IP Library Patent Application 12269545
Patent Application
App. No. 12/269,545

TRANSPARENT STRETCHED ACRYLIC SHEETS FOR AIRCRAFT WINDOW SYSTEMS HAVING CONTROLLED SOLAR TRANSMITTANCE PROPERTIES

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Patent No.
US None
App. No.
12/269,545
Abstract

A biaxially stretched transparent acrylic sheet having a controlled solar energy transmittance properties for aircraft window systems is described. The biaxially stretched transparent acrylic sheet includes a thermoplastic acrylic polymer, and from about 0.003 percent by weight to about 0.1 percent by weight of an IR absorbing material, the weight percentage based on the a total weight of the acrylic polymer and the IR absorbing material. The IR absorbing material preferentially absorbs energy having wavelengths from about 700 nm to about 1100 nm. The IR absorbing material is selected from the group consisting of perylene based dyes, nanoparticle hexaboride based IR absorbers, and mixtures thereof.

Claims (36)

1 . Method of making a biaxially stretched transparent acrylic sheet with controlled solar energy transmittance properties, said method comprising:

providing at least one acrylic monomer;

adding from about 0.003 percent by weight to about 0.1 percent by weight of an IR absorbing material, the weight percentage based on the a total weight of the at least one acrylic monomer and the IR absorbing material to form a fluid mixture of the at least one acrylic monomer and IR absorbing material, the IR absorbing material capable of preferentially absorbing energy having wavelengths from about 700 nm to about 1100 nm, the IR absorbing material selected from the group consisting of perylene based dyes, nanoparticle hexaboride based IR absorbers, and mixtures thereof;

polymerizing the at least one acrylic monomer by heating the at least one acrylic monomer and IR absorbing material mixture;

casting the mixture into a sheet mold to form a cast acrylic sheet;

heating the cast acrylic sheet; and

biaxially stretching the cast acrylic sheet to form a biaxially stretched transparent acrylic sheet with controlled solar energy transmittance properties.

2 . A method in accordance with claim 1 comprising adding from about 0.005 percent by weight to about 0.05 percent by weight of the IR absorbing material.

3 . A method in accordance with claim 1 comprising adding from about 0.006 percent by weight to about 0.03 percent by weight of the IR absorbing material.

4 . A method in accordance with claim 1 wherein providing at least one acrylic monomer comprises providing an alkyl (meth)acrylate monomer.

5 . A method in accordance with claim 1 wherein adding from about 0.005 percent by weight to about 0.05 percent by weight of the IR absorbing material comprises at least one of dispersing the IR absorbing material in the thermoplastic acrylic material and dissolving the IR absorbing material in the thermoplastic acrylic material.

6 . A method in accordance with claim 1 wherein providing at least one acrylic monomer comprises providing an alkyl (meth)acrylate monomer, and wherein adding from about 0.003 percent by weight to about 0.1 percent by weight of the IR absorbing material comprises:

dispersing the IR absorbing material in the alkyl (meth)acrylate monomer; and

polymerizing the alkyl (meth)acrylate monomer by heating the alkyl (meth)acrylate monomer and IR absorbing material dispersion.

7 . A method in accordance with claim 6 wherein the IR absorbing material comprises a perylene based dye and a nanoparticle hexaboride based IR absorber, a ratio of an amount of the perylene based dye to an amount of the nanoparticle hexaboride IR absorber comprising about 99:1 to about 1:99.

8 . A method in accordance with claim 1 wherein the nanoparticle hexabromide based IR absorber comprises hexabromide particles selected from the group consisting of YB 6 , LaB 6 , CeB 6 , PrB 6 , NdB 6 , SmB 6 , EuB 6 , GdB 6 , TbB 6 , DyB 6 , HoB 6 , ErB 6 , TmB 6 , LuB 6 , SrB 6 , CaB 6 , and mixtures thereof.

9 . A method in accordance with claim 1 wherein the nanoparticle hexabromide based IR absorber comprises hexabromide particles having a particle size of about 200 nm or less.

10 . A method in accordance with claim 1 wherein the nanoparticle hexabromide based IR absorber comprises hexabromide particles having a particle size of about 100 nm or less.

11 . A biaxially stretched transparent acrylic sheet having a controlled solar energy transmittance properties, said biaxially stretched transparent acrylic sheet comprising:

a thermoplastic acrylic polymer; and

from about 0.003 percent by weight to about 0.1 percent by weight of an IR absorbing material, the weight percentage based on the a total weight of said acrylic polymer and said IR absorbing material, said IR absorbing material capable of preferentially absorbing energy having wavelengths from about 700 nm to about 1100 nm, said IR absorbing material selected from the group consisting of perylene based dyes, nanoparticle hexaboride based IR absorbers, and mixtures thereof.

12 . A biaxially stretched transparent acrylic sheet in accordance with claim 11 comprising from about 0.005 percent by weight to about 0.05 percent by weight of said IR absorbing material.

