Wedge preloading mechanism and preloading method of a stacked piezoelectric ceramic driver
A technology of piezoelectric ceramics and pre-tightening mechanism, which is applied in the direction of instruments, installation, optics, etc., can solve the problems that the degree of pre-tightening cannot be adjusted continuously, the overall stress distribution of the platform is affected, and the platform exceeds the maximum stroke, etc., so as to achieve adjustment and maintenance Simple, easy to control the adjustment amount, the effect of reducing the volume
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Embodiment 1
[0040] Such as Figure 1-8 As shown, a wedge pretensioning mechanism of a stacked piezoelectric ceramic driver includes a platform 1, a stacked piezoelectric ceramic driver 2, a driven wedge 3, a base 4, a threaded adjustment rod 5, and an active wedge 6. Push-pull block 7, conical pin 8 and extension spring 9; figure 1 As shown, there is a groove 10 on the platform 1, and the stacked piezoelectric ceramic driver 2, the driven wedge 3 and the base 4 are arranged in the groove 10, and the side wall of the groove 10 is in contact with the stacked piezoelectric ceramic driver. The output ends of 2 are connected, and one side of the base 4 is connected with the other side wall of the groove 10; as Figure 1-3 and Figure 5 As shown, the base 4 has a receiving groove 11, the receiving groove 11 has an opening on the side wall of the base 4, and the driven wedge 3 is slidably connected in the opening, specifically, the gap between the driven wedge 3 and the opening is For clearan...
Embodiment 2
[0051] A pre-tightening method for a stacked piezoelectric ceramic driver, using the wedge pre-tightening mechanism of the stacked piezoelectric ceramic driver described in Embodiment 1 for pre-tightening, and adjusting the threaded adjustment rod to make the active wedge Moving downwards, pushing the driven wedge contacting its slope to pre-tighten the stacked piezoceramic driver.
[0052] Increasing or decreasing the preload is controlled by the following formula:
[0053]
[0054] In the formula, l represents the increased or decreased preload; Indicates the rotation angle of the threaded adjustment rod; n represents the thread number of the threaded adjustment rod; P represents the pitch of the threaded adjustment rod; θ represents the slope angle of the driving wedge or the driven wedge.
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