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Al-4%Cu过饱和合金在强磁场中时效行为 被引量:4

Ageing behavior of super-saturated Al-4%Cu alloys under high magnetic field
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摘要 采用差示扫描量热仪分析并结合显微硬度测试、电子探针分析、透射电镜观察研究了10-T稳恒强磁场对Al-4%Cu(质量分数)合金130℃时效过程中各沉淀相析出行为的影响。结果表明:在低温时效初期强磁场的引入加速了铜的扩散,降低了G.P.(Ⅰ)区的溶解激活能,促进其溶解,各沉淀相的析出与溶解温度均向低温处移动,时效进程加快;另外,强磁场时效后沉淀相尺寸减小;施加强磁场试样的硬度明显高于未施加磁场试样的,时效硬化效果加强。 The effects of 10-T magnetic field on ageing behavior of the precipitated phases of Al-4%Cu alloys aged at 130℃ were investigated by differential scanning calorimetry analysis, Vickers micro-hardness test, electron probe microanalysis and transmission electron microscopy observation. The results show that high magnetic field improves the diffusion of Cu atom, lowers the solution active energy of G.P.( Ⅰ ) zone, speeds its solution and shifts the precipitated and dissolved temperature of the phases to lower points, thus accelerates the ageing course during the early stage at low temperature. Furthermore the high magnetic field reduces the dimension of the phases. The microhardness of the field-treated specimen is always higher than those of the non-field ones that indicates the high magnetic field strengthens the hardening effect.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2007年第12期1967-1972,共6页 The Chinese Journal of Nonferrous Metals
基金 国家自然科学基金资助项目(5047160750531020)
关键词 Al—Cu合金 强磁场 时效行为 沉淀相 Al-Cu alloys high magnetic field ageing behavior precipitated phases
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参考文献14

  • 1Son S K, Takeda M, Mitome M, Bandob Y, Endo T. Precipitation behavior of an Al-Cu alloy during isothermal aging at low temperatures[J]. Materials Letters, 2005, 59: 629-632.
  • 2Takeda M, Maeda Y, Yoshida A, Yabuta K, Konuma S, Endo T. Discontinuity of G.P.(I) zone and θ” phase in an Al-Cu alloy[J]. Scripta Materialia, 1999, 41(6): 643-649.
  • 3Ringer S P, Hono K. Microstructural evolution and age hardening in aluminiurn alloys: atom probe field-Ion microscopy and transmission electron microscopy studies[J]. Materials Characterization, 2000, 44: 101-131.
  • 4Silcock J M, Flower H M. Comments on a comparison of early and recent work on the effect of trace of additions of Cd, In or Sn on nucleation and growth of θ” in Al-Cu alloys[J]. Scripta Materialia, 2002, 46:389-394.
  • 5Zhang Y D, Gey N, He C S, Zhao X, Zuo L, Esling C. High temperature tempering behaviors in a structural steel under high magnetic field[J]. Acta Materialia, 2004, 52: 3467-3474.
  • 6Choi J K, Ohtsuka H, Xu Y, Choo W Y. Effects of a strong magnetic field on the phase stability of plain carbon steels[J]. Scripta Materialia, 2000, 43:221-226.
  • 7Zhang Y D, Esling C, Gong M L, Vincent G, Zhao X, Zuo L. Microstructural features induced by a high magnetic field in a hypereutectoid steel during austenitic decomposition[J]. Scripta Materialia, 2006, (54): 1897-1900.
  • 8Ma Y W, Awaji S, Watanabe K, Matsumoto M, Kobayash N. X-ray diffraction study of the structural phase transition of Ni2MnGa alloys in high magnetic fields[J]. Solid State Communications, 2000, 113:671-676.
  • 9刘晓鹏,王轶农,齐民,杨大智.热/强磁场耦合时效对富镍Ti-Ni形状记忆合金相变行为的影响[J].中国有色金属学报,2006,16(12):2005-2009. 被引量:2
  • 10刘万忱,季首华,陈国清,周文龙,黄朝辉,郭建亭.强磁场作用下铸造Al-4%Cu合金时效析出的[J].铸造,2006,55(4):338-340. 被引量:1

