IP Library › Granted Patent US 10,003,056
Granted Patent B2
US 10,003,056 · App. 14/870,586 · Granted Jun 19, 2018

Battery containing acid resistant nonwoven fiber mat with biosoluble microfibers

Inventors: Zhihua Guo (Centennial, CO); Elam Leed (Littleton, CO); Luke S Weith (Centennial, CO); Jawed Asrar (Englewood, CO); Dana G Miloaga (Lakewood, CO)
Assignee: Johns Manville
H01M2/1613B01D39/086C03C3/091C03C3/118D04H1/4218D10B2101/06D10B2201/00D10B2505/04H01M10/06
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Quick Facts
Patent No.
US 10,003,056
App. No.
14/870,586
Granted
Jun 19, 2018
Kind
B2
Abstract

Acid-resistant and biosoluble glass compositions and products made therefrom. The glass compositions exhibit acid resistance, durability in white water as may be used in a wet laid fabrication process, and good biosolubility. In another aspect, a glass fiber mat is made from such a glass composition, and may be used in the manufacture of lead-acid batteries, for example as a pasting material or battery separator.

Claims (48)

1. A glass composition, consisting essentially of:

64.5-69.5 mol percent SiO 2 ;

0.5-1.7 mol percent Al 2 O 3 ;

5.0-7.5 mol percent B 2 O 3 ;

14.0-17.0 mol percent Na 2 O+K 2 O;

0.5-1.5 mol percent F; and

7.5-12 mol percent CaO+MgO;

wherein the glass composition has an acid durability index of at least 1.95, a white water durability index of at least 1.85, and a biosolubility index of no more than 2.20.

2. The glass composition of claim 1 , wherein the glass composition has a liquidus temperature of no more than 1600° F. and an HTV of no more than 1970° F.

3. The glass composition of claim 1 , wherein the glass composition has an acid durability index of at least 2.05, a white water durability index of at least 1.90, and a biosolubility index of no more than 2.10.

4. The glass composition of claim 1 , wherein the glass composition has a liquidus temperature of no more than 1500° F.

5. The glass composition of claim 1 , wherein the glass composition has a Delta T of at least 350° F.

6. The glass composition of claim 1 , wherein the glass composition has a Delta T of at least 450° F.

7. The glass composition of claim 1 , wherein the glass composition has a liquidus temperature of no more than 1600° F., an HTV of no more than 1970° F., and a Delta T of at least 350° F.

8. The glass composition of claim 1 , wherein:

the mol percentage of Na 2 O is 14.25 to 16.75; and

the mol percentage of K 2 O is 0.25 to 0.45.

9. The glass composition of claim 1 , wherein:

the mol percentage of CaO 4.50 to 6.00; and

the mol percentage of MgO is 3.75 to 5.0.

10. The glass composition of claim 1 , wherein:

the mol percentage of Na 2 O is 14.25 to 16.75;

the mol percentage of K 2 O is 0.25 to 0.45;

the mol percentage of CaO is 4.50 to 6.00; and

the mol percentage of MgO is 3.75 to 5.0.

11. The glass composition of claim 1 , wherein the mol percentage of F is 0.8 to 1.2.

12. A nonwoven fiber mat comprising fibers made from the glass composition of claim 1 .

13. A filtration medium comprising the nonwoven fiber mat of claim 12 .

14. The nonwoven fiber mat of claim 12 , wherein the nonwoven fiber mat comprises fibers having a diameter of less than 5 microns.

15. The nonwoven fiber mat of claim 12 , further comprising additional fibers made of a material or materials other than the glass composition.

16. The nonwoven fiber mat of claim 15 , wherein the fibers made of the material or materials other than the glass composition comprise cellulosic fibers, polymeric fibers, or both cellulosic and polymeric fibers.

17. The nonwoven fiber mat of claim 15 , wherein the nonwoven fiber mat includes fibers in groups having different mean diameters.

18. A lead-acid battery comprising the nonwoven fiber mat of claim 12 .

19. The lead acid battery of claim 18 , wherein the nonwoven fiber mat is used as a battery separator.

20. The lead-acid battery of claim 18 , wherein the nonwoven fiber mat is used as a pasting material.

21. The lead-acid battery of claim 18 , wherein the nonwoven fiber mat is used as a separator support mat for a polyethylene or rubber membrane separator.

22. A glass composition, consisting essentially of:

66.5-69.5 mol percent SiO 2 ;

0.5-1.7 mol percent Al 2 O 3 ;

0.01-0.25 mol percent Fe 2 O 3 ;

0.05-0.30 mol percent TiO 2 ;

5.0-7.5 mol percent B 2 O 3 ;

6.5-17.0 mol percent Na 2 O+K 2 O; and

7.5-12 mol percent CaO+MgO;

wherein the glass composition has an acid durability index of at least 1.95, a white water durability index of at least 1.85, and a biosolubility index of no more than 2.20.

23. The glass composition of claim 22 , wherein the glass composition has a liquidus temperature of no more than 1600° F. and an HTV of no more than 1970° F.

24. The glass composition of claim 22 , wherein the glass composition has an acid durability index of at least 2.05, a white water durability index of at least 1.90, and a biosolubility index of no more than 2.10.

25. The glass composition of claim 22 , wherein the glass composition has a liquidus temperature of no more than 1500° F.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2015
From: GUO, ZHIHUA; LEED, ELAM; WEITH, LUKE S; ASRAR, JAWED; MILOAGA, DANA G
To: JOHNS MANVILLE
Reel/Frame 037077/0645 →
Continuity (1)
Related Publication 20170092916A1 · Mar 30, 2017