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Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5)合金凝固过程热力学 被引量:3

Solidification thermodynamics of bulk amorphous Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5) alloy
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摘要 利用真空冷壁坩埚感应熔炼及铜模离心铸造的方法制备了大尺寸非晶态Zr41.2 Ti13 .8Cu12 .5Ni10 Be2 2 .5材料 ,采用DTA和DSC分别研究了该合金的凝固特性及非晶态晶化行为。结果表明 :Zr41.2 Ti13 .8Cu12 .5Ni10 Be2 2 .5合金具有较低的熔点 ,表现出良好的深共晶特性 ,在较低的冷却速度下即可制备出大块部分非晶及全部非晶材料。Zr41.2 Ti13 .8Cu12 .5Ni10 Be2 2 .5大块非晶材料在 339.5℃发生玻璃转变 ,晶化温度为 4 2 0℃。 The bulk amorphous Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5) alloy was prepared by cold wall crucible induction melting and centrifugal casting into a copper mould. Solidification characteristic of the alloy was analyzed by differential thermal analysis (DTA) and crystallization behaviours of the amorphous alloy was analyzed by differential scanning calorimetry (DSC). It is shown that the melting point of Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5) alloy is relatively low, and the melt has a good eutectic characteristic. The partially amorphous and fully amorphous samples are prepared at low cooling rate. It is determined that the glass transition temperature(θ_g) of Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5) bulk amorphous alloy is 339.5 ℃ and the crystallization temperature (θ_x) is 420 ℃.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2003年第5期1083-1086,共4页 The Chinese Journal of Nonferrous Metals
关键词 大块非晶合金 玻璃转变 晶化 凝固 热力学 锆合金 solidification characteristic bulk amorphous alloy glass transition crystallization
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  • 1卢柯 王景唐 等.-[J].金属学报,1991,27:31-31.
  • 2何国 陈国良.-[J].材料科学与工艺,1998,6:105-105.
  • 3卢柯.中国科学院金属研究所博士学位论文[M].,1989..
  • 4卢柯.-[J].金属学报,1994,30:1-1.
  • 5He G,Trans Nonferrous Met Soc China,1999年,9卷
  • 6何国,材料科学与工艺,1998年,6卷,105页
  • 7卢柯,金属学报,1994年,30卷,B1页
  • 8卢柯,金属学报,1991年,27卷,B31页
  • 9卢柯,博士学位论文,1989年
  • 10Li Y,Scripta Mater,1997年,36卷,783页

共引文献37

同被引文献32

  • 1HUANG WenBo, LI WenFang & HAN Bing College of Material Science and Engineering, South China University of Technology, Guangzhou 510640, China.Study on BaTiO_3 films prepared by AC power microarc oxidation[J].Science China(Technological Sciences),2009,52(8):2195-2199. 被引量:11
  • 2张志豪,刘新华,周成,谢建新.Zr基大块非晶合金的超塑性成形性能[J].中国有色金属学报,2004,14(7):1073-1077. 被引量:29
  • 3陈宏伟,杨传仁,符春林,高志强,赵莉.BST薄膜的膜厚与铁电性能关系研究[J].电子元件与材料,2005,24(6):15-17. 被引量:6
  • 4苗鸿雁,马景云,谈国强,孙正球.BST铁电薄膜材料的研究现状及其进展[J].材料导报,2005,19(12):99-101. 被引量:5
  • 5王国强,王安福,王绍明.Sol-Gel法制备BST铁电薄膜及性能研究[J].武汉理工大学学报,2007,29(5):10-12. 被引量:4
  • 6[1]Johnson W L. Bulk metallic glasses-a new engineering material[J]. Solid State & Materials Science, 1996(1): 383- 386.
  • 7[2]Doglione R, Spriano S, Battezzati L. Static mechanical characterization of a bulk amorphous and nanocrystalline Zr40Ti14 Ni11 Cu10Be25 alloy [ J ]. Nanostructured Materials, 1997, 8(4) : 447 - 455.
  • 8[3]Lee K S, Ha T K, Ahn S, et al. High temperature deformation behavior of the Zr41. 2 Ti13. 8 Cu12. 5 Ni10 Be22. 5 bulk metallic glass[J]. Journal of Non-Crystalline Solids, 2003(317): 193- 199.
  • 9[7]Inoue A. High strength bulk amorphous alloys with low critical cooling rates[J]. Mater Trans, JIM,1995, 36: 1921- 1930.
  • 10[8]Inoue A, et al. Zr-La-Ni Amorphous alloys with high glass transition temperature and significant supercooled liquid region[J]. Mater Trans, JIM, 1990, 31: 177-183.

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