Review on recent progress in Al-Mg-Si 6xxx conductor alloys

被引:23
|
作者
Khangholi, Siamak Nikzad [1 ]
Javidani, Mousa [1 ]
Maltais, Alexandre [2 ]
Chen, X. Grant [1 ]
机构
[1] Univ Quebec Chicoutimi, Dept Appl Sci, Saguenay, PQ G7H 2B1, Canada
[2] Rio Tinto Aluminum, Arvida Res & Dev Ctr, Saguenay, PQ G7S 4K8, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
ENHANCED MECHANICAL-PROPERTIES; ELECTRICAL-CONDUCTIVITY; MG/SI RATIO; CU ALLOYS; PRECIPITATION SEQUENCE; OVERHEAD CONDUCTORS; HARDENING BEHAVIOR; METASTABLE PHASES; HEAT-TREATMENT; HIGH-STRENGTH;
D O I
10.1557/s43578-022-00488-3
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The mechanical strength and electrical conductivity (EC) in Al-Mg-Si 6xxx conductor alloys are key characteristics but mutually exclusive properties. This review paper critically elaborates the methods to enhance the mechanical strength and electrical conductivity.These methods include an optimization of the main alloying elements (Mg and Si), the addition of the other alloying elements, melt treatment, applying the modified thermomechanical treatments, and maximizing the area reduction (severe plastic deformation) in the wire drawing. Besides, the impact of the various microstructural features on the mechanical and electrical properties is addressed in detail using strength and electrical resistivity models. A principal conclusion drawn in this review is that the strength ought to be enhanced by creating barriers (such as sessile dislocations and precipitates) for dislocation movement while having a less detrimental effect on the electrical conductivity. Considering the potential of Al-Mg-Si conductor alloys, future directions are outlined.
引用
收藏
页码:670 / 691
页数:22
相关论文
共 50 条
  • [31] DTA STUDIES IN AL-MG-SI ALLOYS
    HAJDU, J
    KERTESZ, L
    LENART, C
    NAGY, E
    CRYSTAL LATTICE DEFECTS, 1974, 5 (3-4): : 177 - 180
  • [32] Failure of Al-Mg-Si alloys in bending
    Friedman, P.A.
    Luckey, S.G.
    Journal of Failure Analysis and Prevention, 2002, 2 (01) : 33 - 42
  • [33] Assessment of different techniques for quantification of α-Al(FeMn)Si and β-AlFeSi intermetallics in AA 6xxx alloys
    Kuijpers, NCW
    Kool, WH
    Koenis, PTG
    Nilsen, KE
    Todd, I
    van der Zwaag, S
    MATERIALS CHARACTERIZATION, 2002, 49 (05) : 409 - 420
  • [34] The precipitation sequence in Al-Mg-Si alloys
    Edwards, GA
    Stiller, K
    Dunlop, GL
    Couper, MJ
    ACTA MATERIALIA, 1998, 46 (11) : 3893 - 3904
  • [35] KINETICS OF DECOMPOSITION OF AL-MG-SI ALLOYS
    KORNGIEBEL, E
    LOFFLER, H
    OETTEL, W
    PHYSICA STATUS SOLIDI A-APPLIED RESEARCH, 1975, 30 (02): : K125 - K127
  • [36] INTERGRANULAR FRACTURE OF AL-MG-SI ALLOYS
    EVENSEN, JD
    RYUM, N
    EMBURY, JD
    MATERIALS SCIENCE AND ENGINEERING, 1975, 18 (02): : 221 - 229
  • [37] Precipitation sequence of Al-Mg-Si alloys
    Ikeno, S
    Matsuda, K
    THERMEC'2003, PTS 1-5, 2003, 426-4 : 357 - 362
  • [38] HOT DEFORMATION OF AL-MG-SI ALLOYS
    ESPEDAL, A
    GJESTLAND, H
    RYUM, N
    MCQUEEN, HJ
    SCANDINAVIAN JOURNAL OF METALLURGY, 1989, 18 (03) : 131 - 136
  • [39] The solidification process of Al-Mg-Si alloys
    Liu, YL
    Kang, SB
    JOURNAL OF MATERIALS SCIENCE, 1997, 32 (06) : 1443 - 1447
  • [40] Study of ageing of Al-Mg-Si alloys
    Li, Puchao
    Wang, Mingpu
    Sun, Xiaohua
    Xu, Guofu
    Zhongnan Gongye Daxue Xuebao/Journal of Central South University of Technology, 29 (03): : 262 - 265