Coarsening of Al3Sc precipitates in an Al-0.28 wt pct Sc alloy

被引:0
|
作者
C. Watanabe
T. Kondo
R. Monzen
机构
[1] Kanazawa University,the Department of Mechanical Systems Engineering
关键词
Material Transaction; Aging Time; Interface Energy; Electrical Resistivity Measurement; Marquis;
D O I
暂无
中图分类号
学科分类号
摘要
The Ostwald ripening of Al3Sc precipitates in an Al-0.28 wt pct Sc alloy during aging at 673, 698, and 723 K has been examined by measuring the average size of precipitates by transmission electron microscopy (TEM) and the reduction in Sc concentration in the Al matrix with aging time, t, by electrical resistivity. The coarsening kinetics of Al3Sc precipitates obey the t1/3 time law, as predicted by the Lifshitz-Slyozov-Wagner (LSW) theory. The kinetics of the reduction of Sc concentration with t are consistent with the predicted t−1/3 time law. Application of the LSW theory has enabled independent calculation of the Al/Al3Sc interface energy, γ, and volume diffusion coefficient, D, of Sc in Al during coarsening of precipitates. The Gibbs-Thompson equation has been used to give a value of γ using coarsening data obtained from TEM and electrical resistivity measurements. The value of γ estimated from the LSW theory is 218 mJ m−2, which is nearly identical to 230 mJ m−2 from the Gibbs-Thompson equation. The pre-exponential factor and activation energy for diffusion of Sc in Al are determined to be (7.2±6.0)×10−4 m2 s−1 and 176±9 kJ mol−1, respectively. The values are in agreement with those for diffusion of Sc in Al obtained from tracer diffusion measurements.
引用
收藏
页码:3003 / 3008
页数:5
相关论文
共 50 条
  • [31] Interaction between moving boundaries and Al3Sc precipitates in an Al-5 mass%Mg-0.3 mass %Sc alloy
    Ihara, Kentaro
    Oga, Hirotsugu
    Miura, Yasuhiro
    Keikinzoku/Journal of Japan Institute of Light Metals, 2006, 56 (07): : 361 - 365
  • [32] Effect of Al3SC precipitate on the microstructural evolution during accumulative roll bonding in Al-0.2 wt.% Sc alloy
    Min, BK
    Kim, HW
    Kang, SB
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2005, 162 : 355 - 361
  • [33] Precipitation of Al3Sc in binary Al-Sc alloys
    Novotny, GM
    Ardell, AJ
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2001, 318 (1-2): : 144 - 154
  • [34] Experimental and theoretical characterization of Al3Sc precipitates in Al-Mg-Si-Cu-Sc-Zr alloys
    Litynska, L
    Dutkiewicz, J
    Parlinski, K
    ZEITSCHRIFT FUR METALLKUNDE, 2006, 97 (03): : 321 - 324
  • [35] Co-stabilization of θ′-Al2Cu and Al3Sc precipitates in Sc-microalloyed Al-Cu alloy with enhanced creep resistance
    Gao, Y. H.
    Cao, L. F.
    Yang, C.
    Zhang, J. Y.
    Liu, G.
    Sun, J.
    MATERIALS TODAY NANO, 2019, 6
  • [36] Experimental and theoretical characterization of Al3Sc precipitates in Al-Mg-Si-Cu-Sc-Zr alloys
    Lityńska, Lidia
    Dutkiewicz, Jan
    Parliński, Krzysztof
    International Journal of Materials Research, 2006, 97 (03) : 321 - 324
  • [37] Coarsening Behavior of Al3(Sc, Zr) Precipitates and Its Influence on Recrystallization Temperature of Al-Mg-Sc-Zr Alloy
    Du, Gang
    Deng, Jingwei
    Yan, Desheng
    Zhao, Mingjiu
    Rong, Lijian
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2009, 25 (06) : 749 - 752
  • [39] Creep properties of Al3Sc and Al3(Sc, X) intermetallics
    Harada, Y
    Dunand, DC
    ACTA MATERIALIA, 2000, 48 (13) : 3477 - 3487
  • [40] Isothermal aging of Al-Ni-Sc alloy containing Al3Ni microfibers and Al3Sc nanoprecipitates
    Suwanpreecha, Chanun
    Toinin, Jacques Perrin
    Pandee, Phromphong
    Dunand, David C.
    Limmaneevichitr, Chaowalit
    JOURNAL OF METALS MATERIALS AND MINERALS, 2019, 29 (02): : 37 - 41