The Impact of Explosion Welding Parameters on Al/Cu Laminated Composites Interface

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In this study Al/Cu laminated composite specimens were obtained via explosion welding at various modes. Microstructure, chemical composition and microhardness of Al/Cu bond area were investigated by means of optical and SEM microscopy. Four typical microstructures of Al/Cu bond area were identified at different explosion welding parameters. The types included various amounts of molten zones in the structure. The evolution of the molten zone hardness value identified explosion welding regimes which contributed to maximum amount of intermetallic compound formation during explosion welding.

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234-238

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September 2016

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© 2016 Trans Tech Publications Ltd. All Rights Reserved

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[1] P.C. Patnaik, Intermetallic Coatings for High Temperature Applications-a Review, Material and manufacturing process 4(1) (1989) 133-152.

Google Scholar

[2] Zhan, Zhaolin, Yedong He, Deren Wang, Wei Gao, Low-temperature processing of Fe–Al intermetallic coatings assisted by ball milling, Intermetallics, 14(1) (2006) 75-81.

DOI: 10.1016/j.intermet.2005.04.019

Google Scholar

[3] Yu. Trykov, L. Gurevich, D. Pronichev, M. Trunov, Influence of Strain-Hardened Zones and Intermetallic Layers of Explosion Welded and Heat Treated Al/Cu Laminated Metal Composites on the Evolution of Thermal Conductivity Coefficient, Materials Science 20(3) (2014).

DOI: 10.5755/j01.ms.20.3.4602

Google Scholar

[4] D. Pronichev, L. Gurevich, Yu. Trykov, M. Trunov, Investigation of aluminum–copper bimetal-based intermetallide coating produced by contact melting method, Inorganic Materials: Applied Research 7(1) (2016) 97-101.

DOI: 10.1134/s2075113316010226

Google Scholar

[5] V.I. Lysak, S.V. Kuzmin, Lower boundary in metal explosive welding. Evolution of ideas, Journal of Materials Processing Technology 212(1) (2012) 150-156.

DOI: 10.1016/j.jmatprotec.2011.08.017

Google Scholar

[6] A.P. Peev, S.V. Kuz'min, V.I. Lysak, E.A. Chugunov, Peculiarities of plastic deformation of metal of near the seam zone under explosive welding of copper with aluminum, Fizika i Khimiya Obrabotki Materialov 1 (2003) 71-76.

Google Scholar

[7] Y. Funamizu, K. Watanabe, Interdiffusion in the Al–Cu system, Trans Jpn Inst Metal, 12 (1971) 147.

Google Scholar

[8] L.N. Larikov, V.R. Ryabov, V.M. Fal'chenko, Diffuzionnyye protsessy v tverdoy faze pri svarke, Mashinostroenie, Moscow, (1975).

Google Scholar