Buckling restrained brace outrigger truss and composite shock absorption high-rise structure system

A buckling restraint, outrigger truss technology, applied in special structures, seismic, building components, etc., can solve problems such as increasing structural energy dissipation capacity, structural deformation, increasing structural rigidity, etc. Controllable effect

Pending Publication Date: 2020-12-15
RBS PARTNERS S&T CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In order to solve the above problems, the object of the present invention is to provide a buckling-constrained supporting outrigger truss. The stiffness and bearing capacity of the buckling-constrained supporting outrigger truss of the present invention can ensure the performance requirements of the structure in different working stages, especially It solves the problem of excessive structural deformation caused by too fast reduction of structural stiffness under large earthquakes; the buckling-constrained support outrigger truss of the present invention can obviously and effectively amplify the deformatio

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  • Buckling restrained brace outrigger truss and composite shock absorption high-rise structure system
  • Buckling restrained brace outrigger truss and composite shock absorption high-rise structure system
  • Buckling restrained brace outrigger truss and composite shock absorption high-rise structure system

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Embodiment Construction

[0032] The specific implementation manners of the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.

[0033] Such as Figure 4 As shown, the present invention is a buckling-constrained support outrigger truss 3 , at least one buckling-constrained support outrigger truss connected between the inner cylinder 1 and the outer cylinder 2 . The buckling constrained support outrigger truss 3 is composed of an upper chord 31 , a lower chord 32 and a diagonal 33 , one end of the diagonal 33 is connected to the upper chord 31 , and the other end of the diagonal 33 is connected to the lower chord 32 , the diagonal web bar 33 is a first buckling restraint brace 331 and a second buckling restraint brace 332 arranged side by side, the first buckling restraint brace 331 is an unyielding...

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Abstract

The invention relates to the technical field of energy dissipation and shock absorption of building structures, in particular to a buckling restrained brace outrigger truss and a composite shock absorption high-rise structure system. The buckling restrained brace outrigger truss is connected between an inner barrel and an outer barrel. Diagonal web members are non-yielding bearing type first buckling restrained braces and yielding energy dissipation type second buckling restrained braces which are arranged side by side, a multiple displacement and amplification type viscous energy dissipationmechanism comprises a cantilever truss, a toggle dual connecting rod and a viscous damper, and a composite shock absorption high-rise structure system is formed through combined application of the buckling restrained brace outrigger truss and the multiple displacement and amplification type viscous energy dissipation mechanism. The outrigger truss and the energy dissipation mechanism work cooperatively, energy consumption and rigidity mechanisms are diversified and coordinated, the shock absorption effect is obvious and effective, multiple fortification defense lines of the high-rise structurecan be achieved, the structure is simple, construction is convenient, and building space usability and economical performance are good.

Description

technical field [0001] The invention relates to the technical field of energy dissipation and shock absorption of building structures, in particular to a buckling-constrained support outrigger truss and a composite shock-absorbing high-rise structure system. Background technique [0002] The frame-core tube structure and tube-in-tube structure commonly used in high-rise buildings have good seismic performance and building space. By setting outrigger trusses with higher rigidity in the frame-core tube structure and the tube-in-tube structure, the lateral stiffness of the structure can be significantly improved, and the lateral deformation of the structure under wind load and earthquake can be reduced. Stiffness easily leads to the existence of weak layers. Therefore, "Code for Seismic Design of Buildings" (GB50011-2010) recommends the method of using multi-storey outriggers with relatively small stiffness dispersed and evenly distributed along the building height direction, ...

Claims

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Application Information

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IPC IPC(8): E04B1/98E04B1/34E04H9/02
CPCE04B1/34E04B1/98E04H9/021E04H9/023
Inventor 林绍明刘付钧李盛勇黄忠海钟明上官瑾瑜
Owner RBS PARTNERS S&T CO LTD
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