IP Library Granted Patent US 9,276,324
Granted Patent B2
US 9,276,324 · App. 12/391,595 · Granted Mar 1, 2016

Multi-spectral, selectively reflective construct

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Quick Facts
Patent No.
US 9,276,324
App. No.
12/391,595
Granted
Mar 1, 2016
Kind
B2
Abstract

A selectively reflective construct, and a method for making the construct, are described. In one embodiment reflectance, transmission and absorption properties may be controlled in multiple electromagnetic bands. A construct is described comprising a) a thermally transparent, visually opaque substrate comprising a polymeric material and a colorant, and b) a thermally reflective layer comprising a low emissivity component which is optionally transparent to radar signal.

Claims (40)

1. A construct comprising;

a front surface and a back surface;

a thermally transparent, visually opaque substrate having a first surface proximate the front surface of the construct, and a second surface, said substrate comprising a first polymeric layer and a colorant incorporated therein, wherein the substrate is free of a colorant coating on said first surface and said second surface, the colorant being present in an amount to facilitate an optical density of greater than about 0.30, wherein the first polymeric layer of the first surface comprises polytetrafluoroethylene, microporous expanded polytetrafluoroethylene, fluorinated ethylene propylene, perfluoroalkoxy copolymer resin, or polyolefin; and

a thermally reflective layer comprising a low emissivity metallic component adjacent the second surface of the thermally transparent, visually opaque substrate, the thermally reflective layer proximate the back surface of the construct and adapted for orientation towards an object or body to be shielded from detection, wherein the thermally reflective layer is applied to the thermally transparent, visually opaque substrate by metal vapor deposition or by a spray coating containing metal particles,

wherein the construct has

i) an average reflection of <70% in the wavelength range of 400 nm-600 nm, and

ii) an average reflection of >25% and less than 60% in the wavelength range of 9 μm-12 μm; and

iii) an average radar transmission >90% in the frequency range of 1 GHz to about 5 GHz; and

wherein said construct further comprises a radar camouflaging layer for attenuating a radar signal adjacent the thermally reflective layer and opposite the thermally transparent visually opaque layer.

2. The construct of claim 1 further having an average reflection of <70% in the wavelength range of 700 nm-1000 nm.

3. The construct of claim 1 having an average radar transmission >90% throughout the frequency range of 1 GHz to about 20 GHz.

4. The construct of claim 1 having an average radar transmission >99% in the frequency range of 1 GHz to about 20 GHz.

5. The construct of claim 1 wherein the thermally reflective layer comprises a metal layer.

6. The construct of claim 1 , wherein the thermally reflective layer is bonded to the thermally transparent visually opaque substrate by an intervening adhesive layer.

7. The construct of claim 1 wherein the low emissivity component comprises Al.

8. The construct of claim 1 wherein the radar camouflaging layer comprises a radar absorbing component.

9. The construct of claim 1 wherein the radar camouflaging layer is laminated to the thermally reflective layer on a side opposite the thermally transparent visually opaque substrate.

10. The construct of claim 1 wherein the construct has an oil rating greater than 1.

11. The construct of claim 1 wherein the construct has an oil rating greater than 2.

12. The construct of claim 1 having a Hand less than 500 gm.

13. The construct of claim 1 having a Hand less than 300 gm.

14. The construct of claim 1 having a Hand less than 200 gm.

15. A construct comprising:

a front surface and a back surface;

a thermally transparent, visually opaque substrate having a first surface proximate the front surface of the construct, and a second surface, said substrate comprising a first polymeric layer and a colorant incorporated therein, wherein the substrate is free of a colorant coating on said first surface and said second surface, the colorant being present in an amount to facilitate an optical density of greater than about 0.30, wherein the first polymeric layer of the first surface comprises polytetrafluoroethylene, microporous expanded polytetrafluoroethylene, fluorinated ethylene propylene, perfluoroalkoxy copolymer resin, or polyolefin, and wherein the first polymeric layer comprises an amount of carbon black less than about 1% of the weight of the first polymeric layer; and

a thermally reflective layer comprising a low emissivity metallic component adjacent the second surface of the thermally transparent, visually opaque substrate, the thermally reflective layer proximate the back surface of the construct and adapted for orientation towards an object or body to be shielded from detection, wherein the thermally reflective layer is applied to the thermally transparent, visually opaque substrate by metal vapor deposition or by a spray coating containing metal particles

wherein the construct has

i) an average reflection of <70% in the wavelength range of 400 nm-600 nm, and

ii) an average reflection of >25% and <60% in the wavelength range of 9 μm-12 μm; and

iii) an average radar transmission >90% in the frequency range of 1 GHz to about 5 GHz; and

wherein said construct further comprises a radar camouflaging layer for attenuating a radar signal adjacent the thermally reflective layer and opposite the thermally transparent visually opaque layer.

16. A construct comprising:

a front surface and a back surface;

a thermally transparent, visually opaque substrate having a first surface proximate the front surface of the construct, and a second surface, said substrate comprising a first polymeric layer and a colorant incorporated therein, wherein the substrate is free of a colorant coating on said first surface and said second surface, the colorant being present in an amount to facilitate an optical density of greater than about 0.30, wherein the first polymeric layer of the first surface comprises polytetrafluoroethylene, microporous expanded polytetrafluoroethylene, fluorinated ethylene propylene, perfluoroalkoxy copolymer resin, or polyolefin, and wherein the first polymeric layer comprises an amount of carbon black less than about 1% of the weight of the first polymeric layer; and

a thermally reflective layer comprising a low emissivity metallic component adjacent the second surface of the thermally transparent, visually opaque substrate, the thermally reflective layer proximate the back surface of the construct and adapted for orientation towards an object or body to be shielded from detection,

wherein the construct has

i) an average reflection of <70% in the wavelength range of 400 nm-600 nm, and

ii) an average reflection of >25% and less than 60% in the wavelength range of 9 μm-12 μm; and

iii) an average radar transmission >90% in the frequency range of 1 GHz to about 5 GHz; and

wherein said construct further comprises a radar camouflaging layer for attenuating a radar signal adjacent the thermally reflective layer and opposite the thermally transparent visually opaque layer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2012
From: GORE ENTERPRISE HOLDINGS, INC.
To: W. L. GORE & ASSOCIATES, INC.
Reel/Frame 027906/0508 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2009
From: KELSEY, WILLIAM D., MR.; CULLER, GREGORY D., MR.; VAN-DYCK, EMMANUEL GUSTAV, MR.; HOLCOMBE, JOHN, MR.; GUNZEL, EDWARD C., MR.
To: GORE ENTERPRISE HOLDINGS, INC.
Reel/Frame 022518/0101 →