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Viscosity Characteristics of Liquid Iron

P.P. Arsent'ev, Sergey Ivanovich Filippov

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Abstract

Abstract : Viscosity was determined on a high-temperature viscometer via the method of torsional oscillations of a crucible. The measurements were conducted in a purified helium atmosphere, and the process of heating and cooling the melt spanned a temperature range from the melting point to 1,700-1750 degrees C (with measurements at 10-16 temperature levels). It was possible to obtain a series of measurements for liquid iron in the supercooled state. (Author)

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Abstract : Viscosity was determined on a high-temperature viscometer via the method of torsional oscillations of a crucible. The measurements were conducted in a purified helium atmosphere, and the process of heating and cooling the melt spanned a temperature range from the melting point to 1,700-1750 degrees C (with measurements at 10-16 temperature levels). It was possible to obtain a series of measurements for liquid iron in the supercooled state. (Author)

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Available abstract

Abstract : Viscosity was determined on a high-temperature viscometer via the method of torsional oscillations of a crucible. The measurements were conducted in a purified helium atmosphere, and the process of heating and cooling the melt spanned a temperature range from the melting point to 1,700-1750 degrees C (with measurements at 10-16 temperature levels). It was possible to obtain a series of measurements for liquid iron in the supercooled state. (Author)

Key concepts: Viscometer, Supercooling, Crucible (geodemography), Melting point, Viscosity, Liquid state, Thermodynamics, Atmospheric temperature range

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