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Method of fabricating a monolithic solid oxide fuel cell 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/10
출원번호 US-0580722 (1990-09-11)
발명자 / 주소
  • Minh Nguyen Q. (Fountain Valley CA) Horne Craig R. (Redondo Beach CA)
출원인 / 주소
  • AlliedSignal Aerospace (Morris Township, Morris County NJ 02)
인용정보 피인용 횟수 : 58  인용 특허 : 0

초록

In a two-step densifying process of making a monolithic solid oxide fuel cell, a limited number of anode-electrolyte-cathode cells separated by an interconnect layer are formed and partially densified. Subsequently, the partially densified cells are stacked and further densified to form a monolithic

대표청구항

A method of fabricating a monolithic oxide fuel cell, comprising the steps of: (a) forming a plurality of multilayer tapes; (b) heating said plurality of multilayer tapes until partially densified; (c) stacking said partially densified tapes into a monolithic core; and (d) heating said core until fu

이 특허를 인용한 특허 (58)

  1. Batawi, Emad El; Hickey, Darren; McElroy, James, Anode with remarkable stability under conditions of extreme fuel starvation.
  2. El Batawi, Emad, Anode with remarkable stability under conditions of extreme fuel starvation.
  3. Xue Liang An (Lake Hiawatha NJ), Bonding materials for anode to anode bonding and anode to interconnect bonding in solid oxide fuel cells.
  4. Cubukcu, Esin; Dahar, Steve; Dodeja, Ravi; Gordon, Arnold Z.; Kalynchuk, Daniel; Prince, Troy Shannon; Soltesz, Justin; Waite, Mike; Chawla, Sandeep, Ceramic composite electrolytic device.
  5. Cubukcu Esin ; Dahar Steve ; Dodeja Ravi ; Gordon Arnold Z. ; Kalynchuk Daniel ; Prince Troy Shannon ; Soltesz Justin ; Waite Mike ; Chawla Sandeep, Ceramic composite electrolytic device and method for manufacture thereof.
  6. Armstrong, Tad; Wilson, James; Herchen, Harald; Darga, Daniel; Pillai, Manoj, Coatings for SOFC metallic interconnects.
  7. Jacobsen, Alan J.; Barvosa-Carter, William B.; Gross, Adam F.; Cumberland, Robert; Kirby, Kevin W.; Kisailus, David, Composite structures with ordered three-dimensional (3D) continuous interpenetrating phases.
  8. Shivanath, Rohith; Ayre, Brendan; Armstrong, Tad; Gasda, Michael; Darga, Daniel; Herchen, Harald; Karuppaiah, Chockkalingam; Dawson, Brandon; Oswal, Ravi, Composition and processing of metallic interconnects for SOFC stacks.
  9. Krumpelt, Michael; Cruse, Terry Alan; Carter, John David; Routbort, Jules L.; Kumar, Romesh, Compositionally graded metallic plates for planar solid oxide fuel cells.
  10. Preischl Christine,DEX ; Hedrich Peter,DEX ; Hahn Alfred,DEX, Continuous method for manufacturing a Laminated electrolyte and electrode assembly.
  11. Parihar, Shailendra; Batawi, Emad El; Hothur, Anita Pradeep, Corrosion resistant barrier layer for a solid oxide fuel cell stack and method of making thereof.
  12. Parihar, Shailendra; El Batawi, Emad; Hothur, Anita Pradeep, Corrosion resistant barrier layer for a solid oxide fuel cell stack and method of making thereof.
  13. Janousek, Martin; Armstrong, Tad; Nguyen, Dien; Kumar, Ananda H., Crack free SOFC electrolyte.
  14. Miller, David N.; Savaniu, Cristian; Irvine, John T S; Armstrong, Tad, Doped scandia stabilized zirconia electrolyte compositions.
