The Pb−Sn (Lead-Tin) system
Alloy Phase Diagram Evaluations Pb−Sn
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Keywords
Differential Thermal Analysis Equi Diagram Alloy Phase Diagram Crys Structure Eutectic Temperature
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Cited References
- 1890Hey: C.T. Heycock and F.H. Neville, “The Molecular Weights of Metals when in Solution,”J. Chem. Soc., 57, 376–393, (1890). (Equi Diagram; Experimental)CrossRefGoogle Scholar
- 1892Hey: C.T. Heycock and F.H. Neville, “On the Lowering of the Freezing Points of Cadmium, Bismuth and Lead when Alloyed with Other Metals,”J. Chem. Soc., 61, 888–916 (1892). (Equi Diagram; Experimental)CrossRefGoogle Scholar
- 1894Wie: B. Wiesengrund,Wied. Ann., 52, 777 (1894); as cited in |09Deg|. (Equi Diagram; Experimental)CrossRefGoogle Scholar
- 01Cha: G. Charpy,Contr. Etud. Alliages (1901); as cited in |09Deg|. (Equi Diagram; Experimental)Google Scholar
- 01Kap: A.W. Kapp,Ann. Phys. 6, 754 (1901); as cited in |09Deg|. (Equi Diagram; Experimental)CrossRefGoogle Scholar
- 07Sto: A. Stofel, “Binary and Ternary Alloys of Tin, Lead, Bismuth and Cadmium,”Z. Anorg. Chem., 53, 137–155 (1907) in German. (Equi Diagram; Experimental; Indicates presence of a phase diagram)CrossRefGoogle Scholar
- 08Ros: W. Rosenhain and P.A. Tucker, “The Alloys of Lead and Tin,”Philos. Trans. R. Soc. (London)., 209, 89–122 (1908). (Equi Diagram; Experimental; Indicates presence of a phase diagram).ADSCrossRefGoogle Scholar
- 09Deg: P.N. Degens, “Tin-Lead Alloys,”Z. Anorg. Chem., 63, 207–224 (1909) in German. (Equi Diagram; Experimental; Indicates presence of a phase diagram).CrossRefGoogle Scholar
- 09Gue: W. Guerler, “Constitution of the Lead-Tin Alloys,”Z. Elektrochem., 15, 125–129 (1909) in German. (Equi Diagram; Experimental; Indicates presence of a phase diagram).Google Scholar
- 20Par: N. Parravano and A. Scortecci, “Solubility of Lead and Tin in Solid State,”Gaz. Chim. Ital., 50, 83–92 (1920). (Equi Diagram; Experimental; Indicates presence of a phase diagram)Google Scholar
- 21Kon: S. Konno, “On the Determination of Electrical Resistance of Alloys Lead-Tin and Lead-Zinc at High Temperatures,”Sci. Rep. Tôhoku Imp. Univ., 10, 57–74 (1921). (Equi Diagram; Experimental; Indicates presence of a phase diagram)Google Scholar
- 25Kan: K. Kaneko and A. Araki “Alloys of Lead and Cadmium and Tin,”Nippon Kogyo Kwai-Shi, 41, 437–454 (1925) in Japanese. (Equi Diagram; Experimental; Indicates presence of a phase diagram)Google Scholar
- 2Kaw: M. Kawakami, “The Heat of Mixing of Metals,”Sci. Rep. Tôhoku Imp. Univ., 16, 915–935 (1927). (Thermo; Experimental)Google Scholar
- 28Jef: F.H. Jeffery, “The Lead-Tin System of Alloys Re-Examined by an Electrical Resistance Method,”Trans. Faraday Soc., 24, 209–215 (1928). (Equi Diagram; Experimental; Indicates presence of a phase diagram)CrossRefGoogle Scholar
- 30Hon: K. Honda and H. Abe, “On the Equilibrium Diagram of the Lead-Tin System,”Sci. Rep. Tôhoku Imp. Univ., 19, 315–330 (1930). (Equi Diagram Experimental; Indicates presence of a phase diagram)Google Scholar
