CN109572302A - Heat accumulating type graphene heats mural painting - Google Patents

Heat accumulating type graphene heats mural painting Download PDF

Info

Publication number
CN109572302A
CN109572302A CN201811615953.3A CN201811615953A CN109572302A CN 109572302 A CN109572302 A CN 109572302A CN 201811615953 A CN201811615953 A CN 201811615953A CN 109572302 A CN109572302 A CN 109572302A
Authority
CN
China
Prior art keywords
layer
graphene
regenerative
type
graphene heating
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.)
Pending
Application number
CN201811615953.3A
Other languages
Chinese (zh)
Inventor
陈成猛
李晓明
刘卓
孔庆强
谢莉婧
苏方远
曹芳
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.)
Shanxi Institute of Coal Chemistry of CAS
Original Assignee
Shanxi Institute of Coal Chemistry of CAS
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 Shanxi Institute of Coal Chemistry of CAS filed Critical Shanxi Institute of Coal Chemistry of CAS
Priority to CN201811615953.3A priority Critical patent/CN109572302A/en
Publication of CN109572302A publication Critical patent/CN109572302A/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44CPRODUCING DECORATIVE EFFECTS; MOSAICS; TARSIA WORK; PAPERHANGING
    • B44C5/00Processes for producing special ornamental bodies
    • B44C5/04Ornamental plaques, e.g. decorative panels, decorative veneers
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • H05B3/10Heating elements characterised by the composition or nature of the materials or by the arrangement of the conductor
    • H05B3/12Heating elements characterised by the composition or nature of the materials or by the arrangement of the conductor characterised by the composition or nature of the conductive material
    • H05B3/14Heating elements characterised by the composition or nature of the materials or by the arrangement of the conductor characterised by the composition or nature of the conductive material the material being non-metallic
    • H05B3/145Carbon only, e.g. carbon black, graphite

Landscapes

  • Surface Heating Bodies (AREA)

Abstract

A kind of heat accumulating type graphene heating mural painting includes decoration painting surface layer (1), outer package layer (2), graphene functional layer (3), temperature control system (4), power module and interface (5), interior encapsulated layer (6), phase change energy storage function layer (7), cumulative reflecting layer (8), insulated foam coating (9), conductive foil layer 10, binding post 11, conductive foil layer (10) is laid at the marginal position of two long side of outer package layer (2) inner surface, binding post (11) are fixed in conductive foil layer 10, graphene functional layer (3), interior encapsulated layer (6), phase change energy storage function layer (7), cumulative reflecting layer (8), insulated foam coating (9) successively stacked in multi-layers and is embedded in the concave surface of outer package layer (1) and then realizes the encapsulation of whole heating mural painting, temperature control system (4), power module And interface (5) is embedded on one of short side of outline border (2).The advantages of present invention, which has to power off, continues pyrogenicity, high infrared radiation efficiency and high conversion efficiency of thermoelectric, and soaking time is long (>=40min), long service life.

