Structure and Mechanical Behaviour of Al-Sc Alloys

Article Preview

Abstract:

The review of the works devoted to the influence of scandium on the structure, mechanical behavior and corrosion resistance of aluminum alloys is given. The wrought thermally non-hardenable alloys of Al- Mg system and thermally hardenable high-strength alloys of Al-Zn- Mg-Cu system are considered. The influence of Sc on the glass forming ability of amorphous alloys and on the superplastic behavior of aluminum alloys is discussed.

You might also be interested in these eBooks

Info:

Periodical:

Materials Science Forum (Volumes 519-521)

Pages:

567-572

Citation:

Online since:

July 2006

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2006 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] L.A. Willey: US Patent No 3619181 (1971).

Google Scholar

[2] Y. I Yelagin, V.V. Zakharov, and T.D. Rostova: Metal Science and Thermotreatment of Metals 1 (1992)24-28.

Google Scholar

[3] M. Ye Drits, L.S. Toropova and Yu.G. Bykov: Izv. VUZ'ov Colour Metals 4 (1985) 80-84.

Google Scholar

[4] B. A Parker, Z.F. Zhou and Nolle P.: J. Mater. Sci. 30 (1995) 452-458.

Google Scholar

[5] Yu.V. Milman, K.V. Yemelyanov, R.K. Ivashchenko, A.I. Sirko, N.P. Zakharova and A. Ya Ishchenko: Electron Microscopy and Strength of Metals, Kiev IPMS of NASU 9 (1998) 83-92.

Google Scholar

[6] S.V. Pan, Yu.V. Milman, A.N. Slipeniuk and V.V. Kuprin: DAN Ukrayine 10 (1998)117-121.

Google Scholar

[7] Yu.V. Milman, D.V. Lotsko and O.I. Sirko: Mater. Science Forum 331-337 (2000) 1107-1112.

DOI: 10.4028/www.scientific.net/msf.331-337.1107

Google Scholar

[8] Yu.V. Milman: Metallic Materials with High Structural Efficiency (Kluwer Academic Publishers) (2004) 139-150.

Google Scholar

[9] Y. Miura, C.H. Joh, T. Katsube: Mater. Science Forum 331-337 (2000) 1031-1036.

Google Scholar

[10] J. Royset and N. Ryum: Inter. Materials Reviews 50 (2005) 19-44.

Google Scholar

[11] D.V. Lotsko, Yu.V. Milman, M.O. Efimov, O.P. Rachek and L.M. Trofimova: Met. Phys. Adv. Tech. 19 (2001) 783-793.

Google Scholar

[12] Yu.V. Milman, A.I. Sirko, D.V. Lotsko, O.N. Senkov and D.B. Miracle: Mater. Science Forum 396-402 (2002) 1217-1222.

DOI: 10.4028/www.scientific.net/msf.396-402.1217

Google Scholar

[13] O.G. Senatorova, A.N. Uksusnikov, S.F. Legoshina, I.N. Fridlyander and I.P. Zhegina: Mater. Science Forum 331-337 (2000) 1249-1254.

DOI: 10.4028/www.scientific.net/msf.331-337.1249

Google Scholar

[14] V.G. Davydov, V.I. Yelagin, V.V. Zakharov and T.D. Rostova: Metal Science and Thermotreatment of Metals 8 (1996) 25-30.

Google Scholar

[15] G.I. Eskin: Technology of Light Alloys 2 (2000) 17-25.

Google Scholar

[16] O.N. Senkov, D.B. Miracle, Yu.V. Milman, J.M. Scott, D.V. Lotsko and A.I. Sirko: Mater. Science Forum 396-402 (2002) 1127-1132.

DOI: 10.4028/www.scientific.net/msf.396-402.1127

Google Scholar

[17] Yu.V. Milman: Progressive Materials and Technologies, Academperiodica 1 (2203) 335-360.

Google Scholar

[18] Yu.V. Milman, K.V. Yemelianov, A.I. Sirko, N.P. Zaharova, R.K. Ivashenko, I. Ya. Ishenko, V.A. Kirpaty and V.O. Chapor: International Conference «Advanced Materials» Symposium A: Engineering of Composites: Investigations, Technologies and Perspectives Kiev (1999).

Google Scholar

[19] H. Akamatsu, T. Fujinami, Z. Horita, T.G. Langdon: Scripta mater. 44 (2001) 759-764.

Google Scholar

[20] Yu.L. Filatov: Metallovedenie i termoobrabotka 6 (1996) 33-36.

Google Scholar

[21] Sh. Komura, P.B. Berbon, M. Furukawa, Z. Horita, M. Nemoto and T.G. Langdon: Scripta Materialla. 38, (1998) 1851-1856.

DOI: 10.1016/s1359-6462(98)00099-2

Google Scholar

[22] T.G. Nieh, L.M. Hsiung, J. Wadsworth and R. Kaibyshev: Acta mater. 46 (1998) 2789-2800.

Google Scholar

[23] Sh. Komura, P.B. Berbon, M. Furukawa, Z. Horita, M. Nemoto and T.G. Langdon: Scripta Materialla 38 (1998) 1851-1856.

DOI: 10.1016/s1359-6462(98)00099-2

Google Scholar

[24] R.R. Sawtell and C.L. Jensen: Metall Trans. 21A (1990) 421.

Google Scholar

[25] T.G. Nieh, L.M. Hsiung, J. Wadsworth and R. Kaibyshev: Acta mater. 46 (1998) 2789−2800.

Google Scholar

[26] I.N. Fridliander, O.G. Senatorova, I.I. Novikov, M.V. Samarina, O.N. Nikiforov and N.A. Ryazanova: Technology of Light Alloys No. 7-8 (1993) 47-47.

Google Scholar

[27] Inoue: Progress in Mater. Science 43 (1998) 365-520.

Google Scholar

[28] A. Slipenyuk, D. Lotsko, Yu. Milman, V. Kuprin, M. Yefimov and M. Danylenko: Metallic Materials with High Structural Efficiency, Kluwer Academic Publishers NATO Science Series, II. Mathematics, Physics and Chemistry 146 (2004) 119-124.

DOI: 10.1007/1-4020-2112-7_11

Google Scholar

[29] F. Jiang, Z.J. Wang, Z.B. Zhang and J. Sun: Scripta Materialia 53 (2005) 487-491.

Google Scholar

[30] O.M. Barabash, Yu.V. Milman, I.V. Voskoboinik, N.P. Korzhova and T.N. Legkaya: Functional Materials 8 (2001) 159-161.

Google Scholar

[31] N.V. Vyasovikina, Yu.V. Milman, A.I. Sirko: Physical and Chemical mechanics of Materials 35 (1999) 493-499.

Google Scholar