Claims
- 1. A battery system including a plurality of lead-acid cells, said system comprising:
a. a vertically upstanding cell support frame comprising:
i. a plurality of cell vertical support means for individually vertically supporting at least one of said lead-acid cells; ii. at least two vertically upstanding members having receptacle means formed therein for jointly slidably receiving and retaining said a plurality of cell vertical support means; iii. manually assemblable means for connectingly maintaining said upstanding members in spaced positional relationship one to another for receipt of said cell vertical support means; b. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case resting on said cell vertical support means; and c. means occupying vertical space between an upper surface of said cell case and a vertically immediately adjacent one of said cell vertical support means for deformably resisting vertical expansion of said cell case due to plate growth as said battery system operates.
- 2. The battery system of claim 1 wherein said cell includes a vent valve comprising:
a. a hollow tubular housing, at least part of which fits within a vent into said cell and may be is secured to said cell case and another part overlying the case in a position for engaging a sealing member between the case and the vent valve; b. a barrier extending across the housing and blocking passage of gases; c. a pair of oppositely directed valve openings through the barrier; and d. valve means on opposite sides of the barrier covering the respective valve openings yielding to higher pressure on the opposite side of the barrier from the respective valve means to relieve that higher pressure.
- 3. The battery system of claim 1 wherein each cell comprises:
a. a catalyst holder extending into said case; and b. catalyst material retained within said holder in vapor communication with said plates for enhancing recombination of hydrogen and oxygen evolved at said plates into water within said battery.
- 4. The battery system of claim 1 wherein each cell comprises:
a. a vent valve assembly within an aperture in said cell case being in vapor communication with said plates and comprising:
i. valve means for relieving partial pressure vacuum internal of said cell in excess of a predetermined level above ambient; ii. a catalyst cage extending into said case via said aperture; and iii. catalyst material retained within said cage being in vapor communication with said plates for enhancing recombination of hydrogen and oxygen evolved at plates of said cell into water.
- 5. The battery system of claim 4 wherein said catalyst cage is completely within said case.
- 6. The battery system of claim 4 wherein said catalyst material is palladium.
- 7. A battery system including a plurality of lead-acid cells, said system comprising:
a. a vertically upstanding cell support frame comprising:
i. a plurality of cell vertical support means for individually vertically supporting at least one of said lead-acid cells; ii. at least two vertically upstanding members having receptacle means formed therein for jointly slidably receiving and retaining a plurality said of cell vertical support means; iii. manually assemblable means for connectingly maintaining said upstanding members in spaced positional relationship one to another for receipt of said cell vertical support means; b. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case resting on said cell vertical support means; c. at least one of said cells comprising an elongated strap external of the cell case for connecting together cell terminals of like polarity fitting over cell terminals of like polarity and having an output terminal at a central position on the strap for engagement by at least one connector bar in electrical communication with at least one other cell of said system; and d. means occupying vertical space between an upper surface of said cell case and a vertically immediately adjacent one of said cell vertical support means for deformably resisting vertical expansion of said cell case due to plate growth as said battery system operates.
- 8. A battery system including a plurality of lead-acid cells, said system comprising:
a. a vertically upstanding cell support frame comprising:
i. a plurality of cell vertical support means for individually vertically supporting at least one of said lead-acid cells; ii. at least two vertically upstanding members having receptacle means formed therein for jointly slidably receiving and retaining a plurality of said cell vertical support means; iii. manually assemblable means for connectingly maintaining said upstanding members in spaced positional relationship one to another for receipt of said cell vertical support means; b. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case resting on said cell vertical support means; c. at least one of said cells including a thermoplastic case comprising:
i. an exterior wall having an aperture therethrough for passage of a positive terminal; ii. a generally cylindrical sleeve within said aperture, formed integrally with said case and said exterior wall for receiving said positive terminal; iii. a flexible loop of said thermoplastic material thinner wall connection connecting said exterior wall with said cylindrical sleeve about the respective peripheries thereof, said loop thinner wall connection being integral with said sleeve continuously about the periphery thereof and connecting said bottom portion to said exterior wall continuously about the periphery of said aperture and being sufficiently flexible to deform and permit axial movement of a terminal resident within said sleeve upon plate expansion during operation of said cell; and d. means occupying vertical space between an upper surface of said cell case and a vertically immediately adjacent one of said cell vertical support means for deformably resisting vertical expansion of said cell case due to plate growth as said battery system operates.
