Nothing Special   »   [go: up one dir, main page]

CN109943040A - Double-layer structure transparent PET backboard and its processing method - Google Patents

Double-layer structure transparent PET backboard and its processing method Download PDF

Info

Publication number
CN109943040A
CN109943040A CN201910160321.0A CN201910160321A CN109943040A CN 109943040 A CN109943040 A CN 109943040A CN 201910160321 A CN201910160321 A CN 201910160321A CN 109943040 A CN109943040 A CN 109943040A
Authority
CN
China
Prior art keywords
layer
pet
eva
double
backboard
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
CN201910160321.0A
Other languages
Chinese (zh)
Inventor
张宪哲
黄欢
张鑫
何甜甜
杨琳
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.)
Changzhou University
Changzhou Huitian New Materials Co Ltd
Original Assignee
Changzhou University
Changzhou Huitian New Materials Co Ltd
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 Changzhou University, Changzhou Huitian New Materials Co Ltd filed Critical Changzhou University
Priority to CN201910160321.0A priority Critical patent/CN109943040A/en
Publication of CN109943040A publication Critical patent/CN109943040A/en
Pending legal-status Critical Current

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

Landscapes

  • Laminated Bodies (AREA)

Abstract

The present invention relates to the technical field of solar power generation more particularly to a kind of double-layer structure transparent PET backboards.Structure can be divided into air layer and EVA layer in transparent PET backboard, and air layer and EVA layer add compatilizer and carry out toughening, and the improvement of addition PE class polyolefin and EVA bonding force, no longer need to carry out pet sheet face coating processing in EVA layer.The disadvantage for overcoming the high cost of existing transparent back panel, xanthochromia, production yield lower, go out and modified PET technology by using double-layer coextrusion, remain the high intensity of PET, PE component is added in internal layer PET simultaneously, it solves the problems, such as Nian Jie with EVA, the water vapor transmittance and water absorption rate of PET are reduced simultaneously, improve the weather resistance of PET, backboard xanthochromia is effectively reduced, simple production process simultaneously, one-pass molding, cost is relatively low, wearability is good, can meet current photovoltaic module in some region use demands that have a moderate climate.

