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Influence of Zinc on the Surface Tension, Density and Molar Volume of (Ag-Sn)eut +Zn Liquid Alloys

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EN
Abstrakty
EN
The dilatometric and maximum bubble pressure methods were applied for the measurements of the density and surface tension of liquid (Ag-Sn)eut +Zn lead-free solders. The experiments were carried out in the temperature range from 515 to 1223 K for the alloys of the zinc concentration equaling 0.01, 0.02, 0.04, 0.05, 0.1 and 0.2 of the mole fraction. It was found that the temperature dependence of both the density and the surface tension could be thought as linear, so they were interpreted by straight line equations. The experimental data of the molar volume of the investigated alloys were described by the polynomial dependent on the composition and temperature. Calculations of the surface tension by Butler’s equation were conducted and confronted with the experimental data. Some significant deviations between the experimental and the calculated surface tension were observed. They reached almost 40 mNm-1. The observed changes of the density and surface tension caused by the zinc addition to the Ag-Sn eutectic were discussed with the consideration of the thermodynamic properties and the influence of a small quantity of impurities in a protective gas atmosphere.
Twórcy
autor
  • Aleksander Krupkowski Institute of Metallurgy and Materials Science, Polish Academy of Sciences, 25 Reymonta Str., 30-059 Kraków, Poland
autor
  • Aleksander Krupkowski Institute of Metallurgy and Materials Science, Polish Academy of Sciences, 25 Reymonta Str., 30-059 Kraków, Poland
autor
  • In Memory
Bibliografia
  • [1] W. Gąsior, Z. Moser, J. Pstruś, Journal of Phase Equilibria 22, 20-25 (2001).
  • [2] W. Gąsior, Z. Moser, J. Pstruś,, M. Kucharski, Archives of Metallurgy 46, 23-32 (2001).
  • [3] Z. Moser, W. Gąsior, J. Pstruś, Journal of Phase Equilibria 22, 254-258 (2001).
  • [4] W. Gąsior, Z. Moser, J. Pstruś, K. Bukat, R. Kisiel, J. Sitek, Journal of Phase Equilibria 25, 115-121 (2004).
  • [5] P. Sebo, Z. Moser, P. Svec, D. Janickovic, E. Dobrocka, W. Gąsior, J. Pstruś, Journal of Alloys and Compounds 480, 409-415 (2009).
  • [6] Moser Z., Sebo P., Gasior, W. Svec, P. Pstruś, J., Calphad 33, 63-68 (2009).
  • [7] Z. Moser, W. Gąsior, K. Bukat, J. Pstruś, R. Kisiel, J. Sitek, K. Ishida, I. Ohnuma, Journal of Phase Equilibria and Diffusion,28, 433-438 (2007).
  • [8] Fima P., Gąsior W., Sypień A., Moser Z., Journal of Materials Science 45, 4339-4344 (2010).
  • [9] Z. Moser, W. Gąsior, K. Bukat, J. Pstruś, R. Kisiel, J. Sitek, K. Ishida, I. Ohnuma, Journal of Phase Equilibria and Diffusion 28, 433-438, (2007).
  • [10] P. Terzieff, Physica B 405, 2668-2672 (2010).
  • [11] H. Ohtani, S. Ono, K. Doi, M. Hasebe, Materials Transactions 45, 614-624 (2004).
  • [12] S. Sugden, J. Chem. Soc. 124, 27 (1924).
  • [13] Z. Moser, W. Gąsior, J. Pstruś, K. Ishida, I. Ohnuma, R. Kainuma, S. Ishihara, and X. J. Liu, Materials Transaction 45, 652-660 (2004).
  • [14] J. A. V. Butler, Proc. Roy. Soc. 135A, 348-358 (1932).
  • [15] T. P. Hoar, A. A. Melford, Trans. Faraday Soc. 53, 315-326 (1957).
  • [16] T. Tanaka, K. Hack, T. Iida, and S. Hara, Z. Metallkd. 87, 380-385 (1996).
  • [17] Z. Moser, W. Gąsior, J. Pstruś, Journal of Phase Equilibria 22, 254-258 (2001). AgSn
  • [18] W. Gąsior, Z. Moser, J. Pstruś, Journal of Phase Equilibria 24, 504-510 (2003). SbSn
  • [19] W. Gąsior, Z. Moser, J. Pstruś, A. Krzyżak, K. Fitzner, Journal of Phase Equilibria 24, 504-510 (2003). AgBi
  • [20] Z. Moser, W. Gąsior, J. Pstruś, W. Zakulski, I. Ohnuma, X.J. Liu, Y. Inohana, K. Ishida, Journal of Electronic Materials 30, 1120-1128 (2001). AgIn
  • [21] Z. Moser, W. Gąsior, J. Pstruś, Journal of Electronics Materials 30, 1104-1111 (2001).BiSn
  • [22] Wł. Gąsior, Modelowanie właściwości termodynamicznych z pomiarów napięcia powierzchniowego, Polska Akademia Nauk, Instytut Metalurgii i I nżynierii Materiałowej im. A. Krukowskiego, Kraków 2006. ISBN 83-921845-3-x. (in Polish).
  • [23] W. Gąsior, Archives of Metallurgy and Materials 51, 317-326 (2006 ).
  • [24] W. Gąsior, Archives of Metallurgy and Materials 51, (2006) 327-334.
  • [25] W. Gąsior, P. Fima, Z. Moser, Archives of Metallurgy and Materials 56, 13-23 (2011).
  • [26] W. Volk, Applied Statistics for Engineers, McGraw-Hill Book Company, New York, 2nd. p.260, Ed.1969.
  • [27] J. Pstruś, Praca doktorska, Kraków.
  • [28] J. Pstruś, Z. Moser, W. Gąsior, A. Dębski, Archives of Metallurgy and Materials 51, 335-343 (2006).
  • [29] W. Gąsior, Z. Moser, J. Pstruś, Journal of Phase Equilibria 19, 234-238 (1998).
  • [30] W. Gąsior, Z. Moser, J. Pstruś, Journal of Phase Equilibria 19, 568-571 (1998).
  • [31] W. Gąsior, Z. Moser, J. Pstruś , Archives of Metallurgy 48, 497-505 (2003).
  • [32] H. Ruppersberg, J. Saar, W. Speicher, P. Hejtjans, J. de Physique, Colloque C8 41, (1980) 595-598.
  • [33] H. Ruppersberg, W. Speicher, Z. Natruforschung 31, 47-52 (1976).
  • [34] R. Thuemmel, W. Klemm, Z. Anorg. Allgem. Chem. 376, 44-63 (1970).
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a872ec22-e2a3-4967-b082-3bfd34c726c6
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