CN208359640U - A kind of Electrostatic Absorption composite membrane - Google Patents
A kind of Electrostatic Absorption composite membrane Download PDFInfo
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- CN208359640U CN208359640U CN201820616293.XU CN201820616293U CN208359640U CN 208359640 U CN208359640 U CN 208359640U CN 201820616293 U CN201820616293 U CN 201820616293U CN 208359640 U CN208359640 U CN 208359640U
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- film
- evoh
- electrostatic absorption
- composite membrane
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Abstract
The utility model discloses a kind of Electrostatic Absorption composite membranes, a kind of Electrostatic Absorption composite membrane includes the PE film set gradually, EVOH film one, PET film, printing layer and EVOH film two, PE film, EVOH film one, PET film and EVOH film two thickness be respectively 0.02,0.02,0.04 and 0.03mm;Having the advantages that, which reduces printing effect, weakens speed.
Description
Technical field
The utility model relates to a kind of Electrostatic Absorption composite membranes.
Background technique
One kind not coating glue film, adheres on article by product itself Electrostatic Absorption when electrostatic film, plays protection article
Effect, be generally chiefly used in being chiefly used in adhesive or glue residual than more sensitive surface glass, eyeglass, bloom plastic rubber surface and
The very smooth surface such as acrylic.Electrostatic film external sensation is self-adhesive film less than electrostatic, when PE electrostatic film common electrostatic
Film.
The Chinese patent that Authorization Notice No. is CN202965379U, authorized announcement date is on June 5th, 2013 discloses one kind
PE Electrostatic Absorption film is compounded with adsorption layer in PE substrate layer upper surface, there is adhesive layer, PE base between PE substrate layer and adsorption layer
Material layer with a thickness of 0.04mm, adsorbent layer thickness 0.005mm, adhesive layer with a thickness of 0.005mm.
Printing when being printed on the PE Electrostatic Absorption film of the prior art, generally in surface layer coating antistatic printing ink formation
Layer, printing layer is exposed for a long time in air, and printing effect is gradually deteriorated.
Utility model content
The purpose of the utility model is to provide a kind of Electrostatic Absorption composite membrane, having, which reduces printing effect, weakens the excellent of speed
Point.
The above-mentioned technical purpose of the utility model has the technical scheme that
A kind of Electrostatic Absorption composite membrane, including set gradually PE film, EVOH film one, PET film, printing layer and
EVOH film two, PE film, EVOH film one, PET film and EVOH film two thickness be respectively 0.02,0.02,0.04 and
0.03mm。
Using the above structure, to endure, power is good and the PET(polyester of dimensionally stable) printing layer is arranged at it as carrier film
On, situations such as damaged or fold occurs for printing layer in use process is reduced, printing effect is kept;PET film surfacing is bright and clean,
PET film and ink (generally oil-soluble) binding force in printing layer are strong, and printing layer and PET film active force are strong, are not easy to take off
From.
EVOH(ethylene-vinyl alcohol copolymer) excellent blocking effect is presented to gas, solvent film, with PET film
Stickiness is strong and the two it is compound after be still able to maintain excellent barrier to gas and solvent, so gas and moisture in external environment
A possibility that entering printing layer from a kind of two sides of Electrostatic Absorption composite membrane is extremely low, reduces the corruption of moisture and air to printing layer
Erosion, improves the service life of printed matter.
In use, PE film is inside, with the very smooth surface such as glass, eyeglass, bloom plastic rubber surface and acrylic
It directly contacts, a kind of Electrostatic Absorption composite membrane Electrostatic Absorption plays the role of insulation blocking on article surface, and easy because of PET
The electrostatic adsorption force of a kind of Electrostatic Absorption composite membrane and article surface can be improved in static electrification, reduces and is detached from possibility.
Further preferably are as follows: PVA film one, EVOH film two and printing are provided between EVOH film one and PET film
PVA film two is provided between layer, and the thickness of PVA film one and PVA film two is respectively 0.02 and 0.03mm.
Using the above structure, PVA(polyvinyl alcohol) it can be used as between EVOH film one and PET film and EVOH film two
Adhesive between printing layer exists, and improves bonding strength, while its gas and solvent barrier height can further improve resistance
Every property.
Further preferably are as follows: nano-sized magnesium hydroxide thin layer one is provided between EVOH film one and PVA film one, EVOH is thin
Nano-sized magnesium hydroxide thin layer two, nano-sized magnesium hydroxide thin layer one and nano-sized magnesium hydroxide are provided between film two and PVA film two
The thickness of thin layer two is 0.01mm.
Using the above structure, nano-sized magnesium hydroxide has excellent anti-flammability, can protect the article surface of Electrostatic Absorption;It will
It is arranged between EVOH film and PVA film, good dispersion.
Further preferably are as follows: the side on EVOH film two far from nano-sized magnesium hydroxide thin layer two is provided with PP film, PP
Film with a thickness of 0.07mm.
Using the above structure, play the role of preferable moulding and fluid partitioning.
Further preferably are as follows: the side on PP film far from EVOH film two is provided with cellulose diacetate film, two vinegar
Cellulose acetate films with a thickness of 0.03mm.
Using the above structure, cellulose diacetate (CA) film surface is bright and clean, less scaling, using it as outside, keeps whole
It is clean;CA film is arranged close to PP film, and the junction of the two is fine and close, further increases barrier property.
Further preferably are as follows: PP film include crystallinity be 58% PP film one, crystallinity be 65% PP film two and crystallization
The PP film three that degree is 58%, the thickness of PP film one, PP film two and PP film three is respectively 0.02,0.03 and 0.02mm;Extremely from PE film
On the direction of EVOH film two, PP film one, PP film two and PP film three are set gradually.