Description

Heat accumulating type graphene heats mural painting
Technical field
The invention belongs to energy-saving heating technical fields, and in particular to a kind of heat accumulating type graphene heating mural painting.
Background technique
Currently, improving air quality to advocate energy-saving and emission-reduction, country and various regions government department all make in encouragement resident Use clean energy resource.And clean energy resource is mainly two aspects, first is that " coal changes gas ", that is, replace coal with natural gas.Second is that " coal changes electricity " replaces briquette boiler with electric heating equipment." coal changes gas " is to heat by the energy of natural gas, and China is The country of one rich coal, oil-poor, few gas, causes gas source anxiety, price higher;In addition, natural gas line laying difficulty is big, construction It is at high cost and heating cost is caused to rise suddenly and sharply." coal changes electricity " is driving with electric energy, and China's wind energy, hydraulic power potentials are abundant, domestic to have three again The large hydropower stations such as gorge, Xiao Langdi, power supply is sufficient, and using electric heating equipment, resident does not have to worry to go out because of power tense Now have a power failure.
Currently, heating equipment used in " coal changes electricity " mainly include air energy heat pump, heat-storage warmer (such as oil heater, Electric heating ability of swimming heating etc.), air-conditioning etc..But above equipment heating time is longer, energy consumption is high, has the problems such as abnormal sound to protrude, cannot Bring the heating experience of comfortable pleasure.For this purpose, carbon crystal heating mural painting fast-developing in recent years, graphene heating mural painting are because of its tool There is heating fast (< 60s), there is infrared physiotherapy function, received and will be widely welcomed using the advantages such as mute, easy to install.However, its Equally exist huge defect: cooling cannot keep the temperature and need that frequent electrified regulation, going wrong needs entirety soon after power-off Repair and replacement higher cost.As patent CN103237372B discloses a kind of fever of conductive carbon crystalline flour board manufacturing method, patent CN104896558B discloses a kind of negative oxygen ion carbon crystal and carbon fiber infrared fever wallpaper mural painting production method, patent CN101825311B discloses a kind of environment-friendly temperature control health care crystalline jade geothermal functional plate producing process, patent CN106313798B discloses a kind of graphene oxide compound electronic heating, but after the unresolved power-off of above-mentioned electric heating equipment It can not accumulation of heat, the problem of how realizing accumulation of heat.
The working experience of professional knowledge and subject crossing based on inventor, it is conscientious and it is abundant investigation, analysis, summarize and On the basis of studying existing well-known technique and status, creatively develop that " modularized design, interior is filled concave surface cumulative reflecting layer The key technology of heat-storing material ", successfully has developed the present invention, realizes heating immediately, efficient heat energy utilizes and conversion, synchronous storage The heat accumulating type graphene of heat heats mural painting new product, efficiently solve present in existing well-known technique and status can not accumulation of heat, Power-off turns cold, needs frequent electrified regulation, going wrong needs the higher insufficient, defect of integral replacing maintenance cost and drawback, Effectively improve the function of product, the technical level of industry.
Summary of the invention
It is that cooling immediately, soaking time be not long (>=40min) for heat, power-off the purpose of the present invention is to provide a kind of be powered, The heat accumulating type graphene of long service life (75 years) heats mural painting.
In order to solve the above technical problems, the technical solution adopted by the present invention are as follows:
A kind of heat accumulating type graphene heating mural painting, it includes decoration painting surface layer, outer package layer, graphene functional layer, temperature Control system, power module and interface, interior encapsulated layer, phase change energy storage function layer, cumulative reflecting layer, insulated foam coating, conductive foil Layer, binding post, installation buckle;Wherein outer package layer fever concave surface is inner surface, and another side is outer surface, the printing of decoration painting surface layer In the outer surface of outer package layer, conductive foil layer is laid at the marginal position of two long side of outer package layer inner surface, in conductive foil layer It is fixed with binding post, graphene functional layer, interior encapsulated layer, phase change energy storage function layer, cumulative reflecting layer, insulated foam coating successively layer Layer heap folds and is embedded in the concave surface of outer package layer and then realizes the encapsulation of whole heating mural painting, temperature control system, power supply mould Block and interface embedded on one of short side of outline border.
The decoration painting surface layer can be used made of the printing of one of drafting, printing, air brushing, spraying, silk-screen etc. method Plane picture, but also relief painting etc.;
The outer package layer is by heat-resisting 200-400 DEG C, proof voltage impact 10-500KV, water-fast, acid and alkali-resistance, corrosion-resistance characteristics Phenolic resin, poly(aryl ether ketone), fluororesin, epoxy resin, DAP resin, polyimides resin or melamine resin etc. it is a kind of or The one or more fiberfill such as two or more high molecular materials and glass, carbon fiber or aramid fiber is combined, will Through fiberfill cement dipping machine impregnating resin, prepreg is made in drying --- moulding material, it is then cut, be superimposed together, Laminated is acted on and profile that manufactured laying layer by layer is pressed into press machine, wherein fiberfill content is 3- The concave surface of 10wt%, U-shaped material are inner surface, and another side is outer surface, and length and width dimensions customize determination according to actual needs, outside Encapsulated layer with a thickness of 2-8mm;At the outer package layer inner surface distance edge position 1-3mm be laid with width be 1-2cm, with a thickness of 30-100 μm of conductive foil layer;Binding post has been welded or riveted in conductive foil layer;It is uniformly reserved with peace respectively in its long side, short side Be loaded button or threaded hole, is used for graphene functional layer, interior encapsulated layer, phase change energy storage function layer, cumulative reflecting layer, foam heat-insulating Layer is embedded to be fixed to outer package layer;2 suspension hooks are mounted equidistant in the side upper frame edge of outer package layer, for making when metope installation With.
The poly(aryl ether ketone) such as polyether-ether-ketone (PEEK), polyether-ketone (PEK), polyether ketone ketone (PEKK), polyether ether ketone ketone (PEEKK) and polyetherketoneetherketoneketone (PEKEKK) etc.;
The phenolic resin such as 210 types, 210-10 type, 284 types, 2402 type phenolic resin, rosin modified phenolic resin, pine Fragrant p-tert-butylphenol resin etc.;
The fluororesin such as polytetrafluoroethylene (PTFE) (PTFE), polytrifluorochloroethylene (PCTFE), Kynoar (PVDF), second Alkene-TFE copolymer (ETFE), ethylene-chlorotrifluoro-ethylene copolymer (ECTFE), polyvinyl fluoride (PVF) etc.;
The epoxy resin such as E-54 bisphenol A type epoxy resin, E-52D bisphenol A type epoxy resin, WSR618 bisphenol A-type Epoxy resin, 840S bisphenol A type epoxy resin, DER331 bisphenol A type epoxy resin, EPICLON series bisphenol type epoxy tree The bisphenol A type epoxy resins such as rouge, ADEKA series EP-5100/EP-5100-70X/EP-5100-75X, DX-507 bisphenol-A type ring Oxygen resin, 4055 bisphenol A type epoxy resins, YD-900 bisphenol A type epoxy resin etc.;
The DAP resin such as WH9100BLK-F type DAP resin, poly- spy series DAP resin, DAP-A type DAP resin etc.;
For example equal acid anhydride type polyimides of the polyimides resin, ether anhydride type polyimides, fluorine acid anhydride type polyimides, ketone acid anhydride type are poly- Acid imide etc.;
300,301,303,323, the 327 type melamine resins of the melamine resin such as Cymel, methyl-etherified trimerization Melamine resin such as CYMEL 385, CYMEL 325,327 type of CYMEL etc.;
The graphene functional layer is that graphene infrared heating coating or graphene infrared heating ink pass through printing, spray It the modes such as applies, brush and be sprayed at outer package layer inner surface and the coating or film that are formed, with a thickness of 10-300 μm;Graphene is infrared Exothermic paint or graphene infrared heating coating and printing ink can make also buyable by oneself, have heatable after applying electric field and emit red The function of outside line.
There is section's intelligence perseverance new material in the outsourcing graphene infrared heating coating or graphene infrared heating ink such as Dongguan The nanometer water of limit company sprays heat radiation coating, Deyang olefinic carbon Science and Technology Ltd. graphene CHR01 coating, the flat Information technology of knob The graphene infrared radiation coating of (Shanghai) Co., Ltd., middle section's charcoal beauty@Graphene conductive ink, Shenzhen's thousand generations electronic material Co., Ltd CCI-305T graphene far-infrared electric carbon slurry, CCI-305D graphene far-infrared electric carbon slurry, Beijing rising sun carbon are new Material Science and Technology Ltd. Graphene conductive ink etc..
The temperature control system includes temperature control modules, humidity measurement module, power meter and touch control display four Big module and corresponding external sensor, this system have intelligent control function to temperature, and temperature-controllable range is 25-100 DEG C; There is real-time detection and display function to humidity, power.Temperature control modules, wet are assigned to from power module access exterior power supply Meter, power meter and display apparatus module are spent, wherein the input terminal and output end of temperature control modules self-powered 220V, 10A, wherein Input terminal is connected with exterior power supply, and output end is connected with the terminals in conductive foil layer by spring contact;And temperature control Molding block, humidity measurement module and power meter module are shown by the PORT COMs such as serial ports, parallel port, USB, COM port and touch-control Device be connected, and by temperature sensor, humidity sensor data and be synchronized on display screen, and can pass through keyboard input setting Temperature value;On the other hand there is the on-off for realizing control output end circuit by temperature control modules, set when temperature is higher than When determining temperature, circuit between auto power off and graphene functional layer stops heating;When temperature is lower than set temperature, Circuit between automatic switching on power supply and graphene functional layer, begins to warm up;And then control of the realization to temperature;External sensing Device is connected with each module by shielding line.
The temperature control modules such as ANTHONE900U type, the people melt SM5-LCD type, product benefit PY-SM5 type, SiEvalTC- 05B type etc.;
Such as uncommon Ma AR827, AR837, AR847+ type of the humidity measurement module builds benevolence section COS-04 type, TELESKY system Column module etc.;
The power meter such as uncommon precipice D52-2048 module, Risym-1 module, YB5140DM module;
The touch control display such as UE035HV-RN40-L006 type, UE035HV-RN50-L010 type, UE035HV-IH21- L009 type, UE040WV-RH45-L026 type, XG028 type, XG121 type, LTN106W1-L01LCD type etc.;
The power module and interface are that commercially available product formula embedded with safety socket can be inlayed for connecting external 220V power supply Embedded in any position of outer package layer side, outside is reserved with three-jaw jack and controls for connecting domestic power supply, internal and temperature The input terminal of module is connected.Such as AC-01, AC-02, AC-03 type cassette product word socket, 120C01,120C02 type cassette of HDR Product word socket etc.;
