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Finite element analysis and experiment on high pressure apparatus with split cylinder
Authors:Liang Zhao  Yunfei Yang  Bolong Wang  Yi Li
Institution:1. Dieless Forming Technology Center, Jilin University, Changchun, People’s Republic of China;2. ChangGuang Satellite Technology Co., Ltd, Chang Chun, People’s Republic of China;3. School of Agricultural Engineering and Food Science, Shan Dong University of Technology, Zibo, People’s Republic of China
Abstract:Ultra-high pressure belt-type die was designed with a large sample volume prism cavity and a split cylinder which was divided into eight segments to eliminate circumferential stress. The cylinder of this type die has no cambered surface on inner wall, and the inner hole is a hexagonal prism-type cavity. The divided bodies squeeze with each other, providing the massive support and lateral support effect of the cylinder. Simulation results indicate that the split cylinder with the prism cavity possesses much smaller stress and more uniform stress distribution. The split cylinder with the prism cavity has been shown to bear larger compressive stresses in radial, circumferential and axial directions due to its structure, and tungsten carbide is most effective in pure compression so this type cylinder could bear higher pressure. Experimental results prove that the high pressure apparatus with a prism-type cavity could bear higher pressure. The apparatus with a prism cavity could bear 52.2% more pressure than the belt-type die.
Keywords:Prism-type cavity  high pressure apparatus  synthesis diamond  FEM
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