Abstract
In order to investigate the material corrosion by liquid droplet-solid impact, a nonlinear coupling wave model adopted to analyze the impact between the spherical liquid droplet and an elastic solid plane has been developed. Many usable results such as the dimensionless pressure in the contact plane of liquid-solid and inside the liquid droplet, the equivalent stress distribution inside the solid, the effect of solid elasticity on the impact, and the locations of the maximum equivalent stress in different time steps are presented. It is shown clearly that the model can analyze the impact accurately and provide detailed information of impact, they are usable data to study material corrosion.
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