The interior encapsulated layer is the flat sheet by being pressed into outer package layer using same material and technique, with a thickness of 0.5-3mm, plate edge are equipped with sealing ring, and interior encapsulated layer is fixed by snap to together with outer package layer, plays The effect of graphene functional layer is protected, and have prevents graphene functional layer from directly contacting with the external world simultaneously, plays insulation and mention Rise the effect of heat accumulating type graphene heating mural painting safety;
The phase change energy storage function layer is by more gap Heat Conduction Materials and the phase-change material for being packaged in its internal voids position The filling rate of the board-like material of composition, phase-change material is 80-98%, and functional layer is with a thickness of 2-5mm.Packaged type has sealant sealing Dress, the encapsulation of additional aluminum hull, copper shell etc..Phase change energy storage function layer is screwed on interior encapsulated layer.
The phase-change material mainly includes inorganic phase-changing material, organic phase change material and its composite phase-change material three classes;
The phase-change material includes at least a kind of liquid state phase change material, at normal atmospheric pressure, the transformation temperature of phase-change material For 35-200 DEG C, latent heat of phase change 450kcal/kg --- 900kcal/kg.
The inorganic phase-change material mainly has crystalline hydrate salt, molten salts, metal or alloy class etc. such as alkali and alkali Earth metal halide, sulfate, phosphate, nitrate, wrong hydrochlorate, carbonate etc.;
The organic phase-change material mainly include paraffin, fatty acid, polyalcohols, acetic acid and other organic matters and on State such as pentaerythrite of composite phase-change material made of Material cladding (PE), trimethylolethane (PG), neopentyl glycol (NPG), 2- Amino-2-methyl -1,3- propylene glycol (AMP), trishydroxymethylaminomethane (TAM), stearic acid-n-butanol ester, stearic acid-isopropyl Alcohol ester, three ester of stearic acid-glycerine etc.;
More gap Heat Conduction Materials include thermally conductive capillary brass pipe or capillary aluminum tube braiding into more gap thermal conductive networks, porous Metal-organic framework materials, porous carbon aerogel material, porous graphene aerogel material etc.;
The cumulative reflecting layer is that infrared reflecting paint is coated in high molecular material to prepare discoid notch board surface, Notch board is with a thickness of 1-5mm;Or by the adherency such as the aluminium foil of gum, tinfoil paper and its surface, coating or layers of foil are with a thickness of 150-300 μm; Infrared ray is prevented to be oriented to the back side that heat accumulating type graphene heats mural painting by the coating using the infrared external reflection characteristic of above-mentioned material, And the infrared reflection on the surface will be radiated to phase change energy storage function layer and decoration painting surface layer, and the reflection Jing Guo concave surface Effect effectively assembles the infrared ray spread around to phase change energy storage function layer and decorative picture layer cumulative action, can make in this way On the one hand infrared ray by double reflection can carry out phase change energy storage function layer heating and realizing by phase change energy storage function layer The purpose of energy storage, on the other hand these infrared rays can also be radiated outward by the decoration painting surface layer that heat accumulating type graphene heats mural painting And then heat room temperature.The concave surface in cumulative reflecting layer and interior encapsulated layer, which are formed by space, is filled with phase change energy storage function layer (phase-changing energy storage material and more gap Heat Conduction Materials);Cumulative reflecting layer passes through in buckle insertion outer package layer.
The infrared reflecting paint that the cumulative reflecting layer uses is by graphene, binder, infra-red radiation enhancing function Filler and curing agent composition, the coating that above-mentioned material is formed after dispersion is stirred.Its constituent mass percentage is as follows:
The binder is one or more kinds of in the epoxy resin, polyurethane, fluoroolefins resin of liquid, epoxy resin Such as E44, E31, E51;Polyurethane such as E-385P, 85A, EC8180 etc.;Fluoroolefins resin such as polytetrafluoroethylene (PTFE) (PTFE), perfluor (ethylene, propylene) (FEP) copolymer, one tetrafluoroethene of ethylene (ETFE) copolymer, gathers inclined fluorine at poly- perfluoro alkoxy (PFA) resin Ethylene (PVDF) and polyvinyl fluoride (PVF) etc.;
The graphene is selected from single-layer graphene, bilayer graphene, few layer graphene, multi-layer graphene, graphene oxide Microplate, graphene quantum dot, graphene nanobelt, the institute after chemically or physically method introduces atom or functional group in graphene At least one of functionalization graphene of formation;
The infrared external reflection enhancing functional stuffing is Al powder, Cu powder, Fe powder, zn powder, ITOIn (Sn)2O3, titanium dioxide, oxygen Change one of zirconium, silicon carbide, boron nitride nano-tube, aluminum oxide, white carbon black etc. or more than one;
The resin curing agent is in one of ethylenediamine, m-phenylene diamine (MPD), benzene dimethylamine, polyamide, T31.590, C20 At least one;
Application type cumulative reflecting layer preparation process is as follows:
1) the notch board surface that high molecular material is prepared into disk dress is subjected to surface polishing, increases its roughness;
2) graphene, infrared external reflection enhancing functional stuffing are soaked in the binder of liquid, and use vacuum stirring side Formula infiltrates graphene and infrared external reflection enhancing functional stuffing surface sufficiently by binder;
3) resin curing agent is added, and be sufficiently stirred, obtained infrared reflecting paint, need to examine, after the assay was approved, Stand for standby use;
4) infrared reflecting paint is prepared into the notch board of disk dress by the modes such as spraying, brushing coated on high molecular material Surface forms cumulative reflecting layer 8.
Adhesive type cumulative reflecting layer preparation process is as follows:
1) the notch board surface that high molecular material is prepared into disk dress is subjected to surface polishing, increases its roughness;
2) the gum aluminium foil purchased, tinfoil paper are removed into protecting film, exposes glue-line, glue surface is tightly attached to high molecular material and is prepared into The notch board surface of disk dress, forms cumulative reflecting layer 8.
The heat barrier foam layer is low thermally conductive by polyurethane, polyvinyl chloride, polypropylene etc. or heat-insulating material passes through foaming work The prepared porous foam layer that must have heat-blocking action of skill, with a thickness of 1-5cm;Heat can be effectively prevent to dissipate from the heating mural painting back side It loses;Heat barrier foam layer is screwed and is inlaid into outer package layer;
The conductive foil layer is to pass through the preparation of the techniques such as calendering by one or more kinds of materials such as aluminium, copper, nickel, gold, silver Made of foil;
The binding post is the stepped ramp type cylindrical conductor prepared using materials such as copper, aluminium, nickel, carbon-points, and stepped ramp type is big Cylinder is connected and fixed with conductive foil layer, is provided with wiring hole at the top of stepped ramp type small column, by conducting wire and power module and The output end of interface is connected, and diameter≤conductive foil layer width of the big cylinder of one third conductive foil layer width < stepped ramp type, Roundlet column diameter is the half of big body diameter;
Side frame refers to the surrounded fringe region of surrounding on outer package layer, that is, constitutes the edge being bent upwards of " U " Region;And its height is graphene functional coating, interior encapsulated layer, phase change energy storage function layer, cumulative reflecting layer and heat barrier foam layer 1-2.0 times of the sum of thickness;
Front frame is to be formed by side between decoration painting surface layer and outer surface outer rim in the outer surface for referring to outer package layer Battery limit (BL) domain.
Installation buckle is the buckle for being used to install interior encapsulated layer and cumulative reflecting layer for being reserved in side frame, the length of side frame Side upper layer and lower layer respectively stay 4 buckles, short side, and upper layer and lower layer respectively stay 2 buckles up and down;First layer is buckled away from outer package layer inner surface Height is graphene functional layer thickness+interior encapsulated layer thickness;Second layer buckle is phase change energy storage function away from first layer buckle distance Thickness degree+cumulative reflector thickness.
Preferably, the decoration painting surface layer uses high temperature resistant to be preferred for 200-260 DEG C of ink material printing;
Preferably, the outer package layer outer surface makes by roughness promotion processing, and roughness is Ra=1.5-2.0 μ M promotes the binding force with decoration painting surface layer 1;
Preferably, conductive glue connection is used between graphene functional coating and conductive foil layer or is press-connected;
Preferably, concave curvature range in cumulative reflecting layer is 2000R-5000R;
Preferably, the used phase-change material transition temperature range of the phase change energy storage function layer are as follows: 50-80 DEG C, phase transformation it is latent Hot 500kcal/kg-800kcal/kg;
Preferably, can not make when the curvature that cumulative reflecting layer uses can rationally reflect 99% or more infrared ray enough With heat barrier foam layer and then make ultra-thin heat accumulating type graphene heating mural painting;
Preferably, side frame height is graphene functional coating, interior encapsulated layer, phase change energy storage function layer, cumulative reflecting layer With 1.1-1.5 times of the sum of heat barrier foam thickness degree;
Preferably, graphene functional layer, temperature control system power module and interface, interior encapsulated layer, phase change energy storage function Layer, cumulative reflecting layer, insulated foam coating and outer package layer using screw thread or it is detachable snap connection mode, convenient for upgrading, dimension Repair or replace spare and accessory parts.
In conclusion helpfulness effect of the invention is there is provided a kind of modularized design, maintenance cost is low, be powered after i.e. When (< 60s) fever, power-off after can within the scope of set temperature (40 DEG C of >) held for some time (>=40min) accumulation of heat Formula graphene heats mural painting.The present invention by modularized design, integrated concealed frame, concave surface cumulative reflecting layer, interior fill accumulation of heat The big key technology of material four, solving can not accumulation of heat, the frequent electrified regulation of need, appearance present in existing well-known technique and status Frame is obvious, going wrong needs the higher insufficient, defect of integral replacing maintenance cost and drawback, effectively improves the function of product The technical level of energy, industry.Specifically working principle are as follows: set the temperature for needing to be added to, graphene functional layer exists after energization Start fever and infrared radiation under electric field action, thermal energy and infrared energy direction of transfer are two before and after graphene functional layer Side.The thermal energy for being transmitted to front side is heated in mural painting installation space by decoration painting surface layer radiation direction;It is transmitted to the thermal energy one of rear side Part absorb and quickly transmitted by more gap Heat Conduction Materials being absorbed and being stored up by phase-change material by phase change energy storage function layer It stores away;Another part is applied through behind the thermal energy arrival cumulative reflecting layer of phase change energy storage function layer by concave surface infrared external reflection The reflex of layer and the cumulative reflex of concave surface are reflected back phase change energy storage function layer and decoration painting surface layer herein, realize The purpose that back side energy zero is revealed.When being heated to preset temperature, the graphene functional layer both ends under temperature control system effect Power supply disconnects, and electric field disappears and no longer generates heat.Continue at this point, the heat being stored into phase-change material starts to play a role to unofficial biography It passs thermal energy and then continues heatable heat insulation function after realizing power-off.