Description

Double-layer structure transparent PET backboard and its processing method
Technical field
The present invention relates to a kind of PET backboard more particularly to a kind of double-layer structure transparent PET backboard and its processing methods.
Background technique
Solar cell module is by 5 layers of structure composition, photovoltaic glass, high transparency EVA, cell piece, ultraviolet high-barrier EVA, Photovoltaic back;Encapsulating material of the photovoltaic back as component backboard, it is main to play insulation, water vapor rejection, increase reflection and other effects.
Conventional solar energy backboard is combined by multilayer material, is with the most common compound KPE fabric backplanes in the market Example, structure are three layers, and outermost layer (backboard air contact surfaces) is PVDF, and middle layer of PET, inner layer material (EVA adhesive layer) is Improved polyalkene film.Common photovoltaic back is white in the market, and outer layer and inner layer material add titanium dioxide, ultraviolet to obstruct Line protects PET not by the destruction of ultraviolet light.
In recent years, as the increasingly mature of generating electricity on two sides technology is compared with conventional photovoltaic traditional components, the generating electricity on two sides back side Battery can efficiently use the light scattered in air with backside reflection, realize the gain of component power.For generating electricity on two sides group Part, the light transmittance at the back side are an important indexs, and used back board packaging material is mainly that photovoltaic glass (replaces opaque Photovoltaic back), it is good that the advantage of glass is weather resistance, but finds in actual use, uses glass tape as back side material Expect to carry out serious PID effect, module backside power attenuation reaches 15% ~ 20% or more, and uses the transparent of high molecular material preparation Backboard is in assembly in application process without back side PID phenomenon;
Over several years recently, in the research for carrying out transparent photovoltaic backplane technology, primary structure is as follows for major backboard manufacturer:
Air surface Bonding plane Middle layer Bonding plane The face EVA
KPC(TPC) PVDF(PVF) PU PET / Coating
CPC Coating / PET / Coating
KPE(TPE) PVDF(PVF) PU PET PU PE
KPK PVDF PU PET PU PVDF
However transparent photovoltaic backplane technology is immature, main problem is as follows:
1) backboard production yield is lower, high expensive;
2) backboard weatherability is poor, and aging post yellowing and mist degree are higher, influences light transmittance, reduction group valence generated output;
3) backboard is low with EVA bonding force.
Currently, CPC structured transparent, making technology is simple, but is applied to outer layer service life deficiency, while coating wear resistance It is poor;It is preferable using PVF film properties weatherability, stability, but it is expensive, and it is not yet complete that pvdf membrane prepares transparent back panel technology It is complete mature, phenomena such as glue xanthochromia occurs is easy to during burn-in test.
Summary of the invention
Present invention seek to address that the shortcomings that convention transparent backboard is at high cost, yield is low, weather resistance is poor, xanthochromia, provides one Kind double-layer structure transparent PET backboard.
In order to overcome defect present in background technique, the technical solution adopted by the present invention to solve the technical problems is: This double-layer structure transparent PET backboard includes the double-layer PET coextruded structure of air layer and EVA layer,
The air layer material composition, in terms of mass fraction, including following components:
70 ~ 90 parts of PET resin
1 ~ 10 part of compatilizer
0.5 ~ 10 part of polycarbodiimide
Heat stabilizer: 0.2 ~ 1 part
0.1 ~ 0.5 part of ultraviolet absorbing agent
0.1 ~ 1.5 part of UV light stabilizing agent
Other auxiliary agents: 0.5 ~ 1.5 part;
EVA layer, in terms of mass fraction, including following components:
40 ~ 60 parts of PET resin
5 ~ 20 parts of compatilizer
PE resinoid: 10 ~ 40 parts
0.5 ~ 10 part of anti-hydrolysis agent
Heat stabilizer: 0.2 ~ 1 part
0.1 ~ 0.5 part of ultraviolet absorbing agent
0.1 ~ 1.5 part of UV light stabilizing agent
Other auxiliary agents: 0.5 ~ 1.5 part.
It according to another embodiment of the invention, further comprise described 150 ~ 450 μm of PET backboard overall thickness, it is hollow 50 ~ 200 μm of gas pay thickness, 50 ~ 200 μm of EVA layer thickness.
It according to another embodiment of the invention, further comprise the air layer, PET resin used in EVA layer Relative density is 1.36-1.37, and dynamic viscosity is 0.6-0.8Pa s, molecular weight 8000 ~ 40000.
