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用于时间分辨径向X射线衍射的新型动态金刚石对顶砧池

New dynamic diamond anvil cell for time-resolved radial x-ray diffraction.

作者信息

Huston L Q, Miyagi L, Husband R J, Glazyrin K, Kiessner C, Wendt M, Liermann H P, Sturtevant B T

机构信息

Dynamic Experiments Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

Department of Geology and Geophysics, University of Utah, Salt Lake City, Utah 84112, USA.

出版信息

Rev Sci Instrum. 2024 Apr 1;95(4). doi: 10.1063/5.0179799.

Abstract

The dynamic diamond anvil cell (dDAC) is a recently developed experimental platform that has shown promise for studying the behavior of materials at strain rates ranging from intermediate to quasi-static and shock compression regimes. Combining dDAC with time-resolved x-ray diffraction (XRD) in the radial geometry (i.e., with incident x-rays perpendicular to the axis of compression) enables the study of material properties such as strength, texture evolution, and deformation mechanisms. This work describes a radial XRD dDAC setup at beamline P02.2 (Extreme Conditions Beamline) at DESY's PETRA III synchrotron. Time-resolved radial XRD data are collected for titanium, zirconium, and zircon samples, demonstrating the ability to study the strength and texture of materials at compression rates above 300 GPa/s. In addition, the simultaneous optical imaging of the DAC sample chamber is demonstrated. The ability to conduct simultaneous radial XRD and optical imaging provides the opportunity to characterize plastic strain and deviatoric strain rates in the DAC at intermediate rates, exploring the strength and deformation mechanisms of materials in this regime.

摘要

动态金刚石对顶砧装置(dDAC)是最近开发的一个实验平台,已显示出在研究材料在从中间应变率到准静态以及冲击压缩状态下的行为方面具有潜力。将dDAC与径向几何结构中的时间分辨X射线衍射(XRD)(即入射X射线垂直于压缩轴)相结合,能够研究诸如强度、织构演变和变形机制等材料特性。这项工作描述了在德国电子同步加速器研究所(DESY)的佩特拉III型同步加速器的P02.2光束线(极端条件光束线)上的径向XRD dDAC装置。对钛、锆和锆样品收集了时间分辨径向XRD数据,证明了在高于300 GPa/s的压缩速率下研究材料强度和织构的能力。此外,还展示了对DAC样品腔的同步光学成像。进行同步径向XRD和光学成像的能力为在中间速率下表征DAC中的塑性应变和偏应变率提供了机会,从而探索该状态下材料的强度和变形机制。

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