- 30Jef: F.H. Jeffery, “The Molecular Constitution of the Solid Solution of Tin in Lead at Temperatures below that of the Eutectic,”Trans. Faraday Soc., 26, 588–590 (1930). (Equi Diagram; Experimental; Indicates presence of a phase diagram)CrossRefGoogle Scholar
- 30Sto: D. Stockdale, “The Conposition of Eutectics,”J. Inst. Met., 43, 193–221 (1930). (Equi Diagram; Experimental)Google Scholar
- 32Sto: D. Stockdale, “The Constitution of the Lead-Tin Alloys,”J. Inst. Met., 49, 267–286 (1932). (Equi Diagram; Experimental; Indicates presence of a phase diagram)Google Scholar
- 40Sto: A. Stockburn, “The Solubility of Lead in Tin,”J. Inst. Met., 66, 33–38 (1940). (Equi Diagram; Experimental)Google Scholar
- Indicates key paper. 47Ray: G.V. Raynor, “The Equilibrium Diagram of the System Lead-Tin,”Annotated Equilibrium Diagrams, No. 6, The Institute of Metals, London (1947). (Equi Diagram; Compilation; Indicates presence of a phase diagram)Google Scholar
- Indicates key paper. 49Hul: R. Hultgren and S.A. Lever, “Use of Electrical Resistance Measurements to Determine the Solidus of the Lead-Tin System,”Trans. Metall. Soc. AIME, 185, 67–71 (1949). (Equi Diagram; Experimental)Google Scholar
- Indicates key paper. Kur: E. Kurzyniec and Z. Wojtaszek, “The Mutual Solubility of Lead and Tin in the Solid State, and its Variability According to the Temperature,”Bull. Int. Acad. Polon. Sci. Classe Sci. Mat. Natur. IIIA, 131–146 (1951) in Polish. (Equi Diagram; Experimental)Google Scholar
- Indicates key paper. 54Fis: H.J. Fisher and A. Phillips, “Viscosity and Density of Liquid Lead-Tin and Antimony-Cadmium Alloys,”Trans. AIME, 200, 1060–1070 (1954). (Equi Diagram; Experimental; Indicates presence of a phase diagram)Google Scholar
- 54Lee: J.A. Lee and G.V. Raynor, “The Lattice Spacings of Binary Tin-Rich Alloys,”Proc. Phys. Soc., 67, 737–747 (1954). (Crys Structure; Experimental)ADSCrossRefGoogle Scholar
- 54Tyz: C. Tyzack and G.V. Raynor, “The Lattice Spacings of Lead-Rich Substitutional Solid Solutions,”Acta Crystallogr., 7, 505–510 (1954). (Crys Structure; Experimental)CrossRefGoogle Scholar
- Indicates key paper. 55Kle: O.J. Kleppa, “A New High Temperature Reaction Calorimeter. The Heat of Mixing of Liquid Lead-Tin Alloys,”J. Phys. Chem., 59, 175–181 (1955). (Thermo; Experimental)CrossRefGoogle Scholar
- 55Tur: D. Turnbull and H.N. Treaftis, “Kinetics of Precipitation of Tin from Lead-Tin Solid Solutions,”Acta Metal., 3, 43–54 (1955). (Equi Diagram; Experimental)CrossRefGoogle Scholar
- 56Des: W. DeSorbo and D. Turnbull, “Kinetics of Precipitation in Small Lead-Tin Spheres,”Acta Metall., 4, 495–509 (1956). (Equi Diagram; Experimental)CrossRefGoogle Scholar
- 57Dro: J. Drowart and R.E. Honig, “A Mass Spectrometric Method for the Determination of Dissociation Energies of Diatomic Molecules,”J. Phys. Chem., 61, 980–985 (1957). (Thermo; Experimental)CrossRefGoogle Scholar
- 58Mur: W.K. Murphy and R.A. Oriani, “The Heat of Formation of α-PbSn Alloys,”Acta Metall., 6, 556 (1958). (Thermo; Experimental)CrossRefGoogle Scholar
- 58Tur: D. Turnbull and H.N. Treaftis, “Micrographic Investigation of Precipitation in Pb−Sn Alloys,”Trans. AIME, 212, 33–39 (1958). (Equi Diagram; Experimental)Google Scholar
