Influence of rare earth element erbium on microstructures and properties of as-cast 8030 aluminum alloy

Hao-qing Tang , Hong-ying Li , Dong Jin , Xiang-hua Hu , Jing Xu , Hua-bin Li

Journal of Central South University ›› : 1 -12.

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Journal of Central South University ›› : 1 -12. DOI: 10.1007/s11771-024-5723-3
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Influence of rare earth element erbium on microstructures and properties of as-cast 8030 aluminum alloy

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Abstract

The modification behavior of different Er contents on the microstructures and properties of as-cast 8030 aluminum alloy was investigated by optical microscopy (OM), scanning electron microscopy (SEM), X-ray diffraction (XRD), energy dispersive spectroscopy (EDS), transmission electron microscopy (TEM), hardness test, electrical conductivity test and tensile property test. The results show that the addition of Er can refine the grains of as-cast alloy, which mainly promotes the nucleation of α -Al by causing constitutional supercooling and forming the Al3Er nanoparticles as a heterogeneous nucleation core. Er can change the morphology of Al-Al6Fe eutectic structure of the alloy, furthermore, Er can adsorb on the surface of the Al6Fe phase to refine the Al6Fe phase at eutectic structure. Er can improve the tensile properties, especially the elongation of as-cast 8030 aluminum alloy, which is attributed to the modification of Al-Al6Fe eutectic and Al6Fe phase.

Keywords

8030 aluminum alloy / Er addition / tensile properties / microstructure / modification

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Hao-qing Tang, Hong-ying Li, Dong Jin, Xiang-hua Hu, Jing Xu, Hua-bin Li. Influence of rare earth element erbium on microstructures and properties of as-cast 8030 aluminum alloy. Journal of Central South University 1-12 DOI:10.1007/s11771-024-5723-3

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References

[1]

PoonC, O’HalloranS M, ConnollyA, et al. . Fretting wear and fatigue in submarine power cable conductors for floating offshore wind energy [J]. Tribology International, 2023, 186: 108598

[2]

GuJ. Development of cable for wind power generation [J]. Electric Wire & Cable, 2009, 25-6(in Chinese)

[3]

DongD-D, ZhaoD-Q, LiaoC-P. Overview of wind turbines research and wind power development in China [J]. Renewable Energy Resources, 2007, 25(3): 72-75

[4]

ChenG, GuoS-X, ZhangB, et al. . Material stress and creep property of compression type fittings used for electrical connection [J]. The Chinese Journal of Nonferrous Metals, 2018, 28(11): 2274-2280(in Chinese)

[5]

ZhaoY. The promotion of aluminum alloy conductors is imperative [J]. China Nonferrous Metals, 2014, 13: 39-42(in Chinese)

[6]

HUANG Chong-qi. The application and development of aluminum and aluminum alloy for electrical purposes in cable field [J]. Electric Wire & Cable, 2013(2): 4–9. DOI: https://doi.org/10.16105/j.cnki.dxdl.2013.02.002.

[7]

LiM, ChenJ-M, LiangP, et al. . The date transmission cables for wind turbine torsionally resistant [J]. Electrical world, 2021, 62(07): 13-16(in Chinese)

[8]

ChenP, FanX-Z, YangQ-B, et al. . Creep behavior and microstructural evolution of 8030 aluminum alloys compressed at intermediate temperature [J]. Journal of Materials Research and Technology, 2021, 12: 1755-1761

[9]

JiangX-Y, ZhangY, YiD-Q, et al. . Low-temperature creep behavior and microstructural evolution of 8030 aluminum cables [J]. Materials Characterization, 2017, 130: 181-187

[10]

ZhangJ-Y, JiangX-Y, MaM-Y, et al. . Effect of scandium micro-alloying on the creep resistance properties of Al-0.7Fe alloy cables [J]. Materials Science and Engineering A, 2017, 699: 194-200

[11]

WangX, GuanR G, MisraR D K, et al. . The mechanistic contribution of nanosized Al3Fe phase on the mechanical properties of Al-Fe alloy [J]. Materials Science and Engineering A, 2018, 724: 452-460

[12]

KongY-P, JiaZ-H, LiuZ-P, et al. . Effect of Zr and Er on the microstructure, mechanical and electrical properties of Al-0.4Fe alloy [J]. Journal of Alloys and Compounds, 2021, 857: 157611

[13]

MoldovanP, PopescuG, MiculescuF. Microscopic study regarding the microstructure evolution of the 8006 alloy in the plastic deformation process [J]. Journal of Materials Processing Technology, 2004, 153–154408-415

[14]

ShiZ M, GaoK, ShiY T, et al. . Microstructure and mechanical properties of rare-earth-modified Al - 1Fe binary alloys [J]. Materials Science and Engineering A, 2015, 632: 62-71

[15]

SunC-M, ShiZ-M, LiZ-F. Improvement of morphology of Fe-riched phase in commercial pure aluminum by Ce-riched rare earth modification [J]. Journal of the Chinese Society of Rare Earths, 2007, 25(3): 318-322

