IP Library Patent Application 15864728
Patent Application
App. No. 15/864,728

Methods to Make Glass Compositions and Fibers Made Therefrom

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Quick Facts
Patent No.
US None
App. No.
15/864,728
Abstract

Embodiments of the present invention provides fiberizable glass compositions formed from batch compositions comprising significant amounts of one or more glassy minerals, including perlite and/or pumice.

Claims (89)

1 . A glass composition comprising:

53-64 weight percent SiO 2 ;

8-12 weight percent Al 2 O 3 ;

8.5-18 weight percent alkali oxide component (R 2 O); and

a metal oxide (RO) component,

wherein the metal oxide component is present in an amount to provide a ratio R 2 O/RO ranging from about 0.15 to about 1.5.

2 . The glass composition of claim 1 , wherein the RO component is present in an amount ranging from 7 weight percent to 31 weight percent.

3 . The glass composition of claim 1 , wherein the RO component comprises a mixture of metal oxides.

4 . The glass composition of claim 3 , wherein the RO component comprises a mixture of CaO and MgO.

5 . The glass composition of claim 1 , wherein the RO component comprises CaO in an amount ranging from 7 to 26 weight percent.

6 . The glass composition of claim 1 , wherein the RO component comprises MgO in an amount up to 5 weight percent.

7 . The glass composition of claim 1 , wherein the R 2 O comprises Na 2 O, K 2 O or Li 2 O or mixtures thereof.

8 . The glass composition of claim of claim 1 , wherein R 2 O comprises Na 2 O in an amount ranging from 6.5 to 16 weight percent

9 . The glass composition of claim of claim 1 , wherein R 2 O comprises K 2 O in an amount ranging from 2 to 4 weight percent.

10 . The glass composition of claim of claim 1 , wherein R 2 O comprises Li 2 O in an amount up to 2 weight percent.

11 . The glass composition of claim 1 further comprising ZrO 2 in an amount up to 8 weight percent.

12 . The glass composition of claim 1 , wherein the RO component comprises ZnO in an amount up to 3 weight percent.

13 . The glass composition of claim 1 further comprising MnO 2 in an amount up to 3 weight percent.

14 . The glass composition of claim 1 further comprising TiO 2 in an amount up to 3 weight percent.

15 . The glass composition of claim 1 further comprising La 2 O 3 in an amount up to 3 weight percent.

16 . The glass composition of claim 1 having a fiber forming temperature ranging from about 1120° C. to about 1300° C.

17 . The glass composition of claim 1 , wherein the difference between forming temperature and liquidus temperature of the glass composition is at least about 65° C.

18 . The glass composition of claim 1 , wherein the difference between forming temperature and liquidus temperature of the glass composition ranges from about 45° C. to about 165° C.

19 . A glass composition formed from a batch composition comprising:

at least 50 weight percent of a glassy mineral, the glassy mineral comprising a combination of SiO 2 and Al 2 O 3 in an amount of at least 80 weight percent; and

at least 5 weight percent of a sodium source.

20 . The glass composition of claim 19 , wherein the batch comprises at least 60 weight percent of the glassy mineral.

21 . The glass composition of claim 19 , wherein the batch comprises at least 65 weight percent of the glassy mineral.

22 . The glass composition of claim 19 , wherein the batch comprises at least 10 weight percent of the sodium source.

23 . The glass composition of claim 19 , wherein the glassy mineral comprises perlite, pumice or mixtures thereof.

24 . A method of producing a glass composition comprising:

providing a batch composition comprising at least 50 weight percent of a glassy mineral and at least 5 weight percent of a sodium source, the glassy comprising a combination of SiO 2 and Al 2 O 3 in an amount of at least 80 weight percent; and

heating the batch to form a melt of the glass composition.

25 . The method of claim 24 , wherein the batch composition is heated to a fiber forming temperature ranging from about 1120° C. to about 1300° C.

26 . The method of claim 25 further comprising fiberizing the glass composition.

