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Finite element analysis of temporary pre-stress system of precast segmental box girder bridge

机译:预制节段箱梁桥临时预应力系统的有限元分析

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The precast segmental bridge has the advantages of fast construction speed, good economic performance, and small impact on the surrounding environment. In order to study the role of the temporary pre-stressing system in the cantilever assembly process of the precast segment box girder bridge, ABAQUS was used to simulate the assembly process of the standard section of a viaduct. Studying the compressive stress and relative sliding of the joint section under the action of the self-weight and temporary pre-stress, the reasonable number and spatial arrangement of the tension pedestal are determined. The research results show that too few roof pedestals will cause the large area decompression state and too much will cause the construction period to be longer. When the roof symmetrical pedestal is located on the inner side of the web, it will obviously increase the area of the zero-compression stress at the end of the top slab. When the distance between the pedestal and the center of the web is 0.12L, the full section meets the minimum consolidation pressure requirement of the glued joint. The reasonable number of tension pedestals and their spatial arrangement will provide specific guidance and reference to assembling construction of actual precast segment box girder in the future.
机译:预制节段桥具有施工速度快,经济性能良好,以及对周围环境的小的影响。为了研究临时预应力系统在预制段箱梁梁桥的悬臂组装过程中的作用,ABAQUS用于模拟高架桥的标准部分的组装过程。在自重和临时预应力的作用下研究接合部分的压缩应力和相对滑动,确定张力基座的合理数量和空间布置。研究结果表明,屋顶基座太少将导致大面积减压状态,过多会导致施工期更长。当屋顶对称的基座位于网的内侧时,它将显然将零压缩应力的面积增加在顶板的末端。当基座和网的中心之间的距离为0.12L时,整个部分满足胶合接头的最小合并压力要求。合理数量的张力基座及其空间布置将提供对未来实际预制段箱梁的组装结构的具体指导和参考。

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