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气枪加载下的同步单脉冲同步辐射X射线成像与衍射

Simultaneous, single-pulse, synchrotron x-ray imaging and diffraction under gas gun loading.

作者信息

Fan D, Huang J W, Zeng X L, Li Y, E J C, Huang J Y, Sun T, Fezzaa K, Wang Z, Luo S N

机构信息

The Peac Institute of Multiscale Sciences, Chengdu, Sichuan 610031, People's Republic of China.

Advanced Photon Source, Argonne National Laboratory, Argonne, Illinois 60439, USA.

出版信息

Rev Sci Instrum. 2016 May;87(5):053903. doi: 10.1063/1.4950869.

Abstract

We develop a mini gas gun system for simultaneous, single-pulse, x-ray diffraction and imaging under high strain-rate loading at the beamline 32-ID of the Advanced Photon Source. In order to increase the reciprocal space covered by a small-area detector, a conventional target chamber is split into two chambers: a narrowed measurement chamber and a relief chamber. The gas gun impact is synchronized with synchrotron x-ray pulses and high-speed cameras. Depending on a camera's capability, multiframe imaging and diffraction can be achieved. The proof-of-principle experiments are performed on single-crystal sapphire. The diffraction spots and images during impact are analyzed to quantify lattice deformation and fracture; fracture is dominated by splitting cracks followed by wing cracks, and diffraction peaks are broadened likely due to mosaic spread. Our results demonstrate the potential of such multiscale measurements for studying high strain-rate phenomena at dynamic extremes.

摘要

我们在先进光子源的32-ID光束线处开发了一种微型气枪系统,用于在高应变率加载下同时进行单脉冲X射线衍射和成像。为了增加小面积探测器覆盖的倒易空间,传统的靶室被分成两个腔室:一个变窄的测量腔室和一个缓冲腔室。气枪撞击与同步加速器X射线脉冲和高速相机同步。根据相机的能力,可以实现多帧成像和衍射。原理验证实验在单晶蓝宝石上进行。分析了撞击过程中的衍射斑点和图像,以量化晶格变形和断裂;断裂主要由劈裂裂纹和翼状裂纹主导,衍射峰变宽可能是由于镶嵌扩展。我们的结果证明了这种多尺度测量在研究极端动态条件下高应变率现象方面的潜力。

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