Shock compression of aluminum, copper, and tantalum

Ударная компрессия алюминия, меди и тантала
W. J. Nellis, A. C. Mitchell
1981-05-01

Hugoniot curvesaluminum (Alloy 11000)copper (oxygen-free high-conductivity)equation-of-state standardsshock compressionshock velocity measurementshock-impedance matchingtantalumtwo-stage light-gas gun
Hugoniot curves for Al (alloy 11000), Cu (type oxygen-free high-conductivity), and Ta have been measured in the shock pressure range 30–430 GPa (0.3–4.3 Mbar) with a two-stage light-gas gun. Impactor velocities were measured to 0.1% by flash radiography. Shock velocities were measured to 0.5–1.2% with an electronic detection system with subnanosecond time resolution. Our data and those of other workers were fitted to a linear relation between shock and mass velocities. The fractional standard deviations of the data from the fits range from 0.6 to 0.9% for the three metals. Methods of data analysis and error analysis for individual data points and for the least-squares fitting to the data sets are presented. Bands of uncertainty about the fits, arising from experimental uncertainties in the data, are presented and are used to calculate the systematic error introduced by the method of shock-impedance matching. The accuracy of the data and of the fits qualifies these metals as equation-of-state standards for shock-wave experiments.
1
Calculated systematic errors introduced by the shock-impedance matching method using the uncertainty bands, supporting the accuracy of the data and fits.
2
Conclude that the accuracy of these measurements and fits qualifies Al, Cu, and Ta as equation-of-state standards for shock-wave experiments.
3
Data for each metal and other workers' data fit well to a linear relation between shock and particle (mass) velocities with fractional standard deviations of 0.6–0.9%.
4
Impactor velocities were measured to 0.1% precision by flash radiography; shock velocities measured to 0.5–1.2% using subnanosecond-resolution electronic detection.
5
Measured Hugoniot curves for Al (alloy 11000), Cu (oxygen-free high-conductivity), and Ta in the shock pressure range 30–430 GPa using a two-stage light-gas gun.
6
Presented methods for data analysis and error analysis for individual points and for least-squares fitting, and quantified bands of uncertainty about the fits from experimental errors.

Aluminum (alloy 11000), copper (oxygen-free high-conductivity), and tantalum subjected to shock compression (Hugoniot measurements)

Measured Hugoniot (shock) behavior including shock and particle (mass) velocity relations, fitted linear shock–particle velocity relation, experimental uncertainties, error analysis, and suitability as equation-of-state standards over 30–430 GPa

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1981-05-01
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W. J. Nellis
A. C. Mitchell
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