- Indicates key paper. 59Ken: W.B. Kendall and R. Hultgren, “Thermodynamics of the Lead-Tin System,”J. Phys. Chem., 63, 1158–1160 (1959). (Thermo; Experimental)CrossRefGoogle Scholar
- 59Vor: G.F. Voronin and A.M. Evseev, “Thermodynamic Properties of Liquid Lead-Tin Alloys,”Russ. J. Phys. Chem., 33, 373–375 (1959). (Thermo; Experimental)Google Scholar
- 60Ata: K. Atarashiya, M. Uta, M. Shimoji, and K. Niwa, “The Equilibrium Between the Sn−Pb Liquid Solution and the H2−H2O Gaseous Mixture,”Bull. Chem. Soc. Jpn., 33, 706–710 (1960). (Thermo; Experimental)CrossRefGoogle Scholar
- Indicates key paper. 60Cah: J.W. Cahn and H.N. Treaftis, “The Solubility of Tin in Solid Lead,”Trans. Metall. AIME, 218, 376–377 (1960). (Equi Diagram; Experimental)Google Scholar
- 62Dob: B. Dobovisek and N. Smajic, “Differential Thermal Analysis of Systems Sn−Bi and Pb−Sn,”Rud.-Metab. Zb., 4, 350–360 (1962) in Polish. (Thermo; Experimental)Google Scholar
- 63Kau: L. Kaufman, “Some Equilibria and Transformations in Metals Under Pressure,”Solids Under Pressure, McGraw-Hill, New York (1963). (Meta Phases; Experimental)Google Scholar
- 67Bro: J.P. Bros, R. Castanet and M. Laffitte, “Enthalpy of Mixing of Alloys Gallium-Indium and Gallium-Tin at 469°C,”C.R. Acad. Sci. Paris, 264, 1804–1806 (1967) in French. (Thermo; Experimental)Google Scholar
- 67Haw: D.T. Hawkins and R. Hultgren, “Vapor Pressure of Lead and Activity Measurements on Liquid Lead-Tin Alloys by Torsion Effusion Method,”Trans. Metall. AIME, 239, 1046–1049 (1967). (Thermo; Experimental)Google Scholar
- 68Kan: B.S. Kandelaki and A.E. Avaliani, “Differential Thermal Analysis of Pb−Sn System,”Trans. Gruz. Politekh. Inst., 4, 37–41 (1968) in Russian. (Equi Diagram; Experimental)Google Scholar
- 68Oka: K. Okajima and H. Sako, “Activity Measurements of Binary Pb-X Molten Alloys by the TIE Method,”Trans. Jpn. Inst. Met., 9, 325–330 (1968). (Thermo; Experimental)CrossRefGoogle Scholar
- 68Pad: G.W. Padgaokar, P.S. Kinnerkar, and D.L. Roy, “Thermodynamic Properties of Liquid Lead-Tin Alloys,”Trans. Indian Inst. Met., 21, 36–40 (1968). (Thermo; Experimental)Google Scholar
- 68Yaz: A. Yazawa, T. Kawashima, and K. Itagaki, “Measurements of Heats of Mixing in Liquid Alloys with the Adiabatic Calorimeter,”J. Jpn. Inst. Met., 32, 1281–1287 (1968) in Japanese. (Thermo; Experimental)CrossRefGoogle Scholar
- 68Yok: O.O. Yokunin and V.I. Tkach, “Decomposition of Pb−Mg and Pb−Sn Solid Solutions,”Ukr. Fiz. Zh., 13, 326–328, (1968) in Russian. (Crys Structure; Experimental)Google Scholar
- 69Ton: E.Y. Tonkov and I.L. Aptebar, “Temperature-Concentration-Pressure Phase Diagram of the Pb−Sn System,”Dokl. Akad. Nauk. SSR, 188, 401–402 (1969) in Russian. (Meta Phases; Experimental)Google Scholar
- 70Oka: K. Okajima and H. Sakao, “On Surface- and Body-Activity of Components in the Binary Molten Alloys,”Trans. Jpn. Inst. Met., 11, 180–184 (1970). (Thermo; Experimental)CrossRefGoogle Scholar
- 71Oza: Y. Ozaki and S. Saito, “Pressure Effect on the Eutectic Temperature of the Sn−Zn, Sn−Pb, Sn−Bi and Cd−Zn Systems,”Jpn. J. Appl. Phys., 10, 149–153 (1971). (Meta Phase; Experimental)ADSCrossRefGoogle Scholar
