Delay connection installation method for outrigger of super high-rise building in steel frame-core tube structure

A technology of outrigger truss and delayed connection, which is applied in the direction of building structure and construction, can solve problems such as failure of outrigger truss, and achieve the effects of reasonable layout, simple method and steps, and reasonable design.

Inactive Publication Date: 2016-06-15
SHAANXI ACAD OF ARCHITECTONICS
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  • Abstract
  • Description
  • Claims
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Problems solved by technology

[0005] The technical problem to be solved by the present invention is to provide a delayed connection installation method of a super high-rise steel frame-core tube structure outrigger truss in view of the deficiencies in the above-mentioned prior art. The me

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  • Delay connection installation method for outrigger of super high-rise building in steel frame-core tube structure
  • Delay connection installation method for outrigger of super high-rise building in steel frame-core tube structure
  • Delay connection installation method for outrigger of super high-rise building in steel frame-core tube structure

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[0048] Such as figure 1 Shown is a delayed connection installation method of a super high-rise steel frame-core tube structure outrigger truss, the super high-rise building constructed is a steel frame-core tube structure, combined figure 2 The steel frame-core tube structure includes a core tube 3 and a peripheral frame located outside the core tube 3. The peripheral frame is a steel frame and includes a plurality of frame columns 1 located outside the core tube 3 and a plurality of Frame beams on each of the frame columns 1, a plurality of the frame columns 1 and a plurality of the frame beams are connected as a whole; the super high-rise building under construction is provided with an outrigger truss reinforcement layer, the outrigger truss reinforcement layer The core tube 3 and the frame column 1 are connected by an outrigger truss 2; the outrigger truss 2 is a steel truss and includes two upper and lower chords 2-1 and a plurality of chords connected from front to rear. T...

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Abstract

The invention discloses a delay connection installation method for an outrigger of a super high-rise building in a steel frame-core tube structure. A constructed super high-rise building is in a steel frame-core tube structure which comprises a core cylinder and a peripheral frame located on the outside of the core tube, and a core cylinder in a outrigger reinforcing layer is connected with a frame column through an outrigger; the outrigger comprises an upper chord member, a lower chord member and a plurality of web members; when the outrigger in the outrigger reinforcing layer is installed, a delay connection method is used for installation, the installation process comprises the steps that I, temporary connection of the chord members; II vertical deformation monitoring: strain of the core tube and the frame column which are connected by the two chord members in the vertical direction is monitored; III, chord member stress release and fixed connection; IV, web member installation. According to the delay connection installation method for the outrigger of the super high-rise building in the steel frame-core tube structure, the steps are simple, the design is reasonable, the operation is easy and convenient, the use effect is good, and the problem that early failure of the outrigger is caused due to vertical deformation difference of the frame column and the core tube can be effectively solved.

Description

technical field [0001] The invention belongs to the technical field of building construction, and in particular relates to a delayed connection installation method of a super high-rise steel frame-core tube structure outrigger truss. Background technique [0002] The core tube structure belongs to the high-rise building structure. To put it simply, the periphery is a frame force system composed of beams and columns, and the middle is a cylinder (such as an elevator shaft, etc.). Since the cylinder is in the middle, it is called the core tube, also known as the "frame-core tube structure". The peripheral frame is formed by connecting a plurality of frame columns and frame beams supported on the plurality of frame columns. The core tube is in the central part of the building. The central core tube is formed by elevator shafts, stairs, ventilation shafts, cable wells, public toilets, and some equipment room enclosures. It forms an outer frame and inner tube structure with the ...

Claims

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Application Information

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IPC IPC(8): E04B1/35E04B1/58
CPCE04B1/35E04B1/58
Inventor 张风亮高宗祺朱武卫陆建勇韩大富李增福田鹏刚王宝卿高远
Owner SHAANXI ACAD OF ARCHITECTONICS
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