it is laminated be equipped with graphene layer, between flame-resistant insulation layer and graphene layer be equipped with it is reflective every Thermosphere.
The design of this structure, use are more safe and reliable.
In the above-mentioned graphene heating glass component based on photoelectric functional, the graphene conductive heating film is pasted In interior surfaces of glass.
It is, of course, also possible to by the connection mode of machinery, for example, screw etc. mode.
In the above-mentioned graphene heating glass component based on photoelectric functional, the photovoltaic chip includes several pieces, And the photovoltaic chip is arranged in a one-to-one correspondence with the graphene conductive heating film.
The design of the structure, can expand generated energy, and use is more stable and reliable.
In the above-mentioned graphene heating glass component based on photoelectric functional, the glass outer rim be equipped with crossed beam trunking or Person's threading hole, the conducting wire are stuck in the crossed beam trunking or are threaded through in threading hole.
In the above-mentioned graphene heating glass component based on photoelectric functional, the photovoltaic chip is in parallel or in series Setting.
In the above-mentioned graphene heating glass component based on photoelectric functional, this component, which further includes, is set in glass circumferential direction Outline border, in outline border be equipped with wiring groove.
It is equipped in the above-mentioned graphene heating glass component based on photoelectric functional, on outline border or in wiring groove interior Battery is put, above-mentioned conducting wire is connected on internal battery.
In the above-mentioned graphene heating glass component based on photoelectric functional, the graphene conductive heating film also with Alternating current electric wire connects.
In the above-mentioned graphene heating glass component based on photoelectric functional, in photovoltaic chip setting on one side far from glass There is superhydrophilic self-cleaning dope layer.
In the above-mentioned graphene heating glass component based on photoelectric functional, photovoltaic cell array distribution.
In the above-mentioned graphene heating glass component based on photoelectric functional, graphene conductive fever membrane array Distribution.
In the above-mentioned graphene heating glass component based on photoelectric functional, the photovoltaic chip is dim light photovoltaic Any one in chip and common photovoltaic chip.
Compared with prior art, it is based on the advantages of graphene heating glass component of photoelectric functional:
1st, electric energy is converted light energy by photovoltaic chip, graphene conductive heating film can be powered, no Good energy-conserving action is only played, and further improves the comfort of heating, cost is lower and more convenient to use.
By designing above-mentioned structure, heat-insulated effect can also be played, good heat insulation function can be played.
2nd, it is simple in structure.
Description of the drawings
Fig. 1 is structure diagram provided by the utility model.
Fig. 2 is structure diagram provided by the utility model.
Fig. 3 is graphene conductive fever membrane structure diagram provided by the utility model.
Fig. 4 is the structure diagram provided by the utility model with outline border.
Fig. 5 is two structure diagram of embodiment provided by the utility model.
Fig. 6 is rubber ring structure diagram provided by the utility model.
In figure, glass 1, photovoltaic chip 2, graphene conductive heating film 3, flame-resistant insulation layer 31, graphene layer 32, it is reflective every Thermosphere 33, conducting wire 4, outline border 5.
Specific embodiment
It is the specific embodiment of utility model and with reference to attached drawing below, the technical solution of the utility model is made further Description, but the utility model is not limited to these embodiments.
Embodiment one
As shown in Figs 1-4, include glass 1 based on the graphene heating glass component of photoelectric functional, glass 1 is common glass Any one in glass and tempered glass, also either double glazing.
This component, which further includes, is set in the circumferential outline border 5 of glass 1, and wiring groove is equipped in outline border 5.Outline border 5 is stainless steel Or other materials.
Photovoltaic chip 2 is equipped in 1 outer surface of glass, several graphenes being set in distance are equipped in the inner surface of glass 1 Conductive exothermal film 3, the graphene conductive heating film 3 of the present embodiment are set along 1 width direction of glass.
The voltage of graphene conductive heating film 3 is between 3-265V.
By the design of above structure, it can realize and convert light energy into electric energy, electric energy can then give graphene conductive Heating film 3 is powered, and graphene conductive heating film 3 then described radiates after power supply, that is, realizes the effect of heating.
It is not only at low cost, but also the loss that current of warm air is greatly reduced is reduced, good insulation effect is played, meanwhile, also The reinforcing of structure can be carried out to glass.
Conducting wire 4 is connected on photovoltaic chip 2 and described guiding and graphene conductive heating film 3 in parallel or in series It is electrically connected.
Photovoltaic chip 2 can also be arranged in double glazing.
The graphene conductive heating film 3 of the present embodiment is elastic graphite alkene conductive exothermal film.
That is, its radial direction and broadwise can extend it is flexible.
Specifically, the graphene conductive heating film 3 of the present embodiment includes flame-resistant insulation layer 31, in 31 one side of flame-resistant insulation layer Equipped with graphene layer 32, reflection and heat insulation layer 33 is equipped between flame-resistant insulation layer 31 and graphene layer 32.Flame-resistant insulation layer 31 connects It is connected in interior surfaces of glass.
By the design of above structure, the loss of heat can be greatly reduced, play good heat insulation function.
Graphene conductive heating film 3 is pasted onto 1 inner surface of glass.It is pasted by insulating cement etc. mode.
Photovoltaic chip 2 includes several pieces, and the photovoltaic chip 2 and the graphene conductive heating film 3 one are a pair of It should set.
Being equipped with crossed beam trunking in 1 outer rim of glass, either the threading hole conducting wire 4 is stuck in the crossed beam trunking or wears In threading hole.
The crossed beam trunking or threading hole of design can avoid the short circuit of circuit in order to connect up.
The photovoltaic chip 2 of the present embodiment is set in parallel or in series.
Superhydrophilic self-cleaning dope layer is equipped in one side of the photovoltaic chip 2 far from glass.It can realize non-maintaining work With.
As shown in fig. 6, being equipped with the rubber ring for being set in glass circumferential direction in 5 inner wall of outline border, it is equipped in the outer wall of rubber ring outer Convex ring part is equipped with the annular positioning groove being caught in for the evagination ring part in the inner wall of outline border 5.
Evagination ring part has arc alignment concavity.
Secondly, rubber ring inner wall be equipped with it is several to same direction tilt and spaced annular seal lip, when Annular seal lip of the rubber ring set described in glass circumferential direction mutually reclines.
Be additionally provided with two spaced ribs in the inner wall of rubber ring, the annular seal lip be located at two ribs it Between.
In addition, being equipped with admission extinguisher in the inner surface side of glass 1, the shaft being vertically arranged is equipped in admission extinguisher, is being turned One end is connected on axis and is connected with the rotating shaft several spaced graphene conductive heating films 3, and graphene conductive heating film 3 The other end connect with control lever.
Torsional spring is equipped between shaft and admission extinguisher.
In addition, the glass is double glazing, photovoltaic chip 2 is located in double glazing.
Furthermore the outline border is formed by connecting by four sequentially connected aluminium section bars of head and the tail.
Embodiment two
As shown in figure 5, the present embodiment is essentially identical with the structure and principle of embodiment one, Gu therefore not to repeat here, without The same place is:
Graphene conductive heating film 3 is set along 1 vertical direction of glass.
The specific embodiments described herein are merely examples of the spirit of the present invention.The utility model institute Described specific embodiment can be done various modifications or additions or using similar by belonging to those skilled in the art Mode substitute, but without departing from the spirit of the present application or beyond the scope of the appended claims.

