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Modeling of droplet dynamic and thermal behaviour during spray deposition
Authors:N. S. Mahesh  Johnson Mendonca  M. K. Muralidhara  B. K. Muralidhara  C. Ramachandra
Affiliation:(1) Department of Mechanical Engineering, M.S. Ramaiah Institute of Technology, 560 054 Bangalore, India;(2) Department of Mechanical Engineering, University Visvesvaraya College of Engineering, 560 001 Bangalore, India;(3) Department of Chemical Engineering, Fenn College of Engineering, OH 44115 Cleveland, USA
Abstract:Mathematical modeling of supersonic gas atomization for spray forming has been investigated. Influence of the droplet dynamic and thermal behaviour on the resultant microstructure has been studied. Analytical models have been constructed taking into account the higher Reynolds number owing to supersonic gas flow. The impact velocity profiles of the droplets lend credence to the evolution of equiaxed grain morphology through dendrite fragmentation. The thermal history profile along with the fraction solid plot could yield optimized standoff distance to obtain a mushy droplet. A comparison of secondary dendrite arm spacing obtained from the mathematical model showed good agreement with experimental observations.
Keywords:Supersonic atomization  droplets  thermal history  solid fraction  secondary dendrite arm spacing
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