Claims
- 1. A lead-based alloy for a lead-acid battery, comprising not less than 0.02% and less than 0.05% by weight of calcium, not less than 0.4% and not more than 2.5% by weight of tin, not less than 0.005% and not more than 0.04% by weight of aluminum, not less than 0.002% and not more than 0.014% by weight of barium, and the balance of lead and unavoidable impurities.
- 2. A lead-based alloy for a lead-acid battery according to claim 1, further comprising at least one additional element selected from the group consisting of silver in an amount falling within a range of between 0.005% by weight and 0.07% by weight, bismuth in an amount falling within a range of between 0.01% by weight and 0.10% by weight, and thallium in an amount falling within a range of between 0.001% by weight and 0.05% by weight.
- 3. A grid for a lead-acid battery made of a lead-based alloy comprising not less than 0.02% and less than 0.05% by weight of calcium, not less than 0.4% and not more than 2.5% by weight of tin, not less than 0.005% and not more than 0.04% by weight of aluminum, not less than 0.002% and not more than 0.014% by weight of barium, and the balance of lead and unavoidable impurities.
- 4. A grid for a lead-acid battery according to claim 3, wherein the lead-based alloy further comprises at least one additional element selected from the group consisting of silver in an amount falling within a range of between 0.005% by weight and 0.07% by weight, bismuth in an amount falling within a range of between 0.01% by weight and 0.10% by weight, and thallium in an amount falling within a range of between 0.001% by weight and 0.05% by weight.
- 5. A grid for a lead-acid battery according to claim 3, which is manufactured by casting or pressure-working the lead-based alloy.
- 6. A grid for a lead-acid battery according to claim 3 or 4, wherein the lead-based alloy contains tin in an amount at least 12 times as much in weight as calcium and, after casting into the shape of the grid, a heat treatment is applied to the lead-based alloy at 80 to 150° C. for 1 to 10 hours.
- 7. A grid for a lead-acid battery according to claim 6, wherein the heat treatment is applied within 1000 hours after casting into the shape of the grid.
- 8. A grid for a lead-acid battery according to claim 3, wherein the grid has a surface roughness not less than 15 μm.
- 9. A grid for a lead-acid battery according to claim 3, wherein the grid is shaped like a lattice, and the effective diameter of the mesh of the lattice, which represents the value obtained by dividing 4 times the area of a polygon by the circumferential length of the polygon, is at least two times as much as the thickness of the grid.
- 10. A grid for a lead-acid battery according to claim 9, wherein the effective diameter of the mesh of the lattice falls within a range of between 2 times and 10 times as much as the thickness of the grid.
- 11. A lead-acid battery comprising a positive electrode including a grid, which is made of a lead-based alloy comprising not less than 0.02% and less than 0.05% by weight of calcium, not less than 0.4% and not more than 2.5% by weight of tin, not less than 0.005% and not more than 0.04% by weight of aluminum, not less than 0.002% and not more than 0.014% by weight of barium, and the balance of lead and unavoidable impurities.
- 12. A lead-acid battery according to claim 11, wherein the lead-based alloy further comprises at least one additional element selected from the group consisting of silver in an amount falling within a range of between 0.005% by weight and 0.07% by weight, bismuth in an amount falling within a range of between 0.01% by weight and 0.10% by weight, and thallium in an amount falling within a range of between 0.001% by weight and 0.05% by weight.
- 13. A lead-acid battery according to claim 11, wherein the lead-based alloy contains tin in an amount at least 12 times as much in weight as calcium and, after casting into the shape of the grid, a heat treatment is applied to the lead-based alloy at 80 to 150° C. for 1 to 10 hours.
- 14. A lead-acid battery according to claim 11, wherein the grid has a surface roughness not less than 15 μm.
- 15. A lead-acid battery according to claim 11, wherein the grid is shaped like a lattice, and the effective diameter of the mesh of the lattice, which represents the value obtained by dividing 4 times the area of a polygon by the circumferential length of the polygon, is at least two times as much as the thickness of the grid.
- 16. A lead-acid battery according to claim 15, wherein the effective diameter of the mesh of the lattice falls within a range of between 2 times and 10 times as much as the thickness of the grid.
Priority Claims (3)
Number |
Date |
Country |
Kind |
2002-116593 |
Apr 2002 |
JP |
|
2002-304249 |
Oct 2002 |
JP |
|
2002-304286 |
Oct 2002 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a Continuation Application of PCT Application No. PCT/JPO3/04769, filed Apr. 15, 2003, which was not published under PCT Article 21(2) in English.
[0002] This application is based upon and claims the benefit of priority from the prior Japanese Patent Applications No. 2002-116593, filed Apr. 18, 2002; No. 2002-304249, filed Oct. 18, 2002; and No. 2002-304286, filed Oct. 18, 2002, the entire contents of all of which are incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP03/04769 |
Apr 2003 |
US |
Child |
10754111 |
Jan 2004 |
US |