IP Library › Granted Patent US 11,305,517
Granted Patent B2
US 11,305,517 · App. 16/788,363 · Granted Apr 19, 2022

Stiff interlayers for laminated glass structures

Inventors: William Keith Fisher (Corning, NY); Mark Stephen Friske (Campbell, NY); Anurag Jain (Painted Post, NY)
Assignee: CORNING INCORPORATED
B32B17/10036B32B7/02B32B7/022B32B17/10137B32B17/10743B32B17/10752B32B17/10761B32B17/10779B32B17/10788B32B2250/05B32B2307/102B32B2307/40B32B2307/51B32B2307/56B32B2419/00B32B2451/00B32B2605/00Y10T428/2495Y10T428/24967Y10T428/24983
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Quick Facts
Patent No.
US 11,305,517
App. No.
16/788,363
Granted
Apr 19, 2022
Kind
B2
Abstract

A new laminated glass structure for automotive glazing, architectural window and other applications that includes two sheets of relatively thin, optionally chemically strengthened glass, such as Corning® Gorilla® Glass, with a composite interlayer structure that includes at least one relatively stiff layer having relatively high Young's modulus of 50 MPa or higher and a relatively softer polymer layer having a relatively low Young's modulus of 20 MPa or lower.

Claims (21)

1. A glass laminate comprising:

a first chemically strengthened alkali aluminosilicate glass sheet having a thickness of 1.5 mm or less, wherein the first chemically strengthened alkali aluminosilicate glass sheet has a compressive stress of greater than about 600 MPa, a depth of layer greater than about 40 micrometers, and a tensile stress between about 40 and 65 MPa;

a second glass sheet; and

a composite interlayer positioned between the first and second glass sheets, the composite interlayer comprising:

two outer polymer layers having a Young's modulus of 50 MPa or greater, and selected from the group consisting of polyvinyl butyral (PVB), poly carbonate (PC), or polyethylene terephthalate (PET), and

an inner polymer layer having a Young's modulus of less than 20 MPa, and selected from the group consisting of polyvinyl butyral (PVB), acoustic poly vinyl butyral (A -PVB), ethylene vinyl acetate (EVA), plasticized polyvinyl chloride (PVC), or thermoplastic polyurethane (TPU),

wherein the inner polymer layer is disposed between the two outer polymer layers.

2. The glass laminate of claim 1 , wherein the two outer polymer layers have a Young's modulus of 100 MPa or greater.

3. The glass laminate of claim 1 , wherein the two outer polymer layers have a Young's modulus ranging from 100 MPa to 1000 MPa.

4. The glass laminate of claim 1 , wherein the inner polymer layer has a Young's modulus of 10 MPa or less.

5. The glass laminate of claim 1 , wherein the inner polymer layer has a Young's modulus ranging from 1 MPa to 10 MPa.

6. The glass laminate of claim 1 , wherein the two outer polymer layers have a Young's modulus 10-100 times greater than the Young's modulus of the inner polymer layer.

7. The glass laminate of claim 1 , wherein the composite interlayer makes up a majority of a total thickness of the glass laminate.

8. The glass laminate of claim 7 , wherein the composite interlayer makes up at least 57% of the total thickness of the glass laminate.

9. The glass laminate of claim 7 , wherein at least one of the first or second glass sheets has a thickness ranging from 0.5 mm to 1.5 mm.

10. The glass laminate of claim 1 comprising a total thickness of from about 2 mm to about 4 mm.

11. The glass laminate of claim 1 , wherein the second glass sheet is chemically strengthened.

12. The glass laminate of claim 1 , wherein the second glass sheet is non-chemically-strengthened.

13. The glass laminate of claim 1 , wherein the first chemically strengthened alkali aluminosilicate glass sheet comprises from 8 mol % to about 18 mol % Na 2 O.

14. The glass laminate of claim 1 , wherein the first chemically strengthened alkali aluminosilicate glass sheet comprises from 9 mol % to about 21 mol % Na 2 O.

15. The glass laminate of claim 1 , wherein the first chemically strengthened alkali aluminosilicate glass sheet is an alkali aluminoborosilicate glass.

Continuity (3)
Continuation 14402624
Provisional Application 61653865 · May 31, 2012
Related Publication 20200180275A1 · Jun 11, 2020