External vibration damping and deviation rectifying system
A vibration-damping and uniform technology, applied in vibration suppression adjustment, rotational vibration suppression, spring/shock absorber, etc., can solve problems such as limitation of workpiece machining accuracy, loud noise, vibration of rotating structure, etc., to reduce damage probability and improve contact Area, the effect of reducing the size of the force
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Embodiment 1
[0029] like figure 1 As shown, an external changing correction system includes a rotating structure 2 that rotates around the axis of rotation 1, the rotating structure 2, which is provided with a changing correction system, which is made of several changing correction structures 3. composition.
[0030] Although the rotation structure in the figure is circular, the rotating structure is only an example of an example, and the specifically rotating structure can also be elliptical, rectangular or shaped, as long as it can rotate along the axis of rotation. Rotate The category is in.
[0031] The number of flavoring correction structures 3 is at least five, and the changing correction structure 3 is located on the same plane.
[0032] The number of the changing correction structure 3 is an odd number.
[0033] The changing correction structure 3 is disposed on a circle of the rotating axis 1 is a center, and the changing correction structure 3 will be divided into this circle.
[00...
Embodiment 2
[0044] like image 3 As shown, the present embodiment and the first point of the first embodiment are only in that the carrier 4 is made of a bearing body 11, through the lower end of the carrying body 11 and the threaded holes that are connected to the slide 6, and the thread matching the threaded hole. The cover 12 is composed; the upper end surface of the threaded cover 12 is a semi-circular groove having the same diameter in the middle of the chute 6.
Embodiment 3
[0046] like Figure 4-7 As shown, the difference from the present embodiment and the first embodiment is only that the carrier body 4 is matched by the lower block 7 provided with half of the chute 6, and matches the lower block 7 and has another half of the chute 6. The upper block 9 is composed; the lower block 7 is provided with a lower block fixing hole 8 that does not penetrate the block 7, and the upper block 9 is provided with the lower block fixing hole 8 and the upper block fixing hole of the block 9 is formed. 10, and the upper block 7 and the upper block 9 are fixed together by the fixed screw that extends into the block fixing hole 8 through the block fixing hole 10.
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