X-ray Imaging of Stress and Strain of Diamond, Iron, and Tungsten at Megabar Pressures

Author:

Hemley Russell J.123,Mao Ho-kwang123,Shen Guoyin123,Badro James123,Gillet Philippe123,Hanfland Michael123,Häusermann Daniel123

Affiliation:

1. R. J. Hemley, H.-k. Mao, G. Shen, Geophysical Laboratory and Center for High Pressure Research, Carnegie Institution of Washington, 5251 Broad Branch Road, NW, Washington, DC 20015, USA.

2. J. Badro and P. Gillet, Laboratoire de Sciences de la Terre (UMR 5570), Ecole Normale Supérieure de Lyon, 46 Allée d’Italie F-69364 Lyon Cedex 07, France.

3. M. Hanfland and D. Häusermann, European Synchrotron Radiation Facility, BP 220, 38043 Grenoble, France.

Abstract

Synchrotron x-ray imaging and stress measurements of diamond-anvil cell gaskets revealed large elastic strains at the diamond tip at a pressure of 300 gigapascals. The diamond, generally considered a rigid body, bent 16 degrees over a distance of 300 micrometers without failure. To complement these measurements, a technique was developed that permits x-ray diffraction to be measured through a beryllium gasket. Measurements on tungsten and iron revealed the strain anisotropy, deviatoric stress, and texture and showed that the yield strengths of these materials increase by up to two orders of magnitude at confining pressures of 200 to 300 gigapascals. The results allow identification of the maximum amount of strain accommodated by the anvil tips before failure. Further development of ultrahigh pressure techniques requires relieving stress concentrations associated with this large elastic deformation.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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