13 . A biaxially stretched transparent acrylic sheet in accordance with claim 11 comprising from about 0.006 percent by weight to about 0.03 percent by weight of said IR absorbing material.

14 . A biaxially stretched transparent acrylic sheet in accordance with claim 11 wherein said IR absorbing material comprises a perylene based dye and a nanoparticle hexaboride based IR absorber, a ratio of an amount of said perylene based dye to an amount of said nanoparticle hexaboride IR absorber comprising about 99:1 to about 1:99.

15 . A biaxially stretched transparent acrylic sheet in accordance with claim 11 wherein said nanoparticle hexabromide based IR absorber comprises hexabromide particles selected from the group consisting of YB 6 , LaB 6 , CeB 6 , PrB 6 , NdB 6 , SmB 6 , EuB 6 , GdB 6 , TbB 6 , DyB 6 , HoB 6 , ErB 6 , TmB 6 , LuB 6 , SrB 6 , CaB 6 , and mixtures thereof.

16 . A biaxially stretched transparent acrylic sheet in accordance with claim 11 wherein said nanoparticle hexabromide based IR absorber comprises hexabromide particles having a particle size of about 200 nm or less.

17 . A biaxially stretched transparent acrylic sheet in accordance with claim 11 wherein said biaxially stretched transparent acrylic sheet permits at least about 75 percent transmission of visible light.

18 . A biaxially stretched transparent acrylic sheet in accordance with claim 11 wherein said biaxially stretched transparent acrylic sheet permits at least about 50 percent transmission of visible light.

19 . A biaxially stretched transparent acrylic sheet in accordance with claim 11 wherein said biaxially stretched transparent acrylic sheet permits at least about 15 percent transmission of visible light.

20 . A multi-layered aircraft window comprising an outer layer and an inner layer, an outer surface of said outer layer is positioned to face outside an aircraft, said outer layer comprising a biaxially stretched transparent acrylic sheet, said biaxially stretched transparent acrylic sheet comprising:

a thermoplastic acrylic polymer; and

from about 0.003 percent by weight to about 0.1 percent by weight of an IR absorbing material, the weight percentage based on the a total weight of said acrylic polymer and said IR absorbing material, said IR absorbing material capable of preferentially absorbing energy having wavelengths from about 700 nm to about 1100 nm, said IR absorbing material selected from the group consisting of perylene based dyes, nanoparticle hexaboride based IR absorbers, and mixtures thereof.

21 . A multi-layered aircraft window in accordance with claim 20 wherein said IR absorbing material comprises a perylene based dye and a nanoparticle hexaboride based IR absorber, a ratio of an amount of said perylene based dye to an amount of said nanoparticle hexaboride IR absorber comprising about 99:1 to about 1:99.

22 . A multi-layered aircraft window accordance with claim 11 wherein said nanoparticle hexabromide based IR absorber comprises hexabromide particles having a particle size of about 200 nm or less.

23 . A multi-layered aircraft window in accordance with claim 11 wherein said biaxially stretched transparent acrylic sheet permits at least about 75 percent transmission of visible light.

24 . A multi-layered aircraft window in accordance with claim 11 wherein said biaxially stretched transparent acrylic sheet permits at least about 50 percent transmission of visible light.

