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Frontiers of Materials Science

ISSN 2095-025X

ISSN 2095-0268(Online)

CN 11-5985/TB

Postal Subscription Code 80-974

2018 Impact Factor: 1.701

Front. Mater. Sci.    2008, Vol. 2 Issue (4) : 351-356    https://doi.org/10.1007/s11706-008-0061-1
Study on Al-Cu-Si braze containing small amount of rare earth erbium
SHI Yao-wu, YU Yang, XIA Zhi-dong, LEI Yong-ping, LI Xiao-yan, GUO Fu, LIU Jian-ping
School of Materials Science and Engineering, Beijing University of Technology
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Abstract In the present work, the effect of a small amount of rare earth Er addition on the microstructure of Al-Cu-Si brazing alloy has been investigated. In the study, the Al-20Cu-7Si brazing alloys with various Er contents were prepared. 3003 aluminum alloy was chosen as a substrate. The microstructure of the brazed alloys was carefully observed. In addition, melting temperature, wettability and hardness of the brazing alloys were measured. The results indicate that the constituent of the microstructure of Al-20Cu-7Si-Er brazed alloy is similar to the Al-20Cu-7Si, which is mainly comprised of solid solutions of aluminum, silicon and the intermetallic compounds CuAl2. When the Er content increases, the size of Al phases is decreased, and the filament-like or needle-like Si phase is thickened. The Si phases dominating in the shape of a filament or needle are transformed to those in the shape of a block when Er content is increased. Moreover, adding a small amount of Er can improve the wettability and hardness of the Al-20Cu-7Si brazing alloy. However, the melting temperature of the Al-20Cu-7Si alloy is almost unchanged when a small amount of Er is added.
Issue Date: 05 December 2008
 Cite this article:   
SHI Yao-wu,YU Yang,LIU Jian-ping, et al. Study on Al-Cu-Si braze containing small amount of rare earth erbium[J]. Front. Mater. Sci., 2008, 2(4): 351-356.
 URL:  
https://academic.hep.com.cn/foms/EN/10.1007/s11706-008-0061-1
https://academic.hep.com.cn/foms/EN/Y2008/V2/I4/351
1 Jacobson D M, Humpston G, Sangha S P S . A new low-meltingpoint aluminium braze. Welding Journal, 1996, 75(8): 243–250
2 Chuang T H, Yeh M S, Tsao L C, et al.. Development of a low-melting-pointfiller metal for brazing aluminum alloys. Metallurgical and Materials Transactions A: Physical Metallurgy andMaterials Science, 2000, 31A(9): 2239–2246.
doi:10.1007/s11661-000-0141-z
3 Rajendra S, Prasad S N . Development of aluminum alloyswith rare earth additions. Light MetalAge, 1989, 47(1–2): 23–26
4 Tang D-X, Wang L-Q, Zhao M-S, et al.. The research on rare-earth aluminium alloy inChina. Journal of the Chinese Rare EarthSociety, 1992, 10(1): 66–71
5 Nie Z-R, Jin T-N, Zou J-X, et al.. Development on research of advanced rare-earthaluminum alloy. Transactions of NonferrousMetals Society of China, 2003, 13(3): 509–514
6 Wang S H, Zhou H P, Kang Y P . The influence of rare earth elements on microstructuresand properties of 6061 aluminum alloy vacuum-brazed joints. Journal of Alloys and Compounds, 2003, 352(1–2): 79–83.
doi:10.1016/S0925-8388(02)01117-9
7 Dong S J, Shi Y W, Kuang Y X, et al.. Effect of rare-earth elements on the propertiesof low temperature aluminum-based brazing filler metals. Chinese Rare Earths, 1996, 17: 15–19 (in Chinese)
8 Xue S B, Dong J, Lü X C, et al.. Reaction behavior between the oxide film ofLY12 aluminum alloy and the flux. ChinaWelding, 2004, 13(1): 36–40
9 Askeland D R, Phuli P P, Phule P P . Essentials of Materials Science and Engineering. Beijing: Tsinghua University Press, 2004, 329
10 Zhai Q J, Guan S K, Shang Q Y . Alloy Thermo-dynamics: Theory and Application. Beijing: Metallurgy Industry Press, 1999, 146
11 Wu C M L, Yu D Q, Law C M T, et al.. Properties of lead-free solder alloys with rareearth element additions. Materials Scienceand Engineering: R: Reports, 2004, 44(1): 1–44.
doi:10.1016/j.mser.2004.01.001
12 Hellawell A . Thegrowth and structure of eutectics with silicon and germanium. Progress in Materials Science, 1970, 15(1): 3–78.
doi:10.1016/0079-6425(70)90001-0
13 Dong S J, Kuang Y X, Shi Y W, et al.. Effect of Mn and Sr on the properties of lowtemperature aluminum-based brazing filler metals. Automobile Research & Development, 1996, 6: 38–40 (in Chinese)
14 De Cristofaro N, Bose D . Brazing and soldering withrapidly solidified filler metals. In: Proceedingsof the International Conference on Rapidly Solidified Materials, SanDiego, California, 1986, 415–424
15 Ning Y-T, Zhou X-M, Dai H . Metastable extension of solid solubility of rare earthelements in Al. Acta Metallurgica Sinica, 1992, 28(3): B95–B100 (in Chinese)
16 ASM International. . In: Massalski T B, ed. Binary Alloy Phase Diagrams.2nd ed. The Materials Information Society, 1996
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