Concentration Depended Thermodynamic Properties of Fe-Co Liquid Binary Alloy

Article Preview

Abstract:

The thermodynamic properties like heat of mixing (ΔE), entropy of mixing (ΔS) and volume of mixing (ΔΩ) of Fe-Co liquid binary alloys are computed using our newly constructed parameter free model potential. We have also attempted to investigate the effect of various forms of exchange and correlation functions, namely, Hartree (H) and Taylor (T) on the thermodynamic properties of Fe-Co liquid binary alloys. It is found that the proper choice of the model potential along with the local field correction function play an important role in investigating the thermodynamic properties of Fe-Co liquid binary alloys.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

143-149

Citation:

Online since:

February 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] N. Dubinin, J. Phys. Conf. Ser., 144 (2009) 012115.

Google Scholar

[2] N. E. Dubinin, L. D. Son and N. A. Vatolin, J. Phys. Condens. Matter, 20 (2008) 114111.

Google Scholar

[3] P. B. Thakor, Y. A. Sonvane, P. N. Gajjar and A. R. Jani, Phys. Chem. Liq., 49, 237 (2011).

Google Scholar

[4] O. E. Awe, Y.A. Odusote, O. Akinlade and L. A. Hussain, Physica B, 403 (2008) 2629.

Google Scholar

[5] B.C. Anusionwuab and O.K. Echendua, Phys. Chem. Liq., 48 (2010) 1.

Google Scholar

[6] B. C. Luo,H. P. Wang, B. Wei., Phil. Mag. Let., 89 (2009) 527.

Google Scholar

[7] A Mikula and S Knott, J. Phys.: Condens. Matter, 20 (2008) 114109.

Google Scholar

[8] O. E. Awe, O. Akinlade and L. A. Hussain, J. Alloys Comp., 387 (2005) 256.

Google Scholar

[9] O. Akinlade and F. Sommer, J. Alloys Comp., 316 (2001) 226.

Google Scholar

[10] V. T. Witusiewicz and F. Sommer, J. Alloys Comp., 312 (2000) 228.

Google Scholar

[11] V. T. Witusiewicz, I. Arpshofen, H.J. Seifert, F. Sommer and F. Aldinger, J. Alloys Comp., 305 (2000) 157.

Google Scholar

[12] N. E. Dubinin, A. A. Yuryev and N. A. Vatolin, Thermo. Acta, 316 (1998) 123.

Google Scholar

[13] R. N. Singh, J. Phys. F: Met. Phys., 10 1411 (1980).

Google Scholar

[14] I. H. Umar, A. Meyer, M. Watabe and W. H. Young, J. Phys. F: Met. Phys., 4, 1619 (1974).

Google Scholar

[15] S. C. Mishra and P. L. Srivastava, Phys. Stat. Sol. (b), 109, 457 (1982).

Google Scholar

[16] R. N. Singh, J. Phys. F: Met. Phys., 11, 389 (1981).

Google Scholar

[17] A. K. Mishra, R. N. Singh and B. B. Sahay, Phys. Chem. Liq., 25, 153 (1992).

Google Scholar

[18] Z. Badirkhan, O. Akinlade, G. Pastore and M. P. Tosi, J. Phys. Condensed Matter, 4, 6173 (1992).

Google Scholar

[19] J. Hafner, Phys. Rev., A16, 351 (1977).

Google Scholar

[20] W. A. Harrision, Elementary Electronic Structure, World Scientific, Singapore (1999).

Google Scholar

[21] N. W. Ashcroft and J. Lekner, Phys. Rev., 165, 83 (1966).

Google Scholar

[22] T. E. Faber, Introduction to the Theory of Liquid Metals, Cambridge: Cambridge University press.

Google Scholar

[23] J. L. Lebowitz, Phys. Rev., A133, 895 (1964).

Google Scholar

[24] H. L. Frisch and J. L. Lebowitz, The Equilibrium Theory of Classical fluids, New York: Benjamin (1964).

Google Scholar

[25] J. L. Lebowitz and J. S. Rowlinson, J. Chem. Phys., 41, 133 (1964).

Google Scholar

[26] N. W. Ashcroft and D. C. Langreth, Phys. Rev., 159, 500 (1967).

Google Scholar

[27] J. E. Enderby and D. M. North, Phys. Chem. Liq., 1, 1 (1968).

Google Scholar

[28] A. Isihara, J. Phys., A1, 539, (1968).

Google Scholar

[29] T. Lukes and R. Jones, J. Phys., A1, 29 (1968).

Google Scholar

[30] P. B. Thakor, Y. A. Sonvane and A. R. Jani, Phys. Chem. Liq., 47 (2009) 653.

Google Scholar

[31] P. B. Thakor, Y. A. Sonvane and A. R. Jani, AIP Conf. Proc., 1249 (2010) 157.

Google Scholar

[32] P. B. Thakor, Y. A. Sonvane and A. R. Jani, AIP Conf. Proc., 1349 (2011) 937.

Google Scholar

[33] P. B. Thakor, Y. A. Sonvane, P. N. Gajjar and A. R. Jani, AIP Conf. Proc., 1393 (2011) 163.

Google Scholar

[34] P. B. Thakor, Y. A. Sonvane, P. N. Gajjar and A. R. Jani, Adv. Mater. Lett., 2 (2011) 303.

Google Scholar

[35] P. B. Thakor, Y. A. Sonvane and A. R. Jani, Phys. Chem. Liq., 49 (2011) 530.

Google Scholar

[36] R. Taylor, J. Phys. F: Met. Phys., 8, 1699 (1978).

Google Scholar

[37] A. Sarkar, D. Sen, S. Haldar and D. Roy, Mod. Phys. Lett., B12, 639 (1998).

Google Scholar

[38] Y. Waseda, The structure of non-crystalline materials, McGraw-Hill Pub. Co., New York (1980).

Google Scholar

[39] R. Hultgren, P. D. Desai, D. T. Howking, M. Gleiser, K. K. Kelly and D. D. Wagman, Selected values of the thermodynamical properties of the element and alloys, Am. Soc. Metals, Metal Park (Ohio) (1973).

Google Scholar