Assignments (12)
RELEASE OF SECURITY INTEREST Recorded Sep 30, 2024
From: PNC BANK, NATIONAL ASSOCIATION
To: SPARTECH CORPORATION; ATLAS ALCHEM PLASTICS, INC.; ALCHEM PLASTICS CORPORATION; ALCHEM PLASTICS, INC.; SPARTECH PLASTICS, LLC; POLYMER EXTRUDED PRODUCTS, INC.; SPARTECH POLYCAST, INC.; SPARTECH TOWNSEND, INC.; SPARTECH POLYCOM, INC.; FRANKLIN-BURLINGTON PLASTICS, INC.; SPARTECH CMD, LLC; SPARTECH FCD, LLC; SPARTECH SPD, LLC; SPARTECH MEXICO HOLDING COMPANY; SPARTECH MEXICO HOLDING COMPANY TWO; SPARTECH MEXICO HOLDINGS, LLC; CREATIVE FORMING, INC.; PEPAC HOLDINGS, INC; SPARTECH RESEARCH AND DEVELOPMENT, LLC
Reel/Frame 068735/0444 →
RELEASE OF SECURITY INTEREST Recorded Sep 30, 2024
From: PNC BANK, NATIONAL ACCOCIATION
To: BANK OF AMERICA, N.A.
Reel/Frame 068735/0408 →
NOTICE OF PARTIAL RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jul 21, 2017
From: NORTHWESTERN MUTUAL LIFE INSURANCE COMPANY; GUARDIAN LIFE INSURANCE COMPANY OF AMERICA; MASSACHUSETTS MUTUAL LIFE INSURANCE COMPANY; THE MUTUAL INSURANCE COMPANY OF NEW YORK; AID ASSOCIATION FOR LUTHERANS; ALLSTATE LIFE INSURANCE COMPANY; GENERAL AMERICAN LIFE INSURANCE COMPANY; RGA REINSURANCE COMPANY; SECURITY MUTUAL LIFE INSURANCE COMPANY OF NEW YORK; JEFFERSON-PILOT LIFE INSURANCE COMPANY
To: U.S. BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 043302/0312 →
RELEASE OF SECURITY INTEREST Recorded Jul 21, 2017
From: WELLS FARGO CAPITAL FINANCE, LLC, AS ADMINISTRATIVE AGENT
To: POLYONE DESIGNED STRUCTURES AND SOLUTIONS LLC; SPARTECH RESEARCH AND DEVELOPMENT, LLC; SPARTECH POLYCOM, INC.; FRANKLIN-BURLINGTON PLASTICS, INC.; SPARTECH POLYCAST, INC.; SPARTECH INTERNATIONAL - U.S. DISTRIBUTION CO.; ALCHEM PLASTICS CORPORATION; SPARTECH POLYCOM (TEXAS), INC.; SPARTECH TOWNSEND, INC.; SPARTECH FCD, LLC; POLYMER EXTRUDED PRODUCTS, LLC; CREATIVE FORMING, LLC
Reel/Frame 043061/0439 →
RELEASE (REEL 030242/ FRAME 0137) Recorded Nov 18, 2015
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
To: POLYONE DESIGNED STRUCTURES AND SOLUTIONS LLC
Reel/Frame 037129/0101 →
PATENT SECURITY AGREEMENT Recorded Apr 19, 2013
From: POLYONE DESIGNED STRUCTURES AND SOLUTIONS LLC
To: NORTHWESTERN MUTUAL LIFE INSURANCE COMPANY; GUARDIAN LIFE INSURANCE COMPANY OF AMERICA; MASSACHUSETTS MUTUAL LIFE INSURANCE COMPANY; THE MUTUAL INSURANCE COMPANY OF NEW YORK; AID ASSOCIATION FOR LUTHERANS; ALLSTATE LIFE INSURANCE COMPANY; GENERAL AMERICAN LIFE INSURANCE COMPANY; RGA REINSURANCE COMPANY; SECURITY MUTUAL LIFE INSURANCE COMPANY OF NEW YORK; JEFFERSON-PILOT LIFE INSURANCE COMPANY
Reel/Frame 030249/0513 →
PATENT SECURITY AGREEMENT Recorded Apr 18, 2013
From: POLYONE DESIGNED STRUCTURES AND SOLUTIONS LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
Reel/Frame 030242/0137 →
SECURITY AGREEMENT Recorded Mar 28, 2013
From: POLYONE DESIGNED STRUCTURES AND SOLUTIONS LLC; SPARTECH RESEARCH AND DEVELOPMENT, LLC; SPARTECH POLYCOM, INC.; FRANKLIN-BURLINGTON PLASTICS, INC.; SPARTECH POLYCAST, INC.; SPARTECH INTERNATIONAL - U.S. DISTRIBUTION CO.; ALCHEM PLASTICS CORPORATION; SPARTECH POLYCOM (TEXAS), INC.; SPARTECH TOWNSEND, INC.; SPARTECH FCD, LLC; POLYMER EXTRUDED PRODUCTS, LLC; CREATIVE FORMING, LLC
To: WELLS FARGO CAPITAL FINANCE, LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 030105/0575 →
RELEASE OF SECURITY INTEREST Recorded Mar 14, 2013
From: PNC BANK, NATIONAL ASSOCIATION
To: SPARTECH CORPORATION AND CERTAIN OF ITS SUBSIDIARIES
Reel/Frame 029998/0571 →
ASSIGNMENT OF SECURITY INTEREST Recorded Jun 16, 2010
From: BANK OF AMERICA, N.A.
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 024539/0869 →
AMENDED AND RESTATED SECURITY AGREEMENT Recorded Jun 16, 2010
From: SPARTECH CORPORATION; ATLAS ALCHEM PLASTICS, INC.; ALCHEM PLASTICS CORPORATION; ALCHEM PLASTICS, INC.; SPARTECH PLASTICS, LLC; POLYMER EXTRUDED PRODUCTS, INC.; SPARTECH POLYCAST, INC.; SPARTECH TOWNSEND, INC.; SPARTECH POLYCOM, INC.; FRANKLIN-BURLINGTON PLASTICS, INC.; SPARTECH CMD, LLC; SPARTECH FCD, LLC; SPARTECH SPD, LLC; SPARTECH MEXICO HOLDING COMPANY; SPARTECH MEXICO HOLDING COMPANY TWO; SPARTECH MEXICO HOLDINGS, LLC; CREATIVE FORMING, INC.; PEPAC HOLDINGS, INC.; SPARTECH RESEARCH AND DEVELOPMENT, LLC
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 024539/0879 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2008
From: GUERRA, CARLOS
To: SPARTECH CORPORATION
Reel/Frame 022002/0213 →