Off-Hugoniot mechanical response of metal standards at the Z machine
ORAL
Abstract
Static and dynamic compression experiments have historically used simple metals as standards; examples include Au and Pt in diamond-anvil cell work, Al and Cu electrodes in magnetically-driven experiments, and, more recently, Pt and Ir pushers in shock-ramp experiments at Sandia’s Z machine. These materials’ mechanical equations of state at low temperature have traditionally been deduced from shock Hugoniot measurements, a procedure that has limited accuracy at pressures > 100 GPa due to shock melting. To validate existing models, and stimulate the creation of new models, we have begun a systematic study at the Z machine of metal standards under far off-Hugoniot dynamic compression loading using shockless and shock-ramp techniques to peak stresses > 300 GPa, including measurements of strength under release from shocklessly-compressed states. After a brief introduction to the experimental approach, results and comparison to models will be presented for two or more metals.
*Sandia National Laboratories is a multimission laboratory managed and operated by National Technology and Engineering Solutions of Sandia LLC, a wholly owned subsidiary of Honeywell International Inc. for the U.S. Department of Energy’s National Nuclear Security Administration under contract DE-NA0003525
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Presenters
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Jean-Paul Davis
- Sandia National Laboratories