According to another embodiment of the invention, further comprise PET resin trade mark phase in the air layer and EVA layer It is same or different.
It according to another embodiment of the invention, further comprise compatilizer in the air layer and EVA layer into split-phase It is same or different.
According to another embodiment of the invention, further comprise the compatilizer be copolymer compatilizer, structure are as follows: With carboxyl, ester group, the vinyl monomer of amide based structures and PE copolymer, including but not limited to polycthylene grafted methyl-prop E pioic acid methyl ester (PE-g-MMA), polycthylene grafted hydroxyethyl methacrylate (PE-g-HEMA), polycthylene grafted acryhic ethyl ester (PE-g-EA), polycthylene grafted maleimide (PE-g-MI), (Ethylene/vinyl acetate) copolymer (E/VAC), (ethylene/ Acrylic acid) copolymer (EAA);
Or the functional unit of functional structure containing phenyl ring and PE copolymer, including but not limited to such as: styrene/ethylene/butadiene/benzene Ethylene) copolymer (SEBS), (styrene/ethylene/propylene) copolymer (S-EP), ethylene propylene diene rubber (EPDM), EP rubbers (EPR), (polyethylene terephthalate/polyethylene) copolymer (PET-b-PE).
It according to another embodiment of the invention, further comprise that the anti-hydrolysis agent in the EVA layer is carbonized for long-chain is poly- Diimine class.
It according to another embodiment of the invention, further comprise PE resin used in the EVA layer are as follows: polyethylene tree Rouge, ingredient are type low density polyethylene resin, low density polyethylene (LDPE), metallocene PE, high density polyethylene (HDPE), ethylene- One of acetate copolymer or its ethylene and copolymer of other alhpa olefins or at least two kinds combine, and melting point resin 60 ~ 135 DEG C, 1 ~ 15g/10min of melt index (MI).
According to another embodiment of the invention, further comprise heat stabilizer used in the air layer and EVA layer It is phosphorous acid bisphenol-A ester and/or four (2,4- di-tert-butyl-phenyl -4,4 '-xenyls) bis phosphoric acids to commonly use antioxidant in the market Ester;
Ultraviolet absorbing agent used in the air layer and EVA layer is common ultraviolet absorbing agent;
UV light stabilizing agent used in the air layer and EVA layer is Polymeric hindered amine class light stabilizer;
Other auxiliary agents used in the air layer and EVA layer are that required opening agent, nucleation are processed in transparent PET backboard Agent, chain extender, dispersing agent, fire retardant.
The processing method of double-layer structure transparent PET backboard includes:
The first step chooses air layer and EVA layer raw material according to weight percent;
The raw material of second step, air layer and EVA layer is mixed and is granulated, and after first sufficiently drying PET resin, is existed with other raw materials It is uniformly mixed in mixing machine, mixed raw material is made;
The raw material of air layer and EVA layer is mixed and is respectively placed in double screw extruder, through melting extrusion, is granulated;
Third step after sufficiently drying EVA layer, air layer particle, is squeezed out by two screw extruders, in T-shaped mould first melt respectively Extrusion molding is closed, backboard finished product is made.
The beneficial effects of the present invention are: double-layer structure transparent PET backboard, modified by PE compatilizer and common in the market Transparent back panel structure is compared, and the program includes
1, use homogeneous PET as weathering layer, the cost of material is low, and weather resistance is good;
2, double-layer structure, without coating and compound working procedure, VOC free discharge produces simple energy conservation, and yield is high;
3, without polyurethane glue, yellowing resistance can be good;
4, pure PET construction, wearability is good, and water vapor rejection rate is high;
5, more environmentally friendly without fluorine structure, it is convenient to recycle;
6, internal layer PE is modified, reduces PET water absorption rate, and insulating properties improves.
Detailed description of the invention
Present invention will be further explained below with reference to the attached drawings and examples.
Fig. 1 is structural schematic diagram of the invention.
Specific embodiment
This double-layer structure transparent PET backboard includes the double-layer PET coextruded structure of air layer and EVA layer, and backboard is bilayer PET coextruded structure is processed and formed at one time by the double-deck drooling extruder.
As shown in Figure 1, structure can be divided into air layer and EVA layer in transparent PET backboard, air layer and EVA layer add phase Hold agent and carry out toughening, the improvement of addition PE class polyolefin and EVA bonding force, no longer need to carry out pet sheet face coating processing in EVA layer.
Air layer material is in terms of mass fraction, including following components:
