Thermodynamic properties of liquid bismuth under pressure: New regularities and an equation of state

Author:

Li Huaming12ORCID,Feng Lin1ORCID,Zhang Ying1,Tian Yanting1ORCID,Sun Yongli1,Li Mo3ORCID

Affiliation:

1. College of Physics and Optoelectronics, Taiyuan University of Technology, Taiyuan 030024, China

2. Key Laboratory of Advanced Transducers and Intelligent Control Systems, Taiyuan University of Technology, Ministry of Education and Shanxi Province, Taiyuan 030024, China

3. School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, USA

Abstract

A new regularity for internal pressure has been introduced based on the suggested potential energy function in liquid bismuth. Both the experimental data and the calculated quantities from the power law equation of state have been used to show the validity of the regularity. The quantity [Formula: see text] is a linear function of ln( X) with crossing points for all isotherms at high temperature, where [Formula: see text], V, V m0, and Z are molar volume, the molar volume at melting point and zero pressure, and compressibility factor. For the reduced isothermal bulk modulus [Formula: see text] and the quantity [Formula: see text], where B T, R, T and Pint are isothermal bulk modulus, the gas constant, temperature and internal pressure, the new regularities have been introduced that both calculated [Formula: see text] and [Formula: see text] from the equation of state of a power law form versus ln( X) are nearly linear along each isotherm. However, those derived values from experiments become nonlinear functions of ln( X) at large pressure for all isotherms. Based on the new equation of state, analytical expression of thermodynamic properties of liquid bismuth can be obtained. The different extreme values exist along the isotherms for the calculated internal energy, isobaric heat capacity, and isochoric heat capacity for the new equation of state and the power law form equation of state.

Funder

Natural Science Foundation of Shanxi Province

National Natural Science Foundation of China

Scientific Research Starting Foundation from Taiyuan University of Technology

China Scholarship Council

Publisher

AIP Publishing

Subject

General Physics and Astronomy

Reference26 articles.

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