Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок

The results of researches of electromagnetic systems for creation rotational motion of liquid metal in electrotechnological installations, obtained in the performance of research work "Aspect", are given. The principle of operation of these systems is based on the use of the own magnetic f...

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Опубліковано в: :Технічна електродинаміка
Дата:2012
Автори: Шидловський, А.К., Гориславець, Ю.М., Глухенький, О.І.
Формат: Стаття
Мова:Українська
Опубліковано: Інститут електродинаміки НАН України 2012
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Онлайн доступ:https://nasplib.isofts.kiev.ua/handle/123456789/62074
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок / А.К. Шидловський, Ю.М. Гориславець, О.І. Глухенький // Технічна електродинаміка. — 2012. — № 4. — С. 58–66. — Бібліогр.: 14 назв. — pос.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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author Шидловський, А.К.
Гориславець, Ю.М.
Глухенький, О.І.
author_facet Шидловський, А.К.
Гориславець, Ю.М.
Глухенький, О.І.
citation_txt Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок / А.К. Шидловський, Ю.М. Гориславець, О.І. Глухенький // Технічна електродинаміка. — 2012. — № 4. — С. 58–66. — Бібліогр.: 14 назв. — pос.
collection DSpace DC
container_title Технічна електродинаміка
description The results of researches of electromagnetic systems for creation rotational motion of liquid metal in electrotechnological installations, obtained in the performance of research work "Aspect", are given. The principle of operation of these systems is based on the use of the own magnetic field or electric current, that functionally are in such installations. Two approaches to create the motion of metal were used: at the expense of rotating magnetic field and on the basis of interaction crosstab electric and magnetic fields. The first approach is implemented in the induction channel furnaces, the second – in arc electric installations. Mathematical models for the study of physical processes in such systems are described. The results of computer simulation of electromagnetic forces and flow of molten metal in induction channel furnace and bath of vacuum-arc furnaces are given. The electromagnetic, hydrodynamic and electrodynamic parameters of these systems are determined. The specific electromagnetic torque and the average angular velocity of liquid metal were accepted as electrodynamic parameters. In addition, for the induction channel furnace with rotational movement of metal the analysis of forces acting on non-metallic inclusions (particles) that are in melt is carried out , and also for installation for refining of melt the behavior of bubbles of refining gas in the rotational flow of liquid metal is studied.
first_indexed 2025-11-27T21:04:20Z
format Article
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( ) - . , - - , , . , - . . 8). - : - , ( - ). , - , , . , . , , . - - r r . 7 r . 8 ISSN 1607-7970. . . 2012. 4 63 , . , - , . - , , - ( ), . - , - . - ( - ) - [1, 2, 5]. - - 15%. - [8]. - . . 5%. . . - , ( ), - . , - . , . , - , , ). , . 9. : 1 – , 2 – , 3 – - , 4 – , 5 – . - , , - . , ( - ) 1 . - 250 . . 10, . , - . , - ( . 11). ) u max, , - ( ). , - - ( . 10, ). - , . 10, , - 4 1 2 3 5 . 9 64 ISSN 1607-7970. . . 2012. 4 , . , - . , - , , u max = 1,6 , - ( ) 0,04 . - ( , , ) - ( ) - , , , - . - [13, 14]. - , - - . – - , , - , , - - - . . - , . - - . - , , . - - , , . 1. . // . – 2009. – .24. – . 60–66. 2. . // . . – 2008. – 4. – . 69–74. . 10 0,2 -0,2 0,20 -0,2 0 0,2 u max . 11 ISSN 1607-7970. . . 2012. 4 65 3. . - // . . – 1998. – 4. – . 12–14. 4. . // . . . . “ ”. – 2008. – .6. – . 92–95. 5. . // . . “ ”. – 2007. – 597. – . 61–65. 6. ., . // . . – 2008. – 6. – . 60–64. 7. ., . - // . . – 2009. – 3. – . 35–40. 8. ., . - // . . – 2011. – 4. – . 64–68. 9. ., . // . . . . “ ”. – 2010. – .2. – . 148–153. 10. ., . - // . – 2011. – .30. – C. 117–123. 11. ., ., . . – . – , 2011. – 208 . 12. ., ., . - // . – 2010. – .26. – . 13–20. 13. . 63413 , F27D 11/00. / . , . , . // . – 2011. – . 19. 14. . 63435 , 22 9/00. / . , . , . // . – 2011. – . 19. 