Abstract:
The setup for the measurement of the density of high-temperature melts by means of penetrating gamma-radiation is described. The modern device base, which makes it possible to automatize the work, is the main difference from the earlier existing gamma-densitometers. The key characteristics of the absolute measurements with the use of very exact values of the mass attenuation coefficient for the gamma-quanta beam are described and the accuracy of measurements is estimated. The results of the density measurement of the molten aluminum, cadmium, tin, and bismuth are presented; they confirm the a priori estimate of the error.
Citation:
B. A. Rusanov, E. S. Baglasova, P. S. Popel', V. E. Sidorov, A. A. Sabirzyanov, “Gamma-densitometer for studies of high-temperature metal melts”, TVT, 56:3 (2018), 455–460; High Temperature, 56:3 (2018), 439–443
\Bibitem{RusBagPop18}
\by B.~A.~Rusanov, E.~S.~Baglasova, P.~S.~Popel', V.~E.~Sidorov, A.~A.~Sabirzyanov
\paper Gamma-densitometer for studies of high-temperature metal melts
\jour TVT
\yr 2018
\vol 56
\issue 3
\pages 455--460
\mathnet{http://mi.mathnet.ru/tvt10811}
\crossref{https://doi.org/10.7868/S0040364418030195}
\elib{https://elibrary.ru/item.asp?id=35104808}
\transl
\jour High Temperature
\yr 2018
\vol 56
\issue 3
\pages 439--443
\crossref{https://doi.org/10.1134/S0018151X18020190}
\isi{https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=Publons&SrcAuth=Publons_CEL&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=000436581100020}
\elib{https://elibrary.ru/item.asp?id=35746426}
\scopus{https://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85049204071}
Linking options:
https://www.mathnet.ru/eng/tvt10811
https://www.mathnet.ru/eng/tvt/v56/i3/p455
This publication is cited in the following 18 articles:
B. A. Rusanov, V. E. Sidorov, E. V. Sterkhov, S. A. Petrova, A. I. Rusanova, A. A. Sabirzyanov, E. E. Sidorova, “THE INFLUENCE OF COBALT ON DENSITY AND ELECTRICAL RESISTIVITY OF Al–Ni–Co–Ce ALLOYS IN CRYSTALLINE AND LIQUID STATES”, Rasplavy, 2023, no. 4, 426
B. A. Rusanov, V. E. Sidorov, E. V. Sterkhov, S. A. Petrova, A. I. Rusanova, A. A. Sabirzyanov, E. E. Sidorova, “Effect of Cobalt on Density and Electrical Resistivity of Al–Ni–Co–Ce Alloys in Crystalline and Liquid States”, Russ. Metall., 2023:8 (2023), 1089
B. A. Rusanov, V. E. Sidorov, L. D. Son, A. A. Sabirzyanov, “Thermophysical Properties of Al–Ni–Co–R (R = Sm, Tb) Alloys in Crystalline and Liquid States”, Russ. Metall., 2023:8 (2023), 1025
A. L. Beltyukov, B. A. Rusanov, D. A. Yagodin, A. I. Rusanova, E. V. Sterkhov, L. D. Son, V. I. Lad'yanov, “Relaxation in Al–La Glass-Forming Melt”, Russ. Metall., 2023:2 (2023), 120
B. A. Rusanov, V. E. Sidorov, L. D. Son, A. A. Sabirzyanov, “THERMOPHYSICAL PROPERTIES OF Al–Ni–Co–R (R = Sm, Tb) ALLOYS IN CRYSTALLINE AND LIQUID STATES”, Rasplavy, 2023, no. 3, 298
B A Rusanov, V E Sidorov, “Influence of rare earth metals on volumetric characteristics of Al-Ni-Co-R alloys in crystalline and liquid states”, J. Phys.: Condens. Matter, 35:29 (2023), 294001
“Thermophysical properties of the oxides of yttrium, cerium, and praseodymium at temperatures from 300 to 1000 K by using the technique of attenuation of γ-rays”, High Temperature, 60:6 (2022), 761–767
V. G. Shevchenko, D. A. Eselevich, M. N. Baklanov, V. E. Sidorov, B. A. Rusanov, “Study of the Al–V Alloy Density to Optimize the Conditions of Producing Powders for 3D Printing”, Russ. Metall., 2022:2 (2022), 110
B. A. Rusanov, V. E. Sidorov, L. D. Son, P. Svec, D. Janickovic, “Density and Electrical Resistivity of Al86Ni6CO2R6 (R = ND, GD, YB) Alloys in Solid and Liquid States”, Russ Phys J, 65:6 (2022), 1028
Nikolay V. Kozyrev, Vladimir V. Gordeev, “Thermodynamic Properties and Equation of State for Solid and Liquid Aluminum”, Metals, 12:8 (2022), 1346
B. A. Rusanov, V. E. Sidorov, S. A. Petrova, P. Svec, D. Janickovic, “Effect of Rare-Earth Metals on Density of Co–Fe–Si–B–Nb Alloy in Crystalline and Liquid States”, Russ. Metall., 2022:2 (2022), 97
B. A. Rusanov, V. E. Sidorov, A. I. Moroz, P. Svec, D. Janickovic, “Density and electrical resistivity of al-ni-co-sm(tb) alloys”, Tech. Phys. Lett., 47:10 (2021), 770–772
B. A. Rusanov, V. E. Sidorov, V. A. Mikhailov, P. S. Sr, D. Janickovic, “Electrical resistivity and magnetic susceptibility of cofesibnb plus rem alloys at high temperatures”, Tech. Phys., 66:12 (2021), 1348–1352
Rusanov B., Sidorov V., Svec Sr. Peter, Janickovic D., “Density of al-ni-co-r (R = nd, gd, yb) alloys in solid and liquid states”, Physica B, 619 (2021), 413216
M. Ranga Rao, N. Gopi Krishna, S. Chandra Lingam, “Thermal expansion of lanthanum and neodymium oxides from 300-1000 K from measurements of attenuation of gamma rays”, Phys. Scr., 96:5 (2021), 055703
V. Sidorov, I. Polovov, B. Rusanov, N. Katkov, V. Mikhailov, P. Popel, K. Maksimtsev, A. Mukhamadeev, G. Patronov, “Density, electroresistivity and magnetic susceptibility of al-sc alloy in crystalline and liquid states”, J. Alloy. Compd., 787 (2019), 1345–1348