Sentence examples for tool feed direction from inspiring English sources

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Cutting tool feed direction and the radius of curvature ρ along the workpiece surface is shown in Fig. 7a.

The orthogonal cutting of unidirectional fibre composite is classified into three cases based on the relation between the tool feed direction and the fibre orientation, all these cases are taken into account to validate the proposed model.

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In this work, however, the wavelet analysis method was introduced to decompose and reconstruct the sampled surface profile signals in the cutting direction that achieved by SPDT (single point diamond turning) operation, and the surface profile signals in tool feeding direction were reconstructed with the approximate harmonic functions directly.

And moreover, the orthogonal design method, i.e. the combination design of general rotary method, was resorted to model the variations of the independent frequency and amplitude of different simulated harmonic signals in the cutting and tool feeding directions.

If A d is the nominal cutting depth, then the uncompensated machining error changes the actual cutting depth of the nominal cutting tool position point into A d -δ and sets the deformation of the cutting tool in the radial feed direction which is ey and the nominal cutting width which is R d, so then the actual cutting width becomes R d -ey.

Where c is the nominal contact point, N is the normal of the nominal workpiece surface at contact point c, φ is the angle between cutting tool axis and N, and f is the feed direction of the cutting tool.

The calculation method directly designs the material removal sequence, feed direction and tool orientation taking the varying static stiffness of the workpiece and cutting force vectors into account.

The peak values and the direction angles of cutting forces changed with tool feed rate, crystal orientation, and the cutting direction.

It was found that brittle fracture occurred preferentially at one side (the exit side of tool feed) of the lens dimples when cutting direction is along <110> and tool feed rate is high.

To generate continuous feed motion along sharp cornered tool-paths, most NC systems smooth corners locally using a pre-specified curve or a spline and slow down to be able to change the feed direction within machine kinematic limits.

To get an optimal feed direction at all points of surface, this study concerns machining with zones of the free-form surfaces on a 3-axis machine tool.

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