IP Library Granted Patent US 9,470,614
Granted Patent B2
US 9,470,614 · App. 14/172,061 · Granted Oct 18, 2016

Method for impact-testing chemically strengthened glass, method for reproducing cracks in chemically strengthened glass, and method for manufacturing chemically strengthened glass

Inventors: Hiroyuki Okawa (Tokyo, JP); Kazuhiko Yamanaka (Tokyo, JP)
Assignee: ASAHI GLASS COMPANY, LIMITED
G01N3/303G01M7/08
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Quick Facts
Patent No.
US 9,470,614
App. No.
14/172,061
Granted
Oct 18, 2016
Kind
B2
Abstract

A chemically strengthened glass is disposed on a base, and an impacting object is dropped from above in a state where one surface of the chemically strengthened glass is in contact with an abrasive surface of a sandpaper containing an abrasive having a size of not smaller than a depth of a compressive stress layer.

Claims (19)

1. A method for impact-testing a flat chemically strengthened glass having formed on a surface thereof a compressive stress layer,

the method comprising disposing the chemically strengthened glass on a base, and dropping a sphere from above in a state where one surface of the chemically strengthened glass is in contact with an abrasive surface of a sandpaper containing an abrasive having a size of not smaller than a depth of the compressive stress layer, wherein said sphere makes contact with a surface of said sandpaper which is opposite said abrasive surface.

2. The method for impact-testing a flat chemically strengthened glass according to claim 1 , wherein the sandpaper is disposed such that the abrasive surface is in contact with a surface of the chemically strengthened glass which is opposite the surface of the chemically strengthened glass that is in contact with said base.

3. The method for impact-testing a flat chemically strengthened glass according to claim 2 , wherein an anti-scattering film is placed on another surface of the chemically strengthened glass, the another surface being not in contact with the abrasive surface of the sandpaper.

4. The method for impact-testing a flat chemically strengthened glass according to claim 1 , wherein an anti-scattering film is placed on another surface of the chemically strengthened glass, the another surface being not in contact with the abrasive surface of the sandpaper.

5. A method for reproducing a crack in a flat chemically strengthened glass having formed on a surface thereof a compressive stress layer,

the method comprising giving an impact on the chemically strengthened glass to thereby make a flaw having a depth larger than the compressive stress layer,

wherein the chemically strengthened glass is disposed on a base and a sphere is dropped from above in a state where one surface of the chemically strengthened glass is in contact with an abrasive surface of a sandpaper containing an abrasive having a size of not smaller than a depth of the compressive stress layer,

wherein said sphere makes contact with a surface of said sandpaper which is opposite said abrasive surface.

6. The method for reproducing a crack in a flat chemically strengthened glass according to claim 5 , wherein the sandpaper is disposed such that the abrasive surface is in contact with a surface of the chemically strengthened glass which is opposite the surface of the chemically strengthened glass that is in contact with said base.

7. The method for reproducing a crack in a flat chemically strengthened glass according to claim 6 , wherein an anti-scattering film is placed on another surface of the chemically strengthened glass, the another surface being not in contact with the abrasive surface of the sandpaper.

8. The method for reproducing a crack in a flat chemically strengthened glass according to claim 5 , wherein an anti-scattering film is placed on another surface of the chemically strengthened glass, the another surface being not in contact with the abrasive surface of the sandpaper.

9. A method for manufacturing a chemically strengthened glass having formed on a surface thereof a compressive stress layer, the method comprising:

determining a threshold value by the method for impact-testing a flat chemically strengthened glass sheet by changing a drop height of a sphere

wherein said method for impact-testing a flat chemically strengthened glass sheet comprises disposing the chemically strengthened glass on a base, and dropping said sphere from a predetermined height above the chemically strengthened glass, wherein surface of the chemically strengthened glass is in contact with an abrasive surface of a sandpaper containing an abrasive having a size of not smaller than a depth of the compressive stress layer, wherein said sphere makes contact with a surface of said sandpaper which is opposite said abrasive surface, and

performing a sampling inspection of judging a quality of the chemically strengthened glass based on the threshold value.

10. The method according to claim 9 , wherein the sandpaper is disposed such that the abrasive surface is in contact with a surface of the chemically strengthened glass which is opposite the surface of the chemically strengthened glass that is in contact with said base.

11. The method according to claim 10 , wherein an anti-scattering film is placed on another surface of the chemically strengthened glass, the another surface being not in contact with the abrasive surface of the sandpaper.

12. The method according to claim 9 , wherein an anti-scattering film is placed on another surface of the chemically strengthened glass, the another surface being not in contact with the abrasive surface of the sandpaper.

Assignments (2)
CHANGE OF NAME Recorded Aug 7, 2018
From: ASAHI GLASS COMPANY, LIMITED
To: AGC INC.
Reel/Frame 046730/0786 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2014
From: OKAWA, HIROYUKI; YAMANAKA, KAZUHIKO
To: ASAHI GLASS COMPANY, LIMITED
Reel/Frame 032155/0638 →
Priority Claims (1)
JP 2011-171197 · Aug 4, 2011 · national
Continuity (2)
Continuation PCTJP2012069369 · Jul 30, 2012
Related Publication 20140150525A1 · Jun 5, 2014