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Erschienen in: Metallurgical and Materials Transactions B 3/2017

21.02.2017

Determination of Gibbs Energy of Mixing of Tungsten-Boron Binary System by Electromotive Force Measurement Using Solid Electrolyte

verfasst von: Hiroaki Yamamoto, Masao Morishita, Yuta Miyake, Shusuke Hiramatsu

Erschienen in: Metallurgical and Materials Transactions B | Ausgabe 3/2017

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Abstract

The thermodynamic properties for the tungsten-boron binary system were determined by measuring electromotive forces of galvanic cells using an Y2O3-stabilized ZrO2 solid oxide electrolyte. Assuming that W2B and αWB are the stoichiometric compounds, and W2B5−x and W1−x B3 are the nonstoichiometric compounds having solubility widths of 0.670 ≤ X B ≤ 0.690 and 0.805 ≤ X B ≤ 0.822, respectively, they were treated as the intermediate phases of W0.667B0.333, αW0.50B0.50, W0.330B0.670 ~ W0.310B0.690, and W0.195B0.805 ~ W0.178B0.822. The Gibbs energies of mixing, ∆mix G, determined in the present study are listed as follows:
$$ \begin{aligned} & \Delta_{\text{mix}} G(\text{W}_{0.667} \text{B}_{0.333} )/{\text{J}}\,{\text{mol}}^{ - 1} = {-}78070 \, + \, 26.01T \pm 70 \, [1305{-}1422{\text{ K}}(1032{-}1149^\circ {\text{C}})], \\ & \Delta_{\text{mix}} G(\alpha \text{W}_{0.50} \text{B}_{0.50} )/{\text{J}}\,{\text{mol}}^{ - 1} = {-}86140 \, + \, 20.19T \pm 200 \, [1310{-}1399{\text{ K }}(1037{-}1126^\circ {\text{C}})], \\ & \Delta_{\text{mix}} G(\text{W}_{0.330} \text{B}_{0.670} )/{\text{J}}\,{\text{mol}}^{ - 1} = {-}78910 \, + \, 18.11T \pm 200 \, [1228{-}1410{\text{ K }}(955{-}1137^\circ {\text{C}})], \\ & \Delta_{\text{mix}} G(\text{W}_{0.310} \text{B}_{0.690} )/{\text{J}}\,{\text{mol}}^{ - 1} = {-}77350 \, + \, 17.52T \pm 500 \, [1228{-}1410{\text{ K }}(955{-}1137^\circ {\text{C}})], \\ & \Delta_{\text{mix}} G(\text{W}_{0.195} \text{B}_{0.805} )/{\text{J}}\,{\text{mol}}^{ - 1} = \, {-}63920 \, + \, 12.08T \pm 500 \, [1170{-}1340{\text{ K }}(897{-}1067^\circ {\text{C}})], \\ & \Delta_{\text{mix}} G(\text{W}_{0.178} \text{B}_{0.822} )/{\text{J}}\,{\text{mol}}^{ - 1} = \, {-}60090 \, + \, 11.15T \pm 200 \, [1170{-}1340{\text{ K }}(897{-}1067^\circ {\text{C}})]. \\ \end{aligned} $$
Using the thermodynamic properties determined in the present study, the composition-oxygen partial pressure diagram of the tungsten-boron-oxygen system was constructed under the conditions at 1273 K (1000 °C) and a total pressure of 1 bar (100 kPa). It is useful to understand the oxidation property of tungsten-boron binary alloys.

