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Bridge prefabricating device adopting self-propelled line production and method thereof

A flow-operated, self-propelled technology, applied in the direction of manufacturing tools, ceramic molding workshops, ceramic molding machines, etc., can solve the problems of difficult construction quality assurance, low efficiency of prefabricated site use, and impact on beam production efficiency, etc., to achieve good promotion The effect of application value and economic and social benefits, improving beam manufacturing efficiency and shortening construction period

Inactive Publication Date: 2018-01-16
FUZHOU UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The traditional prefabricated beam construction mode has low efficiency in the use of prefabricated sites, which in turn affects the production efficiency of the entire beam. From the perspective of formwork construction technology, the traditional formwork construction method has difficulties in splicing, many manual shifts, and long construction period. Quality is not easy to be guaranteed and other shortcomings

Method used

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  • Bridge prefabricating device adopting self-propelled line production and method thereof
  • Bridge prefabricating device adopting self-propelled line production and method thereof
  • Bridge prefabricating device adopting self-propelled line production and method thereof

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Embodiment Construction

[0014] Such as Figure 1~3 As shown, a bridge prefabrication device adopting self-propelled assembly line operation includes a steel rail 100 at the bottom, a trolley 200 that can move along the rail is arranged on the rail, and steel bar binding is arranged sequentially along the length direction of the rail from front to back Area, formwork installation area, concrete pouring area, steam curing area and prestress tension area, steam curing shed 300 is set on the rails in the steam curing area.

[0015] The invention realizes the fixed construction process of the bridge prefabrication process, and the operation mode of completing each process task in different areas, thereby realizing that the beam body can complete various construction processes (binding steel bars, formwork, pouring concrete, curing) in different areas on the same trolley , Tensile prestress) prefabrication work can improve the efficiency of tooling equipment, shorten the construction period, save site area...

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PUM

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Abstract

The invention relates to a bridge prefabricating device adopting self-propelled line production and a method thereof. The bridge prefabricating device comprises a steel rail arranged at the bottom, wherein a trolley which can move along the steel rail is arranged on the steel rail, a reinforcement binding region, a template mounting region, a concrete pouring region, a steam curing region and a prestress tension region are sequentially arranged from the front to the back along the length direction of the steel rail, and a steam curing shed is arranged on the steel rail of the steam curing region. The bridge prefabricating device provided by the invention realizes an operation mode that construction procedures of a bridge prefabricating process are fixed and task of each working procedure is complete in regions and can improve use efficiency of tool equipment, shorten construction period, save floor space and improve bridge prefabricating efficiency, thereby having good popularization and application values and economic and social benefits.

Description

technical field [0001] The invention relates to a bridge prefabrication device adopting self-propelled flowing water operation and a method thereof. Background technique [0002] In recent decades, with the rapid development of my country's transportation industry, a large number of bridges have been built in my country. Among them, precast concrete girder bridges have achieved domestic success due to their good structural performance, low construction cost, beautiful appearance and convenient construction. widely used. [0003] The traditional prefabricated beam construction mode has low efficiency in the use of prefabricated sites, which in turn affects the production efficiency of the entire beam. From the perspective of formwork construction technology, the traditional formwork construction method has difficulties in splicing, many manual shifts, and long construction period. Quality is not easy to be guaranteed and other shortcomings. Contents of the invention [000...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B28B15/00
Inventor 吴庆雄陈荣刚黄卿维
Owner FUZHOU UNIV
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