[1]
E.A. Hiedemann, Metallurgical Effect of Ultrasonic Waves, J. Acoust. Soc. Am., 26 (1954) 831–842.
Google Scholar
[2]
G.I. Eskin, Ultrasonic Treatment of Molten Aluminum, Metallurgiya, Moscow, (1965).
Google Scholar
[3]
G.I. Eskin, Ultrasonic Treatment of Light Alloy Melts, Gordon and Breach OPA, Amsterdam, (1998).
Google Scholar
[4]
O.V. Abramov, Crystallization of Metals in an Ultrasonic Field, Metallurgiya, Moscow, (1972).
Google Scholar
[5]
H.J. von Seemann, H. Staats, K.G. Pretor, Verfahren zur Schwingunsbehandlung von Metall- und Stahl-schmelzen unter besonderer Berucksichtihung der Kornfeinung durich Erstarrungs-beschallung, Arch. Eisenhüttenwesen, 38 (1967) 257–265.
DOI: 10.1002/srin.196704180
Google Scholar
[6]
T.V. Atamanenko, Cavitation-Aided Grain Refinement in Aluminium Allous, PhD Thesis, Delft Universuty of Technology, Delft, (2010).
Google Scholar
[7]
T.V. Atamanenko, D.G. Eskin, L. Zhang, L. Katgerman, Criteria of Grain Refinement Induced by Ultrasonic Melt Treatment of Aluminum Alloys Containing Zr and Ti, Metall. Mater. Trans. A, 41A (2010) 2056–(2066).
DOI: 10.1007/s11661-010-0232-4
Google Scholar
[8]
A. Ramirez, M. Qian, Grain Refinement of Magnesium Alloys by Ultrasonic Vibration, in: R.S. Beals, A.A. Luo, N.R. Neelameggham, M.O. Pekguleryuz (Eds. ), Magnesium Technology 2007, TMS, Warrendale, 2007, p.127–132.
Google Scholar
[9]
K.S. Suslick, Sonochemistry, Science, 247 (1990) 1439–1445.
Google Scholar
[10]
J.D. Hunt, K.A. Jackson, Nucleation of Solid in and Undercooled Liquid by Cavitation, J. Appl. Phys., 37 (1966) 254–257.
Google Scholar
[8]
O. Kazachkovsky, On the Effect of Surface Relief of Mechanical Inclusions on Solidification of Liquids, Proc. Lab. Metals Physics, Akad. Nauk UkrSSR, Kiev, 1948, p.76–94.
Google Scholar
[9]
L. Zhang, D.G. Eskin, L. Katgerman, Influence of Ultrasonic Melt Treatment on the Formation of Primary Intermetallics and Related Grain Refinement in Aluminum Alloys, J. Mater. Sci., 46 (2011) 5252–5259.
DOI: 10.1007/s10853-011-5463-2
Google Scholar
[10]
O.A. Kapustina, Degassing of Liquids, in: (L.D. Rozenberg, Ed. ) Physical Principles of Ultrasonic Technology, Nauka, Moscow, 1970, p.253–336.
Google Scholar
[11]
L.B. Maslan, Ultrasonic Treatment of Foundry Aluminum Melts, VNIIEM, Moscow, (1972).
Google Scholar
[12]
J. Campbell, Effects of Vibration during Solidificaiton, Int. Met. Rev., (2) (1981) 71–108.
Google Scholar
[13]
N. Alba-Baena, D. Eskin, Kinetics of Ultrasonic Degassing of Aluminum Alloys, in: B. Sadler (Ed. ), Light Metals 2013, TMS/Wiley, Warrendale, 2013, p.957–962.
DOI: 10.1002/9781118663189.ch162
Google Scholar