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Stable overhanging type double-layer space intelligent cantilever structure system

A space intelligence and space structure technology, applied in the dome roof structure, arch structure, building components and other directions, can solve the problems of less than ideal, weak structural component cross-section, reduced structural stability, etc., to reduce the amplification effect, High structural safety and stability, and the effect of reducing structural damage

Pending Publication Date: 2019-07-16
JIANGNAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, when the building structure seeks to reduce the self-weight of the structure in order to reduce the load effect caused by the self-weight under the large span, the section of the structural member becomes relatively weak, especially in the steel structure, a large number of I-shaped sections, box-shaped sections, and hollow steel pipes are used, resulting in the structure. greatly reduced stability
As a result, structures perform less well under dynamic loads, especially wind and earthquake loads

Method used

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  • Stable overhanging type double-layer space intelligent cantilever structure system
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  • Stable overhanging type double-layer space intelligent cantilever structure system

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Embodiment Construction

[0027] Such as figure 1 A stable overhanging double-layer space intelligent cantilever structure system is shown, including 8 diamond-shaped lattice columns 1, 8 double-layer space cantilever structures 4, ring beams 2 and cable dome roof 3. The lattice columns 1 are respectively arranged at the lower part of each double-layer space cantilever structure 4 .

[0028] The cross-section of the lattice column 1 is a rhombus whose adjacent angles are 60° and 120° respectively, and the webs are arranged in the lattice column 1, and the embellishments form a plane triangle; The upper ends of the two obtuse-angled vertices are connected with the roof ring beam 23, the upper ends of the inner acute-angled vertices are connected with the cantilevered upper ring beam 21, and the upper ends of the outer acute-angled vertices are connected with the cantilevered lower ring beam 22.

[0029] The cantilevered upper ring beam 21, the cantilevered lower ring beam 22 and the roof ring beam 23 f...

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Abstract

The invention discloses a stable overhanging type double-layer space intelligent cantilever structure system, comprising lattice columns, space cantilever structures, a ring beam and a roof. The lattice columns are lattice columns with rhombic sections, the upper end of each lattice column of the bionic double-layer space cantilever structure imitating dragonfly wings. A movable, limiting and locking balance block is arranged at the end of a main vein of an upper layer space structure in each double-layer space cantilever structure. The ring beam comprises a cantilever upper ring beam, a cantilever lower ring beam and a roof ring beam which respectively serve as a double-layer space cantilever structure upper inner edge, a double-layer space cantilever structure lower inner edge and a roofouter edge, the double-layer space cantilever structures and the lattice columns are annularly distributed, the roof is arranged on the inner sides of the double-layer space cantilever structures, and the lattice columns provide support for the double-layer space cantilever structures and the roof through the ring beam. The cantilever structure is large in span, high in structural safety and stability, low in material consumption and light in dead weight, and breaks through the shape of the cantilever structure.

Description

technical field [0001] The invention belongs to the technical field of building structures, and in particular relates to an overhanging double-layer space intelligent cantilever structure system including the stability of a bionic structure. Background technique [0002] Cantilever structures are widely used in buildings, such as cantilevered eaves, balconies, stadium stands, station platforms, and theater platforms. With the rapid development of technology, in contemporary architecture, the scale of cantilever is getting bigger and bigger, and there are more and more ways of application, and it is also playing an increasingly important role in the creation of architectural expression. [0003] Due to the complexity of large-space structural design issues, in practical applications, the stability of the building structure and the overall strength are often reduced due to unreasonable load transfer and structural stress. The cohesive cantilever structure has high structural ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04B1/342E04B1/32E04B7/08
CPCE04B1/342E04B1/32E04B7/08
Inventor 华渊王洪羽连俊英崔雯茜周超
Owner JIANGNAN UNIV
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