  15. Fuglevand William A. ; DeVries Peter D. ; Lloyd Greg A. ; Lott David R. ; Scartozzi John P., Fuel cell and method for controlling same.
  16. Fuglevand,William A.; DeVries,Peter D.; Lloyd,Greg A.; Lott,David R.; Scartozzi,John P., Fuel cell and method for controlling same.
  17. Rock, Jeffrey A.; Lai, Yeh-Hung; Newman, Keith E.; Fly, Gerald W.; Liu, Ping; Jacobsen, Alan J.; Carter, William B.; Brewer, Peter D., Fuel cell fabrication using photopolymer based processes.
  18. Rock, Jeffrey A.; Lai, Yeh-Hung; Newman, Keith E.; Fly, Gerald W.; Liu, Ping; Jacobsen, Alan J.; Carter, William B.; Brewer, Peter D., Fuel cell fabrication using photopolymer based processes.
  19. Rock, Jeffrey A.; Lai, Yeh-Hung; Newman, Keith E.; Fly, Gerald W.; Liu, Ping; Jacobsen, Alan J.; Carter, William B.; Brewer, Peter D., Fuel cell fabrication using photopolymer based processes.
  20. Couse, Stephen; Darga, Daniel; Herchen, Harald; Karuppaiah, Chockkalingam, Fuel cell interconnect.
  21. Darga, Daniel; Herchen, Harald; Karuppaiah, Chockkalingam; Oswal, Ravi; Majagi, Shivanand, Fuel cell interconnect heat treatment method.
  22. Batawi, Emad El; Leming, Andres; Parihar, Shailendra; Gasda, Michael, Fuel cell interconnect with reduced voltage degradation over time.
  23. Darga, Daniel; Armstrong, Tad; Srivatsan, Vijay; Herchen, Harald; Lin, Cheng-Yu, Fuel cell interconnect with reduced voltage degradation over time.
  24. Couse, Stephen; Darga, Daniel; Herchen, Harald; Karuppaiah, Chockkalingam, Fuel cell interconnects and methods of fabrication.
  25. Richards, Gilbert; Trevisan, David; Lee, Michael; Mahler, Jessica; Parker, Ross; Clarabut, Alex; Pearson, Chad; Ballantine, Arne; Weingaertner, David; Hixson, Jason; Mitlitsky, Fred, Fuel cell mechanical components.
  26. Trevisan, David; Daco, Christian; Baugh, David, Fuel cell mechanical components.
  27. Fuglevand, William A., Fuel cell power system and method of controlling a fuel cell power system.
  28. Fuglevand,William A., Fuel cell power system and method of controlling a fuel cell power system.
  29. Darga, Daniel; Srivatsan, Vijay; Gottmann, Matthias; Ramanan, Ram; Prasad, Paturi Balaji Narasimha; Guntanur, Ramesha, Interconnect and end plate design for fuel cell stack.
  30. Prasad, Paturi Balaji Narasimha; Guntanur, Ramesha; Sundararajan, Ananda; Ramanan, Natarajan; Darga, Daniel, Interconnect and end plate design for fuel cell stack.
  31. Srivatsan, Vijay; Groesch, Michael; Darga, Daniel; Gottmann, Matthias; Ramanan, Ram; Prasad, Paturi Balaji Narasimha; Guntanur, Ramesha; Sundararajan, Ananda; Parhar, Sachin, Interconnect and end plate design for fuel cell stack.
  32. Darga, Daniel; Verma, Avinash; Couse, Stephen; Armstrong, Tad, Interconnect for fuel cell stack.
  33. Armstrong, Tad; Batawi, Emad El; Petersen, Eric, Internal reforming anode for solid oxide fuel cells.
  34. William A. Fuglevand ; Peter D. DeVries ; Glen Alden Lloyd ; David R. Lott ; John P. Scartozzi, Ion exchange membrane fuel cell.
  35. Kawasaki Shinji,JPX ; Ito Shigenori,JPX ; Okumura Kiyoshi,JPX, Layered sintered body for electrochemical cells, electrochemical cell and process for manufacturing layered sintered body for electrochemical cells.
