IP Library Granted Patent US 10,345,499
Granted Patent B2
US 10,345,499 · App. 15/013,600 · Granted Jul 9, 2019

Solar control coating with enhanced solar control performance

Inventors: Paul A. Medwick (Wexford, PA); Andrew V. Wagner (Pittsburgh, PA); James P. Thiel (Lihue, HI)
Assignee: Vitro Flat Glass LLC..
G02B5/282C03C17/36C03C17/366C03C17/3639C03C17/3644C03C17/3681G02B1/14G02B5/208C03C2217/734C03C2217/944
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Quick Facts
Patent No.
US 10,345,499
App. No.
15/013,600
Granted
Jul 9, 2019
Kind
B2
Abstract

A solar control coating includes at least four phase adjustment layers and at least four metal functional layers. At least one of the metal functional layers can be a continuous layer. At least one of the metal functional layers can be a subcritical layer. The solar control coating provides reference IGU values of luminous transmittance no greater than 64%, SHGC of no greater than 0.5, and LSG of at least 1.85.

Claims (71)

1. A solar control coating, comprising:

a first phase adjustment layer;

a first metal functional layer located over the first phase adjustment layer wherein the first metal functional layer comprises silver;

an optional first primer layer located over the first metal functional layer;

a second phase adjustment layer located over the first metal functional layer;

a second metal functional layer located over the second phase adjustment layer wherein the second metal functional layer comprises silver;

an optional second primer layer located over the second metal functional layer;

a third phase adjustment layer located over the second metal functional layer;

a third metal functional layer located over the third phase adjustment layer wherein the third metal functional layer comprises silver;

an optional third primer layer located over the third metal functional layer;

a fourth phase adjustment layer located over the third metal functional layer;

a fourth metal functional layer located over the fourth phase adjustment layer wherein the fourth metal functional layer comprises silver;

an optional fourth primer layer located over the fourth metal functional layer;

an optional fifth phase adjustment layer located over the fourth metal functional layer; and

an optional protective layer located over the optional fifth phase adjustment layer,

wherein the second metal functional layer is a continuous layer having a thickness in the range of 10 nm to 20 nm,

wherein the third metal functional layer is a subcritical layer having an effective thickness in the range of 0.2 nm to 5 nm, and

wherein the solar control coating provides reference insulating glass unit (“IGU”) values of luminous transmittance no greater than 64%, and solar heat gain coefficient (“SHGC”) of no greater than 0.5.

2. The solar control coating of claim 1 , wherein the first phase adjustment layer has an optical thickness in the range of 45 nm to 75 nm.

3. The solar control coating of claim 1 , wherein the second phase adjustment layer has an optical thickness in the range of 100 nm to 150 nm.

4. The solar control coating of claim 1 , wherein the third phase adjustment layer has an optical thickness in the range of 57 nm to 87 nm.

5. The solar control coating of claim 1 , wherein the fourth phase adjustment layer has an optical thickness in the range of 55 nm to 86 nm.

6. The solar control coating of claim 1 , wherein the first metal functional layer is a continuous layer and has a thickness in the range of 10 nm to 15 nm.

7. The solar control coating of claim 1 , wherein the third metal functional layer comprises a subcritical layer having an effective thickness in the range of 0.2 nm to 1 nm.

8. The solar control coating of claim 1 , wherein the fourth metal functional layer is a continuous layer having a thickness in the range of 5 nm to 30 nm.

9. The solar control coating of claim 1 , wherein the optional third primer layer has a thickness or effective thickness in the range of 0.1 nm to 2 nm.

10. The solar control coating of claim 1 , wherein the optional fifth phase adjustment layer has an optical thickness in the range of 45 nm to 75 nm.

11. The solar control coating of claim 1 , wherein the optional protective layer comprises titania.

12. The solar control coating of claim 1 , wherein the solar control coating provides a reference IGU SHGC of not greater than 0.24, a reference IGU luminous transmittance of not greater than 55%, and a reference IGU light solar gain (“LSG”) ratio of at least 1.73.

13. A solar control coating, comprising:

a first phase adjustment layer;

a first metal functional layer located over the first phase adjustment layer wherein the first metal functional layer comprises silver;

an optional first primer layer located over the first metal functional layer;

a second phase adjustment layer located over the first metal functional layer;

a second metal functional layer located over the second phase adjustment layer wherein the second metal functional layer comprises silver;

an optional second primer layer located over the second metal functional layer;

a third phase adjustment layer located over the second metal functional layer;

a third metal functional layer located over the third phase adjustment layer wherein the third metal functional layer comprises silver;

an optional third primer layer located over the third metal functional layer;

a fourth phase adjustment layer located over the third metal functional layer;

a fourth metal functional layer located over the fourth phase adjustment layer wherein the fourth metal functional layer comprises silver;

an optional fourth primer layer located over the fourth metal functional layer;

an optional fifth phase adjustment layer located over the fourth metal functional layer; and

an optional protective layer located over the optional fifth phase adjustment layer,

wherein at the second metal functional layer is a subcritical layer having an effective thickness in the range of 1 nm to 5 nm,

wherein the third metal functional layer is a continuous layer having a thickness in the range of 8 nm to 20 nm, and

wherein the solar control coating provides reference insulating glass unity (“IGU”) values of luminous transmittance no greater than 64%, and solar heat gain coefficient (“SHGC”) of no greater than 0.5.

