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Deoxidation of titanium and similar metals using a deoxidant in a molten metal carrier 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C21D-001/00
출원번호 US-0248227 (1988-09-23)
발명자 / 주소
  • Fisher Richard L. (Warren OH)
출원인 / 주소
  • RMI Company (Niles OH 02)
인용정보 피인용 횟수 : 36  인용 특허 : 3

초록

Process for deoxidizing refractory metals such as titanium which contain less than about one percent oxygen. The process described includes heating a liquid metal deoxidant contained in a liquid metal carrier to treat the oxidized metal. After removing the carrier and cooling, the metal is leached t

대표청구항

A process for the deoxidation of an oxidized refractory metal selected from the group consisting of titanium, zirconium, hafnium, thorium, vanadium, niobium, tantalum, chromium, molybdenum, tungsten, and alloys comprising these metals, the process comprising: (a) combining in an inert, dry atmospher

이 특허에 인용된 특허 (3)

  1. Down Michael G. (Plum Borough PA), Metal powders and processes for production from oxides.
  2. Wurm ; Jorg, Process for deoxidation of refractory metals.
  3. Bttner Gnter (Essen DEX) Domazer Hans-Gnter (Essen DEX) Eggert Horst (Essen DEX), Process for the preparation of alloy powders which can be sintered and which are based on titanium.

이 특허를 인용한 특허 (36)

  1. Koenitzer,John W.; Qiu,Yongjian, Controlled oxygen addition for metal material.
  2. Fisher Richard L. (Warren OH), Deoxidation of a refractory metal.
  3. Miller, Steven A.; Gaydos, Mark; Shekhter, Leonid N.; Gulsoy, Gokce, Dynamic dehydriding of refractory metal powders.
  4. Fife James A., Electrolytic capacitor anode of valve metal oxide.
  5. Miller, Steven A.; Kumar, Prabhat; Wu, Richard; Sun, Shuwei; Zimmermann, Stefan; Schmidt-Park, Olaf, Fine grained, non banded, refractory metal sputtering targets with a uniformly random crystallographic orientation, method for making such film, and thin film based devices and products made therefrom.
  6. Dary, Francois-Charles; Gaydos, Mark; Loewenthal, William; Miller, Steven A.; Rozak, Gary; Volchko, Scott Jeffrey; Zimmermann, Stefan; Stawovy, Michael Thomas, Large-area sputtering targets.
  7. Fife James A., Method for controlling the oxygen content in valve metal materials.
  8. Fife James A., Method for controlling the oxygen content in valve metal materials.
  9. Bales, Thomas O.; Jahrmarkt, Scott L., Method for microporous surface modification of implantable metallic medical articles.
  10. Abe Toshihiko,JPX ; Hashimoto Hitoshi,JPX ; Park Young Ho,JPX, Method for producing hydrogen-containing sponge titanium, a hydrogen containing titanium-aluminum-based alloy powder and its method of production, and a titanium-aluminum-based alloy sinter and its m.
  11. Smokovich, Joseph; Hafner, Craig F., Method for the production of tantalum powder using reclaimed scrap as source material.
  12. Fife, James A., Method of making a capacitor anode of a pellet of niobium oxide.
  13. Fife,James A., Method to partially reduce calcined niobium metal oxide and oxygen reduced niobium oxides.
  14. Zhang, Ying; Fang, Zhigang Zak; Sun, Pei; Xia, Yang; Zhou, Chengshang, Methods of deoxygenating metals having oxygen dissolved therein in a solid solution.
  15. Miller, Steven A.; Shekhter, Leonid N.; Zimmermann, Stefan, Methods of joining metallic protective layers.
  16. Reed, David M.; Venigalla, Sridhar; Kitchell, Ricky W.; Krause, Stephen J.; Enman, Heather L.; Schultz, Dorran L.; Kerchner, Jeffrey A., Methods of making a niobium metal oxide and oxygen reduced niobium oxides.
  17. Reed, David M.; Venigalla, Sridhar; Kitchell, Ricky W.; Krause, Stephen J.; Enman, Heather L.; Schultz, Dorran L.; Kerchner, Jeffrey A., Methods of making a niobium metal oxide and oxygen reduced niobium oxides.
  18. Loewenthal, William; Miller, Steven Alfred, Methods of manufacturing large-area sputtering targets.
  19. Volchko, Scott Jeffrey; Loewenthal, William; Zimmermann, Stefan; Gaydos, Mark; Miller, Steven Alfred, Methods of manufacturing large-area sputtering targets using interlocking joints.
  20. Volchko, Scott Jeffrey; Loewenthal, William; Zimmermann, Stefan; Gaydos, Mark; Miller, Steven Alfred, Methods of manufacturing large-area sputtering targets using interlocking joints.
  21. Fife, James A., Methods to make capacitors containing a partially reduced niobium metal oxide.
  22. James A. Fife, Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  23. Jonathon L. Kimmel ; Ricky W. Kitchell ; James A. Fife, Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  24. Jonathon L. Kimmel ; Ricky W. Kitchell. ; James A. Fife, Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  25. Kimmel, Jonathon L.; Kitchell, Ricky W.; Fife, James A., Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  26. James A. Fife, Methods to partially reduce a niobium metal oxide oxygen reduced niobium oxides.
  27. Fife,James A., Methods to partially reduce certain metal oxides and oxygen reduced metal oxides.
  28. Kimmel, Jonathon L.; Redd, Randall V., Modified oxygen reduced valve metal oxides.
  29. Kimmel,Jonathon L.; Redd,Randall V., Modified oxygen reduced valve metal oxides.
  30. Kimmel, Jonathon L.; Kitchell, Ricky W., Oxygen reduced niobium oxides.
  31. Reed, David M.; Venigalla, Sridhar; Kerchner, Jeffrey A., Phase formation of oxygen reduced valve metal oxides and granulation methods.
  32. Kumar Prabhat (Allentown PA), Powders and products of tantalum, niobium and their alloys.
  33. Fang, Zhigang Zak; Fan, Peng; Middlemas, Scott; Guo, Jun; Zhang, Ying; Free, Michael; Sathyapalan, Amarchand; Xia, Yang, Producing a titanium product.
  34. Rosenberg, Harry; Ozturk, Bahri; Wang, Guangxin; LaRue, Wesley, Tantalum sputtering target and method of manufacture.
  35. Rosenberg, Harry; Ozturk, Bahri; Wang, Guangxin; LaRue, Wesley, Tantalum sputtering target and method of manufacture.
  36. Rosenberg, Harry; Ozturk, Bahri; Wang, Guangxin; LaRue, Wesley, Tantalum sputtering target and method of manufacture.
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