[16]

SunC-M, ShiZ-M, LiZ-F. Improvement of morphology of Fe-riched phase in commercial pure aluminum by Ce-riched rare earth modification [J]. Journal of the Chinese Rare Earth Society, 2007, 25(3): 318-322

[17]

LiR-D, MaJ-C, ZhouZ-P, et al. . Effect of rare earth on microstructure of eutectic Al-2%Fe alloy [J]. Journal of the Chinese Rare Earth Society, 2004, 22(5): 722-724

[18]

LuoS X, ShiZ M, LiN Y, et al. . Crystallization inhibition and microstructure refinement of Al-5Fe alloys by addition of rare earth elements [J]. Journal of Alloys and Compounds, 2019, 789: 90-99

[19]

LiangY H, ShiZ M, LiG W, et al. . Effects of Er addition on the crystallization characteristic and microstructure of Al-2wt% Fe cast alloy [J]. Journal of Alloys and Compounds, 2019, 781: 235-244

[20]

LiangY-H, LiG-W, ShiZ-M, et al. . Influence of Er content on microstructural evolution and mechanical properties of Al-2Fe alloy [J]. Journal of Alloys and Compounds, 2022, 895: 162416

[21]

ChenX, LiuZ-Y, BaiS, et al. . Alloying behavior of erbium in an Al-Cu-Mg alloy [J]. Journal of Alloys and Compounds, 2010, 505(1): 201-205

[22]

BaiS, LiuZ-Y, LiY-T, et al. . Microstructures and fatigue fracture behavior of an Al-Cu-Mg-Ag alloy with addition of rare earth Er [J]. Materials Science and Engineering: A, 2010, 527(7): 1806-1814 8

[23]

GuoW-C, ChenX-H, LiuP, et al. . Effects of Er additions on the microstructure, mechanical properties, and electrical conductivity of the Al-0.4Fe-0.05Si alloy [J]. Advanced Engineering Materials, 2021, 23(3): 2000955

[24]

YangL, LiuB. Action of alloying element with Fe in Al-Fe alloys [J]. Hot Working Technology, 2016, 452013-16

[25]

AllenC, O’ReillyK, CantorB, et al. . Intermetallic phase selection in 1XXX Al alloys [J]. Progress in Materials Science, 1998, 43(2): 89-170

[26]

WangJ, ZhouY-L. Research progress on organizational optimization and related mechanisms of Al-Fe alloys [J]. Journal of Xihua University (Natural Science Edition), 2017, 36(6): 73-82

[27]

GrigerÁ, StefániayV. Equilibrium and non-equilibrium intermetallic phases in Al-Fe and Al-Fe-Si Alloys [J]. Journal of Materials Science, 1996, 31(24): 6645-6652

[28]

ZhangY, GaoK-Y, WenS-P, et al. . The study on the coarsening process and precipitation strengthening of Al3Er precipitate in Al-Er binary alloy [J]. Journal of Alloys and Compounds, 2014, 61027-34

[29]

AshbyM F, BrownL M. Diffraction contrast from spherically symmetrical coherency strains [J]. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics, 1963, 8(91): 1083-1103

[30]

JiangH-X, LiS-X, ZhangL-L, et al. . The influence of rare earth element lanthanum on the microstructures and properties of as-cast 8176 (Al-0.5Fe) aluminum alloy [J]. Journal of Alloys and Compounds, 2021, 859: 157804

[31]

JiangH-X, LiS-X, ZhengQ-J, et al. . Effect of minor lanthanum on the microstructures, tensile and electrical properties of Al-Fe alloys [J]. Materials & Design, 2020, 195108991

[32]

Van DalenM E, KarneskyR A, CabotajeJ R, et al. . Erbium and ytterbium solubilities and diffusivities in aluminum as determined by nanoscale characterization of precipitates [J]. Acta Materialia, 2009, 57(14): 4081-4089

[33]

OuyangY-F, ZhongX-P, DuY, et al. . Formation enthalpies of Fe-Al-RE ternary alloys calculated with a geometric model and Miedema’s theory [J]. Journal of Alloys and Compounds, 2006, 416(1): 148-154 2

[34]

Booth-MorrisonC, SeidmanD N, DunandD C. Effect of Er additions on ambient and high-temperature strength of precipitation-strengthened Al-Zr-Sc-Si alloys [J]. Acta Materialia, 2012, 60(8): 3643-3654

[35]

ZhuS-D, HuangH, NieZ-R, et al. . Existing dorm of Al3Er in Al - Er alloy [J]. Light Alloy Fabrication Technology, 2009, 37(05): 53-59(in Chinese)

[36]

FuG-S, SunF-S, RenL-Y, et al. . Modification behavior of trace rare earth on impurity phase in commercial pure aluminum [J]. Journal of the Chinese Society of Rare Earths, 2001, 2133-137(in Chinese)

[37]

LiJ-W, ShenS-Y, SunY-L, et al. . Effect of rare earth on refinement and degassing of aluminum [J]. Light Metals, 1989, 7: 31-34(in Chinese)

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