CN104362217B - Photovoltaic panel production process and production line - Google Patents

Photovoltaic panel production process and production line Download PDF

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Publication number
CN104362217B
CN104362217B CN201410584097.5A CN201410584097A CN104362217B CN 104362217 B CN104362217 B CN 104362217B CN 201410584097 A CN201410584097 A CN 201410584097A CN 104362217 B CN104362217 B CN 104362217B
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photovoltaic panel
roller
layer
metal level
insulating barrier
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CN104362217A (en
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徐飙
徐凯
骆建璋
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Shenzhen Radiant Architectural Technology Co., Ltd.
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SHENZHEN RADIANT INDUSTRIAL Co Ltd
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01LSEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
    • H01L31/00Semiconductor devices sensitive to infrared radiation, light, electromagnetic radiation of shorter wavelength or corpuscular radiation and specially adapted either for the conversion of the energy of such radiation into electrical energy or for the control of electrical energy by such radiation; Processes or apparatus specially adapted for the manufacture or treatment thereof or of parts thereof; Details thereof
    • H01L31/18Processes or apparatus specially adapted for the manufacture or treatment of these devices or of parts thereof

Abstract

The invention discloses a photovoltaic panel production process. The production process sequentially includes the steps of a, providing a metal layer, an insulating layer and a flexible photocell layer; b, sequentially placing the flexible photocell layer, the insulating layer and the metal layer from top to bottom and laminating to form a laminated photovoltaic panel; b1, coating a PU layer on the surface of the laminated photovoltaic panel; b2, coating a polymer layer on the surface of the PU layer; d, coating a photocatalyst layer on the surface of the polymer layer; c, heating and curing the laminated photovoltaic panel to form the photovoltaic panel. A production line for the photovoltaic panel production process comprises a metal layer roller, an insulating layer roller and a flexible photocell layer roller are disposed on the left of the metal layer roller, a pressing roller is disposed above the metal layer roller, a heating and curing chamber and a rolling roller are disposed on the right of the metal layer roller. The production process and the production line are used for producing a photovoltaic panel which is flexible in mounting, high in flexibility and bending performance, capable of being rolled for storage and lightweight.

Description

A kind of photovoltaic panel production technology and production line
Technical field
The present invention relates to application of solar, particularly relate to a kind of photovoltaic panel production technology and production Line.
Background technology
Solar photovoltaic generation system is the photovoltaic effect utilizing solar cell semi-conducting material, by sunlight Radiation can be converted directly into a kind of new power generating system of electric energy, in order to fully absorb solar energy, and solar energy It is the most local that photovoltaic panel must be exposed to daylighting, such as roof.
Current all of photovoltaic panel or solar components are all using glass and aluminum frame as encapsulation and sealing material Material, causes the weight of every square all more than 10 kilograms, and therefore, traditional photovoltaic generating system is the heaviest, Special fixed mount is needed on roof, say, that conventional photovoltaic electricity generation system is arranged on roof when installing Time, need special support structure to support photovoltaic generating system.And, conventional photovoltaic electricity generation system is installed When roof, roof weight and wind load also can be greatly increased.Under many circumstances, required electricity is produced The component count of the photovoltaic generating system of power can exceed the ceiling structure that roof can bear, thus hinders The installation of required photovoltaic generating system.
The usual structure of traditional photovoltaic generating system is complicated and installs costliness.This traditional photovoltaic generation System in installation process, generally voltage and the relatively low photovoltaic group of power by a large amount of hard and weight Part builds up, and this results in and often encounters difficulties in transport and operating process.Specifically, photovoltaic module must Infield must be transported to, after assembling in place the most one by one, then with cable, electric wire, continue Road device, line concentrating case, combiner etc. couple together one by one.Due to their low-voltages and relatively low defeated Go out power, it usually needs connecting substantial amounts of photovoltaic module in series-parallel mode, wherein, photovoltaic module needs Connect to obtain required Open Output Voltage, need in parallel in order to obtain the specified electricity of whole system Stream.For particular electrical circuit, multiple component string are unified into a lot of to obtain required voltage, the most also Connection gets up to obtain the required electric current of this circuit.Therefore, the installation of conventional photovoltaic system is it is generally required to a large amount of Labour is complicated and expensive.
