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A lateral energy dissipation and shock absorption device suitable for bridge structure and installation method thereof

A shock absorbing device and bridge structure technology, which is applied in the field of bridge shock absorption, can solve the problems of non-working shock absorber dampers, low service life of shock absorber dampers, and increased bridge maintenance costs

Active Publication Date: 2021-05-07
CHONGQING THREE GORGES UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] When designing bridges, the impact of earthquakes or other vibrations on bridges is taken into account. Generally, various types of shock absorbers are installed between bridges and piers to reduce the damage caused by earthquakes to bridges. Usually shock absorbers are installed On both sides of the pier, the shock-absorbing effect is completely determined by the performance of the shock-absorbing dampers and the number of shock-absorbing dampers. When applied, the shock-absorbing dampers on both sides of the pier work independently without interfering with each other. There is one of the shock-absorbing dampers The damper works frequently, and the other shock absorber basically does not work, which leads to the low service life of one of the shock absorber dampers and frequent replacement, which increases the maintenance cost of the bridge

Method used

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  • A lateral energy dissipation and shock absorption device suitable for bridge structure and installation method thereof
  • A lateral energy dissipation and shock absorption device suitable for bridge structure and installation method thereof
  • A lateral energy dissipation and shock absorption device suitable for bridge structure and installation method thereof

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Embodiment 1

[0028] Embodiment 1: A transverse energy-dissipating damping device suitable for bridge structures, comprising a pipe body 1 horizontally penetrating through the pier 19 along the transverse direction of the pier 19, the pipe body 1 is pre-embedded in the pier 19, and the pipe body 1 is provided with There is a central rod 2, the length of the central rod 2 is greater than the length of the pipe body 1, the inner diameter of the pipe body 1 is greater than the outer diameter of the central rod 2, and the central rod 2 is inserted into the pipe body 1 and can be in the pipe body 1 Sliding left and right, the two ends of the central rod 2 are hinged with a connecting rod 3, and the end of the connecting rod 3 away from the central rod 2 is provided with a shock-absorbing damper 4, and the shock-absorbing damper 4 is fixed on the bottom surface of the bridge , the distance between the two shock absorbers 4 is greater than the length of the center rod 2, the shock absorber 4 includ...

Embodiment 2

[0035]Embodiment 2: A kind of lateral energy dissipation damping device suitable for bridge structures, on the basis of Embodiment 1, a first steel bar 8 is provided between the two second baffles 7, and the first steel bar 8 The end is welded on the second baffle plate 7, which can improve the firmness of the pipe body 1 pre-embedded in the pier 19. Between the first baffle plate 6 and the second baffle plate 7 on one side of the pier, a folding cover 11 adapted to the first spring 5 is provided, and the first spring 5 is located in the folding cover 11 to prevent air The dirt in the corrodes the first spring 5 to ensure the service life of the first spring 5. A second steel bar 9 is welded between the two shock-absorbing dampers 4, a U-shaped steel bar 10 is arranged on the upper side of the second steel bar 9, and the opening of the U-shaped steel bar 10 faces downward, and the U-shaped steel bar 10 One end of them is welded on one of the shock-absorbing dampers 4, and the...

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Abstract

The invention discloses a transverse energy dissipation damping device suitable for bridge structures and an installation method thereof, and mainly relates to the technical field of bridge damping. It includes a pipe body that runs through the pier horizontally, a central rod is arranged in the pipe body, connecting rods are hinged at both ends of the central rod, and a shock-absorbing damper is provided at the end of the connecting rod far away from the central rod. The shock damper is fixed on the bottom surface of the bridge, two first springs are sleeved on the central rod, and first baffles compatible with the first springs are provided at both ends of the central rod. Two ends of each are provided with a second baffle plate adapted to the first spring, and the first spring is located between the first baffle plate and the second baffle plate. The beneficial effect of the present invention is that it can utilize two shock absorbing dampers at the same time, avoid frequent work of one of the shock absorbing dampers, can share the load equally between the two shock absorbing dampers, and reduce the replacement frequency of the shock absorbing dampers , to reduce bridge maintenance costs.

Description

technical field [0001] The invention relates to the technical field of bridge damping, in particular to a transverse energy dissipation damping device suitable for bridge structures and an installation method thereof. Background technique [0002] When designing bridges, the impact of earthquakes or other vibrations on bridges is taken into account. Generally, various types of shock absorbers are installed between bridges and piers to reduce the damage caused by earthquakes to bridges. Usually shock absorbers are installed On both sides of the pier, the shock-absorbing effect is completely determined by the performance of the shock-absorbing dampers and the number of shock-absorbing dampers. When applied, the shock-absorbing dampers on both sides of the pier work independently without interfering with each other. There is one of the shock-absorbing dampers The damper works frequently, and the other shock absorber basically does not work, which leads to the low service life o...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E01D19/00
CPCE01D19/00
Inventor 闫磊安康林志程龙飞袁浩栩
Owner CHONGQING THREE GORGES UNIV
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