期刊文献+

多功能电磁成形定向凝固设备的研制 被引量:2

Development of Multi-functional Equipment for Electromagnetic Shaping and Uni-directional Solidification
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摘要 电磁成形是一种先进的材料成形加工技术 ,应用该技术不仅可以实现金属的无坩埚熔化 ,而且还可以达到无铸型成形的效果 ,避免了材料在冶炼和成形中的污染。介绍一台自行研制的多功能电磁成形定向凝固设备 ,该设备不仅可以实现电磁成形定向凝固功能 ,而且还可以实现HRS法、LMC法和ZMLMC法等定向凝固工艺。超宽的调速范围。 Electromagnetic shaping is a kind of the advanced technology for materials working and shaping, by which not only non crucible smelting of metal can be realized, but also the effect of non cast mold forming can be obtained so as to avoid material pollution during smelting and forming process. A self developed multi functional equipment for electromagnetic shaping and directional solidification was introduced. The equipment cannot only realize electromagnetic shaping and uni directional solidification, but also realize HRS, LMC and ZMLMC techniques. The super wide speed adjusting range, the stably operational capacity, the high vacuum rate and temperature gradient, made the equipment possible to do much forefront scientific research work.
机构地区 西北工业大学
出处 《特种铸造及有色合金》 CAS CSCD 北大核心 2001年第2期81-82,共2页 Special Casting & Nonferrous Alloys
基金 国家自然科学基金重大项目 !(59995440 1 ) 国家重点基础研究规划项目 !(973专项G2 0 0 0 0 672 0 2 - 2 )
关键词 电磁成形 定向凝固 设备研制 Electromagnetic Shaping,Uni directional Solidification, Equipment Development
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参考文献3

  • 1李双明,李建国,傅恒志.液态金属的无容器近终成形[J].稀有金属材料与工程,1999,28(1):5-9. 被引量:9
  • 2沈军.电磁约束成型过程研究:博士学位论文[M].西安:西北工业大学,1997..
  • 3沈军,博士论文,1997年

二级参考文献4

  • 1周土平,曲英,韩至成.钢的电磁铸造[J].钢铁,1994,29(12):71-74. 被引量:8
  • 2沈军,博士学位论文,1997年
  • 3李双明,硕士学位论文,1997年
  • 4Li B Q,Metall Trans B,1991年,22卷,121页

共引文献8

同被引文献22

  • 1陈文杰,廖希亮,甘长红,方燕,翟启杰.脉冲电流对Al-4.5Cu合金定向凝固组织的影响[J].特种铸造及有色合金,2006,26(8):523-525. 被引量:11
  • 2浅井兹生 佐佐健介.冷坩埚工艺熔炼法[J].工业加热,1991,101(3):43-47.
  • 3Ding Hongsheng.Directional Solidification of Titanium Alloys by Electromagnetic Confinement in Cold Crucible.Materials Letters,2005 (7):741~745.
  • 4丁宏升 陈瑞润 毕维生.钛合金的冷坩埚电磁连续成形定向凝固工艺[A]..见:第16届东北三省四市铸造年会论文集[C].大连,2003.115-121.
  • 5吴贵生.实验设计和数据分析[M].北京:金属工业出版社,1997..
  • 6Boyer R R.An Overview on the Use of Titanium in Aerospace Industry.Materials Science and Engineering, 1996, A213:103~114.
  • 7Malinov S,Sha W.Application of Artificial Neural Networks for Modelling Correlations in Titanium Alloys.Materials Science and Engineering,2004,A365:202~211.
  • 8Kishida K,Inui H,Yamaguchi M.Deformation of PST Crystals of a TiAl/Ti3Al Two-phase Alloy at 1 000 ℃.Intermetallics,1999(7):1 131~1 139.
  • 9Okress E C, Wroughton D M, Comenetz G et al.Electromagnetic Levitation of Solid Molton.Melts.J.Appl.Phys.,1952,23(5):525~529.
  • 10GORBUNOV L A. Electromagnetic studies on the kola peninsula and in northern finland by means of a powerful controlled Source[J]. Magnetohydrodynamics, 1998 (4) :404-412.

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