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Study on force of steel bracket for construction of large span and wide steel box girder

机译:大跨度宽钢箱梁施工钢支架力研究

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Dongping waterway bridge is a steel concrete composite single-tower cable stayed bridge with spans of 35+260+50+64+66 m. The bridge M21-M31 beam section is constructed by steel pipe bracket. The Steel pipe column is designed for transverse bridge to 2 groups of 4 rows, each 2 rows connected into a group, and the steel pipe column is connected through the profile steel connection system. The top of steel pipe column is equipped with profiled steel beam, the profiled steel distribution beam is equipped with bailey beam and I-beam, and the longitudinal moving push-up slideway of the steel box beam is installed on the I-beam. In order to check the safety of steel pipe bracket in construction stage, the finite element model of steel pipe bracket and the field measured steel pipe stress are established by MIDAS software. The results show that the force and alignment change of the steel bracket construction used in this bridge is reasonable. In addition, through the finite element optimization of the existing bracket, it is proved that the optimized steel bracket structure can save 20% steel consumption under the premise of ensuring safety, which provides a reference for similar projects.
机译:东平水路桥是钢 - 混凝土组合单塔斜拉桥具有35 + 260 + 50 + 64 +66米跨度。桥M21-M31光束部分由钢管托架构成。钢管柱被设计用于横向桥2组的4排,每2行连接成一组,与钢管柱通过型钢连接系统连接。钢管柱的顶部装有型钢梁,该型钢板分布横梁上装有贝利梁和I形梁,钢箱形梁的被安装在工字梁的纵向移动推滑道。为了检查在施工阶段钢管支架的安全性,钢管托架的和有限元模型中的场测定的钢管的应力是由MIDAS软件确立。结果表明,在此桥中使用的钢支架结构的力和取向变化是合理的。此外,通过现有的支架的有限元优化,它证明了优化的钢支架结构可以节省在确保安全,它提供了类似工程参考的前提下,20%的钢的消耗。

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