IP Library Granted Patent US 11,718,557
Granted Patent B2
US 11,718,557 · App. 17/692,335 · Granted Aug 8, 2023

Chemically strengthened glass

Inventors: Kenji Imakita (Tokyo, JP); Suguru Murayama (Tokyo, JP); Izuru Kashima (Tokyo, JP); Kazuki Kanehara (Tokyo, JP)
Assignee: AGC Inc.
C03C21/002C03C3/083C03C3/085C03C3/091C03C3/093C03C3/097
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Quick Facts
Patent No.
US 11,718,557
App. No.
17/692,335
Granted
Aug 8, 2023
Kind
B2
Abstract

The present invention relates to a chemically strengthened glass satisfying A 1 [MPa] of 600 or more, A 2 [MPa] of 50 or more, B 1 [μm] of 6 or less, B 2 [μm] of 10% or more of t [μm], C [MPa] of −30 or less, and A 1 /B 1 [MPa/μm] of 100 or more when the chemically strengthened glass has a thickness t [μm] and a profile of a stress value [MPa] at a depth x [μm] from a glass surface is approximated by an error least-squares method in a region of 0<x<3t/8 using the following function while defining a compressive stress as positive and a tensile stress as negative: A 1 erfc(x/B 1 )+A 2 erfc(x/B 2 )+C, in which erfc is a complementary error function, and relations of A 1 >A 2 and B 1 <B 2 are satisfied.

Claims (18)

1. A chemically strengthened glass satisfying

A 1 [MPa] of 750 or more,

A 2 [MPa] of 150 or more and 349 or less,

B 1 [μm] of 5.0 or less,

B 2 [μm] of 10% or more of t [μm],

C [MPa] of −70 or less,

A 1 /B 1 [MPa/μm] of 220 or more, and

A 2 /B 2 [MPa/μm] of 3 or less

when the chemically strengthened glass has a thickness t [μm] and a profile of a stress value [MPa] at a depth x [μm] from a glass surface is approximated by an error least-squares method in a region of 0<x<3t/8 using the following function (I) while defining a compressive stress as positive and a tensile stress as negative:

A 1 erfc( x/B 1 )+ A 2 erfc( x/B 2 )+ C

wherein erfc is a complementary error function, and relations of A 1 >A 2 and B 1 <B 2 are satisfied,

the chemically strengthened glass having a base composition comprising 50 to 73% of SiO 2 , 7 to 30% of Al 2 O 3 , 0 to 10% of B 2 O 3 , 0 to 3% of P 2 O 5 , 0 to 8% of MgO, 0 to 3% of CaO, 0 to 2% of SrO, 0 to 1% of BaO, 0 to 1% of ZnO, 0 to 2% of TiO 2 , 0 to 2% of ZrO 2 , 5 to 12% of Li 2 O, 2 to 9% of Na 2 O, and 0 to 5% of K 2 O in mole percentage on an oxide basis.

2. The chemically strengthened glass according to claim 1 , wherein B 2 [μm] is 20% or more of t [μm].

3. The chemically strengthened glass according to claim 1 , wherein C [MPa] is −80 or less.

4. The chemically strengthened glass according to claim 1 , wherein the thickness t is 0.3 mm or more and 2 mm or less.

5. The chemically strengthened glass according to claim 1 , having a base composition comprising 50 to 73% of SiO 2 , 7 to 30% of Al 2 O 3 , 2 to 10% of B 2 O 3 , 0 to 3% of P 2 O 5 , 0 to 8% of MgO, 0 to 3% of CaO, 0 to 2% of SrO, 0 to 1% of BaO, 0 to 1% of ZnO, 0 to 0.25% of TiO 2 , 0 to 2% of ZrO 2 , 7 to 11% of Li 2 O, 2 to 9% of Na 2 O and 0 to 3% of K 2 O in mole percentage on an oxide basis.

6. The chemically strengthened glass according to claim 1 , which is a glass substrate for a cover glass.

7. The chemically strengthened glass according to claim 1 , wherein A 2 /B 2 [MPa/μm] is 2.5 or less.

Priority Claims (2)
JP 2017-076106 · Apr 6, 2017 · national
JP 2018-018508 · Feb 5, 2018 · national
Continuity (3)
Continuation 16585200 · Sep 27, 2019
Continuation PCTJP2018014277 · Apr 3, 2018
Related Publication 20220204400A1 · Jun 30, 2022
Cited By (2)
US 12,281,039 US 12,344,550