IP Library Granted Patent US 8,753,758
Granted Patent B2
US 8,753,758 · App. 14/075,057 · Granted Jun 17, 2014

Low emissivity and EMI shielding window films

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Quick Facts
Patent No.
US 8,753,758
App. No.
14/075,057
Granted
Jun 17, 2014
Kind
B2
Abstract

A low emissivity and EMI shielding transparent composite film typically for use in association with window glazing and comprising a transparent film substrate having on one side thereof an underlayer of abrasion resistant hardcoat material with at least one infrared reflective layer covering the underlayer, typically a metallic layer which may be encased in metal oxide layers, which is then covered with a thin external protective top coat of a cured fluorinated resin.

Claims (35)

1. A low emissivity transparent composite film comprising:

a transparent polyester film substrate;

an underlayer of abrasion resistant hardcoat material deposited on the surface of the film substrate and comprising a crosslinked acrylate polymer, the underlayer having a dried thickness of about 2 to about 6 microns;

at least one infrared reflective layer comprising at least one core metallic layer and at least one spacer layer comprising one or more metal oxides;

a transparent, protective top coat comprising a polysilazane, fluoro silane, fluoroalkyl silane, or combination thereof and having a thickness of less than 0.5 microns;

wherein the composite film has an emissivity of less than about 0.2 and an abrasion delta haze of 5 percent or less.

2. The composite film of claim 1 wherein the core metallic layer comprises aluminum, copper, gold, nickel, silver, platinum, palladium, tungsten, titanium, or alloys thereof.

3. The composite film of claim 1 , wherein the underlayer has an abrasion delta haze of about 3 to about 5 percent.

4. The composite film of claim 1 wherein the infrared reflective layer further comprises at least one thin metal film having a thickness of about 1 to about 5 nm.

5. The composite film of claim 4 wherein the thin metal film comprises nickel, chromium, nobium, platinum, cobalt, zinc, molybdenum, zirconium, vanadium, or alloys thereof.

6. The composite film of claim 5 wherein the thin metal film comprises a nickel-chromium alloy.

7. The composite film of claim 1 wherein the infrared reflective layer further comprises a silicon-based layer comprising silicon nitride, silicon dioxide, silicon oxide, or combinations thereof.

8. The composite film of claim 1 wherein the spacer layer comprises a transparent conductive layer, a dielectric layer, or a combination thereof.

9. The composite film of claim 1 wherein the spacer layer comprises indium oxide, indium zinc oxide, indium tin oxide, aluminum oxide, silicon nitride, silicon dioxide, antimony tin oxide, tin oxide, or mixtures thereof.

10. The composite film of claim 1 wherein the infrared reflective layer comprises a plurality of thin spacer layers disposed between a plurality of transparent conductive layers.

11. A low emissivity transparent composite film comprising:

a transparent film substrate comprising poly(ethylene)terephthalate;

an underlayer of abrasion resistant hardcoat material deposited on the surface of the film substrate and comprising a crosslinked acrylate polymer, the underlayer having a dried thickness of about 2 to about 6 microns;

at least one infrared reflective layer comprising at least one core metallic layer, at least one spacer layer comprising indium oxide, indium zinc oxide, indium tin oxide, or mixtures thereof; and

a transparent, protective top coat comprising a polysilazane, fluoro silane, fluoroalkyl silane, or combination thereof and having a thickness of less than 0.5 microns;

wherein the composite film has an emissivity of less than about 0.17 and an abrasion delta haze of 5% or less.

12. The composite film of claim 11 which has an emissivity of less than about 0.1.

13. The composite film of claim 11 which has a visible light transmission of up to about 75 percent.

14. The composite film of claim 11 wherein the core metallic layer comprises aluminum, copper, gold, nickel, silver, platinum, palladium, tungsten, titanium, or alloys thereof.

15. The composite film of claim 11 wherein the infrared reflective layer further comprises a thin metal film comprising nickel, chromium, nobium, platinum, cobalt, zinc, molybdenum, zirconium, vanadium, or alloys thereof.

16. The composite film of claim 15 wherein the thin metal film comprises a nickel-chromium alloy.

17. The composite film of claim 11 which has a visible light transmission of about 28 percent to about 47 percent.

18. A low emissivity transparent composite film comprising:

a transparent film substrate comprising poly(ethylene)terephthalate;

an underlayer of abrasion resistant hardcoat material deposited on the surface of the film substrate and comprising a crosslinked acrylate polymer, the underlayer having a dried thickness of about 2 to about 6 microns;

at least one infrared reflective layer comprising at least one core metallic layer comprising aluminum, gold, nickel, silver, or alloys thereof, and at least one spacer layer comprising indium oxide, indium zinc oxide, indium tin oxide, or combinations thereof; and

a transparent, protective top coat comprising a polysilazane, fluoro silane, fluoroalkyl silane, or combination thereof and having a thickness of less than 0.5 microns;

wherein the composite film has an emissivity of less than about 0.15 and an abrasion delta haze of 5 percent or less.

19. The composite film of claim 18 wherein the infrared reflective further comprises a thin metal film protective layer comprising nickel, chromium, nobium, platinum, cobalt, zinc, molybdenum, zirconium, vanadium, or alloys thereof.

20. The composite film of claim 18 wherein the infrared reflective layer further comprises a silicon-based layer comprising silicon nitride, silicon dioxide, silicon oxide, or combinations thereof.

Assignments (1)
CHANGE OF NAME Recorded Mar 7, 2019
From: CP FILMS INC.
To: EASTMAN PERFORMANCE FILMS, LLC
Reel/Frame 048526/0727 →