CN205370296U - Antifog window membrane of permeable air bound heat - Google Patents

Antifog window membrane of permeable air bound heat Download PDF

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Publication number
CN205370296U
CN205370296U CN201620036639.XU CN201620036639U CN205370296U CN 205370296 U CN205370296 U CN 205370296U CN 201620036639 U CN201620036639 U CN 201620036639U CN 205370296 U CN205370296 U CN 205370296U
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CN
China
Prior art keywords
layer
window film
aluminium lamination
hole
heat insulation
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.)
Expired - Fee Related
Application number
CN201620036639.XU
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Chinese (zh)
Inventor
孙贵仁
金虎
李力
陈涛
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Shaoxing Begoodtex Product Co Ltd
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Shaoxing Begoodtex Product 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.)
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Priority to CN201620036639.XU priority Critical patent/CN205370296U/en
Application granted granted Critical
Publication of CN205370296U publication Critical patent/CN205370296U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses an antifog window membrane of permeable air bound heat, including black polyvinyl chloride layer, it has the aluminium lamination to adhere through the bond line on polyester film layers, be equipped with the through -hole that a plurality of link up each other on black polyvinyl chloride and the aluminium lamination respectively, the diameter of through -hole is 0.5mm -1.5mm, and distance between the adjacent through -hole is 0.5mm -1mm, and the window membrane still includes transparent haze -prevention layer, the last distribution of haze -prevention layer has the aperture to be 0.001mm -0.025mm, and the hole pitch is 0.05mm -0.075mm's bleeder vent, and the through -hole has a perfect understanding with the bleeder vent each other. Use cost that this antifog window membrane of permeable air bound heat can reduce resident's air conditioner and illumination again can antifog haze, and the gas permeability is good.

