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Glass-ceramic joint and method of joining 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C03C-010/08
출원번호 US-0562583 (2000-05-01)
발명자 / 주소
  • Meinhardt, Kerry D.
  • Vienna, John D.
  • Armstrong, Timothy R.
  • Pederson, Larry R.
출원인 / 주소
  • Battelle Memorial Institute
대리인 / 주소
    May, Stephen R.
인용정보 피인용 횟수 : 47  인용 특허 : 3

초록

The present invention is a glass-ceramic material and method of making useful for joining a solid ceramic component and at least one other solid component. The material is a blend of M1-M2-M3, wherein M1 is BaO, SrO, CaO, MgO, or combinations thereof, M2 is Al2O3,present in the blend in an amount fr

대표청구항

The present invention is a glass-ceramic material and method of making useful for joining a solid ceramic component and at least one other solid component. The material is a blend of M1-M2-M3, wherein M1 is BaO, SrO, CaO, MgO, or combinations thereof, M2 is Al2O3,present in the blend in an amount fr

이 특허에 인용된 특허 (3)

  1. Nachlas Jesse A. (Eden UT) Powers Kelly B. (North Salt Lake UT) McJunkin James R. (Afton WY), Design and manufacturing method for a solid electrolyte ion conducting device.
  2. Barry Thomas I. (Hampton Hill GB2) Schajer Gary S. (London GB2) Stackpool Francis M. (Frodsham GB2), Glass seals for sealing beta-alumina in electro-chemical cells or other energy conversion devices, glasses for use in su.
  3. Aitken Bruce G. (Corning NY) Faber Margaret K. (Corning NY) Ketcham Thomas D. (Big Flats NY) St. Julien Dell J. (Watkins Glen NY), Solid electrolyte fuel cells.

이 특허를 인용한 특허 (47)

