High-resolution phase contrast imaging of jet formation in shocked cerium to examine material strength
ORAL
Abstract
Understanding the dynamic properties of metals has been a long-standing scientific challenge. Experiments are needed to locate phase boundaries, to obtain equation-of-state data within those boundaries, and to examine properties such as material strength in the relevant phases. Efforts have been underway in recent years to examine the multiphase equation-of-state for cerium largely because of its complex phase diagram that exists at relatively moderate pressures and temperatures. To date, experiments have been performed to determine the Hugoniot, the shock-melt transition, and to examine the low-pressure phases through the critical point. In the current work, we present novel data that uses ultrafast, high-resolution phase contrast imaging (PCI) to examine jet-formation in cerium for impact stresses that span the alpha-phase up to the melt boundary. These experiments were performed using a recently developed capability at the 32-ID beamline of the Advanced Photon Source that couples the PCI method with an impact system to obtain real-time, spatially resolved images during dynamic compression. Experimental results will be presented and compared with recent efforts that use more traditional shock-release and double-shock loading to examine strength.
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Authors
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Brian Jensen
Los Alamos National Laboratory
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S.N. Luo
Los Alamos National Laboratory, Los Alamos National Lab
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Frank Cherne
Los Alamos National Laboratory
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Guy Dimonte
Los Alamos National Laboratory
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Guillermo Terrones
Los Alamos National Laboratory
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Daniel Hooks
Los Alamos National Laboratory
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Kyle Ramos
Los Alamos National Laboratory
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John Yeager
Los Alamos National Laboratory
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Kris Kwiatkowski
Los Alamos National Laboratory
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Tsutomu Shimada
Los Alamos National Laboratory
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Kamel Fezzaa
Argonne National Laboratory, Advanced Photon Source