Laminated and ion-exchanged strengthened glass laminates

US11780758B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11780758-B2
Application numberUS-202117343149-A
CountryUS
Kind codeB2
Filing dateJun 9, 2021
Priority dateJul 25, 2011
Publication dateOct 10, 2023
Grant dateOct 10, 2023

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A method of making a glass sheet comprises laminating a high CTE core glass to a low CTE clad glass at high temperatures and allowing the laminate to cool creating compressive stress in the clad glass, and then ion exchanging the laminate to increase the compressive stress in the outer near surface regions of the clad glass. The core glass may include ions that exchange with ion in the clad glass to increase the compressive stress in inner surface regions of the clad glass adjacent to the clad glass/core glass interfaces. The glass laminate may be formed and laminated using a fusion forming and laminating process and fusion formable and ion exchangeable glass compositions.

First claim

Opening claim text (preview).

What is claimed is: 1. A strengthened laminated glass structure comprising: a core glass layer having a first coefficient of thermal expansion (CTE); a first clad glass layer laminated to a first surface of the core glass layer; and a second clad glass layer laminated to a second surface of the core glass layer; wherein each of the first clad glass layer and the second clad glass layer comprises an ion exchangeable glass having a second CTE that is lower than the first CTE of the core glass layer; and wherein an ion-exchanged region of each of the first clad glass layer and the second clad glass layer is under a compressive stress that is enhanced relative to a compressive stress of a non-ion-exchanged region of the respective first clad glass layer and second clad glass layer; wherein the enhanced compressive stress of the ion-exchanged region varies continuously with increasing depth of layer (DOL) from an outer surface of the respective first clad glass layer or second clad glass layer throughout a portion of each of the first and second clad glass layers; and wherein the enhanced compressive stress increases with increasing DOL in a portion of the ion-exchanged region. 2. The strengthened laminated glass structure of claim 1 , wherein the enhanced compressive stress decreases with increasing DOL in a portion of the ion-exchanged region. 3. The strengthened laminated glass structure of claim 1 , wherein the ion exchangeable glass of each of the first clad glass layer and the second clad glass layer is an alkali aluminosilicate glass. 4. The strengthened laminated glass structure of claim 1 , wherein the ion-exchanged region of each of the first clad glass layer and the second clad glass layer includes a buried compressive stress region that is disposed adjacent an interface between the core glass layer and the respective first clad glass layer or second clad glass layer. 5. The strengthened laminated glass structure of claim 4 , wherein the buried compressive stress region of each of the first clad glass layer and the second clad glass layer is a result of ion exchange between the core glass layer and the respective first clad glass layer or second clad glass layer. 6. The strengthened laminated glass structure of claim 1 , wherein the core layer comprises an ion exchangeable glass. 7. The strengthened laminated glass structure of claim 6 , wherein the ion exchangeable glass of the core glass layer has a greater concentration of K ions than the ion exchangeable glass of each of the first clad glass layer and the second clad glass layer. 8. The strengthened laminated glass structure of claim 4 , wherein compressive stress produced by ions exchanged from the core glass layer into each of the first clad glass layer and the second clad glass layer combine with the state of compressive stress in the respective first clad glass layer or second clad glass layer to produce a spike in compressive stress in the buried compressive stress region of the respective first clad glass layer or second clad glass layer. 9. The strengthened laminated glass structure of claim 1 , wherein the second CTE of the ion exchangeable glass of each of the first clad glass layer and the second clad glass layer is less than or equal to 65×10 −7 /° C. 10. The strengthened laminated glass structure of claim 1 , wherein the ion-exchanged region of each of the first clad glass layer and the second clad glass layer includes an outer surface region, the enhanced compressive stress of the ion-exchanged region has a maximum enhanced compressive stress at the outer surface region. 