Detailed description of the invention
The technical solution used in order to illustrate the embodiments of the present invention more clearly, below will be to required in embodiment description The attached drawing used is briefly described, and the accompanying drawings in the following description is only that the present invention is implemented in order to illustrate more clearly of the present invention Example or technical solution in the prior art, do not cause to constrain to the present invention.
Fig. 1 is that heat accumulating type graphene of the present invention heats mural painting layered stereoscopic schematic diagram;
Fig. 2 is that heat accumulating type graphene of the present invention heats each functional layer sectional schematic diagram of mural painting;
Fig. 3 is that heat accumulating type graphene of the present invention heats 2 diagrammatic cross-section of mural painting outer package layer.
As shown, 1 is decorations picture frame layer, 2 be outer package layer, and 3 be graphene functional layer, and 4 be that temperature, humidity, power are more Function is shown and control system, and 5 be power module and interface, and 6 be interior encapsulated layer, and 7 be phase change energy storage function layer, and 8 be that cumulative is anti- Penetrate layer, 9 be insulated foam coating, and 10 be conductive foil layer, 11 is binding post, 12 is side frame, 13 is front frame, 14 is installation card Button.
Specific embodiment
Embodiment 1
As shown in Figure 1-3, heat accumulating type graphene of the present invention heats mural painting, mainly include with lower unit: decoration painting surface layer 1, Outer package layer 2, graphene functional layer 3, temperature control system 4, power module and interface 5, interior encapsulated layer 6, phase change energy storage function Layer 7, cumulative reflecting layer 8, insulated foam coating 9, conductive foil layer 10, binding post 11, installation buckle 14.
Outer package layer 2 as shown in Figure 1,3 generates heat concave surface for inner surface, and another side is outer surface, and decoration painting surface layer 1 is printed on The outer surface of outer package layer 2, conductive foil layer 10 are laid at the marginal position of 2 inner surface of outer package layer, two long side, conductive foil layer Be fixed with binding post 11 on 10, graphene functional layer 3, interior encapsulated layer 6, phase change energy storage function layer 7, cumulative reflecting layer 8, foam every Thermosphere 9 successively stacked in multi-layers and is embedded in the concave surface of outer package layer 1 and then realizes the encapsulation of whole heating mural painting, temperature control System 4, power module and interface 5 are embedded on one of short side of outline border 2.
Outer package layer 2 as shown in Figure 2,3 is by resin and fibrous material through fiberfill cement dipping machine epoxy resin-impregnated, warp Prepreg is made in drying --- moulding material, it is then cut, be superimposed together, and laminated is acted on and manufactured layer in press machine The profile that layer laying is pressed into is laid with conductive foil layer 10 in 2 inner surface of outer package layer;Wiring is connected in conductive foil layer 10 Column 11;It is uniformly reserved with buckle respectively in the long side of side frame 12, short side, graphene functional layer 3 passes through the binder institute of slurry The glue-line of formation is connect with 2 inner surface of outer package layer and conductive foil layer;Interior encapsulated layer 6 passes through the sealing ring and outer package layer of surrounding 2 four sides closely connect sealing and fixed by snap on outer package layer 2;Phase change energy storage function layer 7 be screwed in On interior encapsulated layer 6;Then cumulative reflecting layer 8 is passed through in buckle insertion outer package layer 2;Heat barrier foam layer 9 is screwed And it is inlaid on outer package layer 2;
As shown in Fig. 2, temperature control system 4, includes temperature control modules, humidity measurement module, power meter and touch-control Display four module and corresponding external sensor, this system have intelligent control function to temperature;Have to humidity, power Real-time detection and display function.Exterior power supply or alternating current access by power module 5 and are assigned to temperature control, hygrometer, function The modules such as rate meter and display, the wherein input terminal and output end of temperature control modules self-powered 220V, 10A, wherein inputting End is connected with exterior power supply, and output end is connected by welding with the binding post 11 in conductive foil layer 10 and connects;And temperature controls mould Block, humidity measurement module and power meter module are connected by PORT COM with touch control display, and temperature sensor, humidity are passed The data of sensor are simultaneously synchronized on display screen, and the temperature value of setting can be inputted by keyboard;On the other hand have and pass through temperature Control module and then the on-off for realizing control output end circuit, when temperature is higher than set temperature, auto power off and graphite Circuit between olefinic functionality layer 3 stops heating;When temperature is lower than set temperature, automatic switching on power supply and graphene functional layer 3 Between circuit, begin to warm up;And then control of the realization to temperature;External sensor is connected with each module by shielding line.
Outer package layer 2 is combined by high molecular material and fiberfill, will through fiberfill cement dipping machine impregnating resin, Prepreg is made in drying --- moulding material, it is then cut, be superimposed together, and laminated is acted on and manufactured in press machine The profile that laying is pressed into layer by layer.
Graphene functional layer 3 is that graphene infrared heating coating or graphene infrared heating ink pass through printing, spraying, brush It the modes such as applies and is sprayed at 2 inner surface of outer package layer and the coating or film that are formed.
Temperature control system 4 includes that temperature control modules, humidity measurement module, power meter and touch control display four are big Module and corresponding external sensor.
Interior encapsulated layer 6 is the flat sheet by being pressed into outer package layer 2 using same material and technique.
In order to make up existing black alkene heated wall be drawn in power-off it is i.e. cold, can not heat accumulation, power consumption is big the defects of, the present invention selects Phase change energy storage function layer 7.7 structure of phase change energy storage function layer and the production method is as follows:
Phase change energy storage function layer 7 is made of more gap Heat Conduction Materials with the phase-change material for being packaged in its internal voids position Board-like material, finally by sealant encapsulation, additional aluminum hull, copper shell encapsulate etc. modes form functional layer.
In order to promote the unidirectional infra-red radiation ability of device, device heating efficiency is improved, reduces device to installation wall Baking, increases cumulative reflecting layer 8.Cumulative reflecting layer 8 is the notch board that high molecular material is prepared into disk dress, and in its table that is recessed Face coats one layer of infrared reflecting paint or by the adherency such as the aluminium foil of gum, tinfoil paper and its surface, and then forms infrared external reflection and apply Layer.
The preparation method method of infrared reflecting paint is as follows: by constituent mass percentage by binder, graphene, infrared Coating is made by processes such as adjustment, mixing, stirrings in reflection enhancement functional stuffing, resin curing agent.
Cumulative reflecting layer 8 is to coat infrared reflecting paint or the aluminium foil of gum, tinfoil paper etc. are adhered to macromolecule material Material prepares discoid notch board surface;
8 preparation process of application type cumulative reflecting layer are as follows:
5) the notch board surface that high molecular material is prepared into disk dress is subjected to surface polishing, increases its roughness;
6) graphene, infrared external reflection enhancing functional stuffing are soaked in the binder of liquid, and use vacuum stirring side Formula infiltrates graphene and infrared external reflection enhancing functional stuffing surface sufficiently by binder;
7) resin curing agent is added, and be sufficiently stirred, obtained infrared reflecting paint, need to examine, after the assay was approved, Stand for standby use;
8) infrared reflecting paint is prepared into the notch board of disk dress by the modes such as spraying, brushing coated on high molecular material Surface forms cumulative reflecting layer 8.
8 preparation process of adhesive type cumulative reflecting layer are as follows:
3) the notch board surface that high molecular material is prepared into disk dress is subjected to surface polishing, increases its roughness;
4) the gum aluminium foil purchased, tinfoil paper are removed into protecting film, exposes glue-line, glue surface is tightly attached to high molecular material and is prepared into The notch board surface of disk dress, forms cumulative reflecting layer 8.
Heat barrier foam layer 9 is low thermally conductive by polyurethane, polyvinyl chloride, polypropylene etc. or heat-insulating material passes through foam process institute It is prepared into the porous foam layer with heat-blocking action.
Conductive foil layer 10 is to be prepared by one or more kinds of materials such as aluminium, copper, nickel, gold, silver by techniques such as calenderings At foil.
Binding post 11 is the stepped ramp type cylindrical conductor prepared using materials such as copper, aluminium, nickel, carbon-points, stepped ramp type great circle Column is connected and fixed with conductive foil layer 10, is provided with wiring hole at the top of stepped ramp type small column, by conducting wire and power module and The output end of interface 5 is connected.
In the present embodiment specific implementation, the plane picture made of the printing of the method for printing of decoration painting surface layer 1;
Outer package layer 2 be as the glass of 3wt% and 2402 type phenolic resin compacting made of a length of 120cm, width 60cm, With a thickness of the U-shaped board material of 8mm;
Graphene functional layer 3 is that middle section's charcoal U.S. Graphene conductive ink can be by mode of printing in 2 inner surface of outer package layer Formed with a thickness of 10 μm of film;
4 temperature-controllable range of temperature control system is 25-100 DEG C, and used temperature control modules are ANTHONE900U Type, humidity measurement module is build benevolence section COS-04 type, power is calculated as uncommon precipice D52-2048 module, touch control display is UE035HV-RN40-L006 type, and realized and be connected with each other by serial ports;
Power module and interface 5 are AC-03 type cassette product word socket;
The plate with a thickness of 3mm that interior encapsulated layer 6 is pressed by using same material and technique with outer package layer 2, plate Material edge is equipped with sealing ring;
Phase change energy storage function layer 7 is to be filled in porous graphene airsetting glue material by pentaerythrite (PE) (168 DEG C of transformation temperature) In material (filling rate 80%), and the functional layer with a thickness of 4mm formed by aluminum hull encapsulation;
