

According to practice, the basic parameters of the groove and wheel geometries are introduced, and the problems studied in this paper are explained.

Therefore, we introduce an intelligent method to search for the optimum wheel position for the designed groove with the known wheel geometry. However, as multivariable, nonlinear and multiple target problems, it is difficult to obtain the desired wheel position. Along with the increasing requirements of product categories and quality, a large number of non-traditional and customized grooves continuously appear. Searching for and adjusting to the appropriate wheel positions for designed grooves are among the key issues in the manufacturing of the end mill, drill and other integral cutting tools.