621.74: 537.84 - , , , , , , , . , 56, -57, 03680, . - , ” “. , . : . , – . . - . - , . . , , - ( ), , , . . 14, . 11. : , , , , , , , - , , , , . 66 ISSN 1607-7970. . . 2012. 4 ELECTROMAGNETIC SYSTEMS OF ROTATIONAL MOTION OF LIQUID METAL FOR ELECTRO- TECHNOLOGICAL INSTALLATIONS A.K.Shydlovskyi, Yu.M.Goryslavets, O.I.Glykhenkyi, Institute of Electrodynamics National Academy of Science of Ukraine, Peremogy, 56, Kyiv-57, 03680, Ukraine. The results of researches of electromagnetic systems for creation rotational motion of liquid metal in electro- technological installations, obtained in the performance of research work "Aspect", are given. The principle of opera- tion of these systems is based on the use of the own magnetic field or electric current, that functionally are in such in- stallations. Two approaches to create the motion of metal were used: at the expense of rotating magnetic field and on the basis of interaction crosstab electric and magnetic fields. The first approach is implemented in the induction chan- nel furnaces, the second – in arc electric installations. Mathematical models for the study of physical processes in such systems are described. The results of computer simulation of electromagnetic forces and flow of molten metal in induc- tion channel furnace and bath of vacuum-arc furnaces are given. The electromagnetic, hydrodynamic and electrody- namic parameters of these systems are determined. The specific electromagnetic torque and the average angular veloc- ity of liquid metal were accepted as electrodynamic parameters. In addition, for the induction channel furnace with rotational movement of metal the analysis of forces acting on non-metallic inclusions (particles) that are in melt is car- ried out , and also for installation for refining of melt the behaviour of bubbles of refining gas in the rotational flow of liquid metal is studied. References 14, figures 11. Key words: liquid metal, rotational motion, electromagnetic system, induction channel furnace, electric arc installation, installation for refining of melt, computer simulation, physical model, electromagnetic torque, angular velocity, non- metallic inclusions, gas refining. 1. Gorislavets Yu.M. Calculation of the resistance induction coils of channel furnaces. // Pratsi Instytutu Elek- trodynamiky Natsionalnoi Akademii Nauk Ukrainy. – 2009. – Vol.24. – Pp. 60–66. (Rus) 2. Gorislavets Yu.M. Electromagnetic field and parameters of the device of continuous refining of liquid metal // Tekhnichna Elektrodynamika. – 2008. – No.4. – Pp. 69–74. (Rus) 3. Gorislavets Yu.M. Electromagnetic system of rotational motion of liquid metal for induction channel fur- naces. // Tekhnichna Elektrodynamika. – 1998. – No.4. – Pp. 12–14. (Rus) 4. Goryslavets Yu.M.. Computer simulation of induction channel furnaces with rotational motion of liquid metal. // Tekhnichna Elektrodynamika. Tematychnyi vypusk “Problemy suchasnoi elektrotekhniky”. No.6. – 2008. – Pp. 92–95. (Ukr) 5. Goryslavets Yu.M.. Mathematical modeling of electromagnetic processes in induction channel furnaces // Visnyk Natsionalnogo universytetu “Lvivska politekhika”. – 2007. – No.597. – Pp. 61–65. (Ukr) 6. Gorislavets Yu.M., Glykhenkii A.I.. Determination of velocity of rotational motion of liquid metal in the de- vice of continuous refining. // Tekhnichna Elektrodynamika. – 2008. – No.6. – Pp. 60–64. (Rus) 7. Gorislavets Yu.M., Glykhenkii A.I. Electrodynamic parameters of the rotational motion of liquid metal of in- duction channel furnace // Tekhnichna Elektrodynamika. – 2009. – No.3. – Pp. 35–40. (Rus) 8. Goryslavets Yu.M., Glykhenkyi O.I. Experimental investigation rotational motion of liquid metal in channel induction furnace // Tekhnichna Elektrodynamika. – 2011. – No.4. – Pp. 64–68. (Ukr) 9. Goryslavets Yu.M., Glykhenkyi O.I. Behavior of gas bubbles in the channel of electromagnetic system of re- fining of metal melts // Tekhnichna Elektrodynamika. Tematychnyi vypusk “Problemy suchasnoi elektrotekhniky”. – 2010. – No.2. – Pp. 148–153. (Ukr) 10. Goryslavets Yu.M., Glykhenkyi O.I. Power characteristics of induction channel furnace with rotational mo- tion of liquid metal // Pratsi Instytutu Elektrodynamiky Natsionalnoi Akademii Nauk Ukrainy. – 2011. – Vol.30. – Pp. 117–123. (Ukr) 