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用于实现更高压力和更大样品腔的锥形立方砧的设计与性能

Design and performance of tapered cubic anvil used for achieving higher pressure and larger sample cell.

作者信息

Han Qi-Gang, Yang Wen-Ke, Zhu Pin-Wen, Ban Qing-Chu, Yan Ni, Zhang Qiang

机构信息

Roll-forging Research Institute, Nanling Campus, Jilin University, No. 5988 Renmin Street, Changchun, 130022, People's Republic of China.

出版信息

Rev Sci Instrum. 2013 Jul;84(7):073902. doi: 10.1063/1.4812351.

Abstract

In order to increase the maximum cell pressure of the cubic high pressure apparatus, we have developed a new structure of tungsten carbide cubic anvil (tapered cubic anvil), based on the principle of massive support and lateral support. Our results indicated that the tapered cubic anvil has some advantages. First, tapered cubic anvil can push the transfer rate of pressure well into the range above 36.37% compare to the conventional anvil. Second, the rate of failure crack decreases about 11.20% after the modification of the conventional anvil. Third, the limit of static high-pressure in the sample cell can be extended to 13 GPa, which can increase the maximum cell pressure about 73.3% than that of the conventional anvil. Fourth, the volume of sample cell compressed by tapered cubic anvils can be achieved to 14.13 mm(3) (3 mm diameter × 2 mm long), which is three and six orders of magnitude larger than that of double-stage apparatus and diamond anvil cell, respectively. This work represents a relatively simple method for achieving higher pressures and larger sample cell.

摘要

为了提高立方高压装置的最大腔体压力,我们基于整体支撑和侧向支撑原理,开发了一种新型结构的碳化钨立方砧(锥形立方砧)。我们的结果表明,锥形立方砧具有一些优势。首先,与传统砧相比,锥形立方砧能将压力传递率很好地提升至36.37%以上。其次,对传统砧进行改进后,失效裂纹率降低了约11.20%。第三,样品腔中的静态高压极限可扩展至13 GPa,比传统砧的最大腔体压力提高了约73.3%。第四,锥形立方砧压缩后的样品腔体积可达14.13 mm³(直径3 mm×长2 mm),分别比双级装置和金刚石砧腔大三个数量级和六个数量级。这项工作代表了一种实现更高压力和更大样品腔的相对简单的方法。

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