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Rapid damping elasticity releaser for translation and design method

A releaser and damping technology, applied in the field of transmission wire translation fast damping elastic releaser, can solve the problems of national economic loss, easy disturbance, increased axial stress, etc.

Inactive Publication Date: 2018-01-19
HENAN POLYTECHNIC UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Under the influence of different climatic conditions, transmission lines, especially UHV transmission lines, will have different motion amplitudes and frequencies, mainly high-frequency slight-amplitude breeze vibration, medium-frequency and medium-amplitude sub-gap oscillation, and low-frequency large-amplitude galloping Generally speaking, the movement of transmission wires includes three-degree-of-freedom movements such as horizontal, vertical, and twisting. Horizontal and vertical motions can be collectively referred to as translational motions. The axial stress increases and the fatigue limit decreases, which can easily lead to wire breakage; at the same time, the load on the insulator string, cross arm and tower will increase, causing serious disasters such as insulator swing, cross arm deformation, and tower tilting, which pose a threat to the safe and stable operation of the power grid. Great threat, will also directly cause losses to the national economy
[0003] The existing wire movement dampers have their own advantages and disadvantages: the double pendulum damping releaser is suitable for split wires, easy to install, and has a good anti-vibration effect; the interphase spacer can be applied to transmission lines with a voltage level of 220kV and below, or higher voltages Class compact lines have problems such as aging, discharge, and bending, and the large-amplitude anti-vibration effect is better; the turbulence damping releaser is mainly used in areas with thin ice, and the application of single wires is more than that of split wires. The vibration device is light in weight, easy to install, and has the problems of aging and deterioration; the eccentric weight is suitable for split wires, pay attention to the influence of breeze vibration, and the anti-vibration effect is better; the detuning pendulum is effective for single wires, The application of the pressure damping release device needs to be studied; the pressure damping release device is convenient to obtain materials, can suppress the breeze vibration, has a large degree of freedom, and is prone to disturbance; Rods are more expensive than ordinary spacers
Due to the complexity of the wire motion problem, the existing commonly used motion damping devices have their pertinence in design and limitations in use, but the existing damping releasers all have a common shortcoming, that is, the motion energy of the wire does not It cannot be released completely and quickly, and some parts will return to the conductor, causing mutual interference movement, and even accelerating the damage to the transmission line

Method used

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  • Rapid damping elasticity releaser for translation and design method
  • Rapid damping elasticity releaser for translation and design method
  • Rapid damping elasticity releaser for translation and design method

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Embodiment Construction

[0040] First, measure and calculate the motion amplitude and frequency of a certain area through the MEMS inertial measurement system of wire motion, and then design the parameters of the damping elastic releaser according to the amplitude-frequency characteristics of the motion, and finally design the structure of the fast damping elastic releaser, make the physical object and test it. The specific implementation of the present invention will be described below in conjunction with the accompanying drawings.

[0041] Since the purpose of the present invention is to measure the motion data of a transmission line in a certain area, a real transmission line can be utilized, or a simulated transmission line can be constructed according to a real tower line 1:1, and installed in a required measurement area to obtain the measurement area. The line motion data in the area, and then analyze its amplitude-frequency characteristics, and provide parameters for the design of the elastic re...

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Abstract

The invention discloses a rapid damping elasticity releaser for translation and a design method. The extent and the frequency of guide line translation are measured by an MEMS (micro electromechanicalsystem) inertia measurement system created by an MEMS accelerometer, the structure and damping parameters of a damping releaser are designed according to the extent and the frequency of the translation, wherein the damping parameters include elastic coefficients and lengths of pressure springs, the number of sections (namely the order of a damper), quality, texture, adjusting bolts and the like.The rapid damping elasticity releaser for the translation is designed and comprises a shell cylinder, sliding rods, bolts, seal rings, support bearings, the pressure springs or tension springs, balls,sleeves, the adjusting bolts and ejection balls. The working principle is that kinetic energy of a guide line is converted into elastic potential energy, non-vibration release is achieved, the elastic potential energy cannot return to the guide line, and guide line energy release curves are monotonous curves with large negative slopes. The damping elasticity releaser is simple in structure and convenient to replace, the kinetic energy of the guide line can be released rapidly, vibration is not generated, smoothness is high, and long service life and high application value are achieved.

Description

technical field [0001] The invention belongs to the technical safety field of power grid line movement, and in particular relates to a translational fast damping elastic releaser of a transmission wire and a design method thereof. Background technique [0002] Under the influence of different climatic conditions, transmission lines, especially UHV transmission lines, will have different motion amplitudes and frequencies, mainly high-frequency slight-amplitude breeze vibration, medium-frequency and medium-amplitude sub-gap oscillation, and low-frequency large-amplitude galloping Generally speaking, the movement of transmission wires includes three-degree-of-freedom movements such as horizontal, vertical, and twisting. Horizontal and vertical motions can be collectively referred to as translational motions. The axial stress increases and the fatigue limit decreases, which can easily lead to wire breakage; at the same time, the load on the insulator string, cross arm and tower ...

Claims

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Application Information

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IPC IPC(8): H02G7/14
Inventor 杨金显王蒙蒙陶慧荆鹏辉杨明张国澎冯高明
Owner HENAN POLYTECHNIC UNIV
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