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钛合金电弧炉床熔炼技术 被引量:1

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作者 宁兴龙
出处 《钛工业进展》 CAS 2002年第2期18-21,共4页 Titanium Industry Progress
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  • 1杨丽芳.钛及高温合金的冷炉床熔炼[J].稀有金属材料与工程,1994,23(6):70-73. 被引量:3
  • 2毛彭龄.两相钛合金的相变特征和热处理规范[J].上海钢研,1995(3):50-58. 被引量:16
  • 3张翥.β钛合金的概述[J].稀有金属,1995,19(4):296-299. 被引量:27
  • 4Bania P J. Beta Titanium Alloys and Their Role in the Titanium Industry [A]. Beta Titanium Alloy in the 1990's[C]. Warrendale:TMS, 1993. 3-14.
  • 5Boyer R R. Application of Beta Titanium Alloys in Airframes [A]. Beta Titanium Alloy in the 1990's[C]. Warrendale:TMS, 1993. 335-346.
  • 6Allen P G, Bania P J, Hurt A J, et al. Beta Titanium Alloys [A]. Titanium'95 Science and Technology [C]. London:The Institute of Materials, 1996. 2177-2194.
  • 7Ankem S, Greene C A. Recent developments in microstructure/property realationships of beta titanium alloys [J]. Materials Science and Engineering, 1999 ,A263 : 127-131.
  • 8Hansen J O, Novotnak D, Wallter M F, et ol. Properties and Processing of a High Strength Beta Titanium Alloy [A]. Titanium'95 Science and Technology [C]. London :The Institute of Materials, 1996. 675-682.
  • 9Boyer R R. Aerospace application of beta titanium alloys [J]. JOM, 1994, (7): 20-23.
  • 10Wood J R, Russo P A. Heat Treat of Titanium Alloys [A]. Advances in the Science and Technology of Titanium Alloy Processing [C]. Warrendale:Pennaylvania TMS,1996. 421-433.

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