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Method and device for melting and refining materials capable of being vitrified 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C03B-005/16
  • C03B-005/225
출원번호 US-0367879 (2000-01-18)
우선권정보 FR-0000176 (1998-01-09); FR-0002849 (1998-03-09)
국제출원번호 PCT/FR99/00027 (1999-01-08)
§371/§102 date 20000118 (20000118)
국제공개번호 WO99/35099 (1999-07-15)
발명자 / 주소
  • Pierre Jeanvoine FR
  • Tanguy Massart FR
  • Anne Berthereau FR
출원인 / 주소
  • Saint-Gobain Glass France FR
대리인 / 주소
    Oblon, Spivak, McClelland, Maier & Neustadt, P.C.
인용정보 피인용 횟수 : 77  인용 특허 : 4

초록

A process for melting and refining vitrifiable materials. In this method all or part of the thermal energy necessary for melting the vitrifiable materials is supplied by the combustion of fossil fuel with at least one oxidizer gas, the fuel, gas or the gaseous products resulting from their combustio

대표청구항

1. Process for melting and refining vitrifiable materials, wherein substantially all of the thermal energy necessary for melting the vitrifiable materials is supplied by the combustion of fuel with at least one oxidizer gas, the fuel/gas or the gaseous products resulting from the combustion being in

이 특허에 인용된 특허 (4)

  1. Hanneken, Henry P., Melting of glass with staged submerged combustion.
  2. Won, Kwang J.; Pecoraro, George A., Submerged oxygen-hydrogen combustion melting of glass.
  3. Pecoraro George A. (Lower Burrell PA) Shelestak Larry J. (Bairdford PA) Cooper Joseph E. (Natrona Heights PA), Vacuum refining of glassy materials with selected foaming rate.
  4. Pecoraro George A. (Lower Burrell PA) Shelestak Larry J. (Bairdford PA) Cooper Joseph E. (Natrona Heights PA), Vacuum refining of glassy materials with selected water content.

이 특허를 인용한 특허 (77)