  36. Brown, Eric J.; Fannon, Megan A.; Hirsch, Robert S., Membrane electrode assembly and method of manufacturing a membrane electrode assembly.
  37. Brown,Eric J.; Fannon,Megan A.; Hirsch,Robert S., Membrane electrode assembly and method of manufacturing a membrane electrode assembly.
  38. Yamanis, Jean; Frame, Dustin; Chen, Lei; Sun, Ellen Y., Method and device using a ceramic bond material for bonding metallic interconnect to ceramic electrode.
  39. Steven J. Visco ; Craig P. Jacobson ; Lutgard C. De Jonghe, Method for making thin, flat, dense membranes on porous substrates.
  40. Liu,Yung Yi; Shang,James, Method for manufacturing bipolar plate and direct methanol fuel cell.
  41. Qi, Xiwang; Fan, Rong; Shapiro, Andrew Philip; Weng, Dacong; Guan, Jie; Power, James Daniel; Simpson, Stanley F., Method for manufacturing solid oxide electrochemical devices.
  42. Verma, Avinash; Oswal, Ravi; Dawson, Brandon; Bollinger, Brian; Herchen, Harald; Armstrong, Tad, Method of fabricating an interconnect for a fuel cell stack.
  43. Fasano Benjamin V. ; Prettyman Kevin M., Method of making a solid oxide fuel cell with controlled porosity.
  44. Zheng, Yongjian, Monolithic fuel cell and method of manufacture of same.
  45. Batawi, Emad El; Petersen, Eric; Touma, Mina; Stephenson, Richard, Multi-layered coating providing corrosion resistance to zirconia based electrolytes.
  46. Armstrong, Tad; Batawi, Emad El; Janousek, Martin; Pillai, Manoj, Phase stable doped zirconia electrolyte compositions with low degradation.
  47. Armstrong, Tad; El Batawi, Emad; Janousek, Martin; Pillai, Manoj, Phase stable doped zirconia electrolyte compositions with low degradation.
  48. Armstrong, Tad; El Batawi, Emad; Janousek, Martin; Pillai, Manoj, Phase stable doped zirconia electrolyte compositions with low degradation.
  49. Herchen, Harald; Lin, Cheng-yu; Lesher, Michael, Pre-formed powder delivery to powder press machine.
  50. Cubukcu, Esin; Dahar, Steve; Dodeja, Ravi; Gordon, Arnold Z.; Kalynchuk, Daniel; Prince, Troy Shannon; Soltesz, Justin; Waite, Michael D., Process for making a ceramic composite device.
  51. Seccombe, Jr.,Donald A.; Orbeck,Gary; Gopalan,Srikanth; Pal,Uday, Process for solid oxide fuel cell manufacture.
  52. Bevers Dirk,DEX ; Wagner Norbert,DEX, Process for the production of a composite consisting of electrode material, catalyst material and a solid-electrolyte m.
  53. Fuglevand William A. ; Bayyuk Shiblihanna I. ; Lloyd Greg Alden ; De Vries Peter David ; Lott David R. ; Scartozzi John P. ; Somers Gregory M. ; Stokes Ronald G., Proton exchange membrane fuel cell power system.
  54. Fuglevand William A. ; Bayyuk Shiblihanna I. ; Lloyd Greg Alden ; DeVries Peter David ; Lott David R. ; Scartozzi John P. ; Somers Gregory M. ; Stokes Ronald G., Proton exchange membrane fuel cell power system.
  55. Fasano Benjamin V. ; Prettyman Kevin M., Solid oxide fuel cell having a catalytic anode.
  56. Sridhar,K. R.; Nguyen,Dien, Textured electrolyte for a solid oxide fuel cell.
  57. Majagi, Shivanand; Herchen, Harald; Kapoor, Sanjiv; Gasda, Michael; Pong, Chung-Dee; Verma, Avinash, Thermal processing of interconnects.
  58. Minh, Nguyen Q., Unitized cell solid oxide fuel cells.
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