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Articles

Review of data for the surface tension of pure metals

Pages 157-192 | Published online: 18 Jul 2013

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G. S. Peng, Y. C. Gu, G. S. Song, Y. Wang & S. Y. Chen. (2021) New insight of Ca element refining grain structure in commercial purity Mg based on the first-principle calculation. International Journal of Cast Metals Research 34:1, pages 6-13.
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G. S. Peng, G. S. Song, Y. Wang, K. H. Chen & S. Y. Chen. (2018) Intensive melt shearing and calcium concentration effects on grain refinement of commercial purity Mg. International Journal of Cast Metals Research 31:2, pages 99-107.
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Ali Dogan & Hüseyin Arslan. (2017) Surface tension estimation of high temperature melts of the binary alloys Ag–Au. Philosophical Magazine 97:31, pages 2871-2887.
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Ali Dogan & Hüseyin Arslan. (2016) An investigation on surface tensions of Pb-free solder materials. Philosophical Magazine 96:27, pages 2887-2901.
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M. Bahadori & Z. Akbari. (2016) Prediction of the surface tension of cesium in the whole liquid range. Physics and Chemistry of Liquids 54:4, pages 454-461.
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E. Bourasseau, G. Filippini, A. Ghoufi & P. Malfreyt. (2014) Calculation of the surface tension of pure tin from atomistic simulations of liquid–vapour systems. Molecular Physics 112:20, pages 2654-2657.
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Fathi Aqra & Ahmed Ayyad. (2012) Surface tension of pure liquid lanthanide and early actinide metals. Physics and Chemistry of Liquids 50:3, pages 336-345.
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V V Avilov, A Gumenyuk, M Lammers & M Rethmeier. (2012) PA position full penetration high power laser beam welding of up to 30 mm thick AlMg3 plates using electromagnetic weld pool support. Science and Technology of Welding and Joining 17:2, pages 128-133.
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S. Blairs. (2007) Review of data for velocity of sound in pure liquid metals and metalloids. International Materials Reviews 52:6, pages 321-344.
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S. Blairs. (2007) Sound velocity of liquid metals and metalloids at the melting temperature. Physics and Chemistry of Liquids 45:4, pages 399-407.
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K. C. Mills & Y. C. Su. (2006) Review of surface tension data for metallic elements and alloys: Part 1 – Pure metals. International Materials Reviews 51:6, pages 329-351.
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S.J. Roach & H. Henein. (2003) A Dynamic Approach to Determining the Surface Tension of a Fluid. Canadian Metallurgical Quarterly 42:2, pages 175-186.
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X. J Han, N Wang & B Wei. (2002) Thermophysical properties of undercooled liquid cobalt. Philosophical Magazine Letters 82:8, pages 451-459.
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N. Mingolo, A. N. Roviglione & O. E. Martínez. (2002) Steel Surface Roughening by Transient Self Dewetting After Pulsed Electron Beam Melting. Surface Engineering 18:1, pages 50-52.
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S.K. Kim, J.I. Youn & Y.J. Kim. (2000) Rotating cylinder manufacturing method and investment casting of SiCp/AZ91HP magnesium composites. Materials Science and Technology 16:7-8, pages 769-775.
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DonM. Lipkin, JacobN. Israelachvili & DavidR. Clarke. (1997) Estimating the metal-ceramic van der Waals adhesion energy. Philosophical Magazine A 76:4, pages 715-728.
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Y. H. Xiao & G. den Duden. (1997) Measurement of surface tension of liquid metalsand alloys under arc welding conditions. Materials Science and Technology 13:9, pages 791-794.
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H.B. Liu, K.Y. Chen, Y.D. Gong, G.Y. An & Z.Q. Hu. (1997) Properties of the liquid-vapour interface of fcc metals calculated using the tight-binding potential. Philosophical Magazine A 75:4, pages 1067-1074.
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A. K. Biletsky, V. T. Witusiewicz & D. A. Biletsky. (1995) Automatic technique for measuring interfacial properties of liquid metals. Materials Science and Technology 11:12, pages 1310-1311.
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N. Doraiswamy & L.D. Marks. (1995) Preferred structures in small particles. Philosophical Magazine B 71:3, pages 291-310.
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