CN104441880B - A kind of anti-blue light Antistatic protective film - Google Patents

A kind of anti-blue light Antistatic protective film Download PDF

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Publication number
CN104441880B
CN104441880B CN201410681543.4A CN201410681543A CN104441880B CN 104441880 B CN104441880 B CN 104441880B CN 201410681543 A CN201410681543 A CN 201410681543A CN 104441880 B CN104441880 B CN 104441880B
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Prior art keywords
blue light
membrane layer
layer
antistatic
separation membrane
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CN201410681543.4A
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CN104441880A (en
Inventor
金闯
易延超
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Jiangsu Stick new materials Polytron Technologies Inc
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Suzhou Sidike New Material Science and Technology Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B5/00Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts
    • B32B5/02Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by structural features of a fibrous or filamentary layer
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D31/00Materials specially adapted for outerwear
    • A41D31/02Layered materials
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B27/00Layered products comprising a layer of synthetic resin
    • B32B27/12Layered products comprising a layer of synthetic resin next to a fibrous or filamentary layer
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B33/00Layered products characterised by particular properties or particular surface features, e.g. particular surface coatings; Layered products designed for particular purposes not covered by another single class
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2262/00Composition or structural features of fibres which form a fibrous or filamentary layer or are present as additives
    • B32B2262/02Synthetic macromolecular fibres
    • B32B2262/0276Polyester fibres
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2307/00Properties of the layers or laminate
    • B32B2307/20Properties of the layers or laminate having particular electrical or magnetic properties, e.g. piezoelectric
    • B32B2307/21Anti-static
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2437/00Clothing

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Laminated Bodies (AREA)

Abstract

The invention discloses a kind of anti-blue light Antistatic protective film; include the most successively: the first separation membrane layer, the first anti-blue light film layer, the first basement membrane layer, antistatic layer, the second basement membrane layer, the second anti-blue light film layer and the second separation membrane layer; wherein, described first separation membrane layer is connected by binding agent with the upper surface of described first anti-blue light film layer;Described second anti-blue light film layer is connected by binding agent with described second separation membrane layer;Described first anti-blue light film layer and the second anti-blue light film layer are constituted by anti-blue light glue, and described antistatic layer is made up of antistatic glue.By absorbing and converting the blue light that the illuminating sources such as flat faced display, LED neon light, fluorescent lamp come out, it is achieved the obstruct to blue light, significantly alleviate the blue light injury to eyes, protect human eye.Effectively prevent the generation of electrostatic, it is to avoid the electric discharge of electrostatic, on producing the impact and destruction caused, such as adsorbs dust, coating punctures, human body is by electric shock etc. simultaneously.

Description

A kind of anti-blue light Antistatic protective film
Technical field
The present invention relates to a kind of protecting film, particularly to one for mobile phone screen, digital camera, computer Anti-blue light film preventing blue light injury eyes of the display screens such as display and preparation method thereof.
Background technology
Blue light is different from ultraviolet, and it is not only present in sunlight, is present in computer monitor the most in a large number (no matter LED or CCFL), digital electronic goods display screen, mobile phone, TV, even automobile lamp, In neon light.Shortwave blue light has very high energies, it is possible to penetrates crystalline lens and goes directly retina.Blue light illumination Retina can produce free radical, and these free radicals can cause retinal pigment epithelium to become feeble and die, epithelium The decline of cell can cause photaesthesia cell to lack nutrient thus cause vision impairment, and these damages are Irreversible.
Correlational study shows, the blue light of different wave length is different for the occurrence situation of human eye, and 435 receive Rice is maximum to the occurrence situation of eyes to the blue light between 440 nanometers, this effect along with wavelength increase or Successively decrease and be gradually reduced.Although in LED light source, the peak value of spectral energy seems and is in blue wave band, but The 435nm wave band in fact endangering maximum is lower than traditional CCFL display, so the blue light harm of LED is little In tradition CCFL display.In life, the light source that can send blue light has a lot, except super bath, flat board Display, LED neon light, fluorescent lamp, cathode tube backlit display, iPad, large-screen mobile phone etc. have Background light source, by containing abnormal high energy shortwave blue light in the light source that powerful electron stream excites, all can Affect the retina of child, should avoid looking at straight for a long time.It addition, the protecting film of routine does not the most possess antistatic Function, easily absorbs dust during attaching use, or is difficult to accurately at hands because producing Electrostatic Absorption Position on machine screen, affect the electronic product after pad pasting and use function to reduce.