Description

Ventilative heat insulation antifog window film
Technical field
This utility model relates to a kind of window film, more specifically, it relates to a kind of ventilative heat insulation antifog window film.
Background technology
The curtain film the articles for daily use that right and wrong are usually shown in our daily life, mainly can play the effect of sunshade.
Occur in that one can have an X-rayed partiting thermal insulation window film (as shown in Figure 5) currently on the market, polyvinyl chloride layer 3 including black, described polyvinyl chloride layer 3 is bonded with laminated polyester film 4 by adhesive layer 2, laminated polyester film 4 is bonded with aluminium lamination 5 by adhesive layer 2, the polrvinyl chloride of described black and aluminium lamination 5 are respectively equipped with several through holes being mutually communicated, the diameter of described through hole is 0.5mm-1.5mm, and the distance between adjacent through-holes is 0.5mm-1mm.When summer, by the aluminium lamination 5 of window film towards outside window, can reflected radiation heat, solar heat and stop UV ultraviolet radiation effect, and wind rear wind to aluminium lamination 5 can enter in through hole, thus the heat can taken away in window film, reduce heat and be delivered to indoor, reduce use and its workload of refrigeration plant;nullWhen winter, window film is inverted,Aluminium lamination 5 is towards indoor,Indoor heating installation is reflected back indoor,Reduce heating installation to be run off by window film,The polyvinyl chloride layer 3 of black towards outdoor directly facing sunlight,Absorb heat,Play the effect of a passive type solar energy catcher,Absorb sunlight and heat is radiated indoor,When winter, through hole can allow the heat absorbed quickly be delivered to indoor simultaneously,Endothermic effect is more preferably,The diameter that time simultaneously by day, light can pass through to arrange enter into indoor offer for the through hole that 0.5mm-1.5mm spacing is 0.5mm-1mm and illuminate normally,Need not go again to turn on electric light,The polyester fiber board in outside can seal aluminium lamination 5、Through hole on laminated polyester film 4 and polyvinyl chloride layer 3,Cold air is stoped to go to indoor,Window film is such arranges resident in the use procedure of a year and a day,Work and the workload of heating and ventilation and air conditioning HVAC system can be reduced,Reduce electrical equipment abrasion and maintenance,Reduce the demand of illumination,Play energy-conservation effect,Real economical for resident.
Although above-mentioned window film can play energy-conservation effect, but it can not well play the effect of haze, function is more single, society is due to the discharge of industrial waste gas, micronic dust content in air is gradually increasing, air pollution can cause fatal disease, has influence on the healthy of people, therefore is badly in need of now wanting the use cost of a kind of air-conditioning that can reduce resident and illumination again can the window film of haze.
Utility model content
For the deficiency that prior art exists, the purpose of this utility model is in that to provide a kind of ventilative heat insulation antifog window film, this ventilative heat insulation antifog window film can reduce the use cost of the air-conditioning of resident and illumination again can haze, good permeability.
For achieving the above object, this utility model provides following technical scheme: a kind of ventilative heat insulation antifog window film, polyvinyl chloride layer including black, laminated polyester film is bonded with aluminium lamination by adhesive layer, the polrvinyl chloride of described black and aluminium lamination are respectively equipped with several through holes being mutually communicated, the diameter of described through hole is 0.5mm-1.5mm, distance between adjacent through-holes is 0.5mm-1mm, window film also includes transparent anti-fog layer, on described anti-fog layer, distribution has aperture is 0.001mm-0.025mm, pitch of holes is the air-vent of 0.05mm-0.075mm, through hole and air-vent are mutually communicated.
This utility model is preferred: described anti-fog layer is bonded in the outer surface of aluminium lamination by adhesive layer.
This utility model is preferred: described anti-fog layer is bonded in the outer surface of laminated polyester film by adhesive layer.
This utility model is preferred: described anti-fog layer is bonded between laminated polyester film and aluminium lamination by adhesive layer.
This utility model is preferred: described anti-fog layer is electrostatic film.
This utility model is preferred: the thickness of described anti-fog layer is 0.05mm-0.08mm.
This utility model is preferred: described adhesive layer is by heating the polypropylene layer that polypropylene is formed.
This utility model is preferred: the thickness of the polyvinyl chloride layer of described black is 10mm-15mm.
This utility model is preferred: the thickness of described aluminium lamination is 0.1mm-1mm.
nullCompared with prior art,The beneficial effects of the utility model are: when summer,By the aluminium lamination of window film towards outside window,Can reflected radiation heat、The effect of solar heat and stop UV ultraviolet radiation,Reduce heat and be delivered to indoor,Reduce use and its workload of refrigeration plant,When winter, window film is inverted,Aluminium lamination is towards indoor,Indoor heating installation is reflected back indoor,Reduce heating installation to be run off by window film,The polyvinyl chloride layer of black towards outdoor directly facing sunlight,Absorb heat,Play the effect of a passive type solar energy catcher,Absorb sunlight and heat is radiated indoor,Window film is such arranges resident in the use procedure of a year and a day,Work and the workload of heating and ventilation and air conditioning HVAC system can be reduced,Reduce electrical equipment abrasion and maintenance,Reduce the demand of illumination,Play energy-conservation effect,Real economical for resident,Air-vent on anti-fog layer is set to 0.001mm-0.025mm simultaneously,It is possible to prevent the haze microgranule in outdoor air to enter into indoor,And air can enter into indoor by air-vent and through hole,Good permeability,The such setting of whole window makes it can reduce the use cost of the air-conditioning of resident and illumination again can haze,Good permeability.
Accompanying drawing explanation
Fig. 1 is the top view of the ventilative heat insulation antifog window film of embodiment one;
Fig. 2 is the structure chart of the ventilative heat insulation antifog window film of embodiment one;
Fig. 3 is the structure chart of the ventilative heat insulation antifog window film of embodiment two;
Fig. 4 is the structure chart of the ventilative heat insulation antifog window film of embodiment three;
Fig. 5 is the structure chart that prior art can have an X-rayed partiting thermal insulation window film.
Accompanying drawing labelling: 1, polyvinyl chloride layer;2, aluminium lamination;3, through hole;4, anti-fog layer;5, air-vent;6, adhesive layer.
Detailed description of the invention
Below in conjunction with accompanying drawing, this utility model is described in further detail.
Embodiment one:
