Active Fluid Jet Polishing (AFJP) is used for finishing and correction of complex optical surfaces. The tool influence function is one of the important factors for correction polishing. The existing AFJP polishing pin is rotating around the eccentric axis of polishing tool. Material removal rate at contact center area is much less than the edge. In order to optimize the tool influence function, a new active fluid jet polishing process is proposed, and an innovative polishing pin with helical blade inside was designed, which could rotate around its own axis under the pressure of polishing fluid. By comparing the simulation result of tool influence function with the experiment, the feasibility of the design is verified.
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