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Diffusion vent for a rechargeable metal-air cell 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-002/12
  • H01M-012/06
출원번호 US-0428005 (1995-04-24)
발명자 / 주소
  • Thibault William C. (Powder Springs GA)
출원인 / 주소
  • AER Energy Resources, Inc. (Smyrna GA 02)
인용정보 피인용 횟수 : 48  인용 특허 : 0

초록

The present invention provides a system for venting gas from within a case housing a metal-air cell having a cathode and an anode with a separator positioned therebetween. The cell has at least one gas vent on the anode side of the separator that extends from the interior surface of the case to the

대표청구항

A system for venting gas from within a case housing a metal-air cell having a cathode and an anode with a separator position therebetween, said case having an interior surface and an exterior surface, comprising: at least one gas vent in said case on the anode side of said separator; said gas vent e

이 특허를 인용한 특허 (48)

  1. Witzigreuter John D., Air distributors for metal-air cells.
  2. Causton,Brian Edward; Davis,Frank; Lacey,Neville Keith; Yu,Larry Liaobo, Air electrode batteries.
  3. Christopher S. Pedicini ; Dennis P. Sieminski ; Gary E. Gray ; John D. Witzigreuter, Air manager systems for batteries utilizing a diaphragm or bellows.
  4. Pedicini, Christopher S., Air managing systems and methods for gas depolarized power supplies utilizing a diaphragm.
  5. John D. Witzigreuter ; Jeffrey E. Young, Air mover for a battery utilizing a variable volume enclosure.
  6. Pedicini Christopher S. ; Witzigreuter John D., Air-managing system for metal-air battery using resealable septum.
  7. Pedicini Christopher S. ; Witzigreuter John D., Air-managing system for metal-air battery using resealable septum.
  8. Faris, Sadeg M.; Tsai, Tsepin, Appliance with refuelable and rechargeable metal-air fuel cell battery power supply unit integrated therein.
  9. Sadeg M. Faris ; Tsepin Tsai ; Thomas J. Legbandt ; Wayne Yao ; Muguo Chen, Cathode belt structure for use in a metal-air fuel cell battery system and method of fabricating the same.
  10. Faris Sadeg M. ; Tsai Tsepin ; Legbandt Thomas J. ; Yao Wayne ; Chen Muguo, Cathode cylinder for use in metal-air fuel cell battery systems and method of fabricating the same.
  11. Faris Sadeg M. ; Tsai Tsepin ; Legbandt Thomas J. ; Yao Wayne ; Chen Muguo, Cathode cylinder for use in metal-air fuel cell battery systems and method of fabricating the same.
  12. Tyler, Matt; Fuhr, Jason, Device for aiding in the fracture of a vent of an electrochemical cell.
  13. Tyler, Matthew R.; Fuhr, Jason D., Device for aiding in the fracture of a vent of an electrochemical cell.
  14. Tinker, Lawrence A.; Witzigreuter, John D., Electrical device with removable enclosure for electrochemical cell.
  15. Faris Sadeg M. ; Tsai Tsepin, Electrical power generation system having means for managing the discharging and recharging of metal fuel contained within a network of metal-air fuel cell battery subsystems.
  16. Tsai, Tsepin; Faris, Sadeg M., Electro-chemical power generation systems employing arrays of electronically-controllable discharging and/or recharging cells within a unitary support structure.
  17. Tsepin Tsai ; Sadeg M. Faris, Electro-chemical power generation systems employing arrays of electronically-controllable discharging and/or recharging cells within a unity support structure.
  18. Feres Fred F., Flooded lead acid battery with roll-over capability.
  19. Faris, Sadeg M.; Tsai, Tsepin; Yao, Wenbin; Li, Lin-Feng; Tzeng, George Tzong-Chyi; Rabin, Michael; Morris, William, Fuel cell support and electrical interconnector.
  20. Faris, Sadeg M.; Tsai, Tsepin; Yao, Wayne; Chang, Yuen-Ming, Fuel containment and recycling system.
  21. Faris,Sadeg M.; Tsai,Tsepin; Yao,Wenbin; Chang,Yuen Ming, Fuel containment and recycling system.
  22. Huynh, Timothy C.; Huynh, legal representative, Sharon; Ram, Sunder; Gable, Richard, Hearing aid battery barrier.
  23. Faris Sadeg M. ; Tsai Tsepin ; Legbandt Thomas J. ; Yao Wayne ; Chen Muguo, Ionically-conductive belt structure for use in a metal-air fuel cell battery system and method of fabricating the same.