  1. Huber, Aaron Morgan; Martin, Marlon Keith; Mobley, John Euford, Apparatus, systems and methods for conditioning molten glass.
  2. Huber, Aaron Morgan; Martin, Marlon Keith; Mobley, John Euford, Apparatus, systems and methods for conditioning molten glass.
  3. Huber, Aaron Morgan, Apparatus, systems and methods for processing molten glass.
  4. Charbonneau, Mark William; McHugh, Kevin Patrick, Apparatus, systems and methods for reducing foaming downstream of a submerged combustion melter producing molten glass.
  5. Huber, Aaron Morgan, Apparatus, systems, and methods for pre-heating feedstock to a melter using melter exhaust.
  6. Villeroy De Galhau, Gregoire; Lefrere, Yannick; Rayer, Mathieu, Batch-charging machine with removable head for submerged batch-charging.
  7. Charbonneau, Mark William, Burner apparatus, submerged combustion melters including the burner, and methods of use.
  8. Charbonneau, Mark William, Burner apparatus, submerged combustion melters including the burner, and methods of use.
  9. Charbonneau, Mark William, Burner apparatus, submerged combustion melters including the burner, and methods of use.
  10. Luka, Michael William; Baker, John Wayne, Burner panels including dry-tip burners, submerged combustion melters, and methods.
  11. Rue, David M.; Kunc, V. Walter; Wagner, John Charles; Choi, Chun W., Convective thermal removal of gaseous inclusions from viscous liquids.
  12. Maugendre,Stephane; Szalata,Francois; Jacques,Remi; Palmieri,Biagio, Device and method for melting vitrifiable materials.
  13. Huber, Aaron Morgan, Effective discharge of exhaust from submerged combustion melters and methods.
  14. Buckett, John; Haughey, Keith; McSporran, Neil, Glass composition.
  15. Palmieri, Biagio; Lopepe, Frederic, Immersed burner with regulated flame.
  16. Demott, Gerard; Marolt, Bostjan; Etzkorn, Randy; Ducarme, David, Melter having a submerged combustion burner, method using the burner and use of the burner.
  17. Jeanvoine, Pierre; Massart, Tanguy; Cuartas, Ramon Rodriguez; Rodriguez, Armando Rodriguez; Hernandez, Juan Andres Nunez, Method and device for melting and refining materials capable of being vitrified.
  18. Karetta,Frank; Witte,Joerg; Duch,Klaus Dieter; Gohlke,Dirk; Muench,Wolfgang; Jakway,Allen; Eichholz,Rainer; Lentes,Frank Thomas, Method and device for refining a glass melt using negative pressure.
  19. Hayes, James C.; Murnane, Rand A.; Palmquist, Ronald W.; Woolley, Frank, Method for controlling foam production in reduced pressure fining.
  20. Hayes,James C.; Murnane,Rand A.; Palmquist,Ronald W.; Woolley,Frank, Method for controlling foam production in reduced pressure fining.
  21. Jeanvoine, Pierre, Method for destroying and/or inerting waste.
  22. Jeanvoine, Pierre, Method for preparing raw materials for glass-making.
  23. Lentes, Frank-Thomas; Naumann, Karin; Schiffner, Ulrich; Siebers, Friedrich; Mueller, Christian; Schoenberger, Klaus; Weiss, Evelin, Method for producing glasses, glass ceramics and the use of same.
  24. Charbonneau, Mark William, Methods and apparatus for recycling glass products using submerged combustion.
  25. Charbonneau, Mark William, Methods and apparatus for recycling glass products using submerged combustion.
  26. Shock, Jeffrey M; Charbonneau, Mark William, Methods and systems for controlling bubble size and bubble decay rate in foamed glass produced by a submerged combustion melter.
  27. Shock, Jeffrey M; Charbonneau, Mark William, Methods and systems for controlling bubble size and bubble decay rate in foamed glass produced by a submerged combustion melter.
  28. Charbonneau, Mark William; Huber, Aaron Morgan, Methods and systems for destabilizing foam in equipment downstream of a submerged combustion melter.
  29. Charbonneau, Mark William; Huber, Aaron Morgan, Methods and systems for destabilizing foam in equipment downstream of a submerged combustion melter.
  30. Charbonneau, Mark William; Huber, Aaron Morgan, Methods and systems for destabilizing foam in equipment downstream of a submerged combustion melter.
  31. Shock, Jeffrey M; Huber, Aaron Morgan, Methods and systems for making well-fined glass using submerged combustion.
  32. Shock, Jeffrey M; Huber, Aaron Morgan, Methods and systems for making well-fined glass using submerged combustion.
  33. McCann, Jonathan; Shock, Jeffrey M; Nesti, Bryan Keith; Mobley, John Euford, Methods and systems for monitoring glass and/or foam density as a function of vertical position within a vessel.
  34. Huber, Aaron Morgan; Faulkinbury, Albert Patrick, Methods of melting feedstock using a submerged combustion melter.
  35. Charbonneau, Mark William; Nesti, Bryan Keith, Methods of using a submerged combustion melter to produce glass products.
  36. Charbonneau, Mark William; Nesti, Bryan Keith, Methods of using a submerged combustion melter to produce glass products.
  37. Purnode, Bruno A.; Mighton, Steve; Toth, William W.; Kadur, Shivakumar; Baker, David J., Molten glass delivery and refining system.
  38. Pitbladdo, Richard B., Molten optical glass fining apparatus.
  39. Huber, Aaron Morgan, Panel-cooled submerged combustion melter geometry and methods of making molten glass.
  40. Huber, Aaron Morgan, Panel-cooled submerged combustion melter geometry and methods of making molten glass.