70 ~ 90 parts of PET resin
1 ~ 10 part of compatilizer
0.5 ~ 10 part of polycarbodiimide
Heat stabilizer: 0.2 ~ 1 part
0.1 ~ 0.5 part of ultraviolet absorbing agent
0.1 ~ 1.5 part of UV light stabilizing agent
Other auxiliary agents: 0.5 ~ 1.5 part;
EVA layer, in terms of mass fraction, including following components:
40 ~ 60 parts of PET resin
5 ~ 20 parts of compatilizer
PE resinoid: 10 ~ 40 parts
0.5 ~ 10 part of anti-hydrolysis agent
Heat stabilizer: 0.2 ~ 1 part
0.1 ~ 0.5 part of ultraviolet absorbing agent
0.1 ~ 1.5 part of UV light stabilizing agent
Other auxiliary agents: 0.5 ~ 1.5 part.
150 ~ 450 μm of PET backboard overall thickness, wherein 50 ~ 200 μm of air layer thickness, 50 ~ 200 μm of EVA layer thickness.
The relative density of PET resin used in air layer, EVA layer is 1.36-1.37, dynamic viscosity 0.6-0.8Pa S, molecular weight 8000 ~ 40000.
The PET resin trade mark in air layer and EVA layer is same or different.
Compatilizer ingredient in air layer and EVA layer is same or different.
Compatilizer is copolymer compatilizer,
With carboxyl, ester group, the vinyl monomer of amide based structures and PE copolymer, including but not limited to polycthylene grafted first Base methyl acrylate (PE-g-MMA), polycthylene grafted hydroxyethyl methacrylate (PE-g-HEMA), polycthylene grafted acryhic Ethyl ester (PE-g-EA), polycthylene grafted maleimide (PE-g-MI), (Ethylene/vinyl acetate) copolymer (E/VAC), (ethylene/acrylic acid) copolymer (EAA);
Or the functional unit of functional structure containing phenyl ring and PE copolymer, including but not limited to such as: styrene/ethylene/butadiene/benzene Ethylene) copolymer (SEBS), (styrene/ethylene/propylene) copolymer (S-EP), ethylene propylene diene rubber (EPDM), EP rubbers (EPR), (polyethylene terephthalate/polyethylene) copolymer (PET-b-PE).
Compatilizer preference
The compatilizer in compatilizer and EVA layer in air layer is all the functional unit of functional structure containing phenyl ring and PE copolymer, such as Styrene/ethylene/butadiene/styrene) copolymer (SEBS), (styrene/ethylene/propylene) copolymer (S-EP).
Anti-hydrolysis agent in EVA layer is long-chain polycarbodiimide class.
PE resin used in EVA layer are as follows: polyvinyl resin, ingredient is type low density polyethylene resin, low-density is poly- Ethylene, the copolymerization of metallocene PE, high density polyethylene (HDPE), ethylene-ethyl acetate copolymer or its ethylene and other alhpa olefins One of object or at least two kinds combinations, 60 ~ 135 DEG C of melting point resin, 1 ~ 15g/10min of melt index (MI).
PE resin preference
LDPE or LLDPE.
Heat stabilizer used in air layer and EVA layer is to commonly use antioxidant in the market, be phosphorous acid bisphenol-A ester and/or Four (2,4- di-tert-butyl-phenyl -4,4 '-xenyls) biphosphonates;
Ultraviolet absorbing agent used in air layer and EVA layer is common ultraviolet absorbing agent, structure can with benzophenone, One of benzotriazole or triazines or at least two kinds combinations;
Ultraviolet absorbing agent preference
Triazine-based ultraviolet absorbent and benzotriazole.
UV light stabilizing agent used in air layer and EVA layer is Polymeric hindered amine class light stabilizer;
Other auxiliary agents used in air layer and EVA layer are that required opening agent, nucleating agent, expansion are processed in transparent PET backboard Chain agent, dispersing agent, fire retardant.
In above-mentioned transparent PET backboard, in the case of no specified otherwise, air layer and EVA layer additive component and content can be with It is identical, it can also be different.
Preference
Compatilizer in air layer is consistent with the compatilizer in EVA layer, and the compatilizer concentration in air layer is lower than the phase in EVA layer Hold agent;
To obtain preferable antiageing effect, UV light stabilizing agent and UV absorbers concentration in air layer are higher than EVA layer.
The processing method of double-layer structure transparent PET backboard,
The first step chooses air layer and EVA layer raw material according to weight percent;
The raw material of second step, air layer and EVA layer is mixed and is granulated, and after first sufficiently drying PET resin, is existed with other raw materials It is uniformly mixed in mixing machine, mixed raw material is made;
The raw material of air layer and EVA layer is mixed and is respectively placed in double screw extruder, through melting extrusion, is granulated;
Third step after sufficiently drying EVA layer, air layer particle, is squeezed out by two screw extruders, in T-shaped mould first melt respectively Extrusion molding is closed, backboard finished product is made.
Embodiment:
1, air layer PET particle prepares (particle 1)
100 parts of PET resin
15 parts of compatilizer SEBS
4 parts of polycarbodiimide
1,010 0.2 parts of primary antioxidant
168 0.4 parts of auxiliary anti-oxidant
0.3 part of ultra-violet stabilizer UV1577
