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Multidirectional shock absorption damper

A technology of shock absorption and damping, steel plate, applied in the direction of earthquake resistance, building components, building types, etc., can solve the problems of reduced energy dissipation capacity, loss of restraint and anti-buckling effect of constrained concrete, etc., to achieve large recoverable deformation, reduce earthquake response, The effect of good seismic performance

Inactive Publication Date: 2018-11-30
SHENYANG JIANZHU UNIVERSITY
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The restrained concrete of the anti-buckling energy-dissipating components currently researched and developed is easily crushed and loses the restraint and anti-buckling functions, resulting in a significant reduction in its energy dissipation capacity

Method used

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  • Multidirectional shock absorption damper
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Embodiment Construction

[0017] In order to further illustrate the present invention, the present invention will be described in detail below in conjunction with the accompanying drawings and embodiments, but they should not be construed as limiting the protection scope of the present invention.

[0018] A multi-directional shock absorber, such as Figure 1~Figure 4 As shown, it includes connection plate 1, connection plate screw hole 2, fixed end plate 3, end energy dissipation steel plate 4, side support energy dissipation steel plate 5, foamed aluminum energy dissipation plate 6, circular mild steel energy dissipation inner cylinder 7. Coordinated connection steel bars 8, arc-shaped energy-dissipating steel plates 9, foam aluminum energy-dissipating materials 10, energy-dissipating ribs 11, internal oval holes 12, horizontal shearing energy-dissipating grid plates 13, lock nuts 14, horizontal shearing In the structure of energy dissipation ribs 15 and grid bar holes 16 and the multi-directional sho...

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Abstract

The invention provides a multidirectional shock absorption damper and belongs to the field of building structure vibration control. A main body of the multidirectional shock absorption damper is defined by an end energy-consuming steel plate, a side supporting energy-consuming steel plate and a horizontal shearing energy-consuming grating plate. Foamed aluminum energy-consuming materials are arranged in an inner cavity of a defined structure, and foamed aluminum energy-consuming plates are arranged on the positions, close to the side supporting energy-consuming steel plate and the horizontal shearing energy-consuming grating plate, in the defined structure correspondingly. A circular soft steel energy-consuming inner tube is arranged in the middle in the defined structure, and a pluralityof arc-shaped energy-consuming steel plates are symmetrically arranged on the two sides of the circular soft steel energy-consuming inner tube. The upper ends and the lower ends of the arc-shaped energy-consuming steel plates are fixedly connected with the end energy-consuming steel plate. The multidirectional shock absorption damper has the beneficial effects that the initial rigidity is large, the material yield scattering area is large, recoverable deformation is large, the damping capacity is high, and the good vibration-resistant property, ductility and hysteretic energy-consuming capacity are achieved.

Description

technical field [0001] The invention belongs to the field of vibration control of building structures, in particular to a multi-directional shock absorbing damper. Background technique [0002] Earthquake disasters are sudden and devastating, which seriously threaten the safety of human life and property. Nearly a thousand destructive earthquakes occur every year in the world, and a major earthquake can cause hundreds of billions of dollars in economic losses, resulting in hundreds of thousands of deaths or serious injuries. my country is located in the two most active seismic belts in the world, and is one of the countries that suffered the most serious earthquake disasters. The casualties caused by the earthquake rank first in the world, and the economic loss is also very huge. The massive destruction and collapse of buildings in earthquakes is the direct cause of earthquake disasters. When an earthquake occurs, ground vibrations cause the seismic response of the structu...

Claims

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Application Information

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IPC IPC(8): E04H9/02E04B1/98
CPCE04H9/021E04H9/022
Inventor 张延年杨森
Owner SHENYANG JIANZHU UNIVERSITY
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