The Martensitic Transformation Behavior of the TiNi in TiNi/Ti2Ni Composite Synthesized in Molten Salts

Article Preview

Abstract:

In this paper the TiNi/Ti2Ni composite powders has been synthesized by the chemical reaction between titanium and nickel powders in high temperature molten salts. Results of the differential scanning calorimetry (DSC) confirmed the reverse martensitic transformation of the prepared TiNi powder in the TiNi/Ti2Ni composite powders. The backscatter electron images of the scanning microscopy (SEM) of the end-products before washing by distilled water showed that the synthesized TiNi/Ti2Ni composite particles were captured by the molten salts, which revealed the mechanism of the chemical reaction in molten salt.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

370-373

Citation:

Online since:

March 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] McNeese MD, Lagoudas DC, Pollock TC: Mater. Sci. Eng. A Vol. 280 (2000), p.334.

Google Scholar

[2] S. daito, T. Wachi, S. Hanada, Mater. SCi. Eng. A Vol. 161 (1992), p.91.

Google Scholar

[3] Y. Furuya, A. Sasaki, M. Taya, Mater. Trans. JIM. Vol. 34 (1993), p.224.

Google Scholar

[4] Zhao X Q, Liang Y and Hu Z Q, Nanostr. Mater. Vol. 7 (1996), p.313.

Google Scholar

[5] Cech R E, Turnbull D. Trans. AIME. Vol. 206 (1956), p.124.

Google Scholar

[6] Cohen M. Mater. Trans. JIM. Vol. 33 (1992), p.178.

Google Scholar

[7] Lin M, Olson G B, Cohen M, Acta. Mater. Vol. 41 (1992), p.253.

Google Scholar

[8] Magee C L, Metall Trams. Vol. 2 (1971), p.2419.

Google Scholar

[9] Kajiwara S, Ohno S, Honma K, Uda M, Phil. Mag. Lett. Vol. 5 (1987), p.215.

Google Scholar

[10] Jardine A. P, Field Y, Herman H.J. Mater. Sci. letts. Vol. 10 (1991), p.943.

Google Scholar

[11] Yongqing Fu, Christopher Shearwood Scripta mater. Vol. 50 (2004), p.319.

Google Scholar

[12] H. Z. Ye, R. Liu, D. Y. Li and R. Eadie, Scripta. Mater. Vol. 41 (1999), p.1039.

Google Scholar

[13] M. Duraiselvam, R. Galun, V. Wesling, L. Barry, Mordike, R. Reiter, Jörg Oligmüller and G. Buvanashekaran, Mater. Sci. Eng. A. Vol. 454-455 (2007), p.63.

DOI: 10.1016/j.msea.2006.11.002

Google Scholar

[14] R. X. Zhang, Q. Q. Ni, T. Natsuki and M. Iwamoto, Compos. Struct. 79 (2007), p.90.

Google Scholar