Dislocation installation method of corrugated steel web

A corrugated steel web, staggered installation technology, applied in the erection/assembly of bridges, bridges, buildings, etc., can solve the problems of long joint welding time, affecting the installation of steel bars and templates, and many processes crossing, so as to improve efficiency and uniform distribution. Effect

Active Publication Date: 2011-08-17
CCCC SECOND HIGHWAY ENG CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Among them, the installation of segmental corrugated steel webs is a key process. According to the existing steel-concrete structure, the application number applied by the applicant is: 201020300285.8. The construction method is to install the corrugated steel web of the section to weld the joints after the construction truss truck is moved forward and put in place, and at the same time construct the reinforcement and formwork of the section, and pour the concrete after all are completed, so that the process crossover is relatively small in the whole process. Many, and the welding time of joints is long, which usually affects the installation of steel bars and formwork, so that the efficacy of the entire overhanging process is reduced

Method used

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  • Dislocation installation method of corrugated steel web

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Experimental program
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Effect test

Embodiment 2

[0029] The specific construction steps of installing the steel web in step 2 of the above-mentioned embodiment are:

[0030] 1) Use the electric hoist 4 on the construction truss truck 3 to lift the corrugated steel web of the n+1 segment, and slide along the track for a short distance to the front end of the installed corrugated steel web of the n segment, see figure 1 ;

[0031] 2) Temporarily connect the corrugated steel web of the n+1 segment and the corrugated steel web of the n segment with bolts for preliminary positioning;

[0032] 3) Use the electric hoist 4 to adjust the elevation of the corrugated steel web of the n+1 segment, and after meeting the design requirements, start the welding of the corrugated steel web of the n segment and the corrugated steel web of the n+1 segment for permanent connection .

[0033] In step 2, the reason why the corrugated steel web of the n+1 segment is lifted by the electric hoist 4 on the construction truss truck 3 after 24 hours ...

Embodiment 3

[0035] The installation process of installing steel bars and corrugated pipes includes adjusting templates, binding top and bottom steel bars, positioning prestressed corrugated pipes, and installing top and bottom templates. The above steps are the same as the existing construction methods, and will not be described in detail here.

[0036] This corrugated steel web dislocation installation method makes there be no intersection between the various processes, and at the same time avoids the problem of workers’ idleness during the equal strength period and the shortage of personnel in the next section of construction (the three processes of steel bars, formwork, and steel webs are carried out at the same time) , to achieve the effect of uniform distribution of human resources on the time axis, improve efficiency, and save 10-12 hours per cycle.

[0037] The effect comparison of each process before and after using the corrugated steel web dislocation installation method is as fol...

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Abstract

The invention relates to the field of corrugated steel web bridges for cantilever construction, in particular to a process method for dislocation installation of a segmental corrugated steel web. The method comprises the following specific construction steps of: (1) pouring concrete 2 into an nth section and transporting a corrugated steel web 1 in an (n+1)th section from a storage yard to a position below a section where the corrugated steel web 1 is to be installed for installing; (2) installing the steel web 24 hours after the concrete 2 is poured into the nth section; (3) after the constant strength of the concrete in the nth section reaches the strength required by the design and the section is stretched by pre-stress, moving a construction truss vehicle 3 forward from the front end of an (n-1)th section to the front end of the nth section, anchoring in place and entering to the (n+1)th section for constructing; (4) installing a steel bar and a corrugated pipe in the (n+1)th section; and (5) after the procedure in a step (6) is completed, pouring concrete into the (n+1)th section, installing a corrugated steel web in a next section at a constant-strength stage after pouring and entering a next construction cycle. By adopting the method, the construction efficiency is greatly increased, and the section cycle construction period is shortened.

Description

technical field [0001] The invention relates to the field of cantilever-constructed corrugated steel web bridges, in particular to a process method for dislocation installation of segmental corrugated steel webs. Background technique [0002] With the continuous development of bridge structures in our country, new bridge structure forms are constantly emerging, and the world's first corrugated steel web bridge, which was first proposed and built by France, was introduced to Japan for development and further optimization. This type of bridge was introduced in the first century, mainly prefabricated beams with small spans and cast-in-place beams with full supports. It was not until 2010 that my country's first variable-section multi-span continuous corrugated steel web PC bonded beam was built. This type of bridge adopts 10-30mm thick steel plate, which is bent into a wave shape, replacing the 30-80cm thick concrete web in the box girder structure, while reducing the self-weigh...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E01D21/10
Inventor 梁朝晖袁少飞魏邦泉李树林扈成熙秦德文
Owner CCCC SECOND HIGHWAY ENG CO LTD
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