Therefore the invention provides a kind of anti-blue light Antistatic protective film, it is mainly by the suction to blue light Receive and be converted into the visible ray of its all band, it is achieved the obstruct to blue light, significantly alleviate blue light to eyes Injury, protects human eye.
Summary of the invention
The present invention is directed to present situation, it is provided that a kind of anti-blue light Antistatic protective film, it is mainly by absorbing And convert the blue light that the illuminating sources such as flat faced display, LED neon light, fluorescent lamp come out, it is achieved Obstruct to blue light, alleviates the blue light injury to eyes significantly, protects human eye.The one of this case offer Plant anti-blue light Antistatic protective film and still a further object is that antistatic, maintain good light transmittance.
For achieving the above object, the present invention is achieved through the following technical solutions:
A kind of anti-blue light Antistatic protective film, includes the most successively:
First separation membrane layer, the first anti-blue light film layer, the first basement membrane layer, antistatic layer, the second base Basal membrane layer, the second anti-blue light film layer and the second separation membrane layer, wherein,
Described first separation membrane layer is connected by binding agent with the upper surface of described first anti-blue light film layer;
Described first anti-blue light film layer, it is arranged on described first separation membrane layer and described first basement membrane layer Between, it is made up of anti-blue light glue;
Described antistatic layer, it is arranged between described first basement membrane layer and the second basement membrane layer, by Antistatic glue is constituted;
Described second anti-blue light film layer, it is arranged between described second basement membrane layer and the second separation membrane layer, It is made up of same anti-blue light glue;
Described second anti-blue light film layer is connected by binding agent with described second separation membrane layer;
The composition of raw materials of described anti-blue light glue is made up of the material of following mass percent:
Styrene: 15%-21%
O-phenylenediamine: 5%-12%
Azo metal dye: 30%-40%
Acetylacetone,2,4-pentanedione: 13%-28%
Porphyrins: 13%-25%
Acrylate: 10%-20%
Auxiliary agent: 0.3%-0.6%;
The composition of raw materials of described antistatic glue is made up of the material of following mass percent:
Polysulfur nitride class: 12%-20%;
Ethoxylation oleyl amine: 23%-26%;
Ethoxylated alkyl acid amide: 15%-24%;
Polyimides: 18.5%-26%;
Monostearin: 10%-16%;
Polyacetylene: 13%-18%;
Auxiliary agent: 0.3%-0.6%.
Preferably, described anti-blue light Antistatic protective film, the composition of raw materials of described anti-blue light glue by The material of following mass percent is constituted:
Styrene: 16%
O-phenylenediamine: 8%
Azo metal dye: 32%
Acetylacetone,2,4-pentanedione: 18%
Porphyrins: 12%
Acrylate: 11%
Auxiliary agent: 0.5%.
Preferably, described anti-blue light Antistatic protective film, described azo metal dye, its structure is (A-N=N-B)2M, wherein A is phenyl ring, and B is cyclohexene, and M is metal.
Preferably, described anti-blue light Antistatic protective film, the composition of raw materials of described antistatic glue by The material of following mass percent is constituted:
Polysulfur nitride class: 15%;
Ethoxylation oleyl amine: 23%;
Ethoxylated alkyl acid amide: 16%;
Polyimides: 19.6%;
Monostearin: 11%;
Polyacetylene: 14%;
Auxiliary agent: 0.5%.
Preferably, described anti-blue light Antistatic protective film, described auxiliary agent includes:
Cosolvent: select in toluene, para-amino benzoic acid, hexamethylene, acetamide, propyl acetate Plant or several mixture;
Dispersant: select vinyl bis-stearamides, methyl anyl alcohol, Polyethylene Glycol, cellulose derivative In one or more mixture;
Adhesion promoter: glycerin ether oxygen propyl trimethoxy silicane.
Preferably, described anti-blue light Antistatic protective film, described first separation membrane layer and described Second separation membrane layer all selects polypropylene material.
Preferably, described anti-blue light Antistatic protective film, the thickness of described first basement membrane layer is 30-36um, the thickness of described second basement membrane layer is 26-30um, and the thickness of described antistatic layer is 15-22um, the thickness of described first anti-blue light film layer is 8-15um, the thickness of described second anti-blue light film layer Degree is 15-23um, and the thickness of described first separation membrane layer and described second separation membrane layer is 13-20um。
Preferably, described anti-blue light Antistatic protective film, described first basement membrane layer and described second Basement membrane layer all selects PET film.
