X-ray imaging for studying behavior of liquids at high pressures and high temperatures using Paris-Edinburgh press
Author(s) -
Yoshio Kono,
Curtis KenneyBenson,
Yuki Shibazaki,
Changyong Park,
Yanbin Wang,
Guoyin Shen
Publication year - 2015
Publication title -
review of scientific instruments
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.605
H-Index - 165
eISSN - 1089-7623
pISSN - 0034-6748
DOI - 10.1063/1.4927227
Subject(s) - materials science , advanced photon source , viscosity , x ray phase contrast imaging , beamline , high pressure , phase (matter) , x ray , high contrast , optics , thermodynamics , phase contrast imaging , composite material , phase contrast microscopy , chemistry , physics , beam (structure) , organic chemistry
Several X-ray techniques for studying structure, elastic properties, viscosity, and immiscibility of liquids at high pressures have been integrated using a Paris-Edinburgh press at the 16-BM-B beamline of the Advanced Photon Source. Here, we report the development of X-ray imaging techniques suitable for studying behavior of liquids at high pressures and high temperatures. White X-ray radiography allows for imaging phase separation and immiscibility of melts at high pressures, identified not only by density contrast but also by phase contrast imaging in particular for low density contrast liquids such as silicate and carbonate melts. In addition, ultrafast X-ray imaging, at frame rates up to ∼10(5) frames/second (fps) in air and up to ∼10(4) fps in Paris-Edinburgh press, enables us to investigate dynamics of liquids at high pressures. Very low viscosities of melts similar to that of water can be reliably measured. These high-pressure X-ray imaging techniques provide useful tools for understanding behavior of liquids or melts at high pressures and high temperatures.
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