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Time-resolved x-ray diffraction techniques for bulk polycrystalline materials under dynamic loading

机译:动态载荷下大体积多晶材料的时间分辨X射线衍射技术

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摘要

We have developed two techniques for time-resolved x-ray diffraction from bulk polycrystalline materials during dynamic loading. In the first technique, we synchronize a fast detector with loading of samples at strain rates of ∼103–104 s−1 in a compression Kolsky bar (split Hopkinson pressure bar) apparatus to obtain in situ diffraction patterns with exposures as short as 70 ns. This approach employs moderate x-ray energies (10–20 keV) and is well suited to weakly absorbing materials such as magnesium alloys. The second technique is useful for more strongly absorbing materials, and uses high-energy x-rays (86 keV) and a fast shutter synchronized with the Kolsky bar to produce short (∼40 μs) pulses timed with the arrival of the strain pulse at the specimen, recording the diffraction pattern on a large-format amorphous silicon detector. For both techniques we present sample data demonstrating the ability of these techniques to characterize elastic strains and polycrystalline texture as a function of time during high-rate deformation.
机译:我们已经开发了两种技术,可以在动态加载过程中从散装多晶材料中进行时间分辨X射线衍射。在第一种技术中,我们将快速检测器与样品加载速率同步为大约10 3 –10 4 s -1 压缩Kolsky棒(分裂霍普金森压力棒)设备获得曝光时间短至70 ns的原位衍射图。这种方法使用适度的X射线能量(10–20 keV),非常适合吸收弱的材料,例如镁合金。第二种技术对吸收更强的材料很有用,它使用高能X射线(86 keV)和与Kolsky条同步的快速快门来产生短的(〜40μμs)脉冲,该脉冲随应变脉冲的到达时间而定。样品,在大型非晶硅检测器上记录衍射图样。对于这两种技术,我们都提供了样本数据,这些数据证明了这些技术在高速变形过程中表征弹性应变和多晶织构随时间变化的能力。

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