Cumulative reflecting layer 8 is to form 150 μm of gum adhesive aluminium foil in the notch board surface of the disk dress with a thickness of 3mm Reflecting layer;
Heat barrier foam layer 9 is the plate as made of foam polyvinyl chloride with a thickness of 2cm;
Conductive foil layer 10 is layed at the 2 inner surface distance edge position 1mm of outer package layer, width 2cm, with a thickness of 30 μ m;
Binding post 11 is the stepped ramp type cylindrical conductor prepared using copper rod, and the big cylinder of stepped ramp type and conductive foil layer 10 connect It connects and is fixed together, be provided with wiring hole at the top of stepped ramp type small column, be connected by conducting wire with the output end of power module and interface 5 It connects, the diameter of the big cylinder of stepped ramp type is 1cm, and roundlet column diameter is 0.5cm;
The height of side frame 12 is 32mm.
Embodiment 2
In the present embodiment specific implementation, the plane picture made of the method for air brushing of decoration painting surface layer 1;
Outer package layer 2 is a length of made of being suppressed as the glass of 10wt% with ethylene-chlorotrifluoro-ethylene copolymer (ECTFE) 120cm, width 60cm, the U-shaped board material with a thickness of 6mm;
Graphene functional layer 3 is for Deyang olefinic carbon Science and Technology Ltd. graphene CHR01 coating in covering by way of brushing Fill that 2 inner surface of layer formed with a thickness of 100 μm of film;
4 temperature-controllable range of temperature control system is 25-100 DEG C, and used temperature control modules are product benefit PY-SM5 Type, humidity measurement module are AR837 type, power is calculated as Risym-1 module, touch control display is XG028 type, and passes through USB port It realizes and is connected with each other;
Power module and interface 5 are 120C02 type cassette product word socket;
The plate with a thickness of 0.5mm that interior encapsulated layer 6 is pressed by using same material and technique with outer package layer 2, Plate edge is equipped with sealing ring;
Phase change energy storage function layer 7 is filled in by stearic acid-isopropyl alcohol ester (35 DEG C of transformation temperature, enthalpy of phase change 450kcal/kg) Capillary brass pipe braiding into (filling rate 98%) in more gap thermal conductive networks, and encapsulated by copper shell and formed with a thickness of 5mm Functional layer;
Cumulative reflecting layer 8 be by the E-385P polyurethane of 20wt%, the bilayer graphene of 20wt%, 30wt% Al powder, The function slurry being prepared into after the m-phenylene diamine (MPD) mixing of 10wt%, is then applied as 200 μm on the plate-like notch board surface of 5mm thickness Reflecting layer;
Heat barrier foam layer 9 is the plate as made of polypropylene expanded with a thickness of 1cm;
Conductive foil layer 10 is layed at the 2 inner surface distance edge position 3mm of outer package layer, width 1.2cm, with a thickness of 100μm;
Binding post 11 is the stepped ramp type cylindrical conductor prepared using copper rod, and the big cylinder of stepped ramp type and conductive foil layer 10 connect It connects and is fixed together, be provided with wiring hole at the top of stepped ramp type small column, be connected by conducting wire with the output end of power module and interface 5 It connects, the diameter of the big cylinder of stepped ramp type is 0.42cm, and roundlet column diameter is 0.21cm;
The height of side frame 12 is 20.8mm.
Embodiment 3
In the present embodiment specific implementation, the plane picture made of the printing of the method for printing of decoration painting surface layer 1;
Outer package layer 2 is a length of 120cm, width as made of carbon fiber and polyether-ether-ketone (PEEK) the resin compacting of 5wt% For 60cm, with a thickness of the U-shaped board material of 2mm;
Graphene functional layer 3 is that the nanometer water spraying heat radiation coating of Dongguan Zhong Kezhiheng new material Co., Ltd passes through spray Painting mode 2 inner surface of outer package layer formed with a thickness of 300 μm of film;
4 temperature-controllable range of temperature control system is 25-100 DEG C, and used temperature control modules are ANTHONE900U Type, humidity measurement module is build benevolence section COS-04 type, power is calculated as uncommon precipice D52-2048 module, touch control display is UE035HV-RN40-L006 type, and realized and be connected with each other by serial ports;
Power module and interface 5 are AC-03 type cassette product word socket;
The plate with a thickness of 2mm that interior encapsulated layer 6 is pressed by using same material and technique with outer package layer 2, plate Material edge is equipped with sealing ring;
Phase change energy storage function layer 7 be filled in by 2- amino-2-methyl -1,3- propylene glycol (AMP) (56 DEG C of transformation temperature) it is more In mesoporous metal-organic framework material (filling rate 88%), and the functional layer with a thickness of 2mm formed by aluminum hull encapsulation;
Cumulative reflecting layer 8 be by poly- perfluoro alkoxy (PFA) resin of 45wt%, 1wt% graphene quantum dot, The function slurry being prepared into after the C20 curing agent mixing of the boron nitride nano-tube, 5wt% of 50wt%, then in the plate-like of 1mm thickness Notch board surface is applied as 300 μm of reflecting layer;
Heat barrier foam layer 9 is the plate as made of foam polyvinyl chloride with a thickness of 5cm;
Conductive foil layer 10 is layed at the 2 inner surface distance edge position 2mm of outer package layer, width 1.5cm, with a thickness of 50 μm;
Binding post 11 is the stepped ramp type cylindrical conductor prepared using copper rod, and the big cylinder of stepped ramp type and conductive foil layer 10 connect It connects and is fixed together, be provided with wiring hole at the top of stepped ramp type small column, be connected by conducting wire with the output end of power module and interface 5 It connects, the diameter of the big cylinder of stepped ramp type is 1.4cm, and roundlet column diameter is 0.7cm;
The height of side frame 12 is 60mm.
Embodiment 4
In the present embodiment specific implementation, the plane picture made of the printing of the method for printing of decoration painting surface layer 1;
Outer package layer 2 is a length of made of being suppressed as the aramid fiber of 6wt% with YD-900 bisphenol A type epoxy resin 120cm, width 60cm, the U-shaped board material with a thickness of 4mm;
Graphene functional layer 3 is that middle section's charcoal U.S. Graphene conductive ink can be by mode of printing in 2 inner surface of outer package layer Formed with a thickness of 60 μm of film;
4 temperature-controllable range of temperature control system is 25-100 DEG C, and used temperature control modules are ANTHONE900U Type, humidity measurement module is build benevolence section COS-04 type, power is calculated as uncommon precipice D52-2048 module, touch control display is UE035HV-RN40-L006 type, and realized and be connected with each other by serial ports;
Power module and interface 5 are AC-03 type cassette product word socket;
The plate with a thickness of 4mm that interior encapsulated layer 6 is pressed by using same material and technique with outer package layer 2, plate Material edge is equipped with sealing ring;
Phase change energy storage function layer 7 is filled in porous graphene aerogel material by pentaerythrite (188 DEG C of transformation temperature) (filling rate 96%), and the functional layer with a thickness of 2.8mm formed by aluminum hull encapsulation;
Cumulative reflecting layer 8 is that 200 μm of gum tinfoil paper is pasted on to the notch board surface with a thickness of the disk dress of 2mm and is formed Reflecting layer;
Heat barrier foam layer 9 is the plate as made of polyurethane foam with a thickness of 2cm;
Conductive foil layer 10 is layed at the 2 inner surface distance edge position 1.2mm of outer package layer, width 1cm, with a thickness of 80 μm;
Binding post 11 is the stepped ramp type cylindrical conductor prepared using copper rod, and the big cylinder of stepped ramp type and conductive foil layer 10 connect It connects and is fixed together, be provided with wiring hole at the top of stepped ramp type small column, be connected by conducting wire with the output end of power module and interface 5 It connects, the diameter of the big cylinder of stepped ramp type is 0.5cm, and roundlet column diameter is 0.25cm;
The height of side frame 12 is 58.12mm.
Embodiment 5
In the present embodiment specific implementation, the relief painting made of the method for engraving of decoration painting surface layer 1;
Outer package layer 2 be as 8wt% carbon fiber and WH9100BLK-F type DAP resin compacting made of a length of 120cm, Width is 60cm, the U-shaped board material with a thickness of 6mm, and roughness is Ra=2.0 μm;
Graphene functional layer 3 is that middle section's charcoal U.S. Graphene conductive ink can be by mode of printing in 2 inner surface of outer package layer Formed with a thickness of 180 μm of film;
4 temperature-controllable range of temperature control system is 25-100 DEG C, and used temperature control modules are ANTHONE900U Type, humidity measurement module are TELESKY series module, power is calculated as uncommon precipice D52-2048 module, touch control display is LTN106W1-L01LCD type, and realized and be connected with each other by COM port;
Power module and interface 5 are AC-03 type cassette product word socket;
The plate with a thickness of 2.2mm that interior encapsulated layer 6 is pressed by using same material and technique with outer package layer 2, Plate edge is equipped with sealing ring;
Phase change energy storage function layer 7 is by KHF2(200 DEG C of transformation temperature) is filled in porous carbon aerogel material that (filling rate is 95%) functional layer with a thickness of 3.8mm for encapsulating, and by aluminum hull and being formed;
Cumulative reflecting layer 8 is by the graphene quantum of poly- perfluor (ethylene, propylene) (FEP) copolymer of 30wt%, 12wt% Point, the aluminum oxide of 40wt%, 3wt% polyamide curing agent mixing after the function slurry that is prepared into, it is then thick in 1mm Plate-like notch board surface is applied as 300 μm of reflecting layer;Concave curvature range is 4000R;
Heat barrier foam layer 9 is the plate as made of foam polyvinyl chloride with a thickness of 2cm;
Conductive foil layer 10 is layed at the 2 inner surface distance edge position 1mm of outer package layer, width 2cm, with a thickness of 30 μ m;
Binding post 11 is the stepped ramp type cylindrical conductor prepared using copper rod, and the big cylinder of stepped ramp type and conductive foil layer 10 connect It connects and is fixed together, be provided with wiring hole at the top of stepped ramp type small column, be connected by conducting wire with the output end of power module and interface 5 It connects, the diameter of the big cylinder of stepped ramp type is 1cm, and roundlet column diameter is 0.5cm;
The height of side frame 12 is 16.38mm.
Embodiment described above is only that preferred embodiment of the invention is described, and is not carried out to the scope of the present invention It limits, without departing from the spirit of the design of the present invention, those of ordinary skill in the art make technical solution of the present invention Various changes and improvements, should all fall into claims of the present invention determine protection scope in.
It is 15-40s, power-off that heat accumulating type graphene heated wall painter's paraphernalia of the invention, which has the heating-up time for rising to 60 DEG C from room temperature, The time for keeping 40 DEG C of temperatures above afterwards is 40-90min, conversion efficiency of thermoelectric 95.0-99.6%, heat barrier foam layer backboard temperature The features such as degree is room temperature ± 3 DEG C.
The present invention can be designed to various types of infrared heaters according to demand, as the heating picture of far infrared, scroll painting, Warm foot treasured, floor heating film, floor tile, wallpaper etc., embodiment described above is only used to illustrate the present invention, but not limited to this.Not inclined Under conditions of present inventive concept, what technical field personnel made suitably changed, adjusts and should also be included in right of the invention Within the scope of claimed.