Claims (10)

1. the graphene heating glass component based on photoelectric functional, including glass (1), which is characterized in that the glass (1) is outside Surface is equipped with photovoltaic chip (2), and several graphene conductive heating films (3) being set in distance are equipped in the inner surface of glass (1), Conducting wire (4) and the conducting wire and graphene conductive heating film in parallel or in series are connected on the photovoltaic chip (2) (3) it is electrically connected.
2. the graphene heating glass component according to claim 1 based on photoelectric functional, which is characterized in that the stone Black alkene conductive exothermal film (3) is set along glass (1) width direction.
3. the graphene heating glass component according to claim 1 based on photoelectric functional, which is characterized in that the stone Black alkene conductive exothermal film (3) is set along glass (1) vertical direction.
4. the graphene heating glass component based on photoelectric functional according to claims 1 or 2 or 3, which is characterized in that institute The graphene conductive heating film (3) stated is elastic graphite alkene conductive exothermal film.
5. the graphene heating glass component according to claim 4 based on photoelectric functional, which is characterized in that the stone Black alkene conductive exothermal film (3) includes flame-resistant insulation layer (31), graphene layer (32) is equipped on one side in flame-resistant insulation layer (31), exhausted Reflection and heat insulation layer (33) is equipped between edge flame-retardant layer (31) and graphene layer (32).
6. the graphene heating glass component according to claim 1 based on photoelectric functional, which is characterized in that the stone Black alkene conductive exothermal film (3) is pasted onto glass (1) inner surface.
7. the graphene heating glass component according to claim 1 based on photoelectric functional, which is characterized in that the light Volt chip (2) includes several pieces, and the photovoltaic chip (2) is set with graphene conductive heating film (3) one-to-one correspondence It puts.
8. the graphene heating glass component according to claim 1 based on photoelectric functional, which is characterized in that the glass Glass (1) outer rim is equipped with crossed beam trunking, and either the threading hole conducting wire (4) is stuck in the crossed beam trunking or is threaded through threading hole It is interior.
9. the graphene heating glass component according to claim 7 based on photoelectric functional, which is characterized in that the light Volt chip (2) is set in parallel or in series.
10. the graphene heating glass component according to claim 1 based on photoelectric functional, which is characterized in that this component The outline border (5) for being set in glass (1) circumferential direction is further included, wiring groove is equipped in outline border (5);
Superhydrophilic self-cleaning dope layer is equipped in one side of the photovoltaic chip (2) far from glass.
CN201721763767.5U 2017-12-15 2017-12-15 Graphene heating glass component based on photoelectric functional Active CN207555721U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721763767.5U CN207555721U (en) 2017-12-15 2017-12-15 Graphene heating glass component based on photoelectric functional

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721763767.5U CN207555721U (en) 2017-12-15 2017-12-15 Graphene heating glass component based on photoelectric functional

Publications (1)

Publication Number Publication Date
CN207555721U true CN207555721U (en) 2018-06-29

Family

ID=62664452

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721763767.5U Active CN207555721U (en) 2017-12-15 2017-12-15 Graphene heating glass component based on photoelectric functional

Country Status (1)

Country Link
CN (1) CN207555721U (en)

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