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The experimental data of machining time are given in Table 3.
The approaches to select the optimal decomposition values (tool diameters, surface slopes) that minimize machining time are presented.
As shown in the simulation, the contour error, curvature of tool path, feedrate fluctuation and machining time are reduced compared with G2 transition scheme.
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The machining time was determined using stopwatch.
So, a CNC turning centre which has less machining time is more beneficial for a manufacturing organization.
The machining time was included as input parameter together with cutting speed, feed and depth of cut.
In particular, there was no increase in undercutting when the applied voltage and machining time were increased.
The machining time is assumed, by hypothesis, to be proportional to the paths length crossed by the tool on the surface.
Furthermore, it is revealed that the allocated fund is greatly associated with cost of the CNC turning centre; whereas, machining time is strongly related to spindle speed, and rapid traverse in X- and Z-axes.
The estimation of NC machining time is of importance because it provides manufacturing engineers with information to accurately predict the productivity of an NC machine, as well as its production schedule.
In Part 2, a method for the estimation of machining times is presented together with results from testing the methods using real components.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com