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Numerical simulation of nano-nickel powder preparing process by DC arc thermal plasma
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College of Electrical Engineering, University of south China

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Study on the Mechanism of Increasing the Negative Ion Output of RF Ion Source by FM Resonance and Power Feed Pulse Width Modulation

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    Abstract:

    Study on vaporization process of nickel powder particles inside direct current thermal plasma can provide theoretical guidelines for improving preparation process of nickel nanopowder. In this paper, The effects of particle size, working gas flow rate and feeder rate on the nickel particle behavior in thermal plasma are investigated by coupled solution of the magnetohydrodynamic equations and particle thermodynamics equations. The research shows that small particles can be heated to complete vaporization in a shorter time owing to longer residence time in the high temperature region; Decrease of working gas flow rate and powder feeder rate can increase the energy of nickel particle get from plasma, thus Improving the quality of the final prepared nano nickel powder.

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[CHEN Wen-bo, LI Zijun, CHEN Lun-jiang, Feng Jun, Yang Pu-qiong. Numerical simulation of nano-nickel powder preparing process by DC arc thermal plasma[J]. Rare Metal Materials and Engineering,2024,53(7):1999~2005.]
DOI:10.12442/j. issn.1002-185X.20230331

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History
  • Received:May 30,2023
  • Revised:September 21,2023
  • Adopted:October 07,2023
  • Online: July 22,2024
  • Published: July 12,2024