Intelligent self-adaptive vibration absorber, array integrating device and application of intelligent self-adaptive vibration absorber
A self-adaptive, shock absorber technology, applied in the direction of shock absorber, vibration suppression adjustment, shock absorber, etc., can solve the problems that cannot be solved, and can not solve the corresponding adjustment of the most frequency of the shock absorber, so as to achieve precise control and adjustment The effect of precision and high power generation efficiency
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Embodiment 1
[0078] This embodiment provides an intelligent adaptive shock absorber, such as figure 1 As shown, including: driving body, mass body and elastic beam; where:
[0079] The driving body is arranged at one end of the elastic beam;
[0080] The mass body is movably arranged on the elastic beam, and automatically reciprocates along the elastic beam under the driving force of the driving body; when the mass body moves to a position in a resonance state with the controlled object, the mass body is elastically The position on the beam is fixed automatically.
[0081] The natural frequency expression of the intelligent adaptive vibration absorber is Wherein, K is the stiffness coefficient of elastic beam, and described M is the quality of mass body;
[0082] The expression of the stiffness coefficient K of the elastic beam is: K=3EI / L 3 , where, I is the second moment of section, E is the elastic modulus, and L is the length of the cantilever beam formed by the mass body on the e...
Embodiment 2
[0094] Embodiment 2 is a variation example of embodiment 1, such as figure 1 As shown, in this embodiment, on the basis of Embodiment 1, the intelligent adaptive shock absorber further includes a terminal limit sensor device, and the terminal limit sensor device is arranged at the other end of the elastic beam.
[0095] Further, the terminal limit sensor device includes a fixed permanent magnet and an excitation coil, the fixed permanent magnet is arranged on the elastic beam, and an excitation field can be formed between the excitation coil and the fixed permanent magnet.
[0096]When the mass body and the controlled object are in the resonance state, the current intensity generated by the excitation coil is the largest, and the resonance state is self-sensed through the current intensity.
[0097] The terminal limit sensor device is arranged in the frame body.
Embodiment 3
[0099] Embodiment 3 is a variation example of embodiment 2, such as figure 1 As shown, in this embodiment, on the basis of Embodiment 2, the intelligent adaptive vibration absorber also includes a piezoelectric sensor device, and the piezoelectric sensor device includes a ferromagnet, a magnetostrictive body, a magnetizer and a piezoelectric body, The ferromagnet is arranged outside the fixed permanent magnet, a closed magnetic circuit is formed between the ferromagnetic body and the magnetoconductor, the magnetostrictive body is located in the closed magnetic circuit, and the piezoelectric body is in contact with the magnetostrictive body , and generate electrical signals under the stretching force of the magnetostrictive body;
[0100] When the mass body and the controlled object are in a resonance state, the electric signal strength is the largest, and the resonance state is self-sensed through the electric signal strength.
[0101] The piezoelectric sensor device is arran...
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