0.5 part of ultraviolet absorbing agent LA63P
0.2 part of nucleant agent N A05
0.3 part of SiO2
0.3 part of lubricant AX-71
0.2 part of white oil
Wherein the inherent viscosity of PET resin is 0.69, and nucleant agent N A05 is the production of Chinese mugwort Dicon A/S, Japan.
PET resin is dried into 8h or more at 120 DEG C, after removing moisture removal, SEBS and white oil is added, middling speed mixes 3 ~ 5 points Other powder additives are added in clock, and middling speed mixes 5 ~ 15 minutes, will mix material by melting, mixing in double screw extruder Refining squeezes out simultaneously water cooling, then pelletizing after drying, and air layer PET is made at 235-265 DEG C in each zone temperature of double screw extruder Particle (particle 1);
2. EVA layer PET particle prepares (particle 2)
100 parts of PET resin
20 parts of compatilizer SEBS
40 parts of LDPE resin
4 parts of polycarbodiimide
1,010 0.3 parts of primary antioxidant
168 0.3 parts of auxiliary anti-oxidant
0.3 part of ultraviolet absorbing agent UV1577
0.5 part of ultraviolet light stabilized LA63P
0.2 part of nucleant agent N A05
0.3 part of SiO2
0.3 part of lubricant AX-71
0.2 part of white oil
Wherein the inherent viscosity of PET resin is 0.69, and nucleant agent N A05 is the production of Chinese mugwort Dicon A/S, Japan, the melt of LDPE resin Index is 5g/10min.
PET resin is dried into 8h or more at 120 DEG C, after removing moisture removal, SEBS, PE resin and white oil is added, middling speed is mixed It closes 3 ~ 5 minutes, other powder additives is added in mass ratio, middling speed mixes 5 ~ 15 minutes, will mix material by twin-screw It melted in extruder, be kneaded, squeeze out simultaneously water cooling, then pelletizing after drying, each zone temperature of double screw extruder is in 235-265 DEG C, air layer PET particle (particle 2) is made;
3. preparing transparent PET backboard
By particle 1 and particle 2 be respectively placed in 120 DEG C of baking ovens it is 24 hours dry after, respectively by two single screw extrusion machines 250 ~ It is squeezed out at 270 DEG C, adjusting extruder revolving speed makes internal layer outer layer PET thickness ratio 1:1, after T-die is hot-melted, through chill roll After cooling, biaxial tension sizing is made transparent back panel finished product, and tests according to GB/T -31034-2014 photovoltaic back national standard, Test result is as shown in table 1, table 2.
1 transparent PET backboard traditional performance of table tests table
2 transparent PET backboard traditional performance of table tests table
[1] 121 DEG C of PCT test condition, humidity 100%RH, testing time 48h;
[2] the saturating test equipment of infrared method water and condition are as follows: the saturating tester of U.S. film Kang Hongwaifashui, 38 DEG C of test temperature, 90% RH;
[3] UV test equipment condition are as follows: photovoltaic industry standard ultraviolet testing chamber, ultraviolet spectra distribution meet IEC6121:2005 Relevant regulations, 65 DEG C of test temperature;
[4] UV+DH test equipment and condition: test temperature: 85 DEG C, ambient humidity 85%RH, ultraviolet light intensity and spatial distribution accord with Close IEC61215:2005 relevant regulations;
[5] 150 DEG C of thermal ageing tests: 150 DEG C of test temperature, 20 times/h of ventilation volume, chest design meets GB/T-11026 correlation Regulation.
The transparent PET backboard scheme provided in the present invention, relatively traditional backboard multi-layer compound structure have following more Kind advantage:
1, high durable: PE toughening is used, the water absorption rate of PET is reduced, improves the anti-hydrolytic performance and water vapor barrier property of PET Energy;It is used in combination simultaneously by ectonexine UV absorbent with light stabilizer, effectively absorbs ultraviolet light, ensure that material property is stablized, Wearability and yellowing resistance are better than three-layer co-extruded PET in the market;
2, at low cost: backboard simple production process, disposable extrusion molding, yield are high;
3, environmental protection and energy saving:
1. produced by coextrusion mode, avoid that conventional backing plate is compound or coating procedure in organic solvent volatile emission;
2. energy saving: one-pass molding dries solvent without heat;
3. backboard can recycle after photovoltaic module reaches service life;
4. avoiding the waste of strategic resource fluorine, while avoiding pollution of the fluorine to environment.
4, high bonding: by internal layer PE, compatilizer and EVA hot melt adhesion, it ensure that the reliable firmness of material, avoid Traditional transparent back panel internal layer coating and the weak defect of EVA bonding force.
5, high insulation: internal layer is blended using PE, is reduced water absorption rate, is improved the electrical insulation properties of PET material.