27 . A glass composition comprising:

56-63 weight percent SiO 2 ;

9-12 weight percent Al 2 O 3 ;

12-17 weight percent RO (CaO+MgO);

12-14 weight percent R 2 O (Na 2 O+K 2 O);

0-2 weight percent Li 2 O;

0-3 weight percent ZnO;

0-3 weight percent ZrO 2 ;

0-3 weight percent MnO 2 ; and

0-3 weight percent La 2 O 3 .

28 . A glass composition comprising:

60-64 weight percent SiO 2 ;

9-12 weight percent Al 2 O 3 ;

7-15 weight percent RO (CaO+MgO); and

13-15.5 weight percent R 2 O (Na 2 O+K 2 O);

0-2 weight percent Li 2 O;

0-3 weight percent ZnO;

0-3 weight percent ZrO 2 ;

0-3 weight percent MnO 2 ; and

0-3 weight percent La 2 O 3 .

29 . A glass composition comprising:

54-63 weight percent SiO 2 ;

9-14 weight percent Al 2 O 3 ;

11-16.5 weight percent RO (CaO+MgO); and

14-17 weight percent R 2 O (Na 2 O+K 2 O);

0-2 weight percent Li 2 O;

0-3 weight percent ZnO;

0-3 weight percent ZrO 2 ;

0-3 weight percent MnO 2 ; and

0-3 weight percent La 2 O 3 .

30 . The glass compositions of any of claims 27 to 29 , wherein the glass composition comprises less than 0.7 weight percent Fe 2 O 3 .

31 . A glass fiber comprising:

53-64 weight percent SiO 2 ;

8-12 weight percent Al 2 O 3 ;

8 . 5-18 weight percent alkali oxide (R 2 O) component; and

a metal oxide (RO) component, wherein the metal oxide component is present in an amount to provide a mass ratio of R 2 O/RO ranging from about 0.15 to about 1.5.

32 . A polymeric composite comprising:

a polymeric material; and

at least one glass fiber in the polymeric material, the at least one glass fiber comprising:

53-64 weight percent SiO 2 ;

8-12 weight percent Al 2 O 3 ;

8 . 5-18 weight percent alkali oxide (R 2 O) component; and

a metal oxide (RO) component, wherein the metal oxide component is present in an amount to provide a mass ratio of R 2 O/RO ranging from about 0.15 to about 1.5.

1 - 32 . (canceled)

33 . A method of producing a glass composition comprising:

providing a batch composition comprising at least 50 weight percent of a glassy mineral, at least 5 weight percent of a sodium source, and at least one additional component selected from the group consisting of Li 2 O, La 2 O 3 , MnO 2 , TiO 2 , ZnO, and ZrO 2 , wherein the glassy mineral comprises a combination of SiO 2 and Al 2 O 3 in an amount of at least 80 weight percent; and

heating the batch to form a melt of the glass composition.

34 . A method of producing a glass composition comprising:

providing a batch composition comprising dolomite, at least 50 weight percent of a glassy mineral, and at least 5 weight percent of a sodium source, the glassy comprising a combination of SiO 2 and Al 2 O 3 in an amount of at least 80 weight percent; and

heating the batch to form a melt of the glass composition, wherein the glass composition comprises:

53-64 weight percent SiO 2 ;

8-12 weight percent Al 2 O 3 ;

8.5-18 weight percent alkali oxide (R 2 O) component; and

a metal oxide (RO) component, wherein the metal oxide component is present in an amount to provide a mass ratio of R 2 O/RO ranging from about 0.15 to about 1.5.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2020
From: NIPPON ELECTRIC GLASS AMERICA, INC.
To: ELECTRIC GLASS FIBER AMERICA, LLC
Reel/Frame 051843/0666 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2020
From: PPG INDUSTRIES OHIO, INC.
To: NIPPON ELECTRIC GLASS AMERICA, INC.
Reel/Frame 051724/0323 →