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Carbon phase transformations under electrodynamic compression
Authors:Makarevich  I. P.  Rakhel  A. D.  Rumyantsev  B. V.  Fridman  B. É.
Affiliation:(1) Institute of Electrophysical Problems, Russian Academy of Sciences, Dvortsovaya nab. 18, St. Petersburg, 191186, Russia;(2) Institute for High-Density Energy of the Associated Institute for High Temperatures, Russian Academy of Sciences, ul. Izhorskaya 13/19, Moscow, 125412, Russia;(3) Ioffe Physicotechnical Institute, Russian Academy of Sciences, Politekhnicheskaya ul. 26, St. Petersburg, 194021, Russia
Abstract:

The graphite-diamond phase transition under shock-wave-induced electrodynamic compression has been studied. A sample of a carbon-containing material was loaded by axisymmetric collapse of a copper liner. The liner was acted upon by ponderomotive forces generated by pulsed electric currents with amplitudes of 2–4 MA. The collapse of the cylindrical copper liner with a velocity of ~1 km/s produced stepped loading of the carbon material in an ampoule from 5 to 40 GPa over 4 µs. Purification of the preserved material yielded agglomerates containing polycrystalline diamond. The average size of diamond polycrystals in the agglomerates is 1–2 µm, and the agglomerate yield is ~3%.

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