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Wall-plate type buckling restriction support with building energy conservation and structure integration

A buckling-constrained, building energy-saving technology, applied to building components, building structures, buildings, etc., can solve problems such as environmental pollution, constraints on sustainable development, and heavy energy burdens on society, and achieve improved thermal insulation performance and enhanced structural resistance. The effect of lateral stiffness

Inactive Publication Date: 2011-02-09
TONGJI UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, only 10% to 15% of the new buildings in my country each year meet the mandatory energy-saving standards formulated by the state, and more than 80% are high-energy-consuming buildings; the existing 40 billion m 2 Among the buildings, more than 95% are high-energy buildings, which not only cause a heavy energy burden and serious environmental pollution to the society, but also restrict the sustainable development of our country.

Method used

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  • Wall-plate type buckling restriction support with building energy conservation and structure integration
  • Wall-plate type buckling restriction support with building energy conservation and structure integration
  • Wall-plate type buckling restriction support with building energy conservation and structure integration

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Embodiment Construction

[0033] The present invention will be described in further detail below in conjunction with the accompanying drawings and specific embodiments.

[0034] See attached image 3 , the building energy-saving and structural integrated wall panel buckling-restrained support shown in the figure is composed of an axial member unit 1, a buckling restraint unit 2, a debonding unit 3, a connection unit 4 and a thermal insulation unit 5. The axial component unit 1 is composed of steel plates, the number and position of which can be set according to the needs; the buckling restraint unit 2 is composed of concrete wall panels, which can be made of reinforced concrete or fiber concrete; in the above A debonding unit 3 is arranged between the buckling constraint unit 2 and the axial force member unit 1, and the debonding unit 3 is composed of silica gel; 2, the section of which is larger than that of the steel plate of axial member unit 1 to increase the bearing capacity, thereby avoiding pre...

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Abstract

The invention relates to a wall-plate type buckling restriction support with building energy conservation and structure integration, comprising a shaft force component unit, a buckling restriction unit, a connection unit, a de-bonding unit and a heat insulation unit. The shaft force component unit is made from steel plates; the buckling restriction unit is a concrete wall plate and made from reinforced concretes or fiber concretes; and the heat insulation unit is a thin-plastered wall body heat insulating layer with an anchor bolt, and the heat insulation material is selected from an inflation polystyrene foam plastic board (EPS). The invention has the advantages that: the building wall plate and the buckling restriction support are combined into a component, which plays double functions of separating the building space and intensifying the structure lateral force resisting rigidity on one hand; and the wall body heat insulating layer made from the EPS material is adopted to greatly improve the heat insulation performance of the building wall body on the other hand.

Description

technical field [0001] The invention relates to a building structure component, in particular to a building energy-saving and structurally integrated wall panel buckling restraint support suitable for high-rise small bay buildings. Background technique [0002] 1. Buckling restraint support [0003] Modern building structures must consider the earthquake resistance of the structure, especially those built in earthquake zones. In addition, the design of the structure also needs to consider the wind resistance performance. Steel structures are widely used in civil engineering due to their good material properties. With the development of the economy and the acceleration of the urbanization process, the number of high-rise buildings is increasing, and among them, steel structures and steel-concrete composite structures account for the largest proportion. Most of the existing building structure systems adopt bending-resistant steel frame system, braced frame structure and doubl...

Claims

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Application Information

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IPC IPC(8): E04B1/80E04B1/36E04B2/56
Inventor 谢强
Owner TONGJI UNIV
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