Claims (10)

1. a kind of double-layer structure transparent PET backboard, it is characterised in that: the double-layer PET coextruded structure including air layer and EVA layer,
The air layer material is in terms of mass fraction, including following components:
70 ~ 90 parts of PET resin
1 ~ 10 part of compatilizer
0.5 ~ 10 part of polycarbodiimide
Heat stabilizer: 0.2 ~ 1 part
0.1 ~ 0.5 part of ultraviolet absorbing agent
0.1 ~ 1.5 part of UV light stabilizing agent
Other auxiliary agents: 0.5 ~ 1.5 part;
EVA layer is in terms of mass fraction, including following components:
40 ~ 60 parts of PET resin
5 ~ 20 parts of compatilizer
10 ~ 40 parts of PE resinoid
0.5 ~ 10 part of anti-hydrolysis agent
0.2 ~ 1 part of heat stabilizer
0.1 ~ 0.5 part of ultraviolet absorbing agent
0.1 ~ 1.5 part of UV light stabilizing agent
0.5 ~ 1.5 part of other auxiliary agents.
2. double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: the PET backboard overall thickness 150 ~ 450 μm, wherein 50 ~ 200 μm of air layer thickness, 50 ~ 200 μm of EVA layer thickness.
3. double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: used in the air layer, EVA layer PET resin relative density be 1.36-1.37, dynamic viscosity be 0.6-0.8Pa s, molecular weight 8000 ~ 40000.
4. double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: in the air layer and EVA layer The PET resin trade mark is same or different.
5. double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: the phase in the air layer and EVA layer It is same or different to hold agent ingredient.
6. double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: the compatilizer is that copolymer is compatible Agent has the copolymer of carboxyl, ester group, the vinyl monomer of amide based structures and PE, including but not limited to: polycthylene grafted methyl Methyl acrylate (PE-g-MMA), polycthylene grafted hydroxyethyl methacrylate (PE-g-HEMA), polycthylene grafted acryhic second Ester (PE-g-EA), polycthylene grafted maleimide (PE-g-MI), (Ethylene/vinyl acetate) copolymer (E/VAC), (second Alkene/acrylic acid) copolymer (EAA);
Or the functional unit of functional structure containing phenyl ring and PE copolymer, including but not limited to such as: styrene/ethylene/butadiene/benzene Ethylene) copolymer (SEBS), (styrene/ethylene/propylene) copolymer (S-EP), ethylene propylene diene rubber (EPDM), EP rubbers (EPR), (polyethylene terephthalate/polyethylene) copolymer (PET-b-PE).
7. double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: the anti-hydrolysis agent in the EVA layer is Long-chain polycarbodiimide class.
8. double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: PE resin used in the EVA layer Are as follows: polyvinyl resin, ingredient are type low density polyethylene resin, low density polyethylene (LDPE), and metallocene PE, high density are poly- One of ethylene, ethylene-ethyl acetate copolymer or its ethylene and copolymer of other alhpa olefins or at least two kinds combine, 60 ~ 135 DEG C of melting point resin, 1 ~ 15g/10min of melt index (MI).
9. double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: the institute in the air layer and EVA layer It is to commonly use antioxidant in the market with heat stabilizer, is phosphorous acid bisphenol-A ester and/or four (2,4- di-tert-butyl-phenyl -4,4 '-connection Phenyl) biphosphonate;
Ultraviolet absorbing agent used in the air layer and EVA layer is common ultraviolet absorbing agent;
UV light stabilizing agent used in the air layer and EVA layer is Polymeric hindered amine class light stabilizer;
Other auxiliary agents used in the air layer and EVA layer are that required opening agent, nucleation are processed in transparent PET backboard Agent, chain extender, dispersing agent, fire retardant.
10. the processing method of double-layer structure transparent PET backboard as described in claim 1, it is characterised in that: the processing method packet It includes:
The first step chooses air layer and EVA layer raw material according to weight percent;
The raw material of second step, air layer and EVA layer is mixed and is granulated, and after first sufficiently drying PET resin, is existed with other raw materials It is uniformly mixed in mixing machine, mixed raw material is made;
The raw material of air layer and EVA layer is mixed and is respectively placed in double screw extruder, through melting extrusion, is granulated;
4th step after sufficiently drying EVA layer, air layer particle, is squeezed out by two screw extruders, in T-shaped mould first melt respectively Extrusion molding is closed, backboard finished product is made.
CN201910160321.0A 2019-03-04 2019-03-04 Double-layer structure transparent PET backboard and its processing method Pending CN109943040A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910160321.0A CN109943040A (en) 2019-03-04 2019-03-04 Double-layer structure transparent PET backboard and its processing method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201910160321.0A CN109943040A (en) 2019-03-04 2019-03-04 Double-layer structure transparent PET backboard and its processing method

