Milling stability improvement method of thin-walled part based on action of prestressing force
A thin-walled, prestressed technology, applied in special data processing applications, instruments, electrical digital data processing, etc., can solve the problems of poor practicability, achieve good practicability, and improve the effect of milling stability
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[0025] refer to Figure 1-7 . The size of the thin plate selected in this embodiment is 145mm×60mm×4mm, the material is aluminum alloy 7075, the Young’s modulus is E=71Gpa, and the density is ρ=2810kg / m 3 , Poisson’s ratio is υ=0.33, the boundary condition is that two opposite sides are fixed and two opposite sides are free; the number of teeth is selected as N=4 teeth, the diameter is D=12mm, the helix angle is β=30°, and the normal front angle is α n =10°, a flat-bottomed carbide end mill with a clearance angle of γ=5°; in a three-coordinate vertical machining center, the radial depth of cut is a e =0.6mm, the feed per tooth is milled in the down milling mode of c=0.05mm / tooth.
[0026] The specific steps of the method for improving the milling stability of thin-walled parts based on the application of prestress in the present invention are as follows:
[0027] Step 1. Clamp the selected tool to the spindle of the machine tool with a fixed overhang, clamp the workpiece to...
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