IP Library Granted Patent US 7,923,155
Granted Patent B2
US 7,923,155 · App. 12/049,700 · Granted Apr 12, 2011

Lead-tin-silver-bismuth containing alloy for positive grid of lead acid batteries

Assignees: Northstar Battery Company, LLC; RSR Technologies
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,923,155
App. No.
12/049,700
Granted
Apr 12, 2011
Kind
B2
Abstract

A lead-acid battery grid made from a lead-based alloy containing, in addition to lead, tin at a concentration that is at least about 0.500%, silver at a concentration that is greater than 0.006%, and bismuth at a concentration that is at least about 0.005%, and, if calcium is present in the lead-based alloy, the calcium is at concentration that is no greater than about 0.010%.

Claims (20)

1. A battery grid comprising a lead-based alloy comprising lead, tin at a concentration that is at least about 0.500 wt %, silver at a concentration that is greater than 0.006 wt %, and bismuth at a concentration that is at least about 0.005 wt %, and, if calcium is present in the lead-based alloy, the calcium is at concentration that is less than 0.010 wt %, and, if other elements are present in the lead-based alloy, the other elements are at a total concentration of no greater than about 0.010 wt %.

2. The battery grid of claim of 1 wherein the lead-based alloy is essentially free of calcium.

3. The battery grid of claim of 1 wherein the lead-based alloy consists essentially of lead, tin, silver, and bismuth.

4. The battery grid of claim 1 wherein the tin is at a concentration that is no greater than about 2.000 wt %, the silver is at a concentration that is no greater than about 0.050 wt %, and the bismuth is at a concentration that is no greater than about 0.050 wt %.

5. The battery grid of claim 1 wherein the battery grid consists essentially of the lead-based alloy.

6. The battery grid of claim 1 wherein the lead-based alloy is continuously cast.

7. The battery grid of claim 1 wherein the tin is at a concentration that is at least about 0.900 wt % and no greater than about 1.100 wt %, the silver is at a concentration that is at least about 0.018 wt % and no greater than 0.022 wt %, and the bismuth is at a concentration that is at least about 0.015 wt % and no greater than about 0.020 wt %.

8. A battery grid comprising a lead-based alloy comprising lead at a concentration that is at least 98.000 wt %, tin at a concentration that is at least about 0.500 wt %, silver at a concentration that is greater than 0.006 wt %, and bismuth at a concentration that is at least about 0.005 wt %, and, if calcium is present in the lead-based alloy, the calcium is at concentration that is less than 0.010 wt %, and, if other elements are present in the lead-based alloy, the other elements are at a total concentration of no greater than about 0.010 wt %.

9. The battery grid of claim 8 wherein the tin is at a concentration that is at least about 0.700 wt % and no greater than about 1.500 wt %, the silver is at a concentration that is at least about 0.010 wt % and no greater than about 0.030 wt %, and the bismuth is at a concentration that is at least about 0.010 wt % and no greater than about 0.030 wt %.

10. The battery grid of claim 9 wherein the tin is at a concentration that is at least about 0.900 wt % and no greater than about 1.200 wt %, the concentration of silver is at least about 0.015 wt % and no greater than about 0.025 wt %, and the concentration of bismuth is at least about 0.015 wt % and no greater than about 0.025 wt %.

11. A lead-acid battery comprising a container and, within the container, at least one positive plate, at least one negative plate, and at least one separator separating each positive and negative plates, wherein the positive plate comprises a battery grid having a surface and an active material adhered to at least a portion of the battery grid surface, wherein the battery grid comprises a lead-based alloy that comprises lead, tin at a concentration that is at least about 0.500 wt %, silver at a concentration that is greater than 0.006 wt %, and bismuth at a concentration that is at least about 0.005 wt %, and, if calcium is present in the lead-based alloy, the calcium is at concentration that is less than 0.010 wt %, and, if other elements are present in the lead-based alloy, the other elements are at a total concentration of no greater than about 0.010 wt %.

12. The lead-acid battery of claim 11 wherein the lead-based alloy is essentially free of calcium.

13. The lead-acid battery of claim 11 wherein the lead-based alloy consists essentially of lead, tin, silver, and bismuth.

14. The lead-acid battery of claim 11 wherein the tin is at a concentration that is no greater than about 2.000 wt %, the silver is at a concentration that is greater than about 0.050 wt %, and the bismuth is at a concentration that is no greater than about 0.050 wt %.

15. The lead-acid battery of claim 11 wherein the battery grid consists essentially of the lead-based alloy.

16. The lead-acid battery of claim 11 wherein the lead-based alloy is continuously cast.

17. The lead-acid battery of claim 11 wherein the tin is at a concentration that is at least about 0.900 wt % and no greater than about 1.100 wt %, the silver is at a concentration that is at least about 0.018 wt % and no greater than 0.022 wt %, and the bismuth is at a concentration that is at least about 0.015 wt % and no greater than about 0.020 wt %.

18. A lead-acid battery comprising a container and, within the container, at least one positive plate, at least one negative plate, and at least one separator separating each positive and negative plates, wherein the positive plate comprises a battery grid having a surface and an active material adhered to at least a portion of the battery grid surface, wherein the battery grid comprises a lead-based alloy that comprises lead at a concentration that is at least 98.000 wt %, tin at a concentration that is at least about 0.500 wt %, silver at a concentration that is greater than 0.006 wt %, and bismuth at a concentration that is at least about 0.005 wt %, and, if calcium is present in the lead-based alloy, the calcium is at concentration that is no less than 0.010 wt %, and, if other elements are present in the lead-based alloy, the other elements are at a total concentration of no greater than about 0.010 wt %.

19. The lead-acid battery of claim 18 wherein the tin is at a concentration that is at least about 0.700 wt % and no greater than about 1.500 wt %, the silver is at a concentration that is at least about 0.010 wt % and no greater than about 0.030 wt%, and the bismuth is at a concentration that is at least about 0.010 wt % and no greater than about 0.030 wt %.

20. The lead-acid battery of claim 19 wherein the tin is at a concentration that is at least about 0.900 wt % and no greater than about 1.200 wt %, the concentration of silver is at least about 0.015 wt % and no greater than about 0.025 wt %, and the concentration of bismuth is at least about 0.015 wt % and no greater than about 0.025 wt %.

Assignments (6)
CHANGE OF NAME Recorded Dec 5, 2025
From: RSR TECHNOLOGIES, INC.
To: ECOBAT SOLUTIONS, INC.
Reel/Frame 073868/0711 →
CHANGE OF NAME Recorded Dec 5, 2025
From: ECOBAT SOLUTIONS, INC.
To: ECOBAT SOLUTIONS, LLC
Reel/Frame 073868/0819 →
RELEASE OF SECURITY INTEREST Recorded Oct 3, 2019
From: INTERTRUST (SWEDEN) AB
To: NORTHSTAR BATTERY COMPANY, LLC
Reel/Frame 050613/0900 →
SECURITY INTEREST Recorded Jan 18, 2017
From: NORTHSTAR BATTERY COMPANY, LLC
To: INTERTRUST (SWEDEN) AB
Reel/Frame 041007/0478 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2008
From: FLEMING, FRANK ALBERT
To: NORTHSTAR BATTERY COMPANY, LLC
Reel/Frame 020799/0567 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2008
From: PRENGAMAN, DAVID R.
To: RSR TECHNOLOGIES
Reel/Frame 020799/0603 →
Continuity (2)
Provisional Application 60895885 · Mar 20, 2007
Related Publication 20080233482A1 · Sep 25, 2008