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Literatur
1.
Zurück zum Zitat T. B. Massalski, H. Okamoto, P. R. Subramanian, and L. Kacprzak: Binary Alloy Phase Diagrams, 2nd ed., ASM International, Ohio, 1990, pp. 554- T. B. Massalski, H. Okamoto, P. R. Subramanian, and L. Kacprzak: Binary Alloy Phase Diagrams, 2nd ed., ASM International, Ohio, 1990, pp. 554-
2.
Zurück zum Zitat G. V. Samsonov and I. M. Vinitskii: Handbook of Refractory Compounds, IFI/Plenum, New York, 1980, p. 40, 143, and 184. G. V. Samsonov and I. M. Vinitskii: Handbook of Refractory Compounds, IFI/Plenum, New York, 1980, p. 40, 143, and 184.
3.
Zurück zum Zitat S. Otani and Y. Ishizawa: J. Cryst. Growth, 1995, Vol. 154, pp. 81-84.CrossRef S. Otani and Y. Ishizawa: J. Cryst. Growth, 1995, Vol. 154, pp. 81-84.CrossRef
4.
Zurück zum Zitat R. Mohammadi, A. T. Lech, M. Xie, B. E. Weaver, M. T. Yeung, S. H. Tolbert, and R. B. Kaner: Proc. Natl. Acad. Sci. USA, 2011, Vol. 108(27), pp. 10958-10962.CrossRef R. Mohammadi, A. T. Lech, M. Xie, B. E. Weaver, M. T. Yeung, S. H. Tolbert, and R. B. Kaner: Proc. Natl. Acad. Sci. USA, 2011, Vol. 108(27), pp. 10958-10962.CrossRef
5.
Zurück zum Zitat E. Rudy and S. Windisch: US Air Force Tech. Doc. Report, AFML-TR-65-2, Part I, Vol. III, Air Force Materials Laboratory, WPAFB, Ohio, 1969. E. Rudy and S. Windisch: US Air Force Tech. Doc. Report, AFML-TR-65-2, Part I, Vol. III, Air Force Materials Laboratory, WPAFB, Ohio, 1969.
6.
Zurück zum Zitat T. Lundström: Ark. Kemi., 1968, Vol. 30, pp. 115-127. T. Lundström: Ark. Kemi., 1968, Vol. 30, pp. 115-127.
7.
Zurück zum Zitat P. A. Romans and M. P. Krug: Acta Crystallogr., 1966, Vol. 20, pp. 313-315.CrossRef P. A. Romans and M. P. Krug: Acta Crystallogr., 1966, Vol. 20, pp. 313-315.CrossRef
8.
Zurück zum Zitat H. Duschanek and P. Rogl: J. Phase Equilibria, 1995, Vol. 16, pp. 150-161.CrossRef H. Duschanek and P. Rogl: J. Phase Equilibria, 1995, Vol. 16, pp. 150-161.CrossRef
9.
Zurück zum Zitat L. Brewer and H. Haraldsen: J. Electrochem. Soc., 1955, Vol. 102, pp. 399-406.CrossRef L. Brewer and H. Haraldsen: J. Electrochem. Soc., 1955, Vol. 102, pp. 399-406.CrossRef
10.
Zurück zum Zitat J. M. Leitnaker, M. G. Bowman, and P. W. Gilles: J. Electrochem. Soc., 1962, Vol. 109, pp. 441-443.CrossRef J. M. Leitnaker, M. G. Bowman, and P. W. Gilles: J. Electrochem. Soc., 1962, Vol. 109, pp. 441-443.CrossRef
11.
Zurück zum Zitat V. Y. Leonidov, O. M. Gaisinskaya, V. S. Pervov, and S. S. Ordan’yan: Zh. Fiz. Khim., 1976, Vol. 50, pp. 372-375. V. Y. Leonidov, O. M. Gaisinskaya, V. S. Pervov, and S. S. Ordan’yan: Zh. Fiz. Khim., 1976, Vol. 50, pp. 372-375.
12.
Zurück zum Zitat V. Y. Leonidov, O. M. Gaisinskaya, V. S. Pervov, and S. S. Ordan’yan: Zh. Fiz. Khim., 1976, Vol. 50, pp. 997-998. V. Y. Leonidov, O. M. Gaisinskaya, V. S. Pervov, and S. S. Ordan’yan: Zh. Fiz. Khim., 1976, Vol. 50, pp. 997-998.
13.
Zurück zum Zitat V. Y. Leonidov, O. M. Gaisinskaya, V. S. Pervov, S. S. Ordan’yan, and L. V. Kudryasheva: Zh. Fiz. Khim., 1978, Vol. 52, pp. 313-316. V. Y. Leonidov, O. M. Gaisinskaya, V. S. Pervov, S. S. Ordan’yan, and L. V. Kudryasheva: Zh. Fiz. Khim., 1978, Vol. 52, pp. 313-316.
14.
Zurück zum Zitat F. D. Baehren and D. Vollath: Planseebar. Pulvermetall., 1969, Vol. 17, pp. 180-183. F. D. Baehren and D. Vollath: Planseebar. Pulvermetall., 1969, Vol. 17, pp. 180-183.
15.
Zurück zum Zitat S. Omori, Y. Hashimoto, and K. Koyama: J. Jpn Inst. Met., 1982, Vol. 46, pp. 760-763.CrossRef S. Omori, Y. Hashimoto, and K. Koyama: J. Jpn Inst. Met., 1982, Vol. 46, pp. 760-763.CrossRef
16.
Zurück zum Zitat H. Yamamoto, M. Masao, A. Miyata, and K. Koyama: Metal. Mater. Trans. B, 2006, Vol. 37B, pp. 607-613.CrossRef H. Yamamoto, M. Masao, A. Miyata, and K. Koyama: Metal. Mater. Trans. B, 2006, Vol. 37B, pp. 607-613.CrossRef
17.
Zurück zum Zitat H. Yamamoto, M. Morishita, T. Yamamoto, and K. Furukawa: Metal. Mater. Trans. B, 2011, Vol. 42B, pp. 114-120.CrossRef H. Yamamoto, M. Morishita, T. Yamamoto, and K. Furukawa: Metal. Mater. Trans. B, 2011, Vol. 42B, pp. 114-120.CrossRef
18.
