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Measurement and analysis of nonhydrostatic lattice strain component in niobium to 145 GPa under various fluid pressure-transmitting media

机译:多种传压介质中铌在145 GPa下非静力学晶格应变分量的测量与分析

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摘要

The d spacings in niobium have been measured to 145 GPa with a diamond anvil cell using a fluid13; pressure-transmitting medium methanolx2013;ethanolx2013;water MEW mixture, or helium. The13; conventional geometry, wherein the primary x-ray beam passes parallel to the load axis with image13; plate, has been used to record the diffraction patterns. The analysis of the d spacings using the lattice13; strain equations indicates the presence of nonhydrostatic stress component with both MEW and He13; pressure-transmitting media in the pressure ranges that are well below the freezing pressure of the13; pressure-transmitting medium. A method to correct the measured d spacings for the nonhydrostatic13; pressure effect is suggested. This study clearly emphasizes the need to carefully analyze the data for13; the nonhydrostatic compression effects even if the experiments are performed with fluid13; pressure-transmitting medium.
机译:使用流体的金刚石砧盒测量了铌中的d间距为145 GPa。压力传递介质甲醇x2013;乙醇x2013;水MEW混合物或氦气。 The13;常规几何形状,其中主X射线束平行于带有图像的负载轴13;板,已被用来记录衍射图样。使用点阵分析d间距13;应变方程表明在MEW和He13中都存在非静水应力分量。压力传输介质的压力范围要远低于冰点的冷冻压力;压力传递介质。一种校正非静水压力测量d间距的方法;建议施加压力作用。这项研究明确强调需要仔细分析13的数据;即使使用流体进行实验,也不会产生静水压缩效应13;压力传递介质。

著录项

  • 作者

    Singh AK; Takemura Kenichi;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-31 14:42:38

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