14. The solar control coating of claim 13 , wherein the first phase adjustment layer has an optical thickness in the range of 45 nm to 75 nm, wherein the second phase adjustment layer has an optical thickness in the range of 100 nm to 150 nm, wherein the third phase adjustment layer has an optical thickness in the range of 57 nm to 87 nm, and wherein the fourth phase adjustment layer has an optical thickness in the range of 55 nm to 86 nm.

15. The solar control coating of claim 13 , wherein the first metal functional layer has a thickness in the range of 10 nm to 15 nm, and wherein the fourth metal functional layer has a thickness in the range of 5 nm to 30 nm.

16. The solar control coating of claim 13 , wherein the optional fifth phase adjustment layer has an optical thickness in the range of 45 nm to 75 nm.

17. A solar control coating, comprising:

a first phase adjustment layer;

a first metal functional layer located over the first phase adjustment layer wherein the first metal functional layer comprises silver;

an optional first primer layer located over the first metal functional layer;

a second phase adjustment layer located over the first metal functional layer;

a second metal functional layer located over the second phase adjustment layer wherein the second metal functional layer comprises silver;

an optional second primer layer located over the second metal functional layer;

a third phase adjustment layer located over the second metal functional layer;

a third metal functional layer located over the third phase adjustment layer wherein the third metal functional layer comprises silver;

an optional third primer layer located over the third metal functional layer;

a fourth phase adjustment layer located over the third metal functional layer;

a fourth metal functional layer located over the fourth phase adjustment layer wherein the fourth metal functional layer comprises silver;

an optional fourth primer layer located over the fourth metal functional layer;

an optional fifth phase adjustment layer located over the fourth metal functional layer; and

an optional protective layer located over the optional fifth phase adjustment layer,

wherein the first metal functional layer is a subcritical layer having an effective thickness in the range of 1 nm to 5 nm or the fourth metal functional layer is a subcritical layer having an effective thickness in the range of 1 nm to 5 nm,

wherein the first metal functional layer and the fourth metal functional layer cannot both be subcritical layers having an effective thickness in the range of 1 nm to 5 nm, and

wherein the solar control coating provides reference insulating glass unity (“IGU”) values of luminous transmittance no greater than 64%, and solar heat gain coefficient (“SHGC”) of no greater than 0.5.

18. The solar control coating of claim 17 , wherein the first phase adjustment layer has an optical thickness in the range of 46 nm to 75 nm, wherein the second phase adjustment layer has an optical thickness in the range of 100 nm to 150 nm, wherein the third phase adjustment layer has an optical thickness in the range of 57 nm to 87 nm, and wherein the fourth phase adjustment layer has an optical thickness in the range of 55 nm to 86 nm.

19. The solar control coating of claim 17 , wherein the second metal functional layer comprises a continuous layer having a thickness in the range of 10 nm to 20 nm, and wherein the third metal functional layer is a continuous layer having a thickness in the range of 10 nm to 20 nm.

20. The solar control coating of claim 17 , wherein the optional fifth phase adjustment layer has an optical thickness in the range of 45 nm to 75 nm.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2021
From: VITRO, S.A.B. DE C.V.
To: VITRO FLAT GLASS LLC
Reel/Frame 058052/0526 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2019
From: VITRO, S.A.B. DE C.V.
To: VITRO FLAT GLASS LLC
Reel/Frame 047973/0254 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL: 040473 FRAME: 0455. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 3, 2017
From: PPG INDUSTRIES OHIO, INC.
To: VITRO, S.A.B. DE C.V.
Reel/Frame 042393/0520 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2016
From: PPG INDUSTRIES OHIO, INC.
To: VITRO, S.A.B. DE C.V.
Reel/Frame 040473/0455 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2016
From: MEDWICK, PAUL A.; WAGNER, ANDREW V.; THIEL, JAMES P.
To: PPG INDUSTRIES OHIO, INC.
Reel/Frame 038725/0772 →
Continuity (3)
Provisional Application 62111235 · Feb 3, 2015
Provisional Application 62212665 · Sep 1, 2015
Related Publication 20160223729A1 · Aug 4, 2016
Cited By (7)
US 12,227,448 US 12,298,475 US 12,332,407 US 12,393,026 US 12,560,747 US 12,565,804 US 12,585,046