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Computational simulation of cold spray process assisted by electrostatic force
Authors:Hidemasa Takana  Kazuhiro Ogawa  Hideya Nishiyama
Affiliation:a Institute of Fluid Science, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai 980-8577, Japan
b Fracture and Reliability Research Institute, Tohoku University, Aoba 01, Aramaki, Aoba-ku Sendai 980-8579, Japan
Abstract:The integrated model of compressible thermofluid, splat formation and coating formation for the cold spray process has been established. In-flight behavior of nano-micro particles and the interaction between the shock wave and the particles in a supersonic jet flow impinging onto the substrate and further effect of electrostatic force on the particle acceleration are clarified in detail by carrying out a real-time computational simulation. The optimal particle diameters for an impinging particle velocity exceeding critical velocity exist. Particles with the diameter of submicron interact with shock wave and particles are decelerated prior to the impact. However, the particles can be accelerated considerably by utilizing electrostatic forces even in the presence of unavoidable shock waves. Finally, based on the integrated model, the coating thickness in an electrostatic assisted cold spray process is evaluated.
Keywords:Cold spray process  Nano/micro particle  Electrostatic force  Shock wave
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