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Optimization of Tungsten Carbide Opposite Anvils Used in the In Situ High-Pressure Loading Apparatus

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Listed:
  • Zhang Ying
  • Chen Xiping
  • Sun Guangai
  • Lu Yuping
  • Gong Jian
  • He Duanwei

Abstract

In order to optimize the structure of anvils, finite element method is used to simulate two kinds of structures, one of which has a support ring but the other one does not. According to the simulated results, it is found that the maximum value of pressure appears at the center of culet when the bevelled angle is about 20°. Comparing the results of these two kinds of structures, we find that the efficiency of pressure transformation for the structure without support ring is larger than that for the structure with support ring. Considering the effect of von Mises stress, two kinds of tungsten carbide opposite anvils have been manufactured with bevelled angle of 10°. The experimental results for these two anvils are in good agreement with the simulation.

Suggested Citation

  • Zhang Ying & Chen Xiping & Sun Guangai & Lu Yuping & Gong Jian & He Duanwei, 2014. "Optimization of Tungsten Carbide Opposite Anvils Used in the In Situ High-Pressure Loading Apparatus," Mathematical Problems in Engineering, Hindawi, vol. 2014, pages 1-5, June.
  • Handle: RePEc:hin:jnlmpe:607520
    DOI: 10.1155/2014/607520
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