The photovoltaic system of this mounting means assembling adds Various Components because of connection in series-parallel, thus adds The complexity of system, reduces reliability and improves the condition of maintenance.Further, the multiformity of element causes into This is high, therefore adds the cost of conventional photovoltaic system.
It addition, conventional photovoltaic electricity generation system is also often difficult to adapt to the lineament of true infield, because of This has limited to their use.Barrier is often contained (as roof includes ventilation shaft, sky in infield Window and air-conditioning equipment) so that the region being adapted to fit photovoltaic module is discontinuous.More complicated, photovoltaic Array must be installed can most directly receive the direction of sunlight, but might not energy on the roof of building Meet this requirement easily.Then, photovoltaic generating system must be constructed around the erection of these barriers.But, The element of conventional photovoltaic system generally has fixed dimension so that they are not easy to come for specific infield Customization.Such as, if roof surface is separated by two air vents, the element of conventional photovoltaic system just differs Surely there is suitably sized being arranged between air vent.
Further, as it has been described above, the conventional photovoltaic assembly in conventional photovoltaic electricity generation system must be with some Series connection, to obtain required output voltage, therefore limits the motility that element assembles in infield.Such as, Roof is separated situation by chimney, skylight.In order to be operated in around chimney, and abundant biography of still connecting System photovoltaic module is to obtain required Open Output Voltage, and the one or more photovoltaic module elements on string must Tandem photovoltaic assembly away from it is laid.This situation requires more wire, and may cause Infield cannot use optimized coverage mode to install.
Therefore, traditional photovoltaic generating system, owing to self is heavier, installation process is complicated, be difficult to adaptation Complicated installation environment, flexibility are inadequate with degree of support, cause it to use critical constraints.Further, it is general Being set directly at outdoor, so being easy to the ash that falls, thus affecting the solar energy photovoltaic panel absorption to sunlight And conversion efficiency, therefore it is frequently necessary to artificial solar energy photovoltaic panel is cleaned and process, thus add The workload of workman.
Summary of the invention
An object of the present invention is to propose a kind of photovoltaic panel production technology and production line, for production one Kind of installation process nimbly and freely, have stronger flexible bending performance, can rolling storage, light weight Photovoltaic panel.
For reaching this purpose, the present invention by the following technical solutions:
A kind of photovoltaic panel production technology, comprises the following steps:
A, offer metal level, insulating barrier and flexible light battery layers;
B, described flexible light battery layers, described insulating barrier are sequentially placed from top to bottom with described metal level And pressing, form pressing photovoltaic panel;
C, described pressing photovoltaic panel is heating and curing, forms photovoltaic panel.
Wherein, also include between described step b and c:
B1, it is coated with PU layer on the surface of described pressing photovoltaic panel;
B2, it is coated with polymeric layer on the surface of described PU layer.
Wherein, after described step b2, also include before described step c:
D, it is coated with photocatalyst layer on the surface of described polymeric layer.
Wherein, described metal level is rustless steel, aluminium flake, titanium alloy, titanium zine plate, steel strip of aluminum base, cold Rolled steel plate or hot rolled steel plate;The thickness of described metal level is 0.2-5.0mm.
Wherein, described insulating barrier is polyethylene terephthalate, PVC-U, phenolic-resin paper Base strengthens PFCP, phenolic resin fabricbase strengthens PFCC, epoxy resin fiberglass strengthens 3240FR4, polyester resin glass fiber strengthen SMC or polyester resin glass fiber strengthens DMC;Institute The thickness stating insulating barrier is 0.05-0.2mm.
Wherein, described polymeric layer is polyethylene, polypropylene, polrvinyl chloride, poly terephthalic acid second Diester or polystyrene and carbonate polymer.
Wherein, described photocatalyst layer is titanium dioxide, titanium dioxide silver, zirconium dioxide, zinc oxide.
Wherein, described PU layer is 60-200 degree Celsius with the heat curing temperature of described polymeric layer;Described PU layer is single polyurethanes or Polyurethane composite material.