Claims (44)

1.一种蓄热式石墨烯加热壁画,它包括装饰画面层(1)、外封装层(2)、石墨烯功能层(3)、温度控制系统(4)、电源模块及接口(5)、内封装层(6)、相变储能功能层(7)、聚能反射层(8)、泡沫隔热层(9)、导电箔层(10)、接线柱(11),其特征在于外封装层(2)发热凹面为内表面,另一面为外表面,装饰画面层(1)印制于外封装层(2)的外表面,导电箔层(10)铺设在外封装层(2)内表面两长边的边缘位置处,导电箔层(10)上固定有接线柱(11),石墨烯功能层(3)、内封装层(6)、相变储能功能层(7)、聚能反射层(8)、泡沫隔热层(9)依次层层堆叠并内嵌于外封装层(1)的凹面内进而实现整体加热壁画的封装,温度控制系统(4),电源模块及接口(5)内嵌于外框(2)的其中一个短边上。1. A regenerative graphene heating mural, comprising a decorative picture layer (1), an outer packaging layer (2), a graphene functional layer (3), a temperature control system (4), a power module and an interface (5) , an inner encapsulation layer (6), a phase-change energy storage functional layer (7), an energy-gathering reflection layer (8), a foam insulation layer (9), a conductive foil layer (10), and a terminal (11), characterized in that The heating concave surface of the outer packaging layer (2) is the inner surface, and the other side is the outer surface. The decorative picture layer (1) is printed on the outer surface of the outer packaging layer (2), and the conductive foil layer (10) is laid on the outer packaging layer (2). At the edge positions of the two long sides of the inner surface, the conductive foil layer (10) is fixed with a terminal (11), a graphene functional layer (3), an inner encapsulation layer (6), a phase change energy storage functional layer (7), The energy-gathering reflection layer (8) and the foam insulation layer (9) are stacked layer by layer in sequence and embedded in the concave surface of the outer packaging layer (1) to realize the packaging of the overall heating mural, the temperature control system (4), the power module and The interface (5) is embedded on one of the short sides of the outer frame (2). 2.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述外封装层(2)是由耐热200-400℃、耐电压冲击10-500KV高分子材料与纤维填料制成的U型型材,其中纤维填料含量为3-10wt%。2. A regenerative graphene heating mural as claimed in claim 1, characterized in that the outer encapsulation layer (2) is made of polymer materials and fibers with heat resistance of 200-400°C and voltage shock resistance of 10-500KV The U-shaped profile made of filler, wherein the content of fiber filler is 3-10wt%. 3.如权利要求2所述的一种蓄热式石墨烯加热壁画,其特征在于所述高分子材料为耐水、耐酸碱、耐蚀特性的酚醛树脂、聚芳醚酮、氟树脂、环氧树脂、DAP树脂、聚亚胺树脂或三聚氰胺树脂中一种或两种以上高分子材料;纤维填料为玻纤、碳纤维或芳纶纤维一种或两种以上的纤维。3. a kind of regenerative graphene heating mural as claimed in claim 2, it is characterized in that described macromolecular material is the phenolic resin, polyaryl ether ketone, fluororesin, the phenolic resin of water resistance, acid and alkali resistance, corrosion resistance characteristic One or two or more polymer materials of oxygen resin, DAP resin, polyimide resin or melamine resin; the fiber filler is one or two or more fibers of glass fiber, carbon fiber or aramid fiber. 4.如权利要求3所述的一种蓄热式石墨烯加热壁画,其特征在于所述聚芳醚酮为聚醚醚酮、聚醚酮、聚醚酮酮、聚醚醚酮酮或聚醚酮醚酮酮。4. a kind of regenerative graphene heating mural as claimed in claim 3, is characterized in that described polyaryl ether ketone is polyether ether ketone, polyether ketone, polyether ketone ketone, polyether ether ketone ketone or polyether ether ketone ether ketone ether ketone ketone. 5.如权利要求3所述的一种蓄热式石墨烯加热壁画,其特征在于所述酚醛树脂为210型、210-10型、284型、2402型酚醛树脂,松香改性酚醛树脂或松香对叔丁基苯酚树脂。5. a kind of regenerative graphene heating mural as claimed in claim 3 is characterized in that described phenolic resin is 210 type, 210-10 type, 284 type, 2402 type phenolic resin, rosin modified phenolic resin or rosin p-tert-butylphenol resin. 6.如权利要求3所述的一种蓄热式石墨烯加热壁画,其特征在于所述氟树脂为聚四氟乙烯、聚三氟氯乙烯、聚偏氟乙烯、乙烯-四氟乙烯共聚物、乙烯-三氟氯乙烯共聚物或聚氟乙烯。6. a kind of regenerative graphene heating mural as claimed in claim 3 is characterized in that described fluororesin is polytetrafluoroethylene, polychlorotrifluoroethylene, polyvinylidene fluoride, ethylene-tetrafluoroethylene copolymer , ethylene-chlorotrifluoroethylene copolymer or polyvinyl fluoride. 7.如权利要求3所述的一种蓄热式石墨烯加热壁画,其特征在于所述环氧树脂为E-54双酚A型环氧树脂、E-52D双酚A型环氧树脂、WSR618双酚A型环氧树脂、840S双酚A型环氧树脂、DER331双酚A型环氧树脂、EPICLON系列双酚A型环氧树脂、ADEKA系列EP-5100/EP-5100-(70X/EP-5100-75X等双酚A型环氧树脂、DX-507双酚A型环氧树脂、4055双酚A型环氧树脂或YD-900双酚A型环氧树脂。7. a kind of regenerative graphene heating mural as claimed in claim 3, is characterized in that described epoxy resin is E-54 bisphenol A type epoxy resin, E-52D bisphenol A type epoxy resin, WSR618 bisphenol A epoxy resin, 840S bisphenol A epoxy resin, DER331 bisphenol A epoxy resin, EPICLON series bisphenol A epoxy resin, ADEKA series EP-5100/EP-5100-(70X/ Bisphenol A epoxy resin such as EP-5100-75X, DX-507 bisphenol A epoxy resin, 4055 bisphenol A epoxy resin or YD-900 bisphenol A epoxy resin. 8.如权利要求3所述的一种蓄热式石墨烯加热壁画,其特征在于所述DAP树脂为WH9100BLK-F型DAP树脂、聚特系列DAP树脂或DAP-A型DAP树脂。8. a kind of regenerative graphene heating mural as claimed in claim 3, is characterized in that described DAP resin is WH9100BLK-F type DAP resin, Jute series DAP resin or DAP-A type DAP resin. 9.所如权利要求3所述的一种蓄热式石墨烯加热壁画,其特征在于所述聚亚胺树脂为均酐型聚酰亚胺、醚酐型聚酰亚胺、氟酐型聚酰亚胺或酮酐型聚酰亚胺。9. a kind of regenerative graphene heating mural as claimed in claim 3, is characterized in that described polyimide resin is homoanhydride type polyimide, ether anhydride type polyimide, fluorine anhydride type polyimide Imide or ketone anhydride type polyimide. 10.所如权利要求3所述的一种蓄热式石墨烯加热壁画,其特征在于所述三聚氰胺树脂为Cymel的300、301、303、323、327型三聚氰胺树脂,甲醚化三聚氰胺树脂如CYMEL 385、CYMEL 325或CYMEL 327型。10. a kind of regenerative graphene heating mural as claimed in claim 3, it is characterized in that described melamine resin is Cymel's 300, 301, 303, 323, 327 type melamine resin, methyl etherified melamine resin such as CYMEL 385, CYMEL 325 or CYMEL 327. 11.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述外封装层(2)的厚度为2-8mm;在外封装层(2)内表面距离边缘1-3mm位置处铺设宽度为1-2cm、厚度为30-100μm的导电箔层(10);导电箔层(10)上焊接或铆接有接线柱11;在其长边、短边分别均匀预留有安装卡扣(14)或螺纹孔,用于将石墨烯功能层(3)、内封装层(6)、相变储能功能层(7)、聚能反射层(8)、泡沫隔热层(9)内嵌固定到外封装层(2)。11. A regenerative graphene heating mural as claimed in claim 1, characterized in that the thickness of the outer packaging layer (2) is 2-8 mm; the distance between the inner surface of the outer packaging layer (2) and the edge is 1-3 mm A conductive foil layer (10) with a width of 1-2 cm and a thickness of 30-100 μm is laid at the location; the conductive foil layer (10) is welded or riveted with a terminal 11; the long and short sides of the conductive foil layer (10) are evenly reserved for installation The snap (14) or threaded hole is used for connecting the graphene functional layer (3), the inner encapsulation layer (6), the phase-change energy storage functional layer (7), the energy-gathering reflection layer (8), the foam insulation layer ( 9) Inline fixed to the outer encapsulation layer (2). 12.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述石墨烯功能层(3)为石墨烯红外发热涂料或石墨烯红外发热油墨通过印刷、喷涂、刷涂方式喷涂于外封装层(2)内表面而形成的涂层或薄膜,厚度为10-300μm。12. A regenerative graphene heating mural as claimed in claim 1, characterized in that the graphene functional layer (3) is a graphene infrared heating paint or a graphene infrared heating ink by printing, spraying, brushing The coating or film formed by spraying on the inner surface of the outer encapsulation layer (2) has a thickness of 10-300 μm. 13.如权利要求12所述的一种蓄热式石墨烯加热壁画,其特征在于所述石墨烯红外发热涂料或石墨烯红外发热油墨为东莞中科智恒新材料有限公司的纳米水性喷涂散热涂料、德阳烯碳科技有限公司石墨烯CHR01涂料、纽平信息科技(上海)有限公司的石墨烯红外辐射涂料、中科炭美@石墨烯导电油墨、深圳市千代电子材料有限公司CCI-305T石墨烯远红外电热碳浆、CCI-305D石墨烯远红外电热碳浆或北京旭碳新材料科技有限公司石墨烯导电油墨。13. a kind of regenerative graphene heating mural as claimed in claim 12, it is characterized in that described graphene infrared heating paint or graphene infrared heating ink is the nanometer water-based spraying heat dissipation of Dongguan Zhongke Zhiheng New Materials Co., Ltd. Coatings, Graphene CHR01 Coatings from Deyang Carbon Technology Co., Ltd., Graphene Infrared Radiation Coatings from Newpin Information Technology (Shanghai) Co., Ltd., Zhongke Tanmei @ Graphene Conductive Ink, Shenzhen Chiyo Electronic Materials Co., Ltd. CCI-305T Graphite Graphene far-infrared electrothermal carbon paste, CCI-305D graphene far-infrared electrothermal carbon paste or graphene conductive ink from Beijing Asahi Carbon New Material Technology Co., Ltd. 14.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述温度控制系统(4)包含有温度控制模块、湿度测试模块、功率计和触控显示器四大模块及对应外置式传感器,温度控范围为25-100℃。14. A regenerative graphene heating mural as claimed in claim 1, characterized in that the temperature control system (4) comprises four modules of a temperature control module, a humidity test module, a power meter and a touch display and the Corresponding to the external sensor, the temperature control range is 25-100 ℃. 15.如权利要求14所述的一种蓄热式石墨烯加热壁画,其特征在于从电源模块及接口(5)接入外来电源分配到温度控制模块、湿度计、功率计和显示器模块,其中温度控制模块自带电源220V、10A的输入端和输出端,其中输入端与外来电源相连接,输出端与导电箔层(10)上的接线端通过弹簧触点相连接;且温度控制模块、湿度测试模块和功率计模块通过串口、并口、USB、COM端口的通讯端口与触控显示器相连,并将温度传感器、湿度传感器的数据并同步到显示屏上,并可通过键盘输入设定的温度值,外置式传感器与各模块通过屏蔽线相连。15. A regenerative graphene heating mural as claimed in claim 14, characterized in that the external power is accessed from the power module and the interface (5) and distributed to the temperature control module, the hygrometer, the power meter and the display module, wherein The temperature control module has its own input end and output end of 220V and 10A power supply, wherein the input end is connected with the external power supply, and the output end is connected with the terminal on the conductive foil layer (10) through spring contacts; and the temperature control module, The humidity test module and the power meter module are connected to the touch display through the communication ports of the serial port, parallel port, USB and COM port, and the data of the temperature sensor and humidity sensor are synchronized to the display screen, and the set temperature can be input through the keyboard. value, the external sensor is connected with each module through shielded wire. 16.如权利要求14所述的一种蓄热式石墨烯加热壁画,其特征在于所述温度控制模块为ANTHONE900U型、民熔SM5-LCD型、品益PY-SM5型或SiEvalTC-05B型。16. A kind of regenerative graphene heating mural as claimed in claim 14, it is characterized in that described temperature control module is ANTHONE900U type, Minmelt SM5-LCD type, Pinyi PY-SM5 type or SiEvalTC-05B type. 17.如权利要求14所述的一种蓄热式石墨烯加热壁画,其特征在于所述湿度测试模块为希玛AR827、AR837、AR847+型、建大仁科COS-04型或TELESKY系列模块。17. A kind of regenerative graphene heating mural as claimed in claim 14, it is characterized in that described humidity test module is Sima AR827, AR837, AR847+ type, Jianda PeopleSoft COS-04 type or TELESKY series module. 18.如权利要求14所述的一种蓄热式石墨烯加热壁画,其特征在于所述功率计为希崖D52-2048模块、Risym-1模块或YB5140DM模块。18. A regenerative graphene heating mural as claimed in claim 14, characterized in that the power meter is a Xiya D52-2048 module, a Risym-1 module or a YB5140DM module. 19.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述触控显示器为UE035HV-RN40-L006型、UE035HV-RN50-L010型、UE035HV-IH21-L009型、UE040WV-RH45-L026型、XG028型、XG121型或LTN106W1-L01 LCD型。19. a kind of regenerative graphene heating mural as claimed in claim 1, it is characterized in that described touch display is UE035HV-RN40-L006 type, UE035HV-RN50-L010 type, UE035HV-IH21-L009 type, UE040WV -Model RH45-L026, Model XG028, Model XG121 or Model LTN106W1-L01 LCD. 20.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述电源模块及接口(5)为为AC-01、AC-02或AC-03型卡式品字插座,或HDR的120C01或120C02型卡式品字插座。20. A regenerative graphene heating mural as claimed in claim 1, characterized in that the power module and the interface (5) are AC-01, AC-02 or AC-03 type card-type character sockets , or HDR's 120C01 or 120C02 card-type sockets. 21.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述内封装层(6)是与外封装层(2)采用同样材质和工艺而压制成的平面板材,厚度为0.5-3mm,板材四周边缘处安装有密封圈,内封装层(6)与外封装层(2)通过卡扣固定到一起。21. A regenerative graphene heating mural as claimed in claim 1, characterized in that the inner encapsulation layer (6) is a flat plate made of the same material and process as the outer encapsulation layer (2), The thickness is 0.5-3mm, a sealing ring is installed around the edges of the plate, and the inner encapsulation layer (6) and the outer encapsulation layer (2) are fixed together by a buckle. 