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Technical application of magnetic suspension in filed of vibration prevention of engineering structure

An engineering structure and magnetic levitation technology, applied in the field of buildings, can solve problems such as the inability to fundamentally eliminate the impact of earthquakes, excessive deformation and acceleration, and internal facility damage, and achieve convenient inspection and repair, easy active control, and low power consumption. small effect

Inactive Publication Date: 2009-09-30
FUZHOU PLANNING DESIGN & RES INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the prior art, the prevention and control of earthquakes mostly adopts ways of strengthening the strength of buildings or installing rubber and other seismic isolation devices at the bottom of buildings to achieve the purpose of earthquake prevention and control. Although these methods have played a huge role in earthquake prevention and disaster reduction, However, it cannot fundamentally eliminate the impact of earthquakes on buildings
For high-rise or super high-rise buildings, due to the characteristics of the building itself, excessive deformation and acceleration are more likely to occur during an earthquake, resulting in damage to engineering structures and internal facilities and casualties.

Method used

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  • Technical application of magnetic suspension in filed of vibration prevention of engineering structure
  • Technical application of magnetic suspension in filed of vibration prevention of engineering structure

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Embodiment Construction

[0009] The present invention will be further described below in conjunction with the accompanying drawings

[0010] like figure 1 , figure 2 As shown, the present invention consists of several substructures 1 made in the engineering structure 5, electromagnets 3 made on the bottom layer 2 of the substructures 1, and corresponding structural electromagnets 4 made below the electromagnets 3. The electromagnets 3 and The electromagnetic polarity of the structural electromagnet 4 after being energized is the same, and the electromagnet 3 and the structural electromagnet 4 are connected with the electromagnetic control device 10 with the seismic signal receiving device 9 .

[0011] The substructure 1 mentioned in the present invention refers to an independent structure or device; the number thereof is 1, 2, 3 or more than 3.

[0012] The electromagnet 3 and the structural electromagnet 4 mentioned in the present invention refer to a normal conducting electromagnet or a supercond...

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Abstract

The invention relates to buildings, and particularly belongs to technical application of magnetic suspension in the filed of vibration prevention of an engineering structure. The invention adopts the technical proposal that: a plurality of substructures are arranged in the engineering structure, the bottom layers of the substructure are provided with an electromagnet, the lower part of the electromagnet is provided with a corresponding structural electromagnet, the electromagnet and the structural electromagnet after being powered have the same electromagnetic polarity, and the electromagnet and the structural electromagnet are connected with an electromagnetic control device with an earthquake signal receiving device. The technical application has the advantages that: because the engineering structure applied with the magnetic suspension technology fully isolates the earthquake influence, the problems of various assumptions calculated by earthquake action, mutual influence of the earthquake and the structure, and the like disappear; and the structure is not influenced by the strength, properties and the like of the earthquake.

Description

technical field [0001] The invention relates to buildings, in particular to a technical application of magnetic levitation in the field of anti-vibration of engineering structures. Background technique [0002] In the prior art, the prevention and control of earthquakes mostly adopts the methods of strengthening the strength of buildings or installing rubber and other isolation devices on the bottom of buildings to achieve the purpose of preventing and controlling earthquakes. Although these methods have played a huge role in earthquake prevention and disaster reduction, But it cannot fundamentally eliminate the impact of earthquakes on buildings. For high-rise or super-high-rise buildings, due to the characteristics of the building itself, excessive deformation and acceleration are more likely to occur during earthquakes, resulting in damage to engineering structures and internal facilities and casualties. SUMMARY OF THE INVENTION [0003] The purpose of the present inve...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04B1/98H02N15/00
Inventor 夏昌
Owner FUZHOU PLANNING DESIGN & RES INST
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