- 9. A battery system including a plurality of lead-acid cells, said system comprising:
a. a vertically upstanding cell support frame comprising:
i. a plurality of cell vertical support means for individually vertically supporting at least one of said lead-acid cells; ii. at least two vertically upstanding members having receptacle means formed therein for jointly slidably receiving and retaining a plurality said of cell vertical support means; iii. manually assemblable means for connectingly maintaining said upstanding members in spaced positional relationship one to another for receipt of said cell vertical support means; b. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case resting on said cell vertical support means; c. said cell case being molded of thermoplastic resin having an aperture through an exterior wall for passage of a positive terminal comprising:
i. a sleeve within said aperture, formed integrally with said exterior wall for receiving said positive terminal; ii. an integral flexible connector of said thermoplastic material somewhat thinner and more flexible than said exterior wall connecting said wall with said cylindrical sleeve about the respective peripheries thereof; iii. a lead bushing fixedly retained and sealed within said sleeve, for receiving a positive terminal of said battery therewithin; and d. means occupying vertical space between an upper surface of said cell case and a vertically immediately adjacent one of said cell vertical support means for deformably resisting vertical expansion of said cell case due to plate growth as said battery system operates.
- 10. A battery system including a plurality of lead-acid cells, said system comprising:
a. a vertically upstanding cell support frame comprising:
i. a plurality of cell vertical support means for individually vertically supporting at least two adjoining ones of said lead-acid cells, wherein said cell vertical support means having including vertical apertures therethrough for connective cooling air flow therethrough; ii. at least two vertically upstanding members having receptacle means formed therein for jointly slidably receiving and retaining a plurality said of cell vertical support means; iii. manually assemblable means for connectingly maintaining said upstanding members in spaced positional relationship one to another for receipt of said cell vertical support means; b. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case resting on said cell vertical support means; c. means occupying vertical space means between an upper surface of said cell case and a vertically immediately adjacent one of said cell vertical support means for deformably resisting vertical expansion of said cell case due to plate growth as said battery system operates, wherein said occupying space means having apertures therethrough, above said occupying space apertures is said apertures in said cell vertical support means for convective cooling air flow therethrough; d. means between said adjoining cells having upwardly directed channels therethrough positioned for fluid communication of said apertures of said cell support means with said apertures in said occupying space means deformable vertical expansion resistance means, for maintaining said adjoining cells in laterally spaced relationship and upwardly channeling convective cooling air flow therebetween.
- 11. The battery system of claim 3 wherein said catalyst material is palladium.
- 12. A battery system including a plurality of lead-acid cells, said system comprising:
a. a vertically upstanding cell support frame comprising means for vertically supporting said lead-acid cells; b. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case resting on said support means; and c. means occupying vertical space between an upper surface of said cell case and a vertically immediately adjacent one of said cell vertical support means for deformably resisting vertical expansion of said cell case due to plate growth as said battery system operates.
- 13. The battery system of claim 12 wherein each of said cell includes a vent valve comprising:
a. a hollow tubular housing, at least part of which fits within a vent into each of said cell and may be is secured to said cell case and another part overlying the case in a position for engaging a sealing member between the case and the vent valve; b. a barrier extending across the housing and blocking passage of gases; c. a pair of oppositely directed valve openings through the barrier; and d. valve means on opposite sides of the barrier covering the respective valve openings yielding to higher pressure on the opposite side of the barrier from the respective valve means to relieve that higher pressure.
- 14. The battery system of claim 12 wherein each cell comprises:
a. a catalyst holder extending into said case; and b. catalyst material retained within said holder in vapor communication with said plates for enhancing recombination of hydrogen and oxygen evolved at said plates into water within said battery.
- 15. A battery including a plurality of lead-acid cells, comprising:
a. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case; and b. at least one of said cells comprising an elongated strap external of said cell case for connecting together terminals of said cell of like polarity and an having output terminal at a central position on said strap for electrical communication with at least one other battery.