22.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述相变储能功能层(7)是由多空隙导热材料和封装于其内部空隙位置的相变材料组成的板状材料,相变材料的填充率为80-98%,功能层(7)厚度为2-5mm,相变储能功能层(7)固定于内封装层(6)上。22. A regenerative graphene heating mural as claimed in claim 1, characterized in that the phase-change energy storage functional layer (7) is composed of a multi-void thermally conductive material and a phase-change material encapsulated in its internal void position The formed plate-shaped material, the filling rate of the phase change material is 80-98%, the thickness of the functional layer (7) is 2-5mm, and the phase-change energy storage functional layer (7) is fixed on the inner encapsulation layer (6). 23.如权利要求22所述的一种蓄热式石墨烯加热壁画,其特征在于所述相变材料至少包含一种液态相变材料,在标准大气压下,相变材料的相变点为35-200℃、相变潜热450kcal/kg——900 kcal/kg。23. A regenerative graphene heating mural as claimed in claim 22, wherein the phase change material comprises at least a liquid phase change material, and under standard atmospheric pressure, the phase change point of the phase change material is 35 -200℃, latent heat of phase transition 450kcal/kg—900 kcal/kg. 24.如权利要求22所述的一种蓄热式石墨烯加热壁画,其特征在于所述相变材料为无机相变材料、有机相变材料或其复合相变材料。24. A regenerative graphene heating mural as claimed in claim 22, wherein the phase change material is an inorganic phase change material, an organic phase change material or a composite phase change material thereof. 25.如权利要求24所述的一种蓄热式石墨烯加热壁画,其特征在于所述无机类相变材料是结晶水合盐类、熔融盐类、金属或合金类。25. A regenerative graphene heating mural as claimed in claim 24, wherein the inorganic phase change material is a crystalline hydrated salt, a molten salt, a metal or an alloy. 26.如权利要求24所述的一种蓄热式石墨烯加热壁画,其特征在于所述有机类相变材料是石蜡、脂肪酸类、多元醇类、醋酸和其他有机物及上述材料复合而成的复合相变材料。26. a kind of regenerative graphene heating mural as claimed in claim 24, it is characterized in that described organic phase change material is paraffin, fatty acid, polyhydric alcohols, acetic acid and other organic matter and above-mentioned material compound and form Composite phase change material. 27.如权利要求22所述的一种蓄热式石墨烯加热壁画,其特征在于所述多空隙导热材料为导热毛细铜管或毛细铝管编织而成多空隙导热网、多孔金属-有机骨架材料、多孔碳气凝胶材料或多孔石墨烯气凝胶材料。27. a kind of regenerative graphene heating mural as claimed in claim 22, it is characterized in that described multi-void heat-conducting material is that heat-conducting capillary copper tube or capillary aluminum tube is woven into multi-void heat-conducting net, porous metal-organic framework material, porous carbon aerogel material or porous graphene aerogel material. 28.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述聚能反射层(8)是将红外线反射涂料涂覆在高分子材料制备成盘状的凹板表面,凹板厚度为1-5mm;或将背胶的铝箔或锡箔粘附与其表面,涂层或箔层厚度为150-300μm;聚能反射层(8)的凹面与内封装层(6)所形成的空间内填充着相变储能功能层(7);聚能反射层(8)嵌入外封装层(2)中。28. A regenerative graphene heating mural as claimed in claim 1, characterized in that the energy-gathering reflective layer (8) is a concave surface prepared by coating an infrared reflective paint on a polymer material into a disc shape , the thickness of the concave plate is 1-5mm; or the adhesive-backed aluminum foil or tin foil is adhered to its surface, and the thickness of the coating or foil layer is 150-300μm; The formed space is filled with a phase-change energy storage functional layer (7); the energy-gathering reflection layer (8) is embedded in the outer packaging layer (2). 29.如权利要求28所述的一种蓄热式石墨烯加热壁画,其特征在于所述聚能反射层(8)使用的红外线反射涂料是由石墨烯、粘结剂、红外辐射增强功能填料和固化剂组成,其组分质量百分比如下:29. A regenerative graphene heating mural as claimed in claim 28, characterized in that the infrared reflective paint used in the energy-gathering reflective layer (8) is made of graphene, a binder, and an infrared radiation-enhancing functional filler and curing agent, the mass percentages of its components are as follows: 粘结剂 20-45%Binder 20-45% 石墨烯 1-20%Graphene 1-20% 红外反射增强功能填料 30-50%Infrared reflection enhancing functional filler 30-50% 树脂固化剂 3-10%。Resin curing agent 3-10%. 30.如权利要求29所述的一种蓄热式石墨烯加热壁画,其特征在于所述粘结剂为液态的环氧树脂、聚氨酯、氟烯烃树脂中一种或一种以上。30. A regenerative graphene heating mural as claimed in claim 29, wherein the binder is one or more of liquid epoxy resin, polyurethane and fluoroolefin resin. 31.如权利要求30所述的一种蓄热式石墨烯加热壁画,其特征在于环氧树脂为E44、E31或E51;聚氨酯为E-385P、85A或EC8180;氟烯烃树脂为聚四氟乙烯、全氟(乙烯丙烯)共聚物、聚全氟烷氧基树脂、乙烯一四氟乙烯共聚物、聚偏氟乙烯或聚氟乙烯。31. A kind of regenerative graphene heating mural as claimed in claim 30, characterized in that epoxy resin is E44, E31 or E51; polyurethane is E-385P, 85A or EC8180; fluoroolefin resin is polytetrafluoroethylene , perfluoro (ethylene propylene) copolymer, polyperfluoroalkoxy resin, ethylene-tetrafluoroethylene copolymer, polyvinylidene fluoride or polyvinyl fluoride. 32.如权利要求29所述的一种蓄热式石墨烯加热壁画,其特征在于所述石墨烯为单层石墨烯、双层石墨烯、少层石墨烯、多层石墨烯、氧化石墨烯微片、石墨烯量子点、石墨烯纳米带、经过化学或物理法在石墨烯中引入原子或官能团后所形成的功能化石墨烯中的至少一种。32. a kind of regenerative graphene heating mural as claimed in claim 29, it is characterized in that described graphene is single-layer graphene, double-layer graphene, few-layer graphene, multi-layer graphene, graphene oxide At least one of microplates, graphene quantum dots, graphene nanoribbons, and functionalized graphene formed by chemically or physically introducing atoms or functional groups into graphene. 33.如权利要求29所述的一种蓄热式石墨烯加热壁画,其特征在于所述红外反射增强功能填料为Al粉、Cu粉、Fe粉、zn粉、ITOIn ( Sn) 2O3、二氧化钛、氧化锆、碳化硅、氮化硼纳米管、三氧化二铝、白炭黑等中的一种或一种以上。33. a kind of regenerative graphene heating mural as claimed in claim 29, it is characterized in that described infrared reflection enhancement function filler is Al powder, Cu powder, Fe powder, Zn powder, ITOIn (Sn) 2 O 3 , One or more of titanium dioxide, zirconium oxide, silicon carbide, boron nitride nanotubes, aluminum oxide, silica, etc. 34.如权利要求29所述的一种蓄热式石墨烯加热壁画,其特征在于所述树脂固化剂为乙二胺、间苯二胺、苯二甲胺、聚酰胺、T31590、C20中的一种中的至少一种。34. a kind of regenerative graphene heating mural as claimed in claim 29, it is characterized in that described resin curing agent is ethylenediamine, m-phenylenediamine, xylylenediamine, polyamide, T31590, in C20 at least one of a kind. 35.如权利要求29所述的一种蓄热式石墨烯加热壁画,其特征在于所述涂覆型聚能反射层(8)的制备如下:35. A regenerative graphene heating mural as claimed in claim 29, characterized in that the coating type energy-gathering reflection layer (8) is prepared as follows: 1)将高分子材料制备成盘装的凹板表面进行表面打磨,增加其粗糙度;1) Prepare the polymer material into a concave plate surface for surface grinding to increase its roughness; 2)将石墨烯、红外反射增强功能填料浸泡于液体的粘结剂中,并采用真空搅拌方式使石墨烯和红外反射增强功能填料表面充分被粘结剂浸润;2) Immerse the graphene and the infrared reflection enhancing functional filler in the liquid binder, and use vacuum stirring to make the surface of the graphene and the infrared reflection enhancing functional filler fully infiltrated by the binder; 3)将树脂固化剂加入,并充分搅拌,获得红外线反射涂料,需要检验,检验合格后,静置备用;3) Add resin curing agent and stir well to obtain infrared reflective paint, which needs to be inspected. After passing the inspection, let it stand for use; 4)将红外线反射涂料通过喷涂、刷涂等方式涂敷于高分子材料制备成盘装的凹板表面,形成聚能反射层(8)。4) Coating the infrared reflective paint on the surface of the concave plate prepared from the polymer material by means of spraying, brushing, etc. to form an energy-gathering reflective layer (8). 36.如权利要求28所述的一种蓄热式石墨烯加热壁画,其特征在于所述粘贴型聚能反射层(8)制备如下:36. A regenerative graphene heating mural as claimed in claim 28, characterized in that the paste-type energy-gathering reflection layer (8) is prepared as follows: 1)将高分子材料制备成盘装的凹板表面进行表面打磨,增加其粗糙度;1) Prepare the polymer material into a concave plate surface for surface grinding to increase its roughness; 2)将购置的背胶铝箔或锡箔除去防护膜,露出胶层,胶面紧贴在高分子材料制备成盘装的凹板表面,形成聚能反射层(8)。2) Remove the protective film from the purchased self-adhesive aluminum foil or tin foil to expose the adhesive layer, and the adhesive surface is closely attached to the surface of the concave plate prepared from the polymer material to form an energy-gathering reflection layer (8). 37.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述隔热泡沫层(9)是由聚氨酯、聚氯乙烯、聚丙烯低导热或绝热材料通过发泡工艺所制备得具有隔热作用的多孔泡沫层,厚度为1-5cm;隔热泡沫层(9)固定并镶嵌入外封装层(2)中。37. A regenerative graphene heating mural as claimed in claim 1, characterized in that the insulating foam layer (9) is made of polyurethane, polyvinyl chloride, polypropylene, low thermal conductivity or heat insulating material through a foaming process The prepared porous foam layer with thermal insulation has a thickness of 1-5 cm; the thermal insulation foam layer (9) is fixed and embedded in the outer packaging layer (2). 38.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述导电箔层10是由铝、铜、镍、金、银一种或一种以上材料制备而成的箔材;。38. a kind of regenerative graphene heating mural as claimed in claim 1 is characterized in that described conductive foil layer 10 is prepared from one or more materials of aluminum, copper, nickel, gold, silver foil; 39.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于所述接线柱(11)是使用铜、铝、镍、碳棒制备的台阶型圆柱状导体,其台阶型大圆柱与导电箔层(10)连接固定在一起,台阶型小圆柱顶部开有接线孔,通过导线与电源模块及接口(5)的输出端相连接,且三分之一导电箔层(10)宽度<台阶型大圆柱的直径≤导电箔层(10)宽度,小圆柱直径为大圆柱直径的二分之一。39. A regenerative graphene heating mural as claimed in claim 1, characterized in that the connecting post (11) is a stepped cylindrical conductor prepared by using copper, aluminum, nickel, and carbon rods. The large cylinder and the conductive foil layer (10) are connected and fixed together, and the top of the stepped small cylinder is provided with a wiring hole, which is connected to the power module and the output end of the interface (5) through wires, and one-third of the conductive foil layer (10 ) width < the diameter of the stepped large cylinder ≤ the width of the conductive foil layer (10), and the diameter of the small cylinder is half of the diameter of the large cylinder. 40.如权利要求1所述的一种蓄热式石墨烯加热壁画,其特征在于侧边框12是指外封装层(2)上四周所围起来的边缘区域,且其高度为石墨烯功能涂层(3)、内封装层(6)、相变储能功能层(7)、聚能反射层(8)和隔热泡沫层(9)厚度之和的1-2.0倍。40. A regenerative graphene heating mural as claimed in claim 1, characterized in that the side frame 12 refers to the edge area surrounded by the outer encapsulation layer (2), and its height is the graphene functional coating. The thickness of the layer (3), the inner encapsulation layer (6), the phase-change energy storage functional layer (7), the energy gathering reflection layer (8) and the thickness of the heat insulating foam layer (9) is 1-2.0 times. 41.如权利要求2所述的一种蓄热式石墨烯加热壁画,其特征在于所述外封装层(2)外表面的粗糙度为Ra =1.5-2.0μm。41. A regenerative graphene heating mural according to claim 2, characterized in that the roughness of the outer surface of the outer encapsulation layer (2) is Ra=1.5-2.0 μm. 42.如权利要求28所述的一种蓄热式石墨烯加热壁画,其特征在于优选地,聚能反射层(8)凹面曲率范围为2000R-5000R。42. The regenerative graphene heating mural according to claim 28, characterized in that preferably, the concave curvature of the energy-gathering reflective layer (8) ranges from 2000R to 5000R. 43.如权利要求23所述的一种蓄热式石墨烯加热壁画,其特征在于优选地,所述相变储能功能层(7)所使用相变材料相变温度范围为:50-80℃、相变潜热500kcal/kg-800 kcal/kg。43. A regenerative graphene heating mural as claimed in claim 23, characterized in that preferably, the phase change temperature range of the phase change material used in the phase change energy storage functional layer (7) is: 50-80 ℃, latent heat of phase transition 500kcal/kg-800 kcal/kg. 44.如权利要求((4))0所述的一种蓄热式石墨烯加热壁画,其特征在于侧边框(12)高度为石墨烯功能涂层(3)、内封装层(6)、相变储能功能层(7)、聚能反射层(8)和隔热泡沫层(9)厚度之和的1.1-1.5倍。44. A regenerative graphene heating mural as claimed in claim (4) 0, characterized in that the height of the side frame (12) is the graphene functional coating (3), the inner encapsulation layer (6), 1.1-1.5 times of the sum of the thicknesses of the phase-change energy storage functional layer (7), the energy-gathering reflection layer (8) and the thermal insulation foam layer (9).
CN201811615953.3A 2018-12-27 2018-12-27 Heat accumulating type graphene heats mural painting Pending CN109572302A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811615953.3A CN109572302A (en) 2018-12-27 2018-12-27 Heat accumulating type graphene heats mural painting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811615953.3A CN109572302A (en) 2018-12-27 2018-12-27 Heat accumulating type graphene heats mural painting