Preferably, described anti-blue light Antistatic protective film, described binding agent uses organic silica gel.
A kind of anti-blue light Antistatic protective film that the present invention provides, its beneficial effect includes: 1) anti-blue light: By absorbing and converting the indigo plant that the illuminating sources such as flat faced display, LED neon light, fluorescent lamp come out Light, it is achieved the obstruct to blue light, alleviates the blue light injury to eyes significantly, protects human eye;2) anti- Electrostatic: effectively prevent the generation of electrostatic, it is to avoid the impact and destruction that production is caused of discharging of electrostatic, than As adsorbed dust, coating punctures, human body is by electric shock etc..
Accompanying drawing explanation
Fig. 1 is a kind of anti-blue light Antistatic protective film schematic diagram described in one embodiment of the invention.
Detailed description of the invention
Below in conjunction with embodiment, the present invention is described in further detail, to make those skilled in the art join Book word can be implemented according to this as directed.
A kind of anti-blue light Antistatic protective film, as it is shown in figure 1, include the most successively:
First separation membrane layer the 1, first anti-blue light film layer the 3, first basement membrane layer 4, antistatic layer 5, Second basement membrane layer the 6, second anti-blue light film layer 7 and the second separation membrane layer 9, wherein, the first separation membrane layer 1 is connected by binding agent 2 with the upper surface of the first anti-blue light film layer 3;First anti-blue light film layer 3, its It is arranged between the first separation membrane layer 1 and the first basement membrane layer 4, is made up of anti-blue light glue;Antistatic Film layer 5, it is arranged between the first basement membrane layer 4 and the second basement membrane layer 6, by antistatic glue structure Become;Second anti-blue light film layer 7, it is arranged between the second basement membrane layer 6 and the second separation membrane layer 9, It is made up of same anti-blue light glue;Second anti-blue light film layer 7 and the second separation membrane layer 9 pass through binding agent 8 are connected;
The composition of raw materials of described anti-blue light glue is made up of the material of following mass percent: styrene: 15%-21%;O-phenylenediamine: 5%-12%;Azo metal dye: 30%-40%;Acetylacetone,2,4-pentanedione: 13%-28%; Porphyrins: 13%-25%;Acrylate: 10%-20%;Auxiliary agent: 0.3%-0.6%.
Wherein, why anti-blue light film layer plays the effect of anti-blue light, is because wherein azo metal dye, Its structure is (A-N=N-B)2M, wherein, nitrogen nitrogen double bond is phenyl ring, while being cyclohexene, Research finds, such azo dye can be with absorbing wavelength at the blue light of 380-450nm.Porphyrin chemical combination Thing has bigger conjugated system and abundant pi-electron due to it, and electron donation is stronger, at blue light There is stronger absorbability in region, and has good heat stability.When they inhale blue light material with other When being dissolved in together, inhaling blue light capacity multiplication, absorbable blue wavelength range is 378-472nm.When joining When each material in side is in the range of above-mentioned mass percent, it is respectively provided with the anti-blue light effect of different-effect. And when the composition of raw materials of described anti-blue light film layer is made up of the material of following mass percent: styrene: 16%; O-phenylenediamine: 8%;Azo metal dye: 32%;Acetylacetone,2,4-pentanedione: 18%;Porphyrins: 12%; Acrylate: 11%;Auxiliary agent: when 0.5%, best results, the obstruct to blue light has reached 99%.
Further, the composition of raw materials of antistatic glue is made up of the material of following mass percent: poly-nitrogen Change sulfur class: 12%-20%;Ethoxylation oleyl amine: 23%-26%;Ethoxylated alkyl acid amide: 15%-24%; Polyimides: 18.5%-26%;Monostearin: 10%-16%;Polyacetylene: 13%-18%;Auxiliary agent: 0.3%-0.6%.
