SHP-Capability Advancement

ORAL · Q06 · ID: 1458288





Presentations

  • Large volume press program at 16-BM-B: experimentally linking atomic structure and macroscopic properties at high pressures and temperatures

    ORAL

    Presenters

    • Rostislav Hrubiak

      Argonne National Laboratory

    Authors

    • Rostislav Hrubiak

      Argonne National Laboratory

    • Guoyin Shen

      Argonne National Laboratory

    • Curtis Kenney-Benson

      Argonne National Laboratory

    • Eric Rod

      Argonne National Lab

    • Changyong Parks

      Argonne National Laboratory, HPCAT, X-ray Science Division, Argonne National Laboratory, Argonne, Illinois 60439, USA

    • Arun Bommannavar

      Argonne National Lab

    • Tyler Eastmond

      Argonne National Laboratory

    • Maddury Somayazulu

      Argonne National Laboratory

    • Nenad Velisavljevic

      HPCAT, X-ray Science Division, Argonne National Laboratory, Argonne, IL 60439, Argonne National Laboratory, Lawrence Livermore National Laboratory, Lawrence Livermore National Laboratory and Argonne National Laboratory, LLNL

    View abstract →

  • Implementation of a Double Stage Compression Technique to Study Structural Transformation Mechanisms in Aromatic Polymers

    ORAL

    Publication: T. Eastmond, Investigation of the Atomic-Level Response of Aromatic Polymers to High Pressure via In Situ Energy Dispersive X-ray Diffraction Experiments, Ph.D., Arizona State University, 2022.

    T. Eastmond, G. Shen, R. Hrubiak, C. Kenney-Benson, J. Oswald, P. Peralta, Exploring High-Pressure Transformations in Amorphous Aromatic Polymers with Pair Distribution Functions. (Manuscript in progress).

    Presenters

    • Tyler Eastmond

      Argonne National Laboratory

    Authors

    • Tyler Eastmond

      Argonne National Laboratory

    • Guoyin Shen

      Argonne National Laboratory

    • Rostislav Hrubiak

      Argonne National Laboratory

    • Curtis Kenney-Benson

      Argonne National Laboratory

    • Pedro Peralta

      Arizona State University

    View abstract →

  • Characterization of materials under high pressure by combined application of monochromatic and polychromatic X-ray diffraction techniques at HPCAT

    ORAL

    Publication: A. Chatterjee et all. Nanomater. 12 (9), 1514 (2022)
    Hao Chen et all. Nature Communications 13, 982 (2022)
    E. Vasilev et all. Scientific Reports, In press.

    Presenters

    • Dmitry Popov

      HPCAT, X-ray Science Division, Argonne National Laboratory, High-pressure Collaborative Access Team, X-ray Science Division, Argonne National Laboratory, Argonne, IL 60439, USA

    Authors

    • Dmitry Popov

      HPCAT, X-ray Science Division, Argonne National Laboratory, High-pressure Collaborative Access Team, X-ray Science Division, Argonne National Laboratory, Argonne, IL 60439, USA

    • Nenad Velisavljevic

      HPCAT, X-ray Science Division, Argonne National Laboratory, Argonne, IL 60439, Argonne National Laboratory, Lawrence Livermore National Laboratory, Lawrence Livermore National Laboratory and Argonne National Laboratory, LLNL

    • Maddury Somayazulu

      Argonne National Laboratory

    View abstract →

  • DAC and dynamic RDAC with rough diamonds: new tools for discovering rules of severe plastic flow, strain-induced phase transformations, and microstructure evolution

    ORAL

    Publication: 1. Lin F., Levitas V.I., Pandey K.K., Yesudhas S., Park C. Rough diamond anvils: Steady microstructure, yield surface, and transformation kinetics in Zr. August 16, 2022, 31 pp. https://doi.org/10.48550/arXiv.2208.08022.
    2. Pandey K. K. and Levitas V. I. In situ quantitative study of plastic strain-induced phase
    transformations under high pressure: Example for ultra-pure Zr. Acta Materialia, 2020, 196, 338-346.
    3. Pandey K. K. and Levitas V. I. Displacement field measurements in traditional and rotational diamond anvil cells. Journal of Applied Physics, 2021, Vol. 129, No. 11, 115901.
    4. Levitas V.I. High-Pressure Phase Transformations under Severe Plastic Deformation by Torsion in Rotational Anvils. Material Transactions, 2019, 60, 1294-1301, invited review.

    Presenters

    • Valery I Levitas

      Iowa State University

    Authors

    • Valery I Levitas

      Iowa State University

    • Feng I Lin

      Iowa State University

    • Sorb A Yesudhas

      Iowa State University

    • K.K. K Pandey

      Scientist, High Pressure & Synchrotron Radiation Physics Division, Bhabha Atomic Research Centre, Mumbai 400085, India, Bhabha Atomic Research Centre

    • Changyong Parks

      Argonne National Laboratory, HPCAT, X-ray Science Division, Argonne National Laboratory, Argonne, Illinois 60439, USA

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  • The cross-calibrated equations of state of gold and platinum measured above 4 Mbar in the toroidal diamond anvil cell

    ORAL

    Presenters

    • Claire C Zurkowski

      Lawrence Livermore National Laboratory

    Authors

    • Claire C Zurkowski

      Lawrence Livermore National Laboratory

    • Earl F O'Bannon

      Lawrence Livermore Natl Lab

    • Stella Chariton

      University of Chicago

    • Vitali Prakapenka

      University of Chicago

    • Zsolt Jenei

      Lawrence Livermore Natl Lab, Lawrence Livermore National Laboratory

    • Yingwei Fei

      Carnegie Inst of Washington

    View abstract →