For PP, the more high then strand arrangement of crystallinity is more regular.Using the above structure, on the one hand it is located at the PP film of two sides
One and PP, three fusing points of film are slightly lower, are conducive in conjunction with EVOH film two, CA film, on the other hand use symmetrical structure, reduce and become
A possibility that shape.
In conclusion the utility model has the following beneficial effects:
It can play a protective role by Electrostatic Absorption on smooth surface;Printing layer is isolated with external environment, water proof trapping
Property it is excellent, the printing fastness of printing layer is strong, and printing effect is good and effect keeps long.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of embodiment.
In figure, 1, PE film;2, EVOH film one;3, nano-sized magnesium hydroxide thin layer one;4, PVA film one;5, PET is thin
Film;6, printing layer;7, PVA film two;8, nano-sized magnesium hydroxide thin layer two;9, EVOH film two;101, PP film one;102, PP film
Two;103, PP film three;11, cellulose diacetate film.
Specific embodiment
The utility model is described in further detail below in conjunction with attached drawing.
This specific embodiment is only the explanation to the utility model, is not limitations of the present invention, ability
Field technique personnel can according to need the modification that not creative contribution is made to the present embodiment after reading this specification, but
As long as within the protection scope of the present utility model all by the protection of Patent Law.
Embodiment: a kind of Electrostatic Absorption composite membrane, referring to Fig.1, including set gradually PE film 1, EVOH film 1,
Nano-sized magnesium hydroxide thin layer 1, PVA film 1, PET film 5, printing layer 6, PVA film 27, nano-sized magnesium hydroxide thin layer two
8, EVOH film 29, PP film and cellulose diacetate film 11.
PE film 1, EVOH film 1, nano-sized magnesium hydroxide thin layer 1, PVA film 1, PET film 5, PVA film two
7, the thickness of nano-sized magnesium hydroxide thin layer 28, EVOH film 29, PP film and cellulose diacetate film 11 be respectively 0.02,
0.02,0.01,0.02,0.04,0.03,0.01,0.03,0.07 and 0.03mm.
PP film include crystallinity be 58% PP film 1, crystallinity be 65% PP film 2 102 and crystallinity be 58%
PP film 3 103.On from PE film 1 to the direction of EVOH film 29, PP film 1, PP film 2 102 and PP film 3 103 are successively
Setting.The thickness of PP film 1, PP film 2 102 and PP film 3 103 is respectively 0.02,0.03 and 0.02mm.
Preparation process: successively on PE film coat EVOH film one, nano-sized magnesium hydroxide thin layer one, PVA film one,
Then PET film, printing layer, PVA film two, nano-sized magnesium hydroxide thin layer two and EVOH film two are bonded PP film and two vinegar
Cellulose acetate films, it is hot-forming.
Claims (6)
1. a kind of Electrostatic Absorption composite membrane, which is characterized in that including PE film (1), the EVOH film one (2), PET set gradually
Film (5), printing layer (6) and EVOH film two (9), PE film (1), EVOH film one (2), PET film (5) and EVOH film
The thickness of two (9) is respectively 0.02,0.02,0.04 and 0.03mm.
2. a kind of Electrostatic Absorption composite membrane according to claim 1, which is characterized in that EVOH film one (2) and PET film
(5) it is provided with PVA film one (4) between, is provided with PVA film two (7), PVA between EVOH film two (9) and printing layer (6)
The thickness of film one (4) and PVA film two (7) is respectively 0.02 and 0.03mm.
3. a kind of Electrostatic Absorption composite membrane according to claim 2, which is characterized in that EVOH film one (2) and PVA film
It is provided with nano-sized magnesium hydroxide thin layer one (3) between one (4), is provided with and receives between EVOH film two (9) and PVA film two (7)
The thickness of rice magnesium hydroxide thin layer two (8), nano-sized magnesium hydroxide thin layer one (3) and nano-sized magnesium hydroxide thin layer two (8) is
0.01mm。
4. a kind of Electrostatic Absorption composite membrane according to claim 3, which is characterized in that separate on EVOH film two (9) to receive
The side of rice magnesium hydroxide thin layer two (8) is provided with PP film, PP film with a thickness of 0.07mm.
5. a kind of Electrostatic Absorption composite membrane according to claim 4, which is characterized in that far from EVOH film two on PP film
(9) side is provided with cellulose diacetate film (11), cellulose diacetate film (11) with a thickness of 0.03mm.
6. a kind of Electrostatic Absorption composite membrane according to claim 5, which is characterized in that PP film includes that crystallinity is 58%
PP film one (101), the PP film two (102) that crystallinity is 65% and the PP film three (103) that crystallinity is 58%, PP film one (101),
The thickness of PP film two (102) and PP film three (103) is respectively 0.02,0.03 and 0.02mm;From PE film (1) to EVOH film two
(9) on direction, PP film one (101), PP film two (102) and PP film three (103) are set gradually.
Priority Applications (1)
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CN201820616293.XU CN208359640U (en) | 2018-04-27 | 2018-04-27 | A kind of Electrostatic Absorption composite membrane |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820616293.XU CN208359640U (en) | 2018-04-27 | 2018-04-27 | A kind of Electrostatic Absorption composite membrane |
Publications (1)
Publication Number | Publication Date |
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CN208359640U true CN208359640U (en) | 2019-01-11 |
Family
ID=64932945
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CN201820616293.XU Active CN208359640U (en) | 2018-04-27 | 2018-04-27 | A kind of Electrostatic Absorption composite membrane |
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CN (1) | CN208359640U (en) |
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2018
- 2018-04-27 CN CN201820616293.XU patent/CN208359640U/en active Active
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