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Cellular spliced floor member with triangular grid structure and aplicing method thereof

A honeycomb and triangular mesh technology, applied in the direction of floors, building components, building structures, etc., can solve problems such as failure to form major breakthroughs, and achieve the effect of cost reduction, architectural design and shape change

Inactive Publication Date: 2003-08-13
陈星
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, these patents must use traditional architectural design theories and calculation methods for load calculations involving floor components, and no major breakthroughs have been made. Assembled floor slabs are the biggest problem in assembled buildings.

Method used

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  • Cellular spliced floor member with triangular grid structure and aplicing method thereof
  • Cellular spliced floor member with triangular grid structure and aplicing method thereof
  • Cellular spliced floor member with triangular grid structure and aplicing method thereof

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Embodiment Construction

[0019] As shown in the figure: the triangular grid honeycomb floor member of the present invention is composed of main ribs 1, node connectors 6, triangular frame auxiliary ribs 4 and triangular honeycomb floor 7. Assembly 101M 2 floor such as Figure 10 As shown, 114 main ribs, 52 node connectors, 66 triangular frame auxiliary ribs, and 276 triangular honeycomb floor slabs are used. The size of the components used is: each triangular honeycomb floor slab is an equilateral triangle, with a side length of 900mm, a height of 780mm, and a thickness of 120mm; the main rib is a hollow steel structure with a length of 1800mm. 100mm, height 120mm, thickness 5mm; auxiliary rib trapezoidal section height is 120mm, upper bottom is 50mm, lower bottom is 100mm; middle diameter of node connector is 200mm, height is 120mm, steel plate thickness is 6mm, rib thickness is 114mm, hinge pin hole The diameter is 30mm. When assembling, first position the node connector 6 with the adjustable sup...

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PUM

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Abstract

A cellular spliced floor member with triangular grid structure is composed of main ribs, node connectors, triangular-frame secondary ribs and triangular floor slabs. Its splicing method includes such steps as positioning the node connectors with adjustable supporting piles, sequentially connecting main ribs to form triangular structure, lowering the height of supporting piles for contacting with node connectors, regulating overall arch flexibility, connecting secondary ribs, lowering the height of supporting piles, installing triangular floor slabs pouring concrete and plastering. The invention makes building unit to be manufactured in factory possibly. Its advantages are low cost and high construction speed.

Description

Technical field [0001] The invention belongs to the technical field of buildings, and in particular relates to a triangular grid honeycomb floor member and an assembling method for an assembled building. Background technique [0002] At present, there is no real factory-produced assembled floor in the field of construction, especially a large-span floor. Patent application numbers 01113862.9, 00110245.1, and 00110244.3 have proposed components and technologies of promising prefabricated buildings, creating a new topic in the field of construction. However, these patents must use traditional architectural design theories and calculation methods for load calculations involving floor components, and no major breakthroughs have been made. Assembled floor slabs are the biggest problem in assembled buildings. Contents of the invention [0003] The object of the present invention is to provide a component and an assembly method of a triangular grid honeycomb assembled floor slab...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E04B5/02E04B5/06
Inventor 陈星
Owner 陈星