Yuri Gelfgat
University of Latvia
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Publication
Featured researches published by Yuri Gelfgat.
International Journal of Cast Metals Research | 2016
Andris Bojarevics; Toms Beinerts; Yuri Gelfgat; Imants Kaldre
In liquid aluminium processing, it is important to ensure continuous mixing of the molten metal to ensure temperature and composition homogeneity, and to improve degassing of the metal. Aluminium and its alloys are often processed in special degassing chambers after preparation in order to avoid segregation and to improve material structure, and to avoid gas pores. This extra step increases material costs and may cause material contamination. In this article, we present the idea to use centrifugal permanent magnet stirrer to induce liquid aluminium motion through thick furnace wall by creating high-speed local liquid metal jet. Analytical estimation, numerical modelling and experimental tests using GaInSn alloy has been done and are presented in the article. Model experiments are used to elaborate dimensionless parameters to verify the feasibility of this technology for liquid aluminium.
Metallurgical and Materials Transactions B-process Metallurgy and Materials Processing Science | 2016
Toms Beinerts; Andris Bojarevics; Imants Bucenieks; Yuri Gelfgat; Imants Kaldre
The possibility of applying the electromagnetic induction pump with permanent magnets for the transportation and stirring of aluminum melts in metallurgical furnaces is investigated. The electromagnetic and hydraulic characteristics of the pump have been investigated theoretically and experimentally with regard to its position in the furnace. The results of the experiments performed with a model in a eutectic InGaSn melt are in good agreement with the calculation data. Extrapolation of the experimental results on the physical characteristics of aluminum melts allows recommending such pumps for contactless control of motion and heat/mass transfer in aluminum melts in different technological processes. A high temperature and the aggressive properties of aluminum alloys make it complicated to use different mechanical devices to solve technological problems, such as liquid metal transportation, dosing, stirring, etc. In this case, any device units or elements moving in or contacting with the melt suffer from corrosion polluting the melt. Therefore, of more importance and topicality are contactless electromagnetic methods for processing of molten metals.
Materials Science in Semiconductor Processing | 2002
E. Tomzig; Janis Virbulis; Wilfried von Ammon; Yuri Gelfgat; Leonid Gorbunov
Archive | 2006
Martin Dr. Phys. Weber; Wilfried von Ammon; Herbert Schmidt; Janis Virbulis; Yuri Gelfgat; Leonid Gorbunov
Archive | 2002
Janis Virbulis; Wilfried von Ammon; E. Tomzig; Yuri Gelfgat; Lenoid Gorbunov
Archive | 1997
Wilfried von Ammon; E. Tomzig; Paul Fuchs; Yuri Gelfgat
Archive | 2002
Yuri Gelfgat; Leonid Gorbunov; E. Tomzig; J. Virbulis; Wilfried Vonammon
Metallurgical and Materials Transactions B-process Metallurgy and Materials Processing Science | 2009
Andreas Cramer; Vladimir Galindo; Gunter Gerbeth; Jānis Priede; Andris Bojarevics; Yuri Gelfgat; Olaf Andersen; Cris Kostmann; Günter Stephani
Archive | 2003
Martin Dr. Phys. Weber; Wilfried von Ammon; Herbert Schmidt; J. Virbulis; Yuri Gelfgat; Leonid Gorbunov
Archive | 2002
Yuri Gelfgat; Leonid Gorbunov; E. Tomzig; J. Virbulis; Ammon Wilfried Von; フォン アモン ヴィルフリート; トムツィッヒ エーリヒ; フィルブリス ヤニス; ゲルフガト ユーリ; ゴルブノフ レオニード