High-pressure apparatus for simultaneous adiabatic and isothermal compressibility measurements: Data on argon to 13 kbar
- 1 February 1974
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 45 (2) , 741-747
- https://doi.org/10.1063/1.1663312
Abstract
A piston‐cylinder apparatus was developed in which ultrasonic waves were transmitted into a high‐pressure sample through the unsupported area of a Bridgman seal. The sound‐wave transmission could be divided so that one portion returned from a fixed reflector in the sample, giving sound‐velocity measurements, and the other portion returned from the piston itself, giving the relative volume of the sample. In this way, adiabatic and isothermal compressibilities could be measured simultaneously. Relative volumes were also determined from the piston travel, observed externally. A calibrated manganin gauge allowed pressures to be compared with those calculated from the ram force and hysteresis curve of the advancing and retreating piston. Data are reported for argon at room temperature up to about 13 kbar where it solidifies.This publication has 13 references indexed in Scilit:
- Isotherms of argon between 0°c and 150°c and pressures up to 2900 atmospheresPublished by Elsevier ,2004
- Compression of solidified gases to 20,000 kg/cm2 at low temperaturePublished by Elsevier ,2002
- Metallic Hydrogen: Simulating Jupiter in the LaboratoryScience, 1973
- Molar volume of argon along the melting curve up to 10 kbarPhysics Letters A, 1973
- Speed of Sound in Pure WaterThe Journal of the Acoustical Society of America, 1972
- PVT Properties of Water and MercuryThe Journal of Chemical Physics, 1971
- A Simple and Dependable Electrical Feedthrough for High PressuresReview of Scientific Instruments, 1970
- Acoustic Isotherms for Nitrogen, Argon, and KryptonThe Journal of Chemical Physics, 1963
- Compression Isotherms of Argon, Krypton, and Xenon Through the Freezing Zone.Journal of Chemical & Engineering Data, 1962
- The Melting Curves and Compressibilities of Nitrogen and ArgonProceedings of the American Academy of Arts and Sciences, 1935