Publications (1)

Publication Number Publication Date
CN109943040A true CN109943040A (en) 2019-06-28

Family

ID=67008211

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201910160321.0A Pending CN109943040A (en) 2019-03-04 2019-03-04 Double-layer structure transparent PET backboard and its processing method

Country Status (1)

Country Link
CN (1) CN109943040A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110667216A (en) * 2019-09-30 2020-01-10 常州回天新材料有限公司 Integrally formed PET co-extrusion transparent back plate
CN114106530A (en) * 2022-01-26 2022-03-01 广东顺德顺炎新材料股份有限公司 High CTI value halogen-free flame-retardant reinforced PET modified engineering plastic and preparation method and application thereof
CN114701229A (en) * 2021-12-31 2022-07-05 浙江中聚材料有限公司 Solar composite back plate with three-layer structure and preparation method thereof
CN115837783A (en) * 2021-12-31 2023-03-24 浙江中聚材料有限公司 Composite solar cell back plate with high weather resistance and preparation method thereof

Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090260677A1 (en) * 2005-12-30 2009-10-22 E. I. Du Pont De Nemours And Company Fluoropolymer Coated Films Useful for Photovoltaic Modules
CN101582458A (en) * 2009-06-26 2009-11-18 上海海优威电子技术有限公司 Novel solar battery backboard
CN102157589A (en) * 2010-11-26 2011-08-17 诸暨市枫华塑胶科技有限公司 High-efficiency solar cell back film and preparation method thereof
CN103456817A (en) * 2013-08-20 2013-12-18 常州大学 Fluoride-free solar cell back panel and manufacturing method thereof
CN103493219A (en) * 2011-04-18 2014-01-01 阿肯马法国公司 Bilayer film for a photovoltaic module
CN104057676A (en) * 2013-03-19 2014-09-24 苏州克莱明新材料有限公司 Solar backplane with heat dissipation function and production process thereof
CN104143578A (en) * 2014-07-31 2014-11-12 苏州尚善新材料科技有限公司 Solar energy backing plate and manufacturing method thereof
WO2015001951A1 (en) * 2013-07-05 2015-01-08 東レ株式会社 Reverse-side protective substrate, solar cell module, and method for producing solar cell module
CN104842616A (en) * 2015-04-10 2015-08-19 苏州中来光伏新材股份有限公司 Photovoltaic solar cell composite backboard, preparation method and assembly thereof
CN205542821U (en) * 2016-01-21 2016-08-31 中天光伏材料有限公司 High moisture -proof hot photovoltaic module's electrically conductive backplate
CN106206795A (en) * 2016-06-30 2016-12-07 杭州福斯特光伏材料股份有限公司 A kind of high water resistant back veneer material easy to clean for big system photovoltaic module
CN107731949A (en) * 2016-08-10 2018-02-23 阿特斯(中国)投资有限公司 A kind of photovoltaic backboard and preparation method thereof
CN109326666A (en) * 2017-07-28 2019-02-12 苏州赛伍应用技术股份有限公司 Inexpensive weathering type solar cell backboard major insulation functional membrane and backboard and solar cell module containing the major insulation functional membrane
CN109742170A (en) * 2018-11-29 2019-05-10 常州回天新材料有限公司 Photovoltaic module solar energy backboard
CN109749369A (en) * 2018-11-29 2019-05-14 常州回天新材料有限公司 solar battery back film

Patent Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090260677A1 (en) * 2005-12-30 2009-10-22 E. I. Du Pont De Nemours And Company Fluoropolymer Coated Films Useful for Photovoltaic Modules
CN101582458A (en) * 2009-06-26 2009-11-18 上海海优威电子技术有限公司 Novel solar battery backboard
CN102157589A (en) * 2010-11-26 2011-08-17 诸暨市枫华塑胶科技有限公司 High-efficiency solar cell back film and preparation method thereof
CN103493219A (en) * 2011-04-18 2014-01-01 阿肯马法国公司 Bilayer film for a photovoltaic module
CN104057676A (en) * 2013-03-19 2014-09-24 苏州克莱明新材料有限公司 Solar backplane with heat dissipation function and production process thereof
WO2015001951A1 (en) * 2013-07-05 2015-01-08 東レ株式会社 Reverse-side protective substrate, solar cell module, and method for producing solar cell module
CN103456817A (en) * 2013-08-20 2013-12-18 常州大学 Fluoride-free solar cell back panel and manufacturing method thereof
CN104143578A (en) * 2014-07-31 2014-11-12 苏州尚善新材料科技有限公司 Solar energy backing plate and manufacturing method thereof
CN104842616A (en) * 2015-04-10 2015-08-19 苏州中来光伏新材股份有限公司 Photovoltaic solar cell composite backboard, preparation method and assembly thereof
CN205542821U (en) * 2016-01-21 2016-08-31 中天光伏材料有限公司 High moisture -proof hot photovoltaic module's electrically conductive backplate
CN106206795A (en) * 2016-06-30 2016-12-07 杭州福斯特光伏材料股份有限公司 A kind of high water resistant back veneer material easy to clean for big system photovoltaic module
CN107731949A (en) * 2016-08-10 2018-02-23 阿特斯(中国)投资有限公司 A kind of photovoltaic backboard and preparation method thereof
CN109326666A (en) * 2017-07-28 2019-02-12 苏州赛伍应用技术股份有限公司 Inexpensive weathering type solar cell backboard major insulation functional membrane and backboard and solar cell module containing the major insulation functional membrane
CN109742170A (en) * 2018-11-29 2019-05-10 常州回天新材料有限公司 Photovoltaic module solar energy backboard
CN109749369A (en) * 2018-11-29 2019-05-14 常州回天新材料有限公司 solar battery back film

