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NUMERICAL SIMULATION OF ATOMIZATION GAS FIELDS IN VARIOUS ATOMIZING PROCESSES 被引量:3

NUMERICAL SIMULATION OF ATOMIZATION GAS FIELDS IN VARIOUS ATOMIZING PROCESSES
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摘要 A Computational Fluid Dynamics Software was used to calculate the atomizing gas fields generated by a self-designed atomizer and to analyze the effects of key atomizing variables such as gas pressure and protrusion length of delivery tube on the gas flow state at the tip of or inside the delivery tube. Increasing the length of delivery tube to a certain extent, the eddy flow region with positive pressure moves away from the tip of delivery tube, which is favorable to achieve the effective atomization of the melt. A Computational Fluid Dynamics Software was used to calculate the atomizing gas fields generated by a self-designed atomizer and to analyze the effects of key atomizing variables such as gas pressure and protrusion length of delivery tube on the gas flow state at the tip of or inside the delivery tube. Increasing the length of delivery tube to a certain extent, the eddy flow region with positive pressure moves away from the tip of delivery tube, which is favorable to achieve the effective atomization of the melt.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2002年第3期279-284,共6页 金属学报(英文版)
关键词 ATOMIZATION computational fluid dynamics numerical simulation powder metallurgy atomization, computational fluid dynamics, numerical simulation, powder metallurgy
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参考文献5

  • 1[1]A.J. Yule and J.J. Dunkley, Atomization of Melts (Clarendon Press, Oxford, 1994) p.238.
  • 2[2]P.S. Grant, Progress in Materials Science 39 (1995) 497.
  • 3[3]Z.F. Lin, Gas Dynamics (Publishing Company of Beijing Aviation-Aerospace University, Beijing, 1987)p.231 (in Chinese).
  • 4[4]H. Ding, M.K. Chyu and S.J. Pien, National Heat Transfer Conference 1 (1996) 95.
  • 5[5]H. Liu, Journal of Materials Synthesis and Processing 5(1) (1997) 11.

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