A kind of photovoltaic panel production line for described photovoltaic panel production technology, including being wound with described metal The metal level roller of layer, the left side of described metal level roller is provided with the insulating barrier being wound with insulating barrier the most to the left Roller and be wound with the flexible light battery layers roller of flexible light battery layers, being provided above of described metal level roller Pressure roller, the right side of described metal level roller is had to be provided with the most to the right heat solid room and wind-up roll;
Adding man-hour, the described insulating barrier on described insulating barrier roller is layed in the described gold on described metal level roller Belonging on layer, the flexible light battery layers on described flexible light battery layers roller is layed on described insulating barrier, described Metal level with under the cooperation of described pressure roller, drives described insulating barrier and described flexible light at described metal level roller Battery layers moves right together, simultaneously to described metal level, described insulating barrier, described flexible light battery layers Pressing formed pressing photovoltaic panel, described pressing photovoltaic panel again through described in heat solid room be heating and curing after formation Photovoltaic panel, described photovoltaic panel is through described wind-up roll rolling.
Wherein, described metal level roller and described heating are disposed with injection chamber from left to right between solid room Body and pressure roller group, described injection cavity connect have the first container equipped with the material forming PU layer with equipped with Forming the second container of the material of polymeric layer, described first container is positioned at the left side of described second container, The left side of described solid room of heating connects the 3rd container having equipped with the material forming photocatalyst layer, described in add The right side of the solid room of temperature is internally provided with the device that is heating and curing.
The invention have the benefit that
The photovoltaic panel production technology of the present invention, comprises the following steps: a, provide metal level, insulating barrier with Flexible light battery layers;B, by described flexible light battery layers, described insulating barrier and described metal level from up to Under be sequentially placed and pressing, form pressing photovoltaic panel;C, described pressing photovoltaic panel is heating and curing, shape Become photovoltaic panel;For coordinating the production line of above-mentioned production technology, it metal level including being wound with metal level Roller, the left side of metal level roller is provided with the most to the left and is wound with the insulating barrier roller of insulating barrier and is wound with The flexible light battery layers roller of flexible light battery layers, metal level roller be provided above pressure roller, metal level roller Right side is provided with the most to the right heat solid room and wind-up roll;Add man-hour, the insulation on insulating barrier roller Layer is layed on the metal level on metal level roller, and the flexible light battery layers on flexible light battery layers roller is layed in On insulating barrier, metal level with under the cooperation of pressure roller, drives insulating barrier and flexible light battery layers at metal level roller Move right together, metal level, insulating barrier, the battery laminated conjunction of flexible light formed pressing photovoltaic panel simultaneously, The most heated solid room of pressing photovoltaic panel forms photovoltaic panel, photovoltaic panel rolling roller rolling after being heating and curing; This production technology and production line for produce a kind of installation process nimbly and freely, there is stronger flexible bending Qu Xingneng, can rolling storage, the photovoltaic panel of light weight, its processing step is easy, it is achieved easily, raw Product line is rationally distributed, it is simple to the making of technique.
Accompanying drawing explanation
Fig. 1 is the photovoltaic panel production line schematic diagram of the present invention.
Fig. 2 is the structural representation of the photovoltaic panel that the photovoltaic panel production technology of the present invention is produced.
In figure: 101-metal level roller;102-insulating barrier roller;103-flexible light battery layers roller;104-pressure roller; 105-injects cavity;106-the first container;107-second container;108-the first lower tumbler;On 109-first Guide wheel;110-the second lower tumbler;111-the second upper block;112-the 3rd lower tumbler;113-the 3rd upper block; 114-heats solid room;115-wind-up roll;116-the 3rd container;
201-metal level;202-insulating barrier;203-photonic layer;204-PU layer;205-polymeric layer;206- Photocatalyst layer.
Detailed description of the invention
Below in conjunction with the accompanying drawings 1 and Fig. 2 and further illustrated the technology of the present invention by detailed description of the invention Scheme.