  1. Goedeke, Dieter; Suffner, Jens, Barium- and strontium-free vitreous or glass-ceramic jointing material and its use.
  2. Lane, Jonathan A.; Wilson, Jamie R.; Christie, Gervase Maxwell; Petigny, Nathalie; Sarantopoulos, Christos, Catalyst containing oxygen transport membrane.
  3. Kelly, Sean M.; Christie, Gervase Maxwell; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  4. Kelly, Sean M.; Christie, Gervase Maxwell; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  5. Kelly, Sean M.; Christie, Gervase Maxwell; Rosen, Lee J.; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  6. Lane, Jonathan A.; Lu, Zigui; Plonczak, Pawel J., Composite oxygen ion transport membrane.
  7. Christie, Gervase Maxwell; Lane, Jonathan A., Composite oxygen transport membrane.
  8. Lu, Zigui; Plonczak, Pawel J.; Lane, Jonathan A., Composite oxygen transport membrane.
  9. Powell, IV, Adam Clayton; Pati, Soobhankar; Derezinski, Stephen Joseph; Lau, Garrett; Pal, Uday B.; Guan, Xiaofei; Gopalan, Srikanth, Conductor of high electrical current at high temperature in oxygen and liquid metal environment.
  10. Goedeke, Dieter; Brix, Peter; Claussen, Olaf; Besinger, Joern; Schoen, Bastian, Crystallizing glass solder and use thereof.
  11. Goedeke, Dieter; Brix, Peter; Claussen, Olaf; Besinger, Joern; Schoen, Bastian, Crystallizing glass solders and uses thereof.
  12. Gottmann, Matthias; Couse, Stephen; Armstrong, Tad; Batawi, Emad El; Janousek, Martin; Kumar, Ananda H., Fuel cell seals.
  13. Brow,Richard K.; Dos Reis,Signo Tadeu; Benson,Glen, Glass and glass-ceramic sealant compositions.
  14. Crosbie, Gary Mark, Glass compositions for ceramic electrolyte electrochemical conversion devices.
  15. Goedeke, Dieter, Glass-ceramic joining material and use thereof.
  16. Liu, Chien-Kuo; Yung, Tung-Yuan; Lin, Kin-Fu; Lee, Ruey-Yi; Lee, Tzang-Sheng, Glass-ceramic sealant for planar solid oxide fuel cells.
  17. Badding, Michael Edward; Marjanovic, Sasha; Pinckney, Linda Ruth; St Julien, Dell Joseph, Glass-ceramic seals for use in solid oxide fuel cells.
  18. Badding,Michael Edward; Marjanovic,Sasha; Pinckney,Linda Ruth; St Julien,Dell Joseph, Glass-ceramic seals for use in solid oxide fuel cells.
  19. Lin, Jiefeng; Kelly, Sean M., High aspect ratio catalytic reactor and catalyst inserts therefor.
  20. Pinckney,Linda Ruth; Tietje,Steven Alvin, High thermal expansion cyclosilicate glass-ceramics.
  21. Pinckney,Linda Ruth; Tietje,Steven Alvin, High thermal expansion cyclosilicate glass-ceramics.
  22. Schoen, Bastian, High-temperature glass solder and its uses.
  23. Goretta,Kenneth C.; Routbort,Jules L.; Gutierrez Mora,Felipe, Joining of advanced materials by superplastic deformation.
  24. Cortright,Jeffrey Earl; Lamberson,Lisa Ann; Maurey,Pamela Arlene; Morena,Robert Michael, Low alkali sealing frits, and seals and devices utilizing such frits.
  25. Chakravarti, Shrikar; Drnevich, Raymond Francis; Shah, Minish M.; Stuckert, Ines C., Method and system for adjusting synthesis gas module in an oxygen transport membrane based reforming system.
  26. Chakravarti, Shrikar; Drnevich, Raymond Francis; Burgers, Kenneth L., Method and system for producing a synthesis gas in an oxygen transport membrane based reforming system that is free of metal dusting corrosion.
  27. Chakravarti, Shrikar; Drnevich, Raymond F.; Stuckert, Ines C.; Shah, Minish M., Method and system for producing a synthesis gas using an oxygen transport membrane based reforming system with secondary reforming and auxiliary heat source.
  28. Chakravarti, Shrikar; Drnevich, Raymond F.; Stuckert, Ines C.; Shah, Minish M., Method and system for producing hydrogen using an oxygen transport membrane based reforming system with secondary reforming.
  29. Stuckert, Ines C.; Chakravarti, Shrikar; Drnevich, Raymond F., Method and system for producing methanol using an integrated oxygen transport membrane based reforming system.
  30. Gonzalez, Javier E.; Grant, Arthur F., Method for sealing an oxygen transport membrane assembly.
  31. Crosbie,Gary Mark, Method of making glass compositions for ceramic electrolyte electrochemical conversion assemblies and assemblies made thereby.
  32. Kelly, Sean M.; Swami, Sadashiv M.; Peck, John D., Method of thermally-stabilizing an oxygen transport membrane-based reforming system.
  33. Gottmann, Matthias; Couse, Stephen, Methods and devices for printing seals for fuel cell stacks.
  34. Bruce,Ralph W.; Lewis, III,David; Kahn,Manfred; Fliflet,Arne W.; Gold,Steven H., Microwave assisted reactive brazing of ceramic materials.
  35. Chou,Yeong Shyung; Stevenson,Jeffry W., Multilayer compressive seal for sealing in high temperature devices.
  36. Tanida, Masamichi; Yokoyama, Yuki; Honda, Shinji, Non-lead glass.
  37. Kromer, Brian R.; Litwin, Michael M.; Kelly, Sean M., Oxygen transport membrane based advanced power cycle with low pressure synthesis gas slip stream.
  38. Kelly, Sean M.; Chakravarti, Shrikar; Li, Juan, Oxygen transport membrane reactor based method and system for generating electric power.
  39. Kumar, Ananda H.; Nguyen, Dien; Janousek, Martin; Armstrong, Tad, Seal compositions, methods, and structures for planar solid oxide fuel cells.
  40. Kumar, Ananda H.; Nguyen, Dien; Janousek, Martin; Armstrong, Tad, Seal compositions, methods, and structures for planar solid oxide fuel cells.
  41. Kumar, Ananda H.; Nguyen, Dien; Janousek, Martin; Armstrong, Tad, Seal compositions, methods, and structures for planar solid oxide fuel cells.
  42. De Rose, Anthony J.; Mukerjee, Subhasish; Haltiner, Jr., Karl Jacob, Solid oxide fuel cell having a glass composite seal.
  43. Kelly, Sean M., System and method for air temperature control in an oxygen transport membrane based reactor.
  44. Kelly, Sean M., System and method for temperature control in an oxygen transport membrane based reactor.
  45. Suffner, Jens, Vitreous or at least partly crystallised sealing material, joint connection, barrier layer, and layer system comprising the sealing material and integration thereof into components.
  46. Suffner, Jens, Vitreous or partially crystalline joining material and uses of same.
  47. Nonnet, Hélène; Connelly, Andrew; Khedim, Hichem, Vitroceramic glass compositions for gaskets of apparatuses operating at high temperatures and assembling method using said compositions.
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