Claims
- 1. A battery plate making method for a lead-acid battery, which comprises the steps of:mixing water with a lead oxide; reacting an acid with said lead oxide in a mixture to produce lead-oxide acid components; and forming a paste comprising interlocking lead acid crystals from said lead oxide-lead acid compounds, characterized in that said mixing, reacting, and crystal forming steps occur in an extrusion apparatus at a high temperature, and said method further comprises the step of extruding said paste from said extrusion apparatus into a grid preheated to approximate a temperature of said paste when said paste is extruded such that said paste is dried to form a battery plate of said lead—acid battery.
- 2. A method as set forth in claim 1, wherein said extrusion apparatus comprises a first cylindrical bore having a first helical rotatable member disposed therein, the rotation of which causes any material in said first cylindrical bore to be moved toward a die orifice.
- 3. A method as set forth in claim 1, wherein said acid is sulfuric acid, and said interlocking lead acid crystals are tetrabasic lead sulfate.
- 4. A method as set forth in claim 1, wherein said grid is brought into contact with said paste by means of a conveyor.
- 5. A method as set forth in claim 4, wherein said method further comprises the step of adjusting a quantity of paste to be extruded into said grid by adjusting a speed of said conveyor.
- 6. A method as set forth in claim 1, wherein said extruding step is performed as a sheathing process, a roll-forming process, a tape-casting process, or an injection molding process.
- 7. A method as set forth in claim 1, wherein said acid is sulfuric acid, and said interlocking lead acid crystals are tribasic lead sulfate.
- 8. A method as set forth in claim 1, wherein said paste forming step comprises removing a portion of said water from said mixture.
- 9. A method as set forth in claim 1, wherein said paste forming step comprises adding an additional amount of water to said mixture.
- 10. A method as set forth in claim 1, wherein said reacting step comprises introducing said acid at a plurality of locations in said extrusion apparatus.
- 11. A method as set forth in claim 1, further comprising the step of controlling a temperature inside said extruder to optimize said reacting step.
- 12. A method as set forth in claim 1, further comprising adding chemical binders to said mixture prior to extrusion of said paste.
- 13. A battery plate making method for a lead-acid battery, which comprises the steps of:mixing water with a lead oxide; reacting an acid with said lead oxide in a mixture to produce lead-oxide acid components; and forming a paste comprising interlocking lead acid crystals from said lead oxide-lead acid compounds, characterized in that said mixing, reacting, and crystal forming steps occur in an extrusion apparatus, and said method further comprises the step of extruding said paste from said extrusion apparatus into a grid where said paste is dried to form a battery plate of said lead-acid battery, wherein said extrusion apparatus comprises a first cylindrical bore having a first helical rotatable member disposed therein, the rotation of which causes any material in the first cylindrical bore to be moved toward a die orifice, wherein said extrusion apparatus further comprises a second cylindrical bore having a second helical rotatable member disposed therein, the rotation of which causes any material in said second cylindrical bore to be forced through said die orifice as part of said extruding step.
- 14. A method as set forth in claim 13, wherein at least said mixing step occurs in said first cylindrical bore.
- 15. A method as set forth in claim 13, wherein at least said mixing step and said reacting step occur in said first cylindrical bore.
- 16. A method as set forth in claim 13, wherein said first cylindrical bore is attached to said second cylindrical bore, and said first helical rotatable member is disposed upstream relative to said second helical rotatable member.
- 17. A method as set forth in claim 16, wherein said first helical rotatable member is physically separated from said second helical rotatable member.
RELATED APPLICATIONS
This application claims the benefit of U.S. Provisional Application Ser. No. 60/167,748 filed Nov. 29, 1999.
US Referenced Citations (8)
Foreign Referenced Citations (3)
Number |
Date |
Country |
2713453 |
Oct 1977 |
DE |
3136933 |
Mar 1983 |
DE |
3318599 |
Nov 1984 |
DE |
Non-Patent Literature Citations (1)
Entry |
Pavlov et al, “A New Technology for Preparation of Pastes for Lead-Acid Batteries,” The Battery Man, Apr. 1998. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/167748 |
Nov 1999 |
US |