Nanostructure Formation and Properties in Some Al Alloys after SPD and Heat Treatment

Article Preview

Abstract:

Influence of SPD process realized by ECAP on structural formation and mechanical properties was searched. Samples after ECAP were heat treated at various temperature and time conditions. Investigation material bases were high purity aluminium and aluminium alloys EN AW 6082, EN AW 2014. The best material properties are describing in dependence on experimental conditions.

You might also be interested in these eBooks

Info:

Periodical:

Materials Science Forum (Volumes 633-634)

Pages:

273-302

Citation:

Online since:

November 2009

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2010 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] V.V. Rybin: Boľšie plastičeskie deformacii i razrušenie metallov (Metallurgija, Moskva, 1986).

Google Scholar

[2] V. Ju. Gertsman: Mater. Sci. Forum, Vol. 233 (1996), p.80.

Google Scholar

[3] I. A Ovidko.: Rev. Adv. Sci., Vol. 10 (2005), p.89.

Google Scholar

[4] V.M. Segal: Mater. Sci. Eng., Vol. 197A (1995), p.157.

Google Scholar

[5] C.J. Luis Perez: Scripta Mater., Vol. 50 (2004), p.387.

Google Scholar

[6] T. Kvackaj, M. Zemko, R. Kocisko, T. Kuskulic., I. Pokorny, M. Besterci, K. Sulleiova, M. Molnarova and A. Kovacova: Acta Metallurgica Slovaca - SI, Vol. 13 (2007), p.47.

DOI: 10.1515/htmp.2007.26.2.147

Google Scholar

[7] R. Kocisko, M. Zemko, T. Kuskulic, T. Kvackaj and A. Kovacova : Acta Metallurgica Slovaca, Vol. 13 (2007), p.397.

Google Scholar

[8] M. Besterci, T. Kvackaj, R. Kocisko, J. Bacso and K. Sulleiová: Metallurgy, Vol. 47 (2008), p.295.

Google Scholar

[9] S. Mohanty: Tensile stress and thermal effects on grain boundary montion in nanocrystalline Ni, dec. 13, 2005, Blacksburg, Virginia, p.8.

Google Scholar

[10] N. Parson: Proceedings of the 7th International Aluminum Extrusion Technology Seminar, l. 1 (2000).

Google Scholar

[11] G. Mrówka-Nowotnik and J. Sieniawski.: J. of Mater. Process. Technol., Vols. 162- 163 (2005), p.367 Fig. 48 Influence of processing conditions on mechanical properties of EN AW (2014).

DOI: 10.1016/j.jmatprotec.2005.02.115

Google Scholar

[12] W.J. Kim, C.S. Chung, D.S. Ma, S.I. Hong, and H.K. Kim: Scripta Mater., Vol. 49 (2003), p.333.

Google Scholar

[13] W.J. Kim and J.Y. Wang: Mater. Sci. Eng., Vol. 464A (2007), p.23.

Google Scholar

[14] N. Parson, J. Hankin, K. Hicklin and C. Jowett: Proceedings of the 7th International Aluminum Extrusion Technology, Seminar, 1 (2000), Washington., Aluminum Association, p.1.

Google Scholar

[15] Y. Iwahashi, J. Wang, Z. Horita, M. Nemoto and T.G. Langdon: Scripta Mater., Vol. 35 (1996), p.143.

Google Scholar

[16] M. Besterci, T. Kvackaj, L. Kovac and K. Sülleiová.: Proceedings of the PM Asia 2006, 24. - 28. sept., (2006), Busan-BEXCO, Korea, p.128.

Google Scholar

[17] T. Donic, M. Martikan and A. Udvorka: Acta Metallurgica Slovaca, Vol. 13 (2007), p.42.

Google Scholar

[18] S. Spigarelli, M. Cabibbo, E. Evangelista and J. Bidulská: J. of Mater. Sci., Vol. 38 (2003), p.81.

Google Scholar

[19] R. Pernis, O. Hires, Proceedings of the Metal 2006, 23-25 May (2006), Hradec nad Moravicí, CR, p.7.

Google Scholar

[20] J. Bidulska, T. Kvackaj, R. Bidulsky and M. Actis Grande: High Temp. Mater. Process., Vol. 27 (2008), p.203.

Google Scholar

[21] J. Bidulska, T. Kvackaj, R. Bidulsky and M. Actis Grande: Kovove Mater., Vol. 46 (2008), p.339.

Google Scholar

[22] T. Kvackaj, L. Sokolova, M. Vlado and V. Vrchovinsky: High Temp. Mater. Process., Vol. 24, (2005), p.139.

Google Scholar

[23] R.Z. Valiev, R.K. Islamgaliev and I.V. Aleksandrov: Prog. Mat. Sci., Vol. 45 (2000), p.103.

Google Scholar

[24] R.Z. Valiev and T.G. Langdon: Prog. Mat. Sci., Vol. 51 (2006), p.881.

Google Scholar

[25] J.K. Kim and W.J. Kim: Solid State Phen., Vol. 124-126 (2007), p.1437.

Google Scholar

[26] M. Fujda, T. Kvackaj, M. Vojtko and O. Milkovic: Acta Metallurgica Slovaca, Vol. 14 (2008), p.331.

Google Scholar

[27] Z.T. Zhu and T.C. Lowe: Mater. Sci. Eng., Vol. 291 A (2000), p.46.

Google Scholar

[28] R. Bidulsky, E. Dudrova and M. Kabatova: In: Deformation and Fracture in Structural PM Materials, IMR SAS, Kosice, Vol. 2 (2002), p.31.

Google Scholar