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A bridge construction method

A bridge construction and bridge technology, applied in bridges, bridge materials, bridge construction, etc., can solve problems such as hidden dangers, bridges affected by force, poor connection strength, etc., to reduce the trouble of later disassembly, prolong the service life, The effect of improving the seismic performance

Inactive Publication Date: 2018-06-15
SHAANXI RAILWAY INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The disadvantages are: the construction of the joints of the unit bodies constituting the bridge deck is troublesome, the connection strength of the joints between the unit bodies constituting the bridge deck is poor, leaving hidden dangers; the construction equipment requires high requirements, and bridges with large spans are not suitable for use; The construction from the beam to the bridge deck is completed, and the construction period is long; the site required for the prefabricated bridge deck unit is large
The disadvantages are: the passage or navigation under the bridge must be closed, which will cause obstacles to local traffic and economic development; the requirements for the terrain conditions under the bridge are relatively high, and the cost of bent-bench base treatment and bent-frame preloading is quite high; the sinking of the bent frame will cause quality problems. ACCIDENT
The disadvantages are: the construction requirements are high, and the safety of the cantilever construction is relatively small; the construction length of each unit is limited, there are many construction units per span, and the amount of work for each unit is not large, but there are many construction procedures for each unit. It takes a long time to put the hanging basket in place, set up the formwork, bind the steel bars, pour concrete, maintain the concrete, demould, apply prestress, seal the anchor, and drop the frame, so the construction period is long and the progress is very slow; It is difficult to control the precision of the construction project, and when the closing error is large, it will affect the force of the bridge; the project cost is high
[0006] To sum up, the existing bridge construction methods cannot meet the requirements of not only maintaining the navigation requirements under the bridge, but also ensuring the integrity of the bridge deck, high construction accuracy and fast construction progress.

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  • A bridge construction method

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Embodiment Construction

[0031] In order to make the objects and advantages of the present invention clearer, the present invention will be further described in detail below in conjunction with the examples. It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention.

[0032] The embodiment of the present invention provides a kind of bridge construction method, comprises the following steps:

[0033] S1. Concrete foundations are respectively constructed on the foundations at both ends of the bridge:

[0034] Such as figure 1 As shown, S11, excavate a foundation pit 4 with a stepped contact surface, and lay a waterproof layer 8 on the inner wall of the foundation pit;

[0035] S12, after completing the laying of the waterproof layer, anchor the base plate 1 at the bottom of the foundation pit, and lay the notoginseng ash layer 3 on the base plate 1;

[0036] S13, pouring the concrete reinforcement body 5 on ...

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Abstract

The invention discloses a bridge construction method. The bridge construction method comprises steps as follows: concrete foundations are constructed on foundations at two ends of a bridge respectively; prefabricated mounting seats are embedded in the concrete foundations; two ends of a beam-column type support are fixed on the two mounting seats through welding, a bridge superstructure is formed through binding, and a mold of the bridge is mounted and fixed on the bridge superstructure and formed through high-strength concrete pouring; a concrete slide is poured on the beam-column type support and transversely extends to communicate with pouring positions of all transversely adjacent bridge sections, and a pouring trolley is placed in the concrete slide; mixing of a concrete pouring material is finished, bridge pouring is performed, and the concrete pouring material and the beam-column type support are poured together; a support lowering device is dismounted after setting of concrete. With the adoption of the method, the construction efficiency is improved, the self-made high-strength, anti-crack and anti-permeability concrete is adopted, so that the firmness, stability and corrosion resistance of a bridge body are greatly improved, and the service life of the bridge body is prolonged.

Description

technical field [0001] The invention relates to a building construction method, in particular to a bridge construction method. Background technique [0002] At present, bridge construction is the most important thing in the construction of expressways, high-speed railways and urban viaducts. In bridge construction, no matter what type of bridge, there are only two ways to construct the bridge superstructure (bridge slab): one is prefabricated installation construction , and the other is cast-in-place construction. There are two ways to fix the outer formwork for forming the bridge slab in the cast-in-place: one is to use the full hall bracket for support, and the other is to use the hanging basket for suspension. [0003] Prefabricated installation construction is to decompose the bridge slab into units and make them in factories or prefabrication yards, and then transport the units that make up the bridge slab to the location of the bridge and install them on the piers. T...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E01D21/00E02D27/14E01D101/24E01D101/26C04B28/14
CPCC04B28/14E01D21/00E01D2101/24E01D2101/26E02D27/14E02D2300/002C04B22/148C04B14/48C04B24/26C04B18/24C04B2103/302C04B14/04C04B14/28C04B24/04C04B14/026C04B24/16C04B7/32C04B7/02C04B7/14C04B7/22C04B18/08C04B14/02C04B14/06
Inventor 宁波张学钢王安东李科兴
Owner SHAANXI RAILWAY INST