Rhombus hinge chute type orthogonal drive piezoelectric stick-slip linear motor and its compound excitation method
A linear motor, drive type technology, applied in piezoelectric/electrostrictive or magnetostrictive motors, electrical components, generators/motors, etc., can solve the problem of zigzag-like uneven motion output and deteriorate the output performance of the drive , limited mechanical output characteristics, etc., to achieve the effect of improving mechanical output characteristics, output efficiency, and output force
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specific Embodiment approach 1
[0021] Specific implementation mode one: combine Figure 1~Figure 9 This embodiment will be described. This embodiment provides a specific implementation of a rhombus hinge chute type orthogonal drive piezoelectric stick-slip linear motor. The rhombus hinge chute type orthogonal drive piezoelectric stick-slip linear motor is composed of a preload adjusting device 1 , a stator 2 and a mover 3 .
[0022]The preload adjusting device 1 is composed of a fixed support 1-1, an object stage 1-2 and a preload mechanism 1-3. The fixed support 1-1 is provided with a fixed guide rail installation hole 1-1-1 and a fixed guide rail installation plane 1-1-8 for installing the mover 3; the bottom of the fixed support 1-1 is provided with an installation threaded hole 1-1-2, the fixing of the fixed support 1-1 and the peripheral device can be realized through threaded connection; the fixed support 1-1 is provided with a rolling frame 1-1-4, which is used for the mounting of the stage 1-2 Sl...
specific Embodiment approach 2
[0025] Specific implementation mode two: combination Figure 10 This embodiment will be described. This embodiment provides a specific embodiment of a compound excitation method for a rhombus hinge chute type orthogonal drive piezoelectric stick-slip linear motor. The composite excitation method of the diamond hinge chute type orthogonal drive piezoelectric stick-slip linear motor is as follows.
[0026] The composite excitation electrical signal used in the composite excitation method is compounded and superimposed on the driving wave in the rapid deformation stage of the stator by the friction control wave. The friction control wave is a sine wave, and the driving wave is a sawtooth wave. Among them, the period of the sawtooth driving wave is T 1 , the excitation voltage amplitude is V 1 , the symmetry is D; the period of the micro-amplitude friction sinusoidal control wave is T 2 , the excitation voltage amplitude is V 2 . T 1 / T 2 =10~100000, the excitation voltag...
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