Claims
- 1. A high power bipolar battery comprising:
a plurality of multiple cell assemblies, said plurality of multiple cell assemblies connected in series to form the high power bipolar battery; each of said plurality of multiple cell assemblies including
a rigid core; a bipolar cell stack of multiple cells wound together around said rigid core to produce an active cell area; said wound bipolar cell stack including a positive battery connection and a negative battery connection; a container surrounding said bipolar cell stack; a positive terminal carried by said container connected to said positive battery connection; a negative terminal carried by said container spaced apart from said positive terminal and connected to said negative battery connection; and a state-of-charge connector carried by said container spaced apart from said positive and negative terminals; said state-of-charge connector including multiple conductors, each connected to a respective one of said multiple cells.
- 2. A high power bipolar battery as recited in claim 1 wherein said bipolar cell stack of multiple cells wound together around said rigid core to produce an active cell area include said bipolar cell stack of multiple cells of bipolar lithium polymer cells wound together around said rigid core to produce an active cell area having a generally elliptical cylindrical shape.
- 3. A high power bipolar battery as recited in claim 1 includes a positive end-plate assembly mounted to said rigid core for providing said positive battery connection.
- 4. A high power bipolar battery as recited in claim 1 includes a negative end-plate assembly mounted to said rigid core for providing said negative battery connection.
- 5. A high power bipolar battery as recited in claim 1 includes a plurality of bipolar plate assemblies, each mounted to said rigid core and providing a respective state-of-charge connection to said multiple cells.
- 6. A high power bipolar battery as recited in claim 1 wherein each of said plurality of multiple cell assemblies include said bipolar cell stack having a selected number of cells wound together around said rigid core; said selected number in a range between three and fifteen cells.
- 7. A high power bipolar battery as recited in claim 1 wherein said container surrounding said bipolar cell stack is a stainless steel container.
- 8. A high power bipolar battery as recited in claim 1 wherein said rigid core is a rigid polymer core.
- 9. A high power bipolar battery as recited in claim 1 includes an insulated housing containing said plurality of multiple cell assemblies.
- 10. A high power bipolar battery as recited in claim 1 includes a plurality of standoffs, each disposed between adjacent ones of said plurality of multiple cell assemblies; and a circulating blower and temperature controller for providing cooling air flow between said plurality of multiple cell assemblies.
- 11. A high power bipolar battery as recited in claim 1 includes a plurality of compression bands providing pressure across said plurality of multiple cell assemblies.
- 12. A high power bipolar battery as recited in claim 1 includes a state-of-charge controller; and a plurality of cables connected between said state-of-charge controller and said state-of-charge connector of each of said plurality of multiple cell assemblies.
- 13. A high power bipolar battery as recited in claim 1 includes a plurality of module connectors, each connecting adjacent said positive terminal and negative terminals of adjacent stack assemblies.
- 14. A high power bipolar lithium polymer battery comprising:
a plurality of multiple lithium polymer cell assemblies, said plurality of multiple lithium polymer cell assemblies connected in series to form the high power bipolar lithium polymer battery; each of said plurality of multiple lithium polymer cell assemblies including
a rigid core; a bipolar lithium polymer cell stack of multiple lithium polymer cells wound together around said rigid core to produce an active cell area; said wound bipolar lithium polymer cell stack including a positive battery connection and a negative battery connection; a container surrounding said bipolar lithium polymer cell stack; a positive terminal carried by said container connected to said positive battery connection; a negative terminal carried by said container spaced apart from said positive terminal and connected to said negative battery connection; and a state-of-charge connector carried by said container spaced apart from said positive and negative terminals; said state-of-charge connector including multiple conductors, each connected to a respective one of said multiple lithium polymer cells.
- 15. A high power bipolar lithium polymer battery as recited in claim 14 includes a positive end-plate assembly mounted to said rigid core for providing said positive battery connection; a negative end-plate assembly mounted to said rigid core for providing said negative battery connection; and a plurality of bipolar plate assemblies, each mounted to said rigid core for providing a respective state-of-charge connection to said multiple cells.
- 16. A high power bipolar lithium polymer battery as recited in claim 14 wherein said rigid core is a rigid polymer core.
- 17. A high power bipolar lithium polymer battery as recited in claim 14 wherein said container surrounding said bipolar lithium polymer cell stack is a stainless steel container.
- 18. A high power bipolar lithium polymer battery as recited in claim 14 includes an insulated housing containing said plurality of multiple lithium polymer cell assemblies.
- 19. A high power bipolar lithium polymer battery as recited in claim 14 includes a circulating blower and temperature controller for providing cooling air flow between said plurality of multiple lithium polymer cell assemblies.
- 20. A high power bipolar lithium polymer battery as recited in claim 14 includes a state-of-charge controller; and a plurality of cables connected between said state-of-charge controller and said state-of-charge connector of each of said plurality of multiple lithium polymer cell assemblies.
CONTRACTUAL ORIGIN OF THE INVENTION
[0001] The United States Government has rights in this invention pursuant to Contract No. W-31-109-ENG-38 between the United States Government and Argonne National Laboratory.