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Numerical simulation of tube profile growth during spray forming process

Numerical simulation of tube profile growth during spray forming process
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摘要 Spray forming is a new type of metal material forming process,which can produce metal blanks such as billet, tube,plate etc. A mathematical model has been developed to forecast the shape evolution of tube billets during the spray forming process. The atomizer mass flux as ,radial distribution coefficient bs, draw velocity and diameter of mandrel were considered in this model and the influence of different parameters such as metal flowrate, draw velocity of mandrel, diameter of mandrel on the tube' s shape change were simulated and analyzed in this paper. The simulation results obtained from this model can be provided to engineers as reference. Spray forming is a new type of metal material forming process,which can produce metal blanks such as billet, tube,plate etc. A mathematical model has been developed to forecast the shape evolution of tube billets during the spray forming process. The atomizer mass flux as ,radial distribution coefficient bs, draw velocity and diameter of mandrel were considered in this model and the influence of different parameters such as metal flowrate, draw velocity of mandrel, diameter of mandrel on the tube' s shape change were simulated and analyzed in this paper. The simulation results obtained from this model can be provided to engineers as reference.
出处 《Baosteel Technical Research》 CAS 2011年第3期15-19,共5页 宝钢技术研究(英文版)
关键词 spray forming MANDREL tube billet simulation spray forming mandrel tube billet simulation
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参考文献5

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  • 2Leatham A G and Lawley A.The Osprey process principles and applications[J].International Journal of Powder Metallurgy,1993,29(4):321-329.
  • 3Lawley A.Melt atomization and spray deposition-quo vadis[C] //Spray Deposition and Melt Atomization SDMA 2000.German:University o Bremen,2000:3-16.
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  • 5Grant P S,Cantor B and Katgerman L.Modelling of droplet dynamic and thermal histories during spray forming.I.Individual droplet behaviour[J].Acta Metallurgica et Materialia,1993,41(11):3097-3108.

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