Wherein, and the antistatic effect of antistatic layer 5 is each in the composition of raw materials by antistatic glue The proportioning of component determines, when, in the formula of antistatic glue, the mass fraction of polyimides is less than 18.5% Time, antistatic effect is the faintest, and during higher than 26%, is difficult to dissolve, and antistatic effect declines. Therefore proportioning must be carried out in strict accordance with this formula.Through repeatedly comparing, when the proportioning of antistatic glue is: Polysulfur nitride class: 15%, ethoxylation oleyl amine: 23%, ethoxylated alkyl acid amide: 16%, polyimides: 19.6%, monostearin: 11%, polyacetylene: 14%, auxiliary agent: when 0.5%, antistatic effect reaches Arrive the state of optimum.
Wherein, cosolvent: select C3-Fluoroalcohol., toluene, para-amino benzoic acid, hexamethylene, acetamide, One or more mixture in propyl acetate;Dispersant: select vinyl bis-stearamides, methylpent One or more mixture in alcohol, Polyethylene Glycol, cellulose derivative;Adhesion promoter: glycerin ether oxygen third Base trimethoxy silane.
Further, a kind of anti-blue light Antistatic protective film, the first basement membrane layer 4 and the second basement membrane layer 6 all select PET film.
Further, a kind of anti-blue light Antistatic protective film, the first separation membrane layer 1 and the second separation membrane layer 9 all select polypropylene material.
Further, a kind of anti-blue light Antistatic protective film, binding agent 2 and 8 uses organic silica gel.Adopt Organic silica gel, there is low adhesion, high adsorption, Automatic-exhausting pickle fast, high temperature resistant, easy shear punching Type does not stays the characteristics such as cull with tearing off.
Further, the preparation method of a kind of anti-blue light Antistatic protective film:
Step 1, the composition of raw materials of antistatic glue is placed in super mixer mixing 10 to 20 minutes, Rotating speed is 150-4500 rev/min, obtains antistatic glue;
Step 2, the first basement membrane layer 4 and the second basement membrane layer 6 are carried out sided corona treatment after, will be anti-quiet Electrolemma layer 5 is coated between the first basement membrane layer 4 and the second basement membrane layer 6, and with UV light source transconversion into heat 30s, makes antistatic layer 5;
Step 3, the composition of raw materials of anti-blue light glue is placed in super mixer mixing 3 to 10 minutes, Rotating speed is 150-4500 rev/min, obtains anti-blue light glue;
Step 4, anti-blue light glue is coated in another of the first basement membrane layer 4 and the second basement membrane layer 6 Face, and with UV light source transconversion into heat 20s, make the first anti-blue light film layer 3 and the second anti-blue light film layer 7;
Step 5, it is coated with 3-6um at the another side of the first anti-blue light film layer 3 and the second anti-blue light film layer 7 Binding agent 8, binding agent fits with the first separation membrane layer 1 and the second separation membrane layer 9 respectively, makes Anti-blue light Antistatic protective film.
Detailed description of the invention 1:
A kind of anti-blue light Antistatic protective film, includes the most successively:
First separation membrane layer the 1, first anti-blue light film layer the 3, first basement membrane layer 4, antistatic layer 5, Second basement membrane layer the 6, second anti-blue light film layer 7 and the second separation membrane layer 9, wherein, the first separation membrane layer 1 is connected by binding agent 2 with the upper surface of the first anti-blue light film layer 3;First anti-blue light film layer 3, its It is arranged between the first separation membrane layer 1 and the first basement membrane layer 4, is made up of anti-blue light glue;Antistatic Film layer 5, it is arranged between the first basement membrane layer 4 and the second basement membrane layer 6, by antistatic glue structure Become;Second anti-blue light film layer 7, it is arranged between the second basement membrane layer 6 and the second separation membrane layer 9, It is made up of same anti-blue light glue;Second anti-blue light film layer 7 and the second separation membrane layer 9 pass through binding agent 8 are connected;
The composition of raw materials of described anti-blue light glue is made up of the material of following mass percent:
Styrene: 15%
O-phenylenediamine: 5%
Azo metal dye: 30%
Acetylacetone,2,4-pentanedione: 13%
Porphyrins: 13%
Acrylate: 10%
Auxiliary agent: 0.3%.
The composition of raw materials of antistatic glue is made up of the material of following mass percent:
Polysulfur nitride class: 12%;
Ethoxylation oleyl amine: 23%;
Ethoxylated alkyl acid amide: 15%;
Polyimides: 18.5%;
Monostearin: 10%;
Polyacetylene: 13%;
Auxiliary agent: 0.3%.
