IP Library › Granted Patent US 8,950,217
Granted Patent B2
US 8,950,217 · App. 13/151,877 · Granted Feb 10, 2015

Method of cutting object to be processed, method of cutting strengthened glass sheet and method of manufacturing strengthened glass member

Inventors: Hiroyuki Iwaki (Hamamatsu, JP); Takafumi Ogiwara (Hamamatsu, JP); Takeshi Sakamoto (Hamamatsu, JP); Masaharu Hoshikawa (Hamamatsu, JP); Kazuhiro Atsumi (Hamamatsu, JP); Daisuke Kawaguchi (Hamamatsu, JP); Takafumi Tsunematsu (Hamamatsu, JP)
Assignee: Hamamatsu Photonics K.K.
B23K26/0057B23K26/0639B23K26/4075
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Quick Facts
Patent No.
US 8,950,217
App. No.
13/151,877
Granted
Feb 10, 2015
Kind
B2
Abstract

A method of cutting an object to be processed comprises the steps of irradiating an object to be processed with a laser light which is an elliptically-polarized light having an ellipticity other than 1 such that a direction of polarization of the laser light intersects a line to cut the object and a thickness direction of the object, while locating a converging point of the laser light within the object, so as to form a modified region within the object along the line and generate a fracture from the modified region in the thickness direction of the object, and causing the fracture to reach front and rear faces of the object so as to cut the object along the line.

Claims (10)

1. A method of cutting a strengthened glass sheet, comprising:

irradiating a strengthened glass sheet with a laser light which is an elliptically-polarized light having an ellipticity other than 1 such that a direction of polarization of the laser light intersects a line to cut the strengthened glass sheet and a thickness direction of the strengthened glass sheet, while locating a converging point of the laser light within the strengthened glass sheet, so as to form a modified region within the strengthened glass sheet along the line, simultaneously generating a fracture from the modified region in the thickness direction of the strengthened glass sheet and cutting the strengthened glass sheet along the line.

2. A method of cutting a strengthened glass sheet according to claim 1 , wherein the strengthened glass sheet is irradiated with the laser light along the line such that the direction of polarization of the laser light is orthogonal to the line and the thickness direction of the strengthened glass sheet.

3. A method of cutting a strengthened glass sheet according to claim 1 , wherein the elliptically-polarized light is a linearly-polarized light having an ellipticity of 0.

4. A method of cutting a strengthened glass sheet according to claim 2 , wherein the elliptically-polarized light is a linearly-polarized light having an ellipticity of 0.

5. A method of manufacturing a strengthened glass member having a predetermined form, comprising:

irradiating a strengthened glass sheet with a laser light which is an elliptically-polarized light having an ellipticity other than 1 such that a direction of polarization of the laser light intersects a line set along the predetermined form in the strengthened glass sheet and a thickness direction of the strengthened glass sheet, while locating a converging point of the laser light within the strengthened glass sheet, so as to form a modified region within the strengthened glass sheet along the line, simultaneously generating a fracture from the modified region in the thickness direction of the strengthened glass sheet and cutting the strengthened glass sheet along the line, to manufacture the strengthened glass member.

6. A method of manufacturing a strengthened glass member according to claim 5 , wherein the strengthened glass sheet is irradiated with the laser light along the line such that the direction of polarization of the laser light is orthogonal to the line and the thickness direction of the strengthened glass sheet.

7. A method of manufacturing a strengthened glass member according to claim 5 , wherein the elliptically-polarized light is a linearly-polarized light having an ellipticity of 0.

8. A method of manufacturing a strengthened glass member according to claim 6 , wherein the elliptically-polarized light is a linearly-polarized light having an ellipticity of 0.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2011
From: IWAKI, HIROYUKI; OGIWARA, TAKAFUMI; SAKAMOTO, TAKESHI; HOSHIKAWA, MASAHARU; ATSUMI, KAZUHIRO; KAWAGUCHI, DAISUKE; TSUNEMATSU, TAKAFUMI
To: HAMAMATSU PHOTONICS K.K.
Reel/Frame 026865/0901 →
Priority Claims (1)
JP P2010-112188 · May 14, 2010 · national
Continuity (2)
Continuation In Part 13107056 · May 13, 2011
Related Publication 20110316200A1 · Dec 29, 2011