IP Library Granted Patent US 9,156,230
Granted Patent B2
US 9,156,230 · App. 13/004,233 · Granted Oct 13, 2015

Glass film laminate without adhesive

Inventors: Masahiro Tomamoto (Otsu, JP); Takahide Fujii (Otsu, JP); Hiroshi Takimoto (Otsu, JP)
Assignee: NIPPON ELECTRIC GLASS CO., LTD.
B32B7/06B32B17/06C03C17/002C03C27/00B32B2457/202Y10T428/24612Y10T428/24926
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Quick Facts
Patent No.
US 9,156,230
App. No.
13/004,233
Granted
Oct 13, 2015
Kind
B2
Abstract

A glass film laminate includes a supporting glass and a glass film peelably laminated to the supporting glass. A contacting surface of the glass film and a contacting surface of the supporting glass directly contact each other without an adhesive therebetween. The contacting surface of the supporting glass includes a first region and a second region with a surface roughness smaller than a surface roughness of the first region. An adhesive force between the supporting glass and the glass film is greater at the second region than at the first region.

Claims (30)

1. A glass film laminate comprising:

a supporting glass having a thickness of 400 μm or more; and

a glass film peelably laminated to the supporting glass, the glass film having a thickness of 300 μm or less,

wherein a contacting surface of the glass film and a contacting surface of the supporting glass directly contact each other and adhere to each other without an adhesive therebetween,

wherein the contacting surface of the glass film includes a first region and a second region with a surface roughness smaller than a surface roughness of the first region, the second region having a surface roughness Ra of 2.0 nm or less, and

wherein both of the first region and the second region adhere to the contacting surface of the supporting glass.

2. The glass film laminate of claim 1 , wherein an adhesive force between the supporting glass and the glass film is greater at the second region than at the first region.

3. The glass film laminate of claim 1 , wherein a difference in surface roughness Ra between the first region and the second region is 0.1 nm or more.

4. The glass film laminate of claim 1 , wherein the second region is disposed at an outer peripheral portion of the glass film, and the first region is disposed at an inner portion of the glass film surrounded by the outer peripheral portion.

5. The glass film laminate of claim 1 , wherein the glass film comprises at least one corner portion, and the second region is disposed at the corner portion.

6. The glass film laminate of claim 1 , wherein the first region is disposed at an outer peripheral portion of the glass film, and the second region is disposed at an inner portion of the glass film surrounded by the outer peripheral portion.

7. The glass film laminate of claim 1 , wherein the contacting surface of the glass film has a plurality of first regions and a plurality of second regions with a surface roughness smaller than a surface roughness of the first regions, and

wherein the first regions and the second regions are arranged alternately in a stripe configuration on the contacting surface of the glass film.

8. The glass film laminate of claim 1 , wherein a difference in surface roughness Ra between the first region and the second region is 0.3 nm or more.

9. A glass film laminate comprising:

a supporting glass having a thickness of 400 μm or more; and

a glass film peelably laminated to the supporting glass, the glass film having a thickness of 300 μm or less

wherein a contacting surface of the glass film and a contacting surface of the supporting glass directly contact each other and adhere to each other without an adhesive therebetween,

wherein the contacting surface of the supporting glass includes a first region and a second region with a surface roughness smaller than a surface roughness of the first region, the second region having a surface roughness Ra of 2.0 nm or less, and

wherein both of the first region and the second region adhere to the contacting surface of the glass film.

10. The glass film laminate of claim 9 , wherein an adhesive force between the supporting glass and the glass film is greater at the second region than at the first region.

11. The glass film laminate of claim 9 , wherein a difference in surface roughness Ra between the first region and the second region is 0.1 nm or more.

12. The glass film laminate of claim 9 , wherein the second region is disposed at an outer peripheral portion of the supporting glass, and the first region is disposed at an inner portion of the supporting glass surrounded by the outer peripheral portion.

13. The glass film laminate of claim 9 , wherein the supporting glass comprises at least one corner portion, and the second region is disposed at the corner portion.

14. The glass film laminate of claim 9 , wherein the first region is disposed at an outer peripheral portion of the supporting glass, and the second region is disposed at an inner portion of the supporting glass surrounded by the outer peripheral portion.

15. The glass film laminate of claim 9 , wherein the contacting surface of the supporting glass has a plurality of first regions and a plurality of second regions with a surface roughness smaller than a surface roughness of the first regions, and

wherein the first regions and the second regions are arranged alternately in a stripe configuration on the contacting surface of the supporting glass.

16. The glass film laminate of claim 9 , wherein a difference in surface roughness Ra between the first region and the second region is 0.3 nm or more.

17. The glass film laminate of claim 9 , wherein a ratio of the area of the second region to the area of the first region is in a range of 1:200 to 3:1.

18. The glass film laminate of claim 9 , wherein a ratio of the area of the second region to the area of the first region is 3:1.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2011
From: TOMAMOTO, MASAHIRO; FUJII, TAKAHIDE; TAKIMOTO, HIROSHI
To: NIPPON ELECTRIC GLASS CO., LTD.
Reel/Frame 027408/0621 →
Priority Claims (1)
JP 2010-003611 · Jan 12, 2010 · national
Continuity (1)
Related Publication 20120080403A1 · Apr 5, 2012