Device energy-wasting type multi-ribbed composite wallboard

A composite wall and dense rib technology, which is applied to walls, building components, and earthquake resistance, can solve the problem that fillers cannot meet the selection requirements of building materials, limit the use of energy-consuming components of composite wall panels, and take too little consideration of changes in the seismic performance of structures, etc. problem, to achieve the effect of clear structural force transmission route, convenient post-earthquake maintenance, and simple construction

Inactive Publication Date: 2009-09-30
姚谦峰
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Problems solved by technology

[0007] However, the densely ribbed composite wallboard only adopts a kind of composite wallboard called "finely ribbed composite wallboard" disclosed by the inventor in the patent application text of China Utility Model Publication No. 97242185.8. The test results and practical use It shows that the structure of this kind of densely ribbed composite wallboard is simple, and there is too little consideration for the change of the structural seismic performance caused by the performance of the wallboard. The return energy is the damage energy of the structure, and the result will be serious damage to the structure; in the structural energy analysis theory, in addition to the hysteretic energy dissipation, the energy dissipati

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  • Device energy-wasting type multi-ribbed composite wallboard
  • Device energy-wasting type multi-ribbed composite wallboard
  • Device energy-wasting type multi-ribbed composite wallboard

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[0032] The embodiments of the invention will be described in further detail below in conjunction with the accompanying drawings.

[0033] A multi-ribbed composite wall used in a multi-ribbed structure system, including a frame 3 composed of section steel, section steel concrete reinforced concrete beams and columns. The frame 3 is composed of section steel, section steel concrete reinforced concrete splitting strips with smaller cross-section and bearing capacity A number of grids are divided to form a grid cavity 1, and the damping device 2 is filled in the grid cavity 1 according to the bearing capacity of reinforced concrete beams and columns. The damping device 2 includes, for example, elastic-plastic materials, several miniaturized dampers, and the like. The loaded damping device 2 adopts miniaturized energy dissipation support, mild steel damper, friction damper, viscoelastic damper or viscous damper, which is welded to the angle steel block or steel block embedded in the gr...

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Abstract

A multi-ribbed composite wall for a multi-ribbed structure system comprises a frame formed by profile steels, profile steel concrete, reinforced concrete beams and posts, wherein the frame is divided into a plurality of grids by cross sections and dividing strips of the profile steels with less bearing capacity, the profile steel concrete and reinforced concrete so as to form grid cavities; damping devices are relatively filled into the grid cavities according to the bearing capacity of the profile steels, the profile steel concrete, the reinforced concrete beams and the posts; and each damping device comprises a plurality of miniaturized dampers, and the like. The invention increases the earthquake energy consumed by components by additionally installing the small-sized damping devices.

Description

technical field [0001] The invention relates to a composite wall structure, in particular to a device energy-consuming composite wall. In particular, this composite wall structure is especially suitable for load-bearing wall elements in earthquake-resistant structural systems. Background technique [0002] The acceleration of urbanization has led to population expansion and land reduction, and human survival is facing severe challenges. Buildings, as the necessary means of production and living for human survival, are also facing the challenge of innovation. For this reason, people have accelerated the pace of research on new materials and new structures, and it has become a common consensus that energy-saving buildings and composite walls are widely used in various buildings. The development trend of building component materials is from heavy materials to light materials, from block materials to plate materials, and from single materials to composite materials. With the ...

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Application Information

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IPC IPC(8): E04B2/56E04B1/98
Inventor 姚谦峰张杰张荫夏雷
Owner 姚谦峰
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