The designs of modern vehicles and aviation can be traced to a constant increase in the range of parts that have complexly shaped free-form surfaces. Production of such quality parts requires new methods of automated mechanical engineering and particularly program operated multi-purpose five-coordinate machine processing. The paper is dedicated to dynamical modelling of surface treatment of materials by spherical cylindrical milling cutter. The simulation results are the basis for the formation of optimal conditions for machining free-form surfaces and determining combinations of tilt and advance angles and their optimization for positioning the tool for end milling of surfaces on five-axis CNC machines.
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