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
MELISSA A.L NIKOLIC等: "The challenges in ;ifetime prediction of oxodegradable polyolefin and biodegradable polymer films", 《POLYMER DEGRADATION AND STABILITY》 *
张宏元,等: "抗老化母粒的制备及在光伏背板用PE膜中的应用研究", 《化工新型材料》 *

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110667216A (en) * 2019-09-30 2020-01-10 常州回天新材料有限公司 Integrally formed PET co-extrusion transparent back plate
CN114701229A (en) * 2021-12-31 2022-07-05 浙江中聚材料有限公司 Solar composite back plate with three-layer structure and preparation method thereof
CN115837783A (en) * 2021-12-31 2023-03-24 浙江中聚材料有限公司 Composite solar cell back plate with high weather resistance and preparation method thereof
CN114701229B (en) * 2021-12-31 2024-03-15 浙江中聚材料有限公司 Solar composite backboard with three-layer structure and preparation method thereof
CN114106530A (en) * 2022-01-26 2022-03-01 广东顺德顺炎新材料股份有限公司 High CTI value halogen-free flame-retardant reinforced PET modified engineering plastic and preparation method and application thereof
CN114106530B (en) * 2022-01-26 2022-04-08 广东顺德顺炎新材料股份有限公司 High CTI value halogen-free flame-retardant reinforced PET modified engineering plastic and preparation method and application thereof

Similar Documents

Publication Publication Date Title
CN109943040A (en) Double-layer structure transparent PET backboard and its processing method
CN110271254B (en) Polyolefin-based transparent photovoltaic back plate and application thereof
CN102604274B (en) Modified PVDF (polyvinylidene fluoride) film for solar battery back panel and preparation method of modified PVDF film
CN109294455B (en) Composite packaging adhesive film for solar packaging material and preparation method thereof
US20200313014A1 (en) Preparation method of solar cell backsheet film with high reflectivity
CN102779874B (en) Multi-layer co-extruded backboard used for solar batteries and production method thereof
CN103456817B (en) A kind of floride-free solar cell backboard and preparation method thereof
CN108878567A (en) A kind of functionality solar cell backboard film and preparation method thereof
CN107841029B (en) High-weather-resistance PE (polyethylene) film for solar cell back plate
CN105462238A (en) Extrusion-type backing plate for photovoltaic cell and preparation method of backing plate
CN111446318A (en) Weather-proof solar cell backboard base film and preparation method thereof
CN103342856A (en) Preparation method of filler thermally conductive composite EVA (ethylene vinyl acetate copolymer) adhesive film for encapsulating solar cell
CN107141619B (en) Polyisobutylene backboard with ultralow water vapor transmittance
CN113943537A (en) Black high-repeated-combination packaging adhesive film and preparation method thereof
CN103832034B (en) Three-layer-structured PET (polythylene terephthalate) composite membrane for packaging photovoltaic module and preparation method of three-layer-structured PET composite membrane
CN102324440A (en) Back plate with single-layer structure for solar cell and manufacturing method thereof
KR101063886B1 (en) Method for Preparing Adhesive Sheet for Solar Cell Module
CN114750492A (en) Foamed low-density light diffusion plate and preparation method and application thereof
CN102642358A (en) Polyvinylidene fluoride film
CN109913153A (en) A kind of solar photovoltaic assembly sealant and preparation method thereof
CN110861376A (en) Polyolefin film for transparent back plate film and preparation method thereof
CN104842617A (en) High-water-vapor-barrier polyvinylidene fluoride film and preparation method thereof
CN114750496B (en) Solar fireproof composite backboard and preparation method thereof
CN110117400B (en) High-toughness PVDF (polyvinylidene fluoride) film material and preparation method thereof, TPT (thermoplastic vulcanizate) back film, TPE (thermoplastic elastomer) back film and solar cell panel
CN204749424U (en) High steam separation polyvinylidene fluoride film

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

Application publication date: 20190628

WD01 Invention patent application deemed withdrawn after publication