- 16. A battery system including a plurality of lead-acid cells, said system comprising:
a. a vertically upstanding cell support frame comprising:
i. means for individually vertically supporting at least one of said lead-acid cells; b. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case resting on said cell support means; c. at least one of said cells including a thermoplastic case comprising:
i. an exterior wall having an aperture therethrough for passage of a positive terminal; ii. a generally cylindrical sleeve within said aperture, formed integrally with said case and said exterior wall for receiving said positive terminal; and iii. a flexible loop of said thermoplastic material connecting said wall with said cylindrical sleeve about the respective peripheries thereof, said loop being integral with said sleeve continuously about the periphery thereof and connecting said bottom portion to said exterior wall continuously about the periphery of said aperture and being sufficiently flexible to deform and permit axial movement of a terminal resident within said sleeve upon plate expansion during operation of said cell.
- 17. A battery system including a plurality of lead-acid cells, said system comprising:
a. a vertically upstanding cell support frame including means for individually vertically supporting at least two adjoining ones of said lead-acid cells, wherein said cell vertical support means having including vertical apertures for connective cooling air flow therethrough; b. each of said cells having a plurality of horizontal positive and negative sandwiched lead metal plates contained within a cell case resting on said vertical support means; c. means occupying vertical space means between an upper surface of said cell case and a vertically immediately adjacent one of said cell vertical support means for deformably resisting vertical expansion of said cell case due to plate growth as said battery system operates, wherein said occupying space means having apertures above said apertures in said cell vertical support means for convective cooling air flow therethrough; d. means between said adjoining cells having upwardly directed channels therethrough positioned for fluid communication of said apertures of said cell support means with said apertures in said deformative vertical expansion resistance occupying space means, for maintaining said adjoining cells in laterally spaced relationship and upwardly channeling convective cooling air flow therebetween.
- 18. The battery system of claim 17 wherein each cell comprises:
a. a catalyst holder extending into said case; and b. catalyst material retained within said holder in vapor communication with said plates for enhancing recombination of hydrogen and oxygen evolved at said plates into water within said battery.
- 19. The battery system of claim 17 wherein, at least one of said cells comprises an elongated strap external of the cell case for connecting together terminals of said cell of like polarity and having an output terminal at a central position on the strap for external electrical communication.
- 20. The battery system of claim 18 wherein said catalyst material is palladium.
- 21. A battery system of claim 19 wherein said cell support frame further comprises:
a. a plurality of means for individually vertically supporting at least one of said lead-acid cells; b. at least two vertically upstanding members having receptacle means formed therein for jointly slidably receiving and retaining a plurality of said cell vertical support means; and c. manually assemblable means for connectingly maintaining said upstanding members in spaced positional relationship one to another for receipt of said vertical cell support means.
- 22. The battery system of claim 21 wherein:
a. at least one of said cells includes a thermoplastic case comprising:
i. an exterior wall having an aperture therethrough for passage of a positive terminal; ii. a generally cylindrical sleeve within said aperture, formed integrally with said case and said exterior wall for receiving said positive terminal; and iii. a flexible loop of said thermoplastic material thinner wall connection connecting said exterior wall with said cylindrical sleeve about the respective peripheries thereof, said loop thinner wall connection being integral with said sleeve continuously about the periphery thereof and connecting said bottom portion to said exterior wall continuously about the periphery of said aperture and being sufficiently flexible to deform and permit axial movement of a terminal resident within said sleeve upon plate expansion during operation of said cell.
- 23. The battery system of claim 3 wherein said catalyst material includes palladium.
- 24. The battery system of claim 18 wherein said catalyst material includes palladium.
Parent Case Info
[0001] CROSS-REFERENCE TO RELATED APPLICATION
[0002] This application claims the benefit of U.S. Provisional Application No. 60/108,766, filed Nov. 17, 1998.
Continuations (1)
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Number |
Date |
Country |
Parent |
09441402 |
Nov 1999 |
US |
Child |
10219839 |
Aug 2002 |
US |