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Pressure Self-focusing Effect and Novel Methods for Increasing the Maximum Pressure in Traditional and Rotational Diamond Anvil Cells

机译:压力自聚焦效应和新型方法,用于增加传统和旋转金刚石砧座细胞的最大压力

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摘要

The main principles of producing a region near the center of a sample, compressed in a diamond anvil cell (DAC), with a very high pressure gradient and, consequently, with high pressure are predicted theoretically. The revealed phenomenon of generating extremely high pressure gradient is called the pressure self-focusing effect. Initial analytical predictions utilized generalization of a simplified equilibrium equation. Then, the results are refined using our recent advanced model for elastoplastic material under high pressures in finite element method (FEM) simulations. The main points in producing the pressure self-focusing effect are to use beveled anvils and reach a very thin sample thickness at the center. We find that the superposition of torsion in a rotational DAC (RDAC) offers drastic enhancement of the pressure self-focusing effect and allows one to reach the same pressure under a much lower force and deformation of anvils.
机译:在理论上预测,在金刚石砧座(DAC)中压缩在金刚石砧座(DAC)中压缩的区域附近的主要原理。产生极高的压力梯度的揭示现象称为压力自聚焦效果。初步分析预测利用简化平衡方程的概括。然后,通过在有限元方法(FEM)模拟中的高压下,使用我们最近的Elastoplastic材料的先进模型来改进结果。产生压力自聚焦效果的要点是使用斜面的砧座并在中心达到非常薄的样品厚度。我们发现旋转DAC(RDAC)中扭转的叠加提供了压力自聚焦效果的急剧增强,并且允许一个达到相同的压力,并在低得多的砧座的变形下达到相同的压力。

著录项

  • 作者

    Biao Feng; Valery I. Levitas;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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