Wherein, cosolvent: select C3-Fluoroalcohol., toluene and the mixture of hexamethylene;Dispersant: select Polyethylene Glycol and the mixture of cellulose derivative;Adhesion promoter: glycerin ether oxygen propyl trimethoxy silicane.
First basement membrane layer 4 and the second basement membrane layer 6 are the most preferably with PET film, the first separation membrane layer 1 He Second separation membrane layer 9 is the most preferably with polypropylene material, binding agent 2 and 8 employing organic silica gel.
Detailed description of the invention 2:
A kind of anti-blue light Antistatic protective film, includes the most successively:
First separation membrane layer the 1, first anti-blue light film layer the 3, first basement membrane layer 4, antistatic layer 5, Second basement membrane layer the 6, second anti-blue light film layer 7 and the second separation membrane layer 9, wherein, the first separation membrane layer 1 is connected by binding agent 2 with the upper surface of the first anti-blue light film layer 3;First anti-blue light film layer 3, its It is arranged between the first separation membrane layer 1 and the first basement membrane layer 4, is made up of anti-blue light glue;Antistatic Film layer 5, it is arranged between the first basement membrane layer 4 and the second basement membrane layer 6, by antistatic glue structure Become;Second anti-blue light film layer 7, it is arranged between the second basement membrane layer 6 and the second separation membrane layer 9, It is made up of same anti-blue light glue;Second anti-blue light film layer 7 and the second separation membrane layer 9 pass through binding agent 8 are connected;
The composition of raw materials of described anti-blue light glue is made up of the material of following mass percent:
Styrene: 21%
O-phenylenediamine: 12%
Azo metal dye: 40%
Acetylacetone,2,4-pentanedione: 28%
Porphyrins: 25%
Acrylate: 20%
Auxiliary agent: 0.6%.
The composition of raw materials of antistatic glue is made up of the material of following mass percent:
Polysulfur nitride class: 20%;
Ethoxylation oleyl amine: 26%;
Ethoxylated alkyl acid amide: 24%;
Polyimides: 26%;
Monostearin: 16%;
Polyacetylene: 18%;
Auxiliary agent: 0.6%.
Wherein, cosolvent: select C3-Fluoroalcohol., toluene and the mixture of hexamethylene;Dispersant: select Polyethylene Glycol and the mixture of cellulose derivative;Adhesion promoter: glycerin ether oxygen propyl trimethoxy silicane.
First basement membrane layer 4 and the second basement membrane layer 6 are the most preferably with PET film, the first separation membrane layer 1 He Second separation membrane layer 9 is the most preferably with polypropylene material, binding agent 2 and 8 employing organic silica gel.
Detailed description of the invention 3:
A kind of anti-blue light Antistatic protective film, includes the most successively:
First separation membrane layer the 1, first anti-blue light film layer the 3, first basement membrane layer 4, antistatic layer 5, Second basement membrane layer the 6, second anti-blue light film layer 7 and the second separation membrane layer 9, wherein, the first separation membrane layer 1 is connected by binding agent 2 with the upper surface of the first anti-blue light film layer 3;First anti-blue light film layer 3, its It is arranged between the first separation membrane layer 1 and the first basement membrane layer 4, is made up of anti-blue light glue;Antistatic Film layer 5, it is arranged between the first basement membrane layer 4 and the second basement membrane layer 6, by antistatic glue structure Become;Second anti-blue light film layer 7, it is arranged between the second basement membrane layer 6 and the second separation membrane layer 9, It is made up of same anti-blue light glue;Second anti-blue light film layer 7 and the second separation membrane layer 9 pass through binding agent 8 are connected;
The composition of raw materials of described anti-blue light glue is made up of the material of following mass percent:
Styrene: 16%;O-phenylenediamine: 8%;Azo metal dye: 32%;Acetylacetone,2,4-pentanedione: 18%;Porphin Quinoline compounds: 12%;Acrylate: 11%;Auxiliary agent: 0.5%
The composition of raw materials of antistatic glue is made up of the material of following mass percent:
Polysulfur nitride class: 15%, ethoxylation oleyl amine: 23%, ethoxylated alkyl acid amide: 16%, polyamides Imines: 19.6%, monostearin: 11%, polyacetylene: 14%, auxiliary agent: 0.5%.