A kind of photovoltaic panel production technology, comprises the following steps:
A, offer metal level, insulating barrier and flexible light battery layers;
B, flexible light battery layers, insulating barrier and metal level are sequentially placed and pressing from top to bottom, are formed Pressing photovoltaic panel;
C, pressing photovoltaic panel is heating and curing, forms photovoltaic panel.
Wherein, also include between step b and c:
B1, it is coated with PU layer on the surface of pressing photovoltaic panel;
B2, it is coated with polymeric layer on the surface of PU layer.
Wherein, after step b2, also include before step c:
D, it is coated with photocatalyst layer on the surface of polymeric layer.
Wherein, metal level is rustless steel, aluminium flake, titanium alloy, titanium zine plate, steel strip of aluminum base, cold-rolled steel Plate or hot rolled steel plate;The thickness of metal level is 0.2-5.0mm.
Wherein, insulating barrier is polyethylene terephthalate, PVC-U, the increasing of phenolic resin paper substrate Strong PFCP, phenolic resin fabricbase strengthen PFCC, epoxy resin fiberglass enhancing 3240FR4, gather Ester plexiglas fiber reinforcement SMC or polyester resin glass fiber strengthen DMC;The thickness of insulating barrier is 0.05-0.2mm。
Wherein, polymeric layer be polyethylene, polypropylene, polrvinyl chloride, polyethylene terephthalate, Or polystyrene and carbonate polymer.
Wherein, photocatalyst layer is titanium dioxide, titanium dioxide silver, zirconium dioxide, zinc oxide.
Wherein, PU layer is 60-200 degree Celsius with the heat curing temperature of polymeric layer;PU layer is single Polyurethanes or Polyurethane composite material.
A kind of photovoltaic panel production line for photovoltaic panel production technology, including the metal level being wound with metal level Roller 101, the left side of metal level roller 101 be provided with the most to the left be wound with insulating barrier insulating barrier roller 102, And it is wound with the flexible light battery layers roller 103 of flexible light battery layers, being provided above of metal level roller 101 Pressure roller 104, the right side of metal level roller 101 is had to be provided with the most to the right heat solid room 114, Yi Jishou Winding up roller 115;
Adding man-hour, the insulating barrier on insulating barrier roller 102 is layed on the metal level on metal level roller 101, Flexible light battery layers on flexible light battery layers roller 103 is layed on insulating barrier, and metal level is at metal level roller 101, with under the cooperation of pressure roller 104, drive insulating barrier to move right together with flexible light battery layers, simultaneously Metal level, insulating barrier, the battery laminated conjunction of flexible light are formed pressing photovoltaic panel, and pressing photovoltaic panel is again through adding The solid room 114 of temperature forms photovoltaic panel, photovoltaic panel rolling roller 115 rolling after being heating and curing.
This production technology and production line for produce a kind of installation process nimbly and freely, have stronger soft Property bending property, can rolling storage, the photovoltaic panel of light weight, its processing step is easy, it is achieved easily, Production Line Configured is reasonable, it is simple to the making of technique.
Wherein, metal level roller 101 and heat between solid room 114 and to be disposed with injection chamber from left to right Body 105 and pressure roller group, inject cavity 105 and connect the first container 106 having equipped with the material forming PU layer With the second container 107 equipped with the material forming polymeric layer, the first container 106 is positioned at second container 107 Left side, the left side of solid room 114 of heating connects the 3rd container having equipped with the material forming photocatalyst layer 116, the right side of solid room 114 of heating is internally provided with the device that is heating and curing.
Wherein, pressure roller group include many groups set gradually from left to right to pressure roller, often pressure roller is included by group Two pressure rollers of lower correspondence, specifically, in the present embodiment, the first lower tumbler 108 and the first upper block 109 be correspondingly formed first group to pressure roller, the second lower tumbler 110 and the second upper block 111 are correspondingly formed Two groups to pressure roller, the 3rd lower tumbler 112 and the 3rd upper block 113 be correspondingly formed the 3rd group to pressure roller, profit With many groups to pressure roller step by step to there is polymeric layer, PU layer, soft after cavity 105 through injecting Property light cell layer, the photovoltaic panel of insulating barrier and metal level spread out repoussage shape, flatten, improve the degree of packing, Make bonding firmly.
