Overhead conductor wide-frequency-domain dynamic vibration reduction device based on electromagnetic damping technology
A vibration damping device and overhead wire technology, which is applied in mechanical vibration damping devices, shock absorbers, springs/shock absorbers, etc. Utilize and other problems to achieve the effect of broadening the vibration absorption frequency, increasing the system damping, and increasing the dancing threshold
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Embodiment 1
[0041] Electromagnetic damping technology and its application are research hotspots in the field of dynamic vibration reduction in recent years. By using the principle of electromagnetic conversion, the intrinsic viscous damping of the system is increased, so as to consume the mechanical energy of the system, convert the torsional kinetic energy of the line into heat energy release, and achieve passive vibration reduction. vibration effect.
[0042] Nonlinear Energy Sink (NES) theory is a new type of shock absorber technology developed on the basis of dynamic shock absorbers. By changing the linear stiffness and damping of traditional Introducing nonlinear springs) to achieve the purpose of broadening the range of vibration-absorbing frequencies and improving the vibration-damping effect. The optimized nonlinear vibration absorber can absorb the vibration energy of the main structure in a wide frequency range, and has the characteristics of small additional mass, strong adapta...
Embodiment 2
[0047] The physical design and installation are as follows: figure 1 , figure 2 as shown, figure 1 Both (a) and (b) design schemes can connect the outer casing with the wire and the spacer through the connecting plate.
[0048] Such as figure 1 As shown, a wide frequency domain dynamic vibration reduction device for overhead wires based on electromagnetic damping technology includes: a hollow shell 3, a permanent magnet 1, an induction metal sheet 2 and a spring 4, and the permanent magnet 1 and the induction metal sheet 2 are located in the casing 3; and one of the permanent magnet 1 or the induction metal 2 is rigidly connected to the inner wall of the housing 3, and the other is flexibly connected to the inner wall of the housing 3; under the action of vibration, the relative displacement of the permanent magnet 1 and the induction metal 2 produces Electromagnetic damping converts the vibration mechanical energy of the wire into consumption. There are two permanent mag...
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