Zurück zum Zitat K. B. Povorova and Y. O. Tolstobrov: Izv. Akad. Nauk SSSR, Met., 1988, Vol. 4, pp. 52–55. K. B. Povorova and Y. O. Tolstobrov: Izv. Akad. Nauk SSSR, Met., 1988, Vol. 4, pp. 52–55.
19.
Zurück zum Zitat A. J. Crespo, L. -E. Tergenius, and T. Lundstrom: J. Less-Common Met., 1981, Vol. 77, pp. 147-150.CrossRef A. J. Crespo, L. -E. Tergenius, and T. Lundstrom: J. Less-Common Met., 1981, Vol. 77, pp. 147-150.CrossRef
20.
Zurück zum Zitat L. L. Y. Chang and B. Phillips: J. Ame. Cera. Soc., 1969, Vol. 52, pp.527-533.CrossRef L. L. Y. Chang and B. Phillips: J. Ame. Cera. Soc., 1969, Vol. 52, pp.527-533.CrossRef
21.
Zurück zum Zitat F. E. Rizzo, L. R. Bidwell, and D. F. Frank: Trans. Metall. Soc. AIME, 1967, Vol. 239, pp. 1901-1905. F. E. Rizzo, L. R. Bidwell, and D. F. Frank: Trans. Metall. Soc. AIME, 1967, Vol. 239, pp. 1901-1905.
22.
Zurück zum Zitat H. A. Wriedt: Bull. Alloy Phase Diagrams, 1989, Vol. 10, pp. 368-384.CrossRef H. A. Wriedt: Bull. Alloy Phase Diagrams, 1989, Vol. 10, pp. 368-384.CrossRef
23.
Zurück zum Zitat M. W. Chase Jr.: NIST-JANAF Thermochemical Tables, 4th Ed., American Chemical Society and American Institute of Physics for National Institute of Standards and Technology, New York, 1998, p. 272. M. W. Chase Jr.: NIST-JANAF Thermochemical Tables, 4th Ed., American Chemical Society and American Institute of Physics for National Institute of Standards and Technology, New York, 1998, p. 272.
24.
Zurück zum Zitat The Chemical Society of Japan: Handbook of Chemistry, Basic Part I, 3rd ed., Maruzen Co., Tokyo, 1984, p. I-22. The Chemical Society of Japan: Handbook of Chemistry, Basic Part I, 3rd ed., Maruzen Co., Tokyo, 1984, p. I-22.
25.
Zurück zum Zitat R. A. Swalin: Thermodynamics of Solids, 2nd Ed., John Wiley & Sons, Inc., New York, 1972, p. 132. R. A. Swalin: Thermodynamics of Solids, 2nd Ed., John Wiley & Sons, Inc., New York, 1972, p. 132.
26.
Zurück zum Zitat R. DeHoff: Thermodynamics in Materials Science, 2nd Ed., CRC Press, Boca Raton, Florida, 2006, p. 218. R. DeHoff: Thermodynamics in Materials Science, 2nd Ed., CRC Press, Boca Raton, Florida, 2006, p. 218.
27.
Zurück zum Zitat M. W. Chase Jr.: NIST-JANAF Thermochemical Tables, 4th Ed., American Chemical Society and American Institute of Physics for National Institute of Standards and Technology, New York, 1998, p. 1764. M. W. Chase Jr.: NIST-JANAF Thermochemical Tables, 4th Ed., American Chemical Society and American Institute of Physics for National Institute of Standards and Technology, New York, 1998, p. 1764.
28.
29.
Zurück zum Zitat M. Iwase, E. Ichise, M. Takeuchi, and T. Yamasaki, Trans. JIM, 1984, Vol. 25, pp. 43-52.CrossRef M. Iwase, E. Ichise, M. Takeuchi, and T. Yamasaki, Trans. JIM, 1984, Vol. 25, pp. 43-52.CrossRef
30.
Zurück zum Zitat M. W. Chase Jr.: NIST-JANAF Thermochemical Tables, 4th Ed., American Chemical Society and American Institute of Physics for National Institute of Standards and Technology, New York, 1998, pp. 1766–68. M. W. Chase Jr.: NIST-JANAF Thermochemical Tables, 4th Ed., American Chemical Society and American Institute of Physics for National Institute of Standards and Technology, New York, 1998, pp. 1766–68.
31.
Zurück zum Zitat M. W. Chase Jr.: NIST-JANAF Thermochemical Tables, 4th Ed., American Chemical Society and American Institute of Physics for National Institute of Standards and Technology, New York, 1998, p. 1782. M. W. Chase Jr.: NIST-JANAF Thermochemical Tables, 4th Ed., American Chemical Society and American Institute of Physics for National Institute of Standards and Technology, New York, 1998, p. 1782.
Metadaten
Titel
Determination of Gibbs Energy of Mixing of Tungsten-Boron Binary System by Electromotive Force Measurement Using Solid Electrolyte
verfasst von
Hiroaki Yamamoto
Masao Morishita
Yuta Miyake
Shusuke Hiramatsu
Publikationsdatum
21.02.2017
Verlag
Springer US
Erschienen in
Metallurgical and Materials Transactions B / Ausgabe 3/2017
Print ISSN: 1073-5615
Elektronische ISSN: 1543-1916
DOI
https://doi.org/10.1007/s11663-017-0938-4

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