Whole production line is by forming the smooth course of processing.After above each lamination being closed, finally solid half Spray or be coated with the material of photocatalyst layer under state state, such as titanium dioxide or titanium dioxide silver, titanium dioxide Zirconium, the nano material of zinc oxide etc, high temperature, under 50-200 degree Celsius, completes after 10 to 30 minutes Solidification and attachment, form one and have clean surfaces function, and the suction stopping minimizing reflection of surface light Receiving light loss, the anti-water proofing property of the polymeric layer of fluoride and air-tightness can reach 10-4.Along with thickness Inching can reach block-water performance 10-5, extend life-span and the power fade of photovoltaic panel, through seriality The Far-infrared Heating of baking box, to cooling, solidification, sticks on the slab volume of metal level, and width can be from 10-200cm, photovoltaic panel, in 300 meters, is required to be wound into according to customization by length by the mode of curling Volume, is directly taken job location, to be mounted directly to roof with tractive manner, forms metal roof one The installation of body photovoltaic panel, reduces the engineering time, installs the most advanced integral photovoltaic building new general Read.
Whole production process uses technical controlling thickness and the width of repoussage shape of spreading out.At partial vacuum baking box ring Form heat cure in the solid room 114 of heating in border to process.Wherein, in the production process of the present invention, real The integrated photovoltaic forming process of existing volume to volume, can use during this continuous way cure package or The cure package of stagewise, forms integration series connection, or distributed parallel line on circuit.Its In, the far infrared cavity of heat cure works under the state of partial vacuum, and installation far infrared around cavity Add heat pipe or tungsten filament pipe, temperature is controlled at 50-300 degree Celsius range so that pressing photovoltaic panel is continuous Mobile in the cavity heating solid room 114, gradually solidify and form protecting film, being finally wound in rolling Terminal applies product, i.e. photovoltaic panel is formed on roller 115.
In whole production process, 1), solid room 114 of heating uses rustless steel continuous way cavity length 2-50 Rice, uses the mode of movement of volume to volume.2) the control torsion of the up-down rollers of pressure roller group and pressure, uses Computed pressure monitoring planar smoothness, and the monitoring of far infrared thickness degree, adjust pressure and torsion automatically Power.3) the first container 106 and second container 107 are when coating or spraying, use the diffusion of bull multiple spot Flowing or injection form, shower nozzle or coating diffusion pressure head use single hole or porous, fixed point to inject or mobile Injection method.
Using the photovoltaic panel that above-mentioned technique makes with production line, light extends the time of staying, reduces reflection, from Clean, water proof, moistureproof, anticorrosion, get rusty, aging, increase generating efficiency.
It is illustrated in figure 2 the photovoltaic panel using above-mentioned technique to process with production line.
A kind of photovoltaic panel, including flexible light battery layers 203, the lower section of flexible light battery layers 203 is provided with Metal level 201, is provided with insulating barrier 202 between metal level 201 and flexible light battery layers 203.
The photovoltaic panel of the present invention, including flexible light battery layers, the lower section of described flexible light battery layers is provided with Metal level, is provided with insulating barrier between described metal level and described flexible light battery layers;It is by flexible optoelectronic Pond laminating is attached to as on the metal level of substrate, and realizes insulation processing between the two by insulating barrier, This just can make flexible light battery layers follow metal level carry out bending or deform, lightweight, thus in reality When border is installed and used, this photovoltaic panel has stronger flexible bending performance, it is possible to rolling stores, and carries out Storage carrying, and length can be taken flexibly by installation length according to actual needs, and then can avoid carrying Too much photovoltaic panel is to on-the-spot, it is to avoid unnecessary waste;And when mounted without using special consolidating Determining shelf structure to be supported, reduce and install complexity, installation process more nimbly and freely, reduces whole Body erection weight, it is adaptable to more occasion.
Preferably, flexible light battery layers 203 be provided above PU layer 204, the top of PU layer 204 It is provided with polymeric layer 205.PU layer and polymeric layer is utilized to realize the upper surface of flexible light battery layers Rain and snow is protected, it is to avoid flexible light battery layers is destroyed, it is achieved water proof protection against the tide, anticorrosion, anti-life Rust, increases the service life, and strengthens generating efficiency.