- Indicates key paper. 72Heu: T. Heumann and H. Wostmann, “Thermodynamic Data for Lead-Tin Alloys and the Hypothetical Transformation of Tetragonal Tin into Face-Centered Cubic Modification,”Z. Metallkd., 63, 332–341 (1972) in German. (Equi Diagram; Thermo; Experimental; Indicates presence of a phase diagram)Google Scholar
- 74Sar: P.R. Sarode and A.R. Chetal, “Metastable Solid Solutions in Lead-Tin alloys,”Current Sci., 43, 339 (1974). (Meta Phase; Crys Structure; Experimental)Google Scholar
- 74Shu: C.S. Shurov, N.G. Ilyushchenko, A.I. Arfinogenov, and T.L. Mitrofanova, “The emf Method for Determining Thermodynamic Properties of Molten Alloys the Components of which are Close to the Electrochemical Properties. Study of the Lead-Tin System,”Inst. Elektrokhim, Sverdlovsk, USSSR, Deposited Document (1974) in Russian. (Thermo; Experimental)Google Scholar
- 78Siv: C.S. Sivaramakrishnan and M.L. Kapoor, “Thermodynamic Properties of Liquid Lead-Tin System by EMF Method,”NML Tech. J., 20, 20–23 (1978). (Thermo; Experimental)Google Scholar
- 78Som: F. Sommer, Y.H. Suh, and B. Predel, “Determination of Thermodynamic Activities of Liquid Alloys in the Ga−Pb, In−Pb and Sn−Pb Systems using the Knudsen Method,”Z. Metallkd., 69, 470–475 (1978), in German. (Thermo; Experimental)Google Scholar
- 79Tok: V.S. Tokmakov, Y.V. Moish, Y.S. Astashkim, LY.V. Silanov, and V.V. Zhiryakov, “X-Ray Methods for the Study of Crystallization of Metals and Alloys,”Zavod. Lab., 45, 26–28 (1979) in Russian. (Equi Diagram; Experimental)Google Scholar
- 80Cla: J.B. Clark and P.W. Richter, “The Determination of Composition-Temperature-Pressure Phase Diagrams of Binary Alloy Systems,”High Pressure Sci., Tech. Proc., Int. AIRAPT Conf., 7, Vol. 1, 363–371 (1980). (Meta Phase; Experimental)Google Scholar
- Indicates key paper. 81Nga: T.L. Ngai and Y.A. Chang, “A Thermodynamic Analysis of the Pb−Sn System and the Calculation of the Pb−Sn Phase Diagram,”Calphad, 5, 267–276 (1981). (Equi Diagram; Thermo; Compilation; Indicates presence of a phase diagram)CrossRefGoogle Scholar
- 81Ziv: Z.D. Zivkovic, “Thermodynamic Analysis of Binary Metal Systems by Differential Thermal Analysis,”Thermochem. Acta, 44, 385–390 (1981). (Thermo; Experimental)CrossRefGoogle Scholar
- 82Deg: V.F. Degtyareva and E.G. Ponyatovski, “High Pressure in B-Element Alloys-A New Type of Electronic Phase,”Fiz. Tverd. Tela, 24, 2672–2681 (1982) in Russian. (Crys Structure; Experimental)Google Scholar
- 82Sug: E. Sugimoto, Z. Kozuka, and S. Kuwata, “Activity Measurements in the Pb−Sn and Pb−Sb alloys by Emf Methods with Y-Oxided Doped Stabilized Zr at Low Temperatures,”Nippon Kogyo Kaishi, 98, 429–435 (1982) in Japanese. (Thermo; Experimental)Google Scholar
- 83CRC:CRC Handbook of Chemistry and Physics, 64th ed., CRC Press Inc., Boca Raton, FL, B-99 and B-139 (1983). (Meta Phases; Compilation)Google Scholar
- 87Kar1: I. Karakaya and W.T. Thompson, “The Ag−Pb (Silver-Lead) System,”Bull. Alloy Phase Diagrams, 8(4), 326–334 (1987). (Thermo; Review)CrossRefGoogle Scholar
- 87Kar2: I. Karakaya and W.T. Thompson, “The Ag−Sn (Silver-Tin) System,”Bull. Alloy Phase Diagrams, 8(4), 340–347 (1987). (Thermo; Review)CrossRefGoogle Scholar
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