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Prefabrication installation method for ultra-high performance concrete deck type box arch bridge segments

An ultra-high performance, prefabricated installation technology, used in arch bridges, bridges, bridge materials, etc., to achieve the effects of easy quality control, low cost, and good workability

Active Publication Date: 2018-07-03
GUANGXI ROAD & BRIDGE ENG GRP CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, there is no supporting method for prefabricating ultra-high performance concrete arch rib segments with machine-made sand and for arch bridge installation

Method used

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  • Prefabrication installation method for ultra-high performance concrete deck type box arch bridge segments
  • Prefabrication installation method for ultra-high performance concrete deck type box arch bridge segments
  • Prefabrication installation method for ultra-high performance concrete deck type box arch bridge segments

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Embodiment Construction

[0039] A prefabricated installation method for an ultra-high performance concrete top-supported box arch bridge segment, comprising the following steps:

[0040] (1) Ultra-high-performance concrete is used to prepare the section of the upper box-shaped arch bridge. The ultra-high-performance concrete can be made of quartz sand and quartz powder, or natural sand as fine aggregate, and machine-made sand can also be used. If machine-made sand is used to prepare ultra-high performance concrete, special attention must be paid. The raw materials for preparation can be machine-made sand, steel fiber, cement, water, silica fume, and water reducing agent. The fresh parent rock mechanism of widely distributed limestone is selected, the mass ratio of the mud block content of the machine-made sand is ≤0.5%, the MB value of the methylene blue test of the machine-made sand is <1.4 and the mass percentage of the stone powder content is ≤7.0%, and the single-stage machine-made sand is the larg...

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Abstract

The invention provides a prefabrication installation method for ultra-high performance concrete deck type box arch bridge segments, and belongs to the technical field of bridge construction methods. According to the prefabrication installation method for the ultra-high performance concrete deck type box arch bridge segments, box arch segments of the ultra-high performance concrete prefabricated deck type box arch bridge are adopted; and joints at both ends of the box arch segments are provided with raised heads and grooves which are in matching butt joint, and pore passages and grooves of stretching cables are formed in the box arch segments. The box arch segments are lifted in position, the butting raised heads and the grooves of every two adjacent box arch segments are in butt joint witheach other, and the stretching cables penetrate through the pore passages and are fixed to the grooves in a stretching mode; buckle cables and wind absorbing cables are installed and stretched on thebox arch segments, the elevation and arch axes of the box arch segments are adjusted, the box arch segments are sequentially spliced, and joints of closure segments are connected by smearing epoxy resin glue or pumping into a grouting agent and stretched steadily for arching. Spandrel columns and cover beams are installed to complete auxiliary works and bridge deck pavement. The prefabrication installation method for the ultra-high performance concrete deck type box arch bridge segments improves the construction speed and precision, reduces the construction cost of the ultra-high performanceconcrete arch bridge, and promotes a more attractive, slim and concise bridge shape.

Description

technical field [0001] The invention belongs to the technical field of bridge construction methods, and relates to a prefabricated and installed method for segmental prefabrication of an ultra-high-performance concrete top-supported box-shaped arch bridge. Background technique [0002] Ultra-high performance concrete is considered to be the most innovative cement-based engineering material in the past 30 years. It is a cement-based composite material with high strength, high ductility, high durability and high environmental protection. Its ultra-high performance includes excellent mechanical properties (compressive, tensile) and durable performance. [0003] In the beam structure mainly subject to bending, the self-weight of the ultra-high performance concrete beam structure can be effectively reduced, and the ratio of its dead and live load is about 5 / 9 of that of the PC beam bridge, so the spanning capacity of the bridge can be greatly improved. However, the advantages of...

Claims

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Application Information

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IPC IPC(8): E01D4/00E01D2/04E01D21/00E01D21/10E01D101/26
CPCE01D2/04E01D4/00E01D21/00E01D21/10E01D2101/262
Inventor 韩玉凌忠秦大燕陈宝春王建军苏家战严胜杰黄卿维关敬文杨建蒙立和李彩霞钱海洋
Owner GUANGXI ROAD & BRIDGE ENG GRP CO LTD
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