As depicted in figs. 1 and 2, a kind of ventilative heat insulation antifog window film, polyvinyl chloride layer 1 including black, laminated polyester film is bonded with aluminium lamination 2 by adhesive layer, the polrvinyl chloride of described black and aluminium lamination 2 are respectively equipped with several through holes 3 being mutually communicated, the diameter of described through hole 3 is 0.5mm-1.5mm, distance between adjacent through-holes 3 is 0.5mm-1mm, window film also includes transparent anti-fog layer 4, on described anti-fog layer 4, distribution has aperture is 0.001mm-0.025mm, pitch of holes is the air-vent 5 of 0.05mm-0.075mm, and through hole 3 and air-vent 5 are mutually communicated.When summer, by the aluminium lamination 2 of window film towards outside window, the effect of harmful UV ultraviolet radiation of the radiant heat of 72%, the solar heat of 65% and stop 92% can be reflected, reduce use and its workload of refrigeration plant, and wind rear wind to aluminium lamination 2 can enter in through hole 3, thus the heat can taken away in window film, reduce heat and be delivered to indoor;Outwardly, outer bright interior secretly so that the people of outdoor can not be clearly seen that indoor, but the people of indoor can be clearly seen that outdoor to aluminium lamination 2, plays the effect of privacy, so there is no need to install additional the equipment of other coverages again, energy-conservation, real economical for resident;nullWhen winter, window film is inverted,Aluminium lamination 2 is towards indoor,Indoor heating installation is reflected back indoor,Reduce heating installation to be run off by window film,The polyvinyl chloride layer 1 of black towards outdoor directly facing sunlight,Absorb heat,Play the effect of a passive type solar energy catcher,Absorb sunlight and heat is radiated indoor,The window film of one 4 feet of X4 foot is under the direct irradiation sun,2096BTU heat can be produced per hour,Be equivalent to the electric heater of 600 watts,Winter through hole 3 heat absorbed can also be allowed quickly to be delivered to indoor,Endothermic effect is more preferably,The diameter that time by day, light can pass through to arrange enters into indoor offer for the through hole 3 that 0.5mm-1.5mm spacing is 0.5mm-1mm and illuminates normally,Need not go again to turn on electric light,Window film is such arranges resident in the use procedure of a year and a day,Work and the workload of heating and ventilation and air conditioning HVAC system can be reduced,Reduce electrical equipment abrasion and maintenance,Reduce the demand of illumination,Play energy-conservation effect,Real economical for resident,Air-vent 5 on anti-fog layer 4 is set to 0.001mm-0.025mm simultaneously,It is possible to prevent the haze microgranule in outdoor air to enter into indoor,And air can pass through air-vent 5 and through hole 3 enters into indoor,Good permeability,The such setting of whole window makes it can reduce the use cost of the air-conditioning of resident and illumination again can haze,Good permeability.
Described anti-fog layer 4 is bonded in the outer surface of aluminium lamination 2 by adhesive layer.Such anti-fog layer 4 that arranges does not interfere with the endothermic effect of polyvinyl chloride layer 1.
Described anti-fog layer 4 is electrostatic film.Electrostatic film very easily produces electrostatic when there is friction with air, such that it is able to adsorb substantial amounts of microgranule, improves the anti-fog effect of window film further.Anti-fog layer 4 can also be the plastic foil that other are transparent.
The thickness of described anti-fog layer 4 is 0.05mm-0.08mm.(thickness of anti-fog layer 4 is 0.05mm, 0.06mm, 0.08mm), the words that the thickness of anti-fog layer 4 is too thin are very easily damaged, if the degree of depth of too thick air-vent 5 is too deep, some little microgranules are stuck in air-vent 5 inherence when window film is carried out wiping cleaning, not easily microgranule is cleaned out in air-vent 5, it is preferable that the thickness of anti-fog layer 4 is 0.06mm.
Described adhesive layer is by heating the polypropylene layer that polypropylene is formed.
The thickness of the polyvinyl chloride layer 1 of described black is 10mm-15mm.(thickness of polyvinyl chloride layer 1 is 10mm, 12mm, 15mm.)
The thickness of described aluminium lamination 2 is 0.1mm-1mm.(thickness of aluminium lamination 2 is 0.1mm, 0.5mm, 1mm)
Embodiment two:
As it is shown on figure 3, anti-fog layer 4 to be bonded in the outer surface of laminated polyester film on the basis of embodiment one by adhesive layer.Anti-fog layer 4 is arranged on laminated polyester film, thus when summer, anti-fog layer 4 does not interfere with the effect of the reflected sunlight of aluminium lamination 2.
Embodiment three:
As shown in Figure 4, anti-fog layer 4 is bonded between laminated polyester film and aluminium lamination 2 by the basis of embodiment one by adhesive layer.Anti-fog layer 4 is arranged on the effect that anti-fog layer 4 can play between aluminium lamination 2 and laminated polyester film protection, and anti-fog layer 4 is not easily given by foreign object and is damaged.
The equipment that test uses: EDTM heats the conversion of bulb 10D784-85-00, EDTM solar energy, BTU energy meter model #2065.Scale merit: the conversion of EDTM solar energy and BTU energy meter model #2065 calibrating mode reach 100% according to the temperature measured, and every sheet glass is placed in the middle of bulb and thermometer, then records temperature results.
The heat by every kind of glass that above method of testing recorded:
The heat of monolithic transparent glass: 85%BTU is two-way through glass
The heat of double-layer transparent glass: 70%BTU is two-way through glass
The heat of double-deck low emissivity glass: 61%BTU is two-way through glass
Correcting thermometer, 100% thermal data that record obtained just now, the position put with sheet glass is the same, and this utility model curtain board is placed between thermal source (heating lamp) and thermometer.
Experiment test is reported, the radiant heat of this utility model curtain board reflection 72%, the solar heat of reflection 65%.
Single-layer and transparent glass: show two-way by the BTU heat of glass from 85% reduce to 17%.
Double-layer transparent glass: show two-way by the BTU heat of glass from 70% reduce to 15%.
Double-deck low emissivity glass: show and two-way reduced to 13% from 61% by the BTU heat of glass.
For PM1-PM3 grade micronic dust stop rate (the Arizona micronic dust according to meeting ISO12103-1 standard is measured) :+73.6%.
All micronic dust grade average barrier rates (the Arizona micronic dust according to meeting ISO12103-1 standard is measured): higher than 63.5%.
Transmittance: 77%.
Breathability (3.2m/s0.11 hundred handkerchief draught head): 11.000l.
The above is only preferred implementation of the present utility model, and protection domain of the present utility model is not limited merely to above-described embodiment, and all technical schemes belonged under this utility model thinking belong to protection domain of the present utility model.It should be pointed out that, for those skilled in the art, without departing from the some improvements and modifications under this utility model principle premise, these improvements and modifications also should be regarded as protection domain of the present utility model.

