Novel water tie beam bracket device and construction method thereof
A frame device and bracket technology, which is applied in the field of new-type underwater tie beam bracket devices, can solve the problems of complex construction, long construction period, and high cost, and achieve the effect of easy installation and disassembly, and simple methods
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Embodiment 1
[0047] see Figure 1 to Figure 3 , a new underwater tie beam bracket device of the present embodiment is used for the construction of tie beams 8 between two underwater pile foundations 7, including a bracket bottom beam 1, a bracket top beam 2, a vertical connecting frame 3, Tie beam bottom form 4 and tie beam side form 5. Wherein, the bracket bottom beam 1 is arranged between the two transverse distribution beams 61 of the underwater work platform 6 , and the setting height of the bracket bottom beam 1 is lower than the plane height of the two transverse distribution beams 61 . The bracket top beams 2 are arranged in pairs, respectively arranged on both sides above the bracket bottom beam 1 , and the lower end surface of the bracket top beam 2 is fixedly connected with the upper end surface of the transverse distribution beam 61 . The vertical connecting frames 3 are arranged in pairs, and are arranged at both ends of the bottom beam 1 of the bracket respectively; . The t...
Embodiment 2
[0054] In this embodiment, a novel underwater tie-beam bracket device (such as Figures 1 to 3 Shown) Construction method for tie beam construction:
[0055] 1. Application engineering and environment:
[0056] For the tying width project of a Wutaishan Bridge in Suqian, Jiangsu, the upper structure adopts a 5-span 25m assembled prestressed concrete simply supported box girder structure, and the lower structure adopts a pile-type + cover beam structure. The size of the tie beam is 5.2*1*1.2m, and the elevation of the bottom of the tie beam is 10-15cm higher than the level of the river channel during construction. The whole bridge is divided into left and right sections, and spans the Suihe River. A total of 8 piers are located in the water, and the water depth is 3.5m during the construction period.
[0057] Second, the specific construction method:
[0058] (1) set up the underwater work platform 6 (conventional design in this field, such as Figure 2 to Figure 4 shown): ...
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