欢迎登录材料期刊网

材料期刊网

高级检索

研究了稳恒强磁场作用下Al-Cu扩散偶界面中间相组成和扩散行为.结果表明:强磁场作用下扩散偶中间相厚度显著增加,并且随磁场强度增大,界面中间相组成发生变化.按照抛物线规律计算了强磁场作用下扩散偶中间相的扩散系数,发现在平行和垂直于磁场的两个方向上扩散系数有显著差异,垂直于磁场方向的扩散系数比平行于磁场方向更大.强磁场促进了Al-Cu扩散偶中Al和Cu原子的扩散,加速了界面中间相的形成和生长过程.磁场作用差异导致了扩散的各向异性.利用原子扩散理论初步分析了产生上述现象的原因.

参考文献

[1] D.A. MOLODOV;S. BHAUMIK;X. MOLODOVA .Annealing Behaviour of Cold Rolled Aluminum Alloy in a High Magnetic Field[J].Scripta materialia,2006(12):2161-2164.
[2] Z. Ren;X. Li;H. Wang .The segregated structure of MnBi in Bi-Mn alloy solidified under a high magnetic field[J].Materials Letters,2004(27/28):3405-3409.
[3] 王晖,任忠鸣,徐匡迪,黄晖,王秋良,严陆光.强磁场作用下Al-Ni合金中Al3Ni析出相的凝固行为[J].稀有金属材料与工程,2005(07):1033-1035.
[4] OHTSUKA H .Effects of strong magnetic fields on bainitic transformation[J].Current Opinion in Solid State and Materials Science,2004,8:279-284.
[5] Jie Zhao;Peng Yang;Feng Zhu .The Effect of High Magnetic Field on the Growth Behavior of Sn-3Ag-0.5Cu/Cu IMC Layer[J].Scripta materialia,2006(6):1077-1080.
[6] G.J. Ma;C.W. Wu;W.L. Zhou .Initial study of strengthening of NiAl-Cr(Mo)-Hf alloys by strong magnetic field[J].Journal of Materials Research,2005(2):295-298.
[7] Y.D. Zhang;C. Esling;J.S. Lecomte .Grain boundary characteristics and texture formation in a medium carbon steel during its austenitic decomposition in a high magnetic field[J].Acta materialia,2005(19):5213-5221.
[8] Ying D.Y.;Zhang D.L. .Solid-state reactions between Cu and Al during mechanical alloying and heat treatment[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2000(2):275-282.
[9] JIANG H G;DAI J Y;TONG H Y et al.Interfacial reactions on annealing Cu/Al multilayer thin films[J].Journal of Applied Physics,1993,74:6165-6169.
[10] X. K. Peng;R. Wuhrer .On the interface development and fracture behaviour of roll bonded copper/aluminium metal laminates[J].Journal of Materials Science,1999(9):2029-2038.
[11] Chih-Yuan Chen;Hao-Long Chen;Weng-Sing Hwang .Influence of Interfacial Structure Development on the Fracture Mechanism and Bond Strength of Aluminum/Copper Bimetal Plate[J].Materials transactions,2006(4):1232-1239.
[12] J.C.de Lima;D.M.Triches .Formation of γ-Cu67Al33 alloy by mechanical alloying[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,1999(1/2):258-260.
[13] LIU X T;CUI J Z;YU F X .Effect of an alternating magnetic field on the phase formation in Al-Cu couple[J].Journal of Materials Science,2004,39:2935-2936.
[14] Schaffer GB.;Sercombe TB.;Lumley RN. .Liquid phase sintering of aluminium alloys[J].Materials Chemistry and Physics,2001(1/3):85-91.
[15] MORENO D;GARRETT J;EMBURY J D .A technique for rapid characterization of intermetallics and interfaces[J].INTERMETALLICS,1999,7:1001-1009.
[16] ANDERSON IE;COOK BA;HARRINGA J et al.Microstructural modifications and properties of Sn-Ag-Cu solder joints induced by alloying[J].Journal of Electronic Materials,2002,31(11):1166-1174.
[17] Xiaotao Liu;Jianzhong Cui;Yanhui Guo .Phase formation and growth in Al-Mg couple with an electromagnetic field[J].Materials Letters,2004(9):1520-1523.
[18] 刘晓涛,崔建忠,郭艳辉,吴晓明,张军.电磁场作用下Al-Mg扩散偶的界面层结构及长大规律[J].稀有金属,2004(01):93-96.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%