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A new method was presented to constrain deformation and oscillations of liquid metal free surface by using a high frequency magnetic field.A magnetic field generator was designed to investigate its feasibility using numerical simulation and physical simulation.The results indicate the feasibility of controlling bulge deformation of liquid metal surface using magnetic pressure.Sunken deformation with a slight fluctuation occurs on the surface when magnetic pressure acts on the static liquid metal surface.The largest amplitude remains within±0.8mm even if current reaches 1 400 A.In case of the bump-type deformation,the magnetic pressure strengthens gravity field by the superposition effect,dissipates the kinetic energy of metal flow impacting on free surface in advance,reduces the velocity of free surface,and decreases the bulge height.On the region without magnetic field,the liquid metal surface rises and tends to be flat because of the significant damping effect on surface fluctuation.The constraint strength of the magnetic pressure increases with the augment of current intensity.However,different heights of bulge deformation should have a corresponding reasonable coil current for achieving the best constraint effect.
A new method was presented to constrain deformation and oscillations of liquid metal free surface by using a high frequency magnetic field. A magnetic field generator was designed to investigate its feasibility using numerical simulation and physical simulation. The results indicate that the feasibility of controlling bulge deformation of liquid metal surface using magnetic pressure. Suken deformation with a slight fluctuation occurs on the surface when magnetic pressure acts on the static liquid metal surface. largest share remains within ± 0.8mm even if current reaches 1 400 A. In case of the bump- type deformation, the magnetic pressure strengthens the gravity field by the superposition effect, dissipates the kinetic energy of metal flow impacting on free surface in advance, reduces the velocity of free surface, and decreases the bulge height. On the region without magnetic field, the liquid metal surface rises and tends to be flat because of the significant damping effect on surface fluctuation The constraint strength of the magnetic pressure increases with the augment of current intensity. However, different heights of bulge deformation should have a corresponding reasonable coil current for achieving the best constraint effect.