Preferably, polymeric layer 205 be provided above photocatalyst layer 206.Utilize and become with photovoltaic panel The photocatalyst layer of one, can substitute for workman and carries out the dust etc. being scattered in its upper surface the most clear Clean, reduce manual maintenance cost, be effectively improved generating efficiency.
Preferably, metal level 201 is rustless steel, aluminium flake, titanium alloy, titanium zine plate, steel strip of aluminum base, cold Rolled steel plate or hot rolled steel plate.
It is further preferred that the thickness of metal level 201 is 0.2-5.0mm.
Preferably, insulating barrier 202 is that polyethylene terephthalate (PET), PVC-U are (hard PVC), phenolic resin paper substrate strengthens PFCP, phenolic resin fabricbase strengthens PFCC, glass epoxy Fiber reinforcement 3240FR4, polyester resin glass fiber strengthen SMC or polyester resin glass fiber strengthens DMC。
It is further preferred that the thickness of insulating barrier 202 is 0.05-0.2mm.
Preferably, polymeric layer 205 is polyethylene, polypropylene, polrvinyl chloride, poly terephthalic acid second Diester or polystyrene and carbonate polymer (Polymer).
Preferably, photocatalyst layer 206 is titanium dioxide, titanium dioxide silver, zirconium dioxide, zinc oxide.
Preferably, PU layer 204 is 60-200 degree Celsius with the heat curing temperature of polymeric layer 205;PU Layer 204 is single polyurethanes or Polyurethane composite material.
The photovoltaic panel of the present invention, its simple in construction, light weight, when installing on roof, it is possible to avoids to building Building and increase bigger load-bearing pressure, the scope of application is wider.
When this photovoltaic panel is arranged on roof, photovoltaic panel is arranged above the roundlet of Auto-Sensing photovoltaic panel every day Cylinder cylinder, utilizes this little cylinder cylinder to detect Superficial Foreign Body or the animal excrements of photovoltaic panel, and Use guide rail move mode scanning overhead, data are passed computer system back, computer system firing order pair again Foreign body or animal excrements make removing action.Wherein, this little cylinder drum having has static bruss and except dust brush, Built-in clean water or cleaning liquid medicine or solvent, the kind of solution can comprise various cleaning and produce except the liquid of foreign body Product.Little cylinder cylinder uses the structure of inner bag changeable type, and energy automatic lifting, and then can realize complete The detection in orientation and cleaning, it is not necessary to the dangerous cleaning on the upper roof of workman reduces maintenance cost.
The know-why of the present invention is described above in association with specific embodiment.These describe and are intended merely to explain The principle of the present invention, and limiting the scope of the invention can not be construed to by any way.Based on this The explanation at place, those skilled in the art need not pay performing creative labour can associate the present invention's Other detailed description of the invention, within these modes fall within protection scope of the present invention.

Claims (8)

1. a photovoltaic panel production technology, it is characterised in that comprise the following steps:
A, offer metal level, insulating barrier and flexible light battery layers;
B, described flexible light battery layers, described insulating barrier are sequentially placed from top to bottom with described metal level And pressing, form pressing photovoltaic panel;
B1, it is coated with PU layer on the surface of described pressing photovoltaic panel;
B2, it is coated with polymeric layer on the surface of described PU layer;
D, it is coated with photocatalyst layer on the surface of described polymeric layer;
C, described pressing photovoltaic panel is heating and curing, forms photovoltaic panel.
Photovoltaic panel production technology the most according to claim 1, it is characterised in that described metal level For rustless steel, aluminium flake, titanium alloy, titanium zine plate, steel strip of aluminum base, cold-rolled steel sheet or hot rolled steel plate;Described The thickness of metal level is 0.2-5.0mm.