11. Shidlovskii A.K., Gorislavets Yu.M., Glykhenkii A.I. Electromagnetic system for batching of liquid metals. – yiv: Institute of Electrodynamics National Academy of Science of Ukraine, 2011. – 208 p. (Rus) 12. Shydlovskyi A.K., Goryslavets Yu.M., Glykhenkyi O.I. Increase of efficiency of systems of electromagnetic stirring and refining of metallic melts // Pratsi Instytutu Elektrodynamiky Natsionalnoi Akademii Nauk Ukrainy – 2010. – Vol.26. – Pp. 13–20. (Ukr) 13. Patent 63413 Ukraine, F27D 11/00. Method of melting of aluminum in induction channel furnace / A.K. Shydlovskyi, Yu.M. Goryslavets, . Glykhenkyi // Promyslova vlasnist. – 2011. – Biulleten No.19. (Ukr) 14. Patent 63435 Ukraine, 22 9/00. Method of refining of molten metal / A.K. Shydlovskyi, Yu.M. Gorys- lavets, . Glykhenkyi // Promyslova vlasnist. – 2011. – Biulleten No.19. (Ukr) 19.12.2011 Received 19.12.2011
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institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
issn 0204-3599
language Ukrainian
last_indexed 2025-11-27T21:04:20Z
publishDate 2012
publisher Інститут електродинаміки НАН України
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spelling Шидловський, А.К.
Гориславець, Ю.М.
Глухенький, О.І.
2014-05-16T06:49:10Z
2014-05-16T06:49:10Z
2012
Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок / А.К. Шидловський, Ю.М. Гориславець, О.І. Глухенький // Технічна електродинаміка. — 2012. — № 4. — С. 58–66. — Бібліогр.: 14 назв. — pос.
0204-3599
https://nasplib.isofts.kiev.ua/handle/123456789/62074
621.74 : 537.84
The results of researches of electromagnetic systems for creation rotational motion of liquid metal in electrotechnological installations, obtained in the performance of research work "Aspect", are given. The principle of operation of these systems is based on the use of the own magnetic field or electric current, that functionally are in such installations. Two approaches to create the motion of metal were used: at the expense of rotating magnetic field and on the basis of interaction crosstab electric and magnetic fields. The first approach is implemented in the induction channel furnaces, the second – in arc electric installations. Mathematical models for the study of physical processes in such systems are described. The results of computer simulation of electromagnetic forces and flow of molten metal in induction channel furnace and bath of vacuum-arc furnaces are given. The electromagnetic, hydrodynamic and electrodynamic parameters of these systems are determined. The specific electromagnetic torque and the average angular velocity of liquid metal were accepted as electrodynamic parameters. In addition, for the induction channel furnace with rotational movement of metal the analysis of forces acting on non-metallic inclusions (particles) that are in melt is carried out , and also for installation for refining of melt the behavior of bubbles of refining gas in the rotational flow of liquid metal is studied.
uk
Інститут електродинаміки НАН України
Технічна електродинаміка
Електротехнологічні комплекси та системи
Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок
Electromagnetic systems of rotational motion of liquid metal for electrotechnological installations
Article
published earlier
spellingShingle Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок
Шидловський, А.К.
Гориславець, Ю.М.
Глухенький, О.І.
Електротехнологічні комплекси та системи
title Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок
title_alt Electromagnetic systems of rotational motion of liquid metal for electrotechnological installations
title_full Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок
title_fullStr Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок
title_full_unstemmed Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок
title_short Електромагнітні системи обертального руху рідкого металу для електротехнологічних установок
title_sort електромагнітні системи обертального руху рідкого металу для електротехнологічних установок
topic Електротехнологічні комплекси та системи
topic_facet Електротехнологічні комплекси та системи
url https://nasplib.isofts.kiev.ua/handle/123456789/62074
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