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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Inherent issues regarding the use of in situ x-ray diffraction measurements to determine temperature in shock-compressed metals
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Inherent issues regarding the use of in situ x-ray diffraction measurements to determine temperature in shock-compressed metals

机译:关于使用原位X射线衍射测量来确定冲击压缩金属温度的固有问题

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摘要

Temperature determination in shock-compressed solids constitutes an important and long-standing scientific need. Since the reduction of Bragg diffracted peaks due to temperature increase, using the Debye-Waller factor, is well established, we examined the use of this approach to determine temperatures in shock-compressed gold and platinum by representing the shocked state as a superposition of density and temperature changes. Comparison of the calculated and measured diffraction peaks did not show good agreement, because x-ray diffraction (XRD) profiles in the shock-compressed state are not governed solely by density and temperature changes. XRD results are also influenced measurably by shock wave induced microstructural changes. Our results demonstrate that contributions from microstructural changes need to be incorporated and modeled in the theoretical analysis to use XRD measurements for reliable temperature determination in shock-compressed solids.
机译:冲击压缩固体中的温度测定构成了重要和长期的科学需求。 由于使用Deyby-Waller因子,使用Debye-Waller因子来减少Bragg衍射峰,我们已经确定了这种方法,通过表示震动状态作为密度的叠加来确定冲击压缩金和铂的温度 和温度变化。 计算和测量的衍射峰的比较没有显示出良好的一致性,因为冲击压缩状态中的X射线衍射(XRD)曲线不仅仅通过密度和温度变化来控制。 通过冲击波诱导的微观结构变化,XRD结果也可测量。 我们的结果表明,在理论分析中需要在理论分析中掺入和建模的微观变化的贡献,以便在冲击压缩固体中使用XRD测量来进行可靠的温度测定。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第6期|064113.1-064113.8|共8页
  • 作者单位

    Institute for Shock Physics Washington State University Pullman Washington 99164 USA;

    Institute for Shock Physics Washington State University Pullman Washington 99164 USA Department of Physics and Astronomy Washington State University Pullman Washington 99164 USA;

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