11. The strengthened laminated glass structure of claim 1 , wherein the second CTE is at least 10×10 −7 /° C. lower than the first CTE. 12. The strengthened laminated glass structure of claim 1 , wherein the second CTE is lower than the first CTE by an amount in a range from 10×10 −7 /° C. to 60×10 −7 /° C. 13. The strengthened laminated glass structure of claim 1 , wherein: the core glass layer comprises a core glass sheet; the first clad glass layer comprises a first clad glass sheet laminated to the first surface of the core glass sheet; and the second clad glass layer comprises a second clad glass sheet laminated to the second surface of the core glass sheet. 14. The strengthened laminated glass structure of claim 1 , wherein: the core glass layer comprises a hollow core glass tube, the first surface of the core glass layer is an inner peripheral surface of the hollow core glass tube, and the second surface of the core glass layer is an outer peripheral surface of the hollow core glass tube; the first clad glass layer comprises a first hollow clad glass tube laminated to the outer peripheral surface of the core glass tube; and the second clad glass layer comprises a second hollow clad glass tube laminated to the inner peripheral surface of the core glass tube. 15. The strengthened laminated glass structure of claim 3 , wherein the ion exchangeable alkali aluminosilicate glass comprises: about 65 mol. % to about 70 mol. % SiO 2 ; about 9 mol. % to about 14 mol. % Al 2 O 3 ; about 0 mol. % to about 11 mol. % B 2 O 3 ; about 5 mol. % to less than 10 mol. % alkali oxide R 2 O, wherein R is at least one of Li, Na, or K; and about 3 mol. % to about 11 mol. % divalent oxide MO, wherein M is at least one of Mg, Ca, Ba or Zn. 16. A strengthened laminated glass structure, comprising: a core glass layer having a first coefficient of thermal expansion (CTE); a first clad glass layer laminated to a first surface of the core glass layer; and a second clad glass layer laminated to a second surface of the core glass layer, wherein each of the first clad glass layer and the second clad glass layer comprises an ion exchangeable glass having a second CTE that is lower than the first CTE of the core glass layer; wherein an ion-exchanged region of each of the first clad glass layer and the second clad glass layer is under a compressive stress that is enhanced relative to a compressive stress of a non-ion-exchanged region of the respective first clad glass layer and second clad glass layer; wherein the enhanced compressive stress of the ion-exchanged region varies continuously with increasing depth of layer (DOL) from an outer surface of the respective first clad glass layer or second clad glass layer throughout a portion of each of the first and second clad glass layers; and wherein the enhanced compressive stress inflects from decreasing to increasing with increasing DOL in a portion of the ion-exchanged region. 17. A strengthened laminated glass structure comprising: a core glass layer having a first coefficient of thermal expansion (CTE); a first clad glass layer laminated to a first surface of the core glass layer; and a second clad glass layer laminated to a second surface of the core glass layer; wherein each of the first clad glass layer and the second clad glass layer comprises an ion exchangeable glass having a second CTE that is lower than the first CTE of the core glass layer; wherein an ion-exchanged region of each of the first clad glass layer and the second clad glass layer is under a compressive stress that is enhanced relative to a compressive stress of a non-ion-exchanged region of the respective first clad glass layer and second clad glass layer; and wherein the enhanced compressive stress of the ion-exchanged region varies continuously with increasing depth of layer (DOL) from an outer surface of the respective first clad glass layer and second clad glass layer throughout each of the first and second

Assignees

Inventors

Classifications

  • C03B17/02Primary

    Forming {molten} glass coated with coloured layers; {Forming molten glass of different compositions or layers; Forming molten glass comprising reinforcements or inserts} · CPC title

  • comprising glass as the main or only constituent of a layer, next to another layer of a specific {material} · CPC title

  • Tubes or rods · CPC title

  • Forming glass sheets · CPC title

  • by the overflow downdraw fusion process; Isopipes therefor · CPC title

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What does patent US11780758B2 cover?
A method of making a glass sheet comprises laminating a high CTE core glass to a low CTE clad glass at high temperatures and allowing the laminate to cool creating compressive stress in the clad glass, and then ion exchanging the laminate to increase the compressive stress in the outer near surface regions of the clad glass. The core glass may include ions that exchange with ion in the clad gla…
Who is the assignee on this patent?
Corning Inc
What technology area does this patent fall under?
Primary CPC classification C03B17/02. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Oct 10 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).