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Elastic building frame with aseismic structure

An earthquake-resistant structure and frame technology, applied in buildings, building types, building components, etc., can solve the problems of casualties, hazards, collapse and damage, etc., and achieve the effect of strong earthquake resistance, high structural strength, and reduced collapse.

Active Publication Date: 2018-08-17
广东省怡合建设有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Earthquake is a natural phenomenon that brings huge casualties and property losses to the inhabitants of the earth. At present, human beings cannot accurately predict earthquakes, nor can they predict the time, location and intensity of earthquakes in advance. Earthquakes are Inevitably, the harm is also huge and inestimable. The most direct damage of the earthquake is the building, which will cause casualties. When the earthquake occurs, it will generate seismic waves. The seismic waves are divided into transverse waves and longitudinal waves, which will cause damage to the building. Shaking from side to side and up and down, for buildings with weak structures, it is easy to cause collapse and damage when encountering strong earthquakes

Method used

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  • Elastic building frame with aseismic structure
  • Elastic building frame with aseismic structure
  • Elastic building frame with aseismic structure

Examples

Experimental program
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Effect test

Embodiment 1

[0058] Such as figure 1 , an elastic building frame with an earthquake-resistant structure, see Figure 1-13 As shown, it includes connecting layer 1, axle-beam-column layer 2, floor frame 3 and side support beam 4; connecting layer 1 is a rectangular structure poured with concrete; both ends of connecting layer 1 are symmetrically provided with grooves 102; grooves 102 The first rubber strip 103 is vertically and evenly distributed on the inner peripheral side; the length of the first rubber strip 103 is 120cm, and the width is 20cm;

[0059] The axle-beam-column layer 2 is a rectangular structure poured with concrete; both ends of the axle-beam-column layer 2 are symmetrically provided with bosses 204; The length of bar 205 is 120cm, and width is 20cm; The surface area of ​​groove 102 is 10 square meters; The area of ​​groove 102 is equal to the area of ​​boss 204, and the two are engaged mutually and cooperate; The 204 clamping fit is beneficial to the structural stabilit...

Embodiment 2

[0074] Such as Figure 14 , an elastic building frame with an earthquake-resistant structure, see Figure 14-26 As shown, it includes connecting layer 1, axle-beam-column layer 2, floor frame 3 and side support beam 4; connecting layer 1 is a circular structure made of concrete; connecting layer 1 is symmetrically provided with grooves 102 at both ends; grooves The first rubber strip 103 is vertically and evenly distributed on the inner peripheral side of 102; the length of the first rubber strip 103 is 100cm, and the width is 18cm;

[0075] The axle-beam-column layer 2 is a circular structure poured with concrete; the two ends of the axle-beam-column layer 2 are symmetrically provided with bosses 204; The length of rubber strip 205 is 100cm, and width is 18cm; The surface area of ​​groove 102 is 8 square meters; The clamping fit of platform 204 is beneficial to the structural stability of the shaft-beam-column layer 2, and reduces the impact of seismic waves on its structur...

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Abstract

The invention discloses an elastic building frame with an aseismic structure, and relates to the technical field of building structures. The elastic building frame comprises a connecting layer, shaft-beam-column layers, floor frames and side supporting beams; grooves are symmetrically formed in the two ends of the connecting layer; bosses are symmetrically arranged at the two ends of the shaft-beam-column layers; through holes which are matched with the outer contours of the shaft-beam-column layers correspondingly are formed in the centers of one ends of the floor frames; the two ends of theconnecting layer are connected with the shaft-beam-column layers through the grooves, and the grooves and the bosses are in interference fit; an energy dissipation buffer damping device is arranged between the connecting layer and the floor frames; and the side supporting beams are fixedly connected with the two adjacent floor frames through buffer bolts. A connecting layer structure is designed,a structure with a longitudinal-wave buffer energy dissipation damping function is designed between beams and columns of different layers, and a side supporting beam structure with a transverse-wave buffer energy dissipation damping function is designed between two adjacent floors, so that the risks of building toppling and floor slab collapse are reduced.

Description

technical field [0001] The invention relates to the technical field of building steel structures, in particular to an elastic building frame with an anti-seismic structure. Background technique [0002] Earthquake is a natural phenomenon that brings huge casualties and property losses to the inhabitants of the earth. At present, human beings cannot accurately predict earthquakes, nor can they predict the time, location and intensity of earthquakes in advance. Earthquakes are Inevitably, the harm is also huge and inestimable. The most direct damage of the earthquake is the building, which will cause casualties. When the earthquake occurs, it will generate seismic waves. The seismic waves are divided into transverse waves and longitudinal waves, which will cause damage to the building. Shaking from side to side and up and down, for buildings with weak structure, it is very easy to cause collapse and damage when encountering strong earthquakes. [0003] Seismic structure is th...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04B1/20E04B1/21E04B1/98E04H9/02
CPCE04B1/20E04B1/21E04H9/021E04H9/025
Inventor 张洪涛江胜
Owner 广东省怡合建设有限公司