Wherein, cosolvent: select C3-Fluoroalcohol., toluene and the mixture of hexamethylene;Dispersant: select Polyethylene Glycol and the mixture of cellulose derivative;Adhesion promoter: glycerin ether oxygen propyl trimethoxy silicane.
First basement membrane layer 4 and the second basement membrane layer 6 are the most preferably with PET film, the first separation membrane layer 1 He Second separation membrane layer 9 is the most preferably with polypropylene material, binding agent 2 and 8 employing organic silica gel.
Although embodiment of the present invention are disclosed as above, but it is not restricted to description and embodiment party Listed utilization in formula, it can be applied to various applicable the field of the invention completely, for being familiar with ability For the personnel in territory, be easily achieved other amendment, therefore without departing substantially from claim and etc. homotype Enclosing under limited general concept, the present invention is not limited to specific details and shown here as the figure with description Example.

Claims (7)

1. an anti-blue light Antistatic protective film, it is characterised in that include the most successively:
First separation membrane layer, the first anti-blue light film layer, the first basement membrane layer, antistatic layer, the second base Basal membrane layer, the second anti-blue light film layer and the second separation membrane layer, wherein,
Described first separation membrane layer is connected by binding agent with the upper surface of described first anti-blue light film layer;
Described first anti-blue light film layer, it is arranged on described first separation membrane layer and described first basement membrane layer Between, it is made up of anti-blue light glue;
Described antistatic layer, it is arranged between described first basement membrane layer and the second basement membrane layer, by Antistatic glue is constituted;
Described second anti-blue light film layer, it is arranged between described second basement membrane layer and the second separation membrane layer, It is made up of same anti-blue light glue;
Described second anti-blue light film layer is connected by binding agent with described second separation membrane layer;
The composition of raw materials of described anti-blue light glue is made up of the material of following mass percent:
Styrene: 15%-21%
O-phenylenediamine: 5%-12%
Azo metal dye: 30%-40%
Acetylacetone,2,4-pentanedione: 13%-28%
Porphyrins: 13%-25%
Acrylate: 10%-20%
Auxiliary agent: 0.3%-0.6%;
The composition of raw materials of described antistatic glue is made up of the material of following mass percent:
Polysulfur nitride class: 12%-20%;
Ethoxylation oleyl amine: 23%-26%;
Ethoxylated alkyl acid amide: 15%-24%;
Polyimides: 18.5%-26%;
Monostearin: 10%-16%;
Polyacetylene: 13%-18%;
Auxiliary agent: 0.3%-0.6%.
Anti-blue light Antistatic protective film the most according to claim 1, it is characterised in that described azo Metal dye, its structure is (A-N=N-B)2M, wherein A is phenyl ring, and B is cyclohexene, and M is gold Belong to.
Anti-blue light Antistatic protective film the most according to claim 1, it is characterised in that described auxiliary agent Including:
Cosolvent: select C3-Fluoroalcohol., toluene, para-amino benzoic acid, hexamethylene, acetamide, acetic acid One or more mixture in propyl ester;
Dispersant: select vinyl bis-stearamides, methyl anyl alcohol, Polyethylene Glycol, cellulose derivative In one or more mixture;
Adhesion promoter: glycerin ether oxygen propyl trimethoxy silicane.
Anti-blue light Antistatic protective film the most according to claim 1, it is characterised in that described first Separation membrane layer and described second separation membrane layer all select polypropylene material.
Anti-blue light Antistatic protective film the most according to claim 1, it is characterised in that described first The thickness of basement membrane layer is 30-36 μm, and the thickness of described second basement membrane layer is 26-30 μm, described anti-quiet The thickness of electrolemma layer is 15-22 μm, and the thickness of described first anti-blue light film layer is 8-15 μm, described second The thickness of anti-blue light film layer is 15-23 μm, described first separation membrane layer and the thickness of described second separation membrane layer Degree is 13-20 μm.
Anti-blue light Antistatic protective film the most according to claim 1, it is characterised in that described first Basement membrane layer and described second basement membrane layer all select PET film.
Anti-blue light Antistatic protective film the most according to claim 1, it is characterised in that described bonding Agent uses organic silica gel.
CN201410681543.4A 2014-11-24 2014-11-24 A kind of anti-blue light Antistatic protective film Active CN104441880B (en)

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CN105720179A (en) * 2016-02-04 2016-06-29 吴冬梅 Anti-static LED display screen and manufacturing method thereof
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