Photovoltaic panel production technology the most according to claim 1, it is characterised in that described insulating barrier PFCP, phenolic aldehyde tree is strengthened for polyethylene terephthalate, PVC-U, phenolic resin paper substrate Fat fabricbase strengthens PFCC, epoxy resin fiberglass strengthens 3240FR4, polyester resin glass fiber increases Strong SMC or polyester resin glass fiber strengthen DMC;The thickness of described insulating barrier is 0.05-0.2mm.
Photovoltaic panel production technology the most according to claim 1, it is characterised in that described polymer Layer is polyethylene, polypropylene, polrvinyl chloride, polyethylene terephthalate or polystyrene and poly-carbon Acid ester polymer.
Photovoltaic panel production technology the most according to claim 1, it is characterised in that described photocatalyst Layer is titanium dioxide, titanium dioxide silver, zirconium dioxide, zinc oxide.
Photovoltaic panel production technology the most according to claim 1, it is characterised in that described PU layer with The heat curing temperature of described polymeric layer is 60-200 degree Celsius;Described PU layer is single polyurethane Ester or Polyurethane composite material.
7., for a photovoltaic panel production line for the photovoltaic panel production technology described in claim 1, it is special Levy and be, including being wound with the metal level roller (101) of described metal level, described metal level roller (101) Left side be provided with the most to the left and be wound with the insulating barrier roller (102) of insulating barrier and be wound with flexible light Flexible light battery layers roller (103) of battery layers, described metal level roller (101) be provided above pressure roller (104), the right side of described metal level roller (101) be provided with the most to the right solid room (114) of heating, And wind-up roll (115);
Adding man-hour, the described insulating barrier on described insulating barrier roller (102) is layed in described metal level roller (101) On described metal level on, the flexible light battery layers on described flexible light battery layers roller (103) is layed in On described insulating barrier, described metal level is joined described metal level roller (101) and described pressure roller (104) Under conjunction, described insulating barrier is driven to move right together with described flexible light battery layers, simultaneously to described metal Layer, the battery laminated conjunction of described insulating barrier, described flexible light form pressing photovoltaic panel, described pressing photovoltaic panel Again through described in heat solid room (114) be heating and curing after formed photovoltaic panel, described photovoltaic panel is through described receipts Winding up roller (115) rolling.
Photovoltaic panel production line the most according to claim 7, it is characterised in that described metal level roller And described heat between solid room (114) is disposed with injection cavity (105) from left to right (101) With pressure roller group, described injection cavity (105) connects the first container having equipped with the material forming PU layer (106) with the second container (107) equipped with the material forming polymeric layer, described first container (106) Be positioned at the left side of described second container (107), described in heat solid room (114) left side connect have dress Have the 3rd container (116) of material forming photocatalyst layer, described in heat the right side of solid room (114) It is internally provided with the device that is heating and curing.
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Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106449870A (en) * 2016-09-14 2017-02-22 湖南红太阳光电科技有限公司 PERC solar cell production line
CN108281511A (en) * 2017-04-13 2018-07-13 苏州中芯原微电子有限公司 Solar panel aluminizer set composite
CN107088489B (en) * 2017-06-23 2018-04-03 广东谷麦光电科技股份有限公司 Full-automatic light guide plate prosthetic device
CN108400186A (en) * 2018-04-26 2018-08-14 江阴四方游泳康复产业股份有限公司 A kind of SMC monoblock types photovoltaic module, manufacturing method and application
CN109986851A (en) * 2019-01-22 2019-07-09 东莞市昱懋纳米科技有限公司 A kind of preparation method of insulating materials

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6878207B2 (en) * 2003-02-19 2005-04-12 Energy Conversion Devices, Inc. Gas gate for isolating regions of differing gaseous pressure
AT502234B1 (en) * 2005-07-21 2008-06-15 Isovolta PROCESS FOR PREPARING WEATHER-RESISTANT LAMINATES FOR THE INCLUSION OF SOLAR CELL SYSTEMS
CN101593797A (en) * 2009-05-05 2009-12-02 李姝江 A kind of solar cell encapsulation method
CN103437509B (en) * 2013-08-22 2016-02-03 烟台斯坦普精工建设有限公司 A kind of fire-proof and water-proof photovoltaic coiled material and preparation method thereof

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