Theory for intermetallic phase growth between Cu and liquid Sn-Pb solder based on grain boundary diffusion control

被引:300
作者
Schaefer, M [1 ]
Fournelle, RA
Liang, J
机构
[1] Marquette Univ, Mat Sci Program, Milwaukee, WI 53201 USA
[2] Rockwell Automat Allen Bradley, Milwaukee, WI 53204 USA
关键词
Cu-Sn intermetallics; grain boundary diffusion; grain coarsening; intermetallic compound growth; Sn-Pb-Ag solder;
D O I
10.1007/s11664-998-0066-7
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Kinetics of phase formation during interdiffusion in solid-liquid diffusion couples are influenced by the morphology of the intermediate compound layer. In some cases, an intermediate compound layer is formed which has very fine grain size. This condition favors grain boundary diffusion as the predominant mechanism for transport through the layer. In systems where grain coarsening occurs, the coarsening kinetics will influence the interdiffusion kinetics. In addition, for some solid-liquid systems, a grain boundary grooving effect is observed which leads to a highly nonuniform layer thickness; the layer is thinner where the liquid phase penetrates the grain boundaries. As a consequence of the grooving effects, the diffusion path through the layer is shorter along the grain boundaries. This differs from standard interdiffusion models which assume that the diffusion distance is equal to the average layer thickness. A model for growth kinetics of an intermediate compound layer is presented for the case where grain boundary diffusion is the predominant transport mechanism. The model includes the geometric effects caused by grain boundary grooving. The model predicts layer growth which follows a t(1/3) dependence on time t. Experimental data for intermetallic growth between copper and 62Sn-36Pb-2Ag solder exhibit a t(1/4) dependence on time t. If experimental data are interpreted in terms of the grain boundary diffusion control model presented in this paper, the activation energy for grain boundary diffusion is 27 kJ/mole.
引用
收藏
页码:1167 / 1176
页数:10
相关论文
共 25 条
  • [1] RAPID FORMATION OF INTERMETALLIC COMPOUNDS BY INTERDIFFUSION IN THE CU-SN AND NI-SN SYSTEMS
    BADER, S
    GUST, W
    HIEBER, H
    [J]. ACTA METALLURGICA ET MATERIALIA, 1995, 43 (01): : 329 - 337
  • [2] INTERMETALLIC PHASE-FORMATION IN THIN SOLID-LIQUID DIFFUSION COUPLES
    BARTELS, F
    MORRIS, JW
    DALKE, G
    GUST, W
    [J]. JOURNAL OF ELECTRONIC MATERIALS, 1994, 23 (08) : 787 - 790
  • [3] BARTELS F, 1993, THESIS U STUTTGART M
  • [4] SOLID-STATE INTERMETALLIC COMPOUND GROWTH BETWEEN COPPER AND HIGH-TEMPERATURE, TIN-RICH SOLDERS .2. MODELING
    ERICKSON, KL
    HOPKINS, PL
    VIANCO, PT
    [J]. JOURNAL OF ELECTRONIC MATERIALS, 1994, 23 (08) : 729 - 734
  • [5] The mechanical behavior of interconnect materials for electronic packaging
    Frear, DR
    [J]. JOM-JOURNAL OF THE MINERALS METALS & MATERIALS SOCIETY, 1996, 48 (05): : 49 - 53
  • [6] INTERMETALLIC GROWTH AND MECHANICAL-BEHAVIOR OF LOW AND HIGH-MELTING TEMPERATURE SOLDER ALLOYS
    FREAR, DR
    VIANCO, PT
    [J]. METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1994, 25 (07): : 1509 - 1523
  • [7] FREAR DR, 1991, SOLDER MECH STATE AR, P191
  • [8] Kaur I., 1995, Fundamentals of Grain and Interphase Boundary Diffusion, VThird
  • [9] Kay P. J., 1976, T I MET FINISH, V54, P68
  • [10] Kinetic analysis of the soldering reaction between eutectic SnPb alloy and Cu accompanied by ripening
    Kim, HK
    Tu, KN
    [J]. PHYSICAL REVIEW B, 1996, 53 (23): : 16027 - 16034