Claims (9)

1. a ventilative heat insulation antifog window film, polyvinyl chloride layer (1) including black, laminated polyester film is bonded with aluminium lamination (2) by adhesive layer, the polrvinyl chloride of described black and aluminium lamination (2) are respectively equipped with several through holes being mutually communicated (3), the diameter of described through hole (3) is 0.5mm-1.5mm, distance between adjacent through-holes (3) is 0.5mm-1mm, it is characterized in that: window film also includes transparent anti-fog layer (4), the upper distribution of described anti-fog layer (4) has aperture to be 0.001mm-0.025mm, pitch of holes is the air-vent (5) of 0.05mm-0.075mm, through hole (3) and air-vent (5) are mutually communicated.
2. ventilative heat insulation antifog window film according to claim 1, is characterized in that: described anti-fog layer (4) is bonded in the outer surface of aluminium lamination (2) by adhesive layer.
3. ventilative heat insulation antifog window film according to claim 1, is characterized in that: described anti-fog layer (4) is bonded in the outer surface of laminated polyester film by adhesive layer.
4. ventilative heat insulation antifog window film according to claim 1, is characterized in that: described anti-fog layer (4) is bonded between laminated polyester film and aluminium lamination (2) by adhesive layer.
5. ventilative heat insulation antifog window film according to claim 1, is characterized in that: described anti-fog layer (4) is electrostatic film.
6. the ventilative heat insulation antifog window film according to claim 1 or 2 or 3 or 4 or 5, is characterized in that: the thickness of described anti-fog layer (4) is 0.05mm-0.08mm.
7. ventilative heat insulation antifog window film according to claim 1, is characterized in that: described adhesive layer is by heating the polypropylene layer that polypropylene is formed.
8. ventilative heat insulation antifog window film according to claim 1, is characterized in that: the thickness of the polyvinyl chloride layer (1) of described black is 10mm-15mm.
9. ventilative heat insulation antifog window film according to claim 1, is characterized in that: the thickness of described aluminium lamination (2) is 0.1mm-1mm.
CN201620036639.XU 2016-01-15 2016-01-15 Antifog window membrane of permeable air bound heat Expired - Fee Related CN205370296U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620036639.XU CN205370296U (en) 2016-01-15 2016-01-15 Antifog window membrane of permeable air bound heat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620036639.XU CN205370296U (en) 2016-01-15 2016-01-15 Antifog window membrane of permeable air bound heat

Publications (1)

Publication Number Publication Date
CN205370296U true CN205370296U (en) 2016-07-06

Family

ID=56277176

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620036639.XU Expired - Fee Related CN205370296U (en) 2016-01-15 2016-01-15 Antifog window membrane of permeable air bound heat

Country Status (1)

Country Link
CN (1) CN205370296U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160706

Termination date: 20180115