  24. Guo, Zhi, Lithium-ion battery with a gas-releasing and explosion-proof safety valve.
  25. Sadeg M. Faris ; Tsepin Tsai ; Thomas J. Legbandt ; Wayne Yao ; Muguo Chen, METAL-AIR FUEL CELL BATTERY SYSTEM EMPLOYING HYDROSTATIC FORCES TO ENABLE SIMULTANEOUS TRANSPORT OF METAL-FUEL TAPE, MOVABLE CATHODE STRUCTURE, AND IONICALLY-CONDUCTIVE MEDIUM THERETHROUGH DURING SYS.
  26. Sadeg M. Faris ; Tsepin Tsai, METAL-AIR FUEL CELL BATTERY SYSTEMS HAVING A METAL-FUEL CARD STORAGE CARTRIDGE, INSERTABLE WITHIN A FUEL CARTRIDGE INSERTION PORT, CONTAINING A SUPPLY OF SUBSTANTIALLY PLANAR DISCRETE METAL-FUEL CARD.
  27. Zukor,Kenneth S.; Mann,James W., Metal vent.
  28. Faris, Sadeg M.; Tsai, Tsepin, Metal-air fuel cell battery (FCB) electrical power producing module with multi-element cathode structure and insertable metal-fuel card(s).
  29. Sadeg M. Faris ; Tsepin Tsai ; Thomas J. Legbandt ; Wayne Yao ; Muguo Chen, Metal-air fuel cell battery system employing a plurality of moving cathode structures for improved volumetric power density.
  30. Faris, Sadeg M.; Chang, Yuen-Ming; Tsai, Tsepin; Yao, Wayne, Metal-air fuel cell battery system employing metal-fuel cards.
  31. Faris Sadeg M. ; Chang Yuen-Ming ; Tsai Tsepin ; Yao Wayne, Metal-air fuel cell battery system employing substantially planar metal-fuel cards of rigid construction insertable into a power generation bay of the system.
  32. Sadeg M. Faris, Metal-air fuel cell battery system having means for bi-directionally transporting metal-fuel tape and managing metal-fuel available therealong.
  33. Faris Sadeg M. ; Tsai Tsepin, Metal-air fuel cell battery system having means for controlling discharging and recharging parameters for improved operating efficiency.
  34. Faris Sadeg M., Metal-air fuel cell battery system having means for discharging and recharging metal-fuel cards supplied from a cassette-type storage device.
  35. Faris, Sadeg M.; Tsai, Tsepin, Metal-air fuel cell battery system having means for recording and reading operating parameters during discharging and recharging modes of operation.
  36. Tsepin Tsai ; Sadeg M. Faris, Metal-air fuel cell battery system with multiple cells and integrated apparatus for producing power signals with stepped-up voltage levels by selectively discharging the multiple cells.
  37. Faris Sadeg M. ; Tsai Tsepin, Metal-air fuel cell battery systems employing means for discharging and recharging metal-fuel cards.
  38. Faris Sadeg M. ; Tsai Tsepin, Metal-air fuel cell battery systems having mechanism for extending the path length of metal-fuel tape during discharging and recharging modes of operation.
  39. Faris, Sadeg M.; Tsai, Tsepin, Metal-air fuel cell battery systems having mechanism for extending the path length of metal-fuel tape during discharging and recharging modes of operation.
  40. Sadeg M. Faris ; Yuen-Ming Chang ; Tsepin Tsai ; Wayne Yao, Metal-fuel card with a plurality of metal-fuel elements and corresponding contact apertures, and electro-chemical electric power generation devices employing same.
  41. Sadeg M. Faris ; Tsepin Tsai, Method of and system for producing and supplying electrical power to an electrical power consuming device using a metal-air fuel cell battery (FCB) module and a supply of metal-fuel cards.
  42. Morris William F. ; Tsai Tsepin, Movable anode fuel cell battery.
  43. William F. Morris ; Tsepin Tsai, Movable anode fuel cell battery.
  44. Faris, Sadeg M.; Tsai, Tsepin, Refuelable and rechargeable metal-air fuel cell battery power supply unit for integration into an appliance.
  45. Gray, Gary Edward; Witzigreuter, John Douglas; Pedicini, Christopher Steven, Synthetic jet for admitting and expelling reactant air.
  46. Faris Sadeg M. ; Chang Yuen-Ming ; Tsai Tsepin ; Yao Wenbin, System and method for producing electrical power using metal-air fuel cell battery technology.
  47. John D. Witzigreuter ; Gary E. Gray ; Christopher S. Pedicini, Ventilation system for an enclosure.
  48. Guo, Jingdong, Zn/air cell performance in extreme humidity by controlling hydrophobic layer porosity.
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