二级参考文献37

  • 1黄学文,董光能,周仲荣,谢友柏.应变速率对TiNi形状记忆合金压缩力学行为的影响[J].中国有色金属学报,2004,14(7):1168-1170. 被引量:5
  • 2黄兵民,王永前,程建霞,赵连城.近等原子比NiTi形状记忆合金的超弹性[J].中国有色金属学报,1996,6(4):136-139. 被引量:20
  • 3KIM K S,HUH S H,SUGANUMA K.Effects of intermetallic compounds on properties of Sn-Ag-Cu lead-free soldered joints[J].J of Alloy and Compounds,2003,35(2):226-236.
  • 4LEE Y G,DUH J G.Phase analysis in the solder joint of Sn-Cu solder/IMC/Cu substrate[J].Mater Characterization,1999,42(2):143-160.
  • 5GOODMANN L S.Separation of molten axisymmetric solder joint[J].ASME J Electr Pack,1996,18(1):16-19
  • 6YOST B,MCGROARTY J,BORGESEM P,et al.Shape of nonaxisymmetric liquid solder drop constrained by parallel plates[J].IEEE-CHMT,1993,16(5):523-526.
  • 7MA Xin,WANG Feng-jing,WANG,Yi-yu,et al.Development of Cu-Sn intermetallic compound at Pb-free solder/Cu joint interface[J].Mater Lett,2003,57(22-23):3361-3365.
  • 8Zhang J,Cai W,Ren X,et al.The nature of reversible change in Ms temperatures of Ti-Ni alloys with alternating aging[J].Materials Transactions,JIM,1999,40(12):1367-1375.
  • 9Miller D A,Lagoudas D C.Influence of cold work and heat treatment on the shape memory effect and plastic strain development of NiTi[J].Mater Sci Eng A,2001,A308:161-175.
  • 10Matsumoto H.Transformation behaviour with thermal cycling in NiTi alloys[J].Journal of Alloys and Compounds,2003,350:213-217.

共引文献8

同被引文献37

  • 1姚再起,葛继平,刘书华,李海山,李明生.Cu-11.5%Fe合金的导电性[J].中国有色金属学报,2004,14(11):1912-1917. 被引量:5
  • 2董戴,王元庆.恶劣电磁环境下温度测量的抗干扰[J].安徽工程科技学院学报(自然科学版),2002,17(3):59-62. 被引量:1
  • 3马衍伟,肖立业,严陆光.强磁场条件下材料制备及其研究进展[J].科学通报,2006,51(24):2825-2829. 被引量:12
  • 4T.Kakeshita,K.Shimizu,S.Funada,M.Date,Magnetic field-induced martensitic transformations in disordered and ordered Fe-Pt alloys,Trans.Jpn.Inst.Metals.25(12),837(1984).
  • 5T.Kakeshita,K.Shimizu,S.Funada,M.Date,Composition dependence of magnetic field-induced martensitic transformations in Fe-Ni alloys,Acta MetaU.,as(8),1381(1985).
  • 6H.Guo,M.Enomoto,Influence of magnetic fields oα/γ equilibrium in Fe-C(-X)alloys,Mater.Trans.,41(8),911(2000).
  • 7HE Changshu,ZHANG Yudong,ZHAO Xiang,ZUO Liang,HE Jicheng,Watanabe K,Zhang T,Nishijima G,Esling C,Effects of a high magnetic field on microstructure and texture evolution in a cold-rolled interstitial-free(IF)steel sheet during annealing,Adv.Eng.Mater.,5(8),579(2003).
  • 8W.V.Youdelis,D.R.Colton,J.Cahoon,On the theory of diffusion in a magnetic field,Can.J.Phys.,42(11),2217(1964).
  • 9H.Nakajima,S.Maekawa,Y.Aoki,M.Koiwa,Diffusion of nickel in titanium in a magnetic field,Tram.Jpn.Inst.Metals,26(1),1(1985).
  • 10Z.F.Li,J.Dong,X.Q.Zeng,C.Lu,W.J.Ding,Z.M.Ren,Infiuence of strong static magnetic feld on intermediate phase growth in Mg-Al diffusion couple,J.Alloy.Compd.,440(1-2),132(2007).

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