  41. Huber, Aaron Morgan, Panel-cooled submerged combustion melter geometry and methods of making molten glass.
  42. Madeni, Juan Carlos; Baker, John Wayne, Post-manufacturing processes for submerged combustion burner.
  43. Wang, Zhaolin; Finlay, Warren H., Powder formation by atmospheric spray-freeze drying.
  44. Gullinkala, Tilak; Sundararajan, Desikan; Clark, Terence J; Mastek, Witold, Process and apparatus for refining molten glass.
  45. Wang, Zhongming; Howse, Terence K. G., Process and apparatus for refining molten glass.
  46. Jeanvoine, Pierre; Le Verge, Arnaud, Process for preparing batch materials for the manufacture of glass.
  47. Jeanvoine,Pierre; Le Verge,Arnaud, Process for preparing batch materials for the manufacture of glass.
  48. Charbonneau, Mark William; McHugh, Kevin Patrick, Process of using a submerged combustion melter to produce hollow glass fiber or solid glass fiber having entrained bubbles, and burners and systems to make such fibers.
  49. Charbonneau, Mark William; McHugh, Kevin Patrick, Process of using a submerged combustion melter to produce hollow glass fiber or solid glass fiber having entrained bubbles, and burners and systems to make such fibers.
  50. Charbonneau, Mark William; McHugh, Kevin Patrick, Process of using a submerged combustion melter to produce hollow glass fiber or solid glass fiber having entrained bubbles, and burners and systems to make such fibers.
  51. Baker, John Wayne; Charbonneau, Mark William, Processing organics and inorganics in a submerged combustion melter.
  52. Hegde, Subray R, Submerged combustion burners.
  53. Cai, Yifang; Huber, Aaron Morgan, Submerged combustion burners and melters, and methods of use.
  54. Hegde, Subray R; Chalasani, Narayana Rao, Submerged combustion burners and melters, and methods of use.
  55. Baker, John Wayne; Huber, Aaron Morgan, Submerged combustion burners, submerged combustion glass melters including the burners, and methods of use.
  56. Huber, Aaron Morgan; Martin, Marlon Keith, Submerged combustion glass manufacturing system and method.
  57. Huber, Aaron Morgan; Martin, Marlon Keith, Submerged combustion glass manufacturing system and method.
  58. Huber, Aaron Morgan; Martin, Marlon Keith, Submerged combustion glass manufacturing system and method.
  59. Huber, Aaron Morgan; Martin, Marlon Keith, Submerged combustion glass manufacturing systems and methods.
  60. Baker, John Wayne, Submerged combustion glass melting systems and methods of use.
  61. Mobley, John Euford; Huber, Aaron Morgan; Enright, Ryan Patrick, Submerged combustion melter comprising a melt exit structure designed to minimize impact of mechanical energy, and methods of making molten glass.
  62. Mobley, John Euford; Huber, Aaron Morgan; Enright, Ryan Patrick, Submerged combustion melter comprising a melt exit structure designed to minimize impact of mechanical energy, and methods of making molten glass.
  63. Mobley, John Euford; Huber, Aaron Morgan; Enright, Ryan Patrick, Submerged combustion melter comprising a melt exit structure designed to minimize impact of mechanical energy, and methods of making molten glass.
  64. Demott, Jerry; Marolt, Bostjan; Etzkorn, Randy; Ducarme, David, Submerged combustion melters and methods.
  65. Faulkinbury, Albert Patrick; Huber, Aaron Morgan, Submerged combustion melters and methods of feeding particulate material into such melters.
  66. Charbonneau, Mark William; McHugh, Kevin Patrick; Huber, Aaron Morgan, Submerged combustion melters having an extended treatment zone and methods of producing molten glass.
  67. Faulkinbury, Albert Patrick, Submerged combustion melters, wall structures or panels of same, and methods of using same.
  68. Charbonneau, Mark William, Submerged combustion melting processes for producing glass and similar materials, and systems for carrying out such processes.
  69. Charbonneau, Mark William, Submerged combustion melting processes for producing glass and similar materials, and systems for carrying out such processes.
  70. Shock, Jeffrey M.; McCann, Jonathan, System for producing molten glasses from glass batches using turbulent submerged combustion melting.
  71. Charbonneau, Mark William; Huber, Aaron Morgan; Shock, Jeffrey M.; Borders, Harley Allen, Systems and methods for glass manufacturing.
  72. Charbonneau, Mark William; Huber, Aaron Morgan; Shock, Jeffrey M; Borders, Harley Allen, Systems and methods for glass manufacturing.
  73. Shock, Jeffrey M.; Huber, Aaron Morgan; Swales, Timothy G., Systems and methods for making foamed glass using submerged combustion.
  74. Shock, Jeffrey M; Huber, Aaron Morgan; Swales, Timothy G, Systems and methods for making foamed glass using submerged combustion.
  75. Shock, Jeffrey M; Huber, Aaron Morgan; Swales, Timothy G, Systems and methods for making foamed glass using submerged combustion.
  76. Baker, John Wayne; Charbonneau, Mark William, Systems and methods for mechanically binding loose scrap.
  77. McCann, Jonathan; Shock, Jeffrey M; Nesti, Bryan Keith; Mobley, John Euford, Systems for monitoring glass and/or glass foam density as a function of vertical position within a vessel.
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