Publications (1)

Publication Number Publication Date
CN109572302A true CN109572302A (en) 2019-04-05

Family

ID=65932141

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201811615953.3A Pending CN109572302A (en) 2018-12-27 2018-12-27 Heat accumulating type graphene heats mural painting

Country Status (1)

Country Link
CN (1) CN109572302A (en)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110016834A (en) * 2019-05-10 2019-07-16 东北林业大学 A kind of preparation method of self-heating type heat storage insulation paper
CN110072302A (en) * 2019-04-26 2019-07-30 江苏骏源新材料有限公司 Far infrared carbon fiber heating board and preparation method thereof
CN110452667A (en) * 2019-08-27 2019-11-15 国科瑞华(天津)材料科技有限公司 Graphene, which enhances phase transformation material preparation method and graphene, enhances phase-change material
CN110712409A (en) * 2019-09-23 2020-01-21 江苏澳盛复合材料科技有限公司 Light high-temperature-resistant heat-insulating carbon fiber composite material
CN110925859A (en) * 2019-12-12 2020-03-27 烯旺新材料科技股份有限公司 Graphite alkene heat accumulation heating system
CN111473400A (en) * 2020-04-15 2020-07-31 安徽宇航派蒙健康科技股份有限公司 Preparation method of graphene electrothermal picture
CN112244840A (en) * 2019-07-02 2021-01-22 复旦大学附属中山医院 Graphite carbon disk electrode and preparation method and use method thereof
CN113427942A (en) * 2021-05-17 2021-09-24 山西百煜润泽科技有限公司 Graphite alkene far infrared anion software heating is drawn
CN114622658A (en) * 2020-12-11 2022-06-14 新疆天业(集团)有限公司 Phase change energy storage PVC wear-resisting intelligent heat-insulation board

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN205818781U (en) * 2016-04-27 2016-12-21 深圳烯旺新材料科技股份有限公司 A kind of infrared electric heating is drawn
CN106760375A (en) * 2017-03-27 2017-05-31 吉林市吉辉节能电热科技有限公司 A kind of regenerative electrochemical underground heat construction system
CN206420028U (en) * 2017-01-05 2017-08-18 肖议 A kind of electric heating porcelain plate based on graphene technology is drawn
CN206890636U (en) * 2017-04-27 2018-01-16 乔鸣奇 One kind heating mural painting
CN210617720U (en) * 2018-12-27 2020-05-26 中国科学院山西煤炭化学研究所 A regenerative graphene heating mural

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN205818781U (en) * 2016-04-27 2016-12-21 深圳烯旺新材料科技股份有限公司 A kind of infrared electric heating is drawn
CN206420028U (en) * 2017-01-05 2017-08-18 肖议 A kind of electric heating porcelain plate based on graphene technology is drawn
CN106760375A (en) * 2017-03-27 2017-05-31 吉林市吉辉节能电热科技有限公司 A kind of regenerative electrochemical underground heat construction system
CN206890636U (en) * 2017-04-27 2018-01-16 乔鸣奇 One kind heating mural painting
CN210617720U (en) * 2018-12-27 2020-05-26 中国科学院山西煤炭化学研究所 A regenerative graphene heating mural

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110072302A (en) * 2019-04-26 2019-07-30 江苏骏源新材料有限公司 Far infrared carbon fiber heating board and preparation method thereof
CN110016834A (en) * 2019-05-10 2019-07-16 东北林业大学 A kind of preparation method of self-heating type heat storage insulation paper
CN112244840A (en) * 2019-07-02 2021-01-22 复旦大学附属中山医院 Graphite carbon disk electrode and preparation method and use method thereof
CN112244840B (en) * 2019-07-02 2023-08-04 复旦大学附属中山医院 Graphite carbon disk electrode and preparation method and application method thereof
CN110452667A (en) * 2019-08-27 2019-11-15 国科瑞华(天津)材料科技有限公司 Graphene, which enhances phase transformation material preparation method and graphene, enhances phase-change material
CN110712409A (en) * 2019-09-23 2020-01-21 江苏澳盛复合材料科技有限公司 Light high-temperature-resistant heat-insulating carbon fiber composite material
CN110925859A (en) * 2019-12-12 2020-03-27 烯旺新材料科技股份有限公司 Graphite alkene heat accumulation heating system
CN111473400A (en) * 2020-04-15 2020-07-31 安徽宇航派蒙健康科技股份有限公司 Preparation method of graphene electrothermal picture
CN114622658A (en) * 2020-12-11 2022-06-14 新疆天业(集团)有限公司 Phase change energy storage PVC wear-resisting intelligent heat-insulation board
CN113427942A (en) * 2021-05-17 2021-09-24 山西百煜润泽科技有限公司 Graphite alkene far infrared anion software heating is drawn

Similar Documents

Publication Publication Date Title
CN206459251U (en) A kind of integrated wall is warmed up
CN107097478A (en) A kind of Ceramic Tiles with heating function and preparation method thereof
CN208079425U (en) A kind of decorative panel with Heated by Far-Infrared Radiation function
CN108289347A (en) Electric radiant Heating Film, preparation method and applications
CN103322611B (en) Carbon crystal heating wall heating product and production process thereof
CN110512827A (en) Heating floor system
CN205037409U (en) Aramid fiber honeycomb laminate flooring
CN217000579U (en) Heating decorative wall panel
CN215716849U (en) Energy-saving type temperature-adjustable floor heating floor
CN210617720U (en) A regenerative graphene heating mural
CN110500642A (en) Aluminium base grapheme material heating plate and preparation method thereof
CN207035290U (en) Heating floor
RU130374U1 (en) ELECTRIC HEATER
CN202117274U (en) Novel high-polymer electric floor heating module device
CN109579118A (en) Graphene intelligent warming mural painting
CN201663712U (en) Carbon crystal heating plate
CN210179742U (en) Graphite alkene intelligence heating mural painting
CN216905334U (en) Graphene electric blanket
CN212511361U (en) Graphite alkene electric heat is drawn
CN205842832U (en) The heating ceramic tile that a kind of frivolous high intensity can be conducted heat rapidly
JP6436332B2 (en) Water heater and floor heating system
CN212473451U (en) A heating and constant temperature floor for rail transit
CN203478421U (en) Energy-saving electric heating floor
CN106364013A (en) Heat conduction and heat insulating material and preparation method and application thereof
CN207345198U (en) A kind of solar energy layer compress

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20190405