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Prestress Tendons Layout Considering Spatial Stress Characteristics of Prestressed Concrete Box-Girder Bridges

机译:考虑预应力混凝土箱梁桥的空间应力特性预应力肌腱布局

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Prestressed concrete box-girder bridge is a typical spatial structure. Prestresses in three directions are often used to control the stresses of the slabs to meet the demands of serviceability-limited state. Because Finite Element Method (FEM) for plane beam is used by most bridge design software in practice, prestresses in different directions have to be designed separately. Researches about interaction of prestresses in three directions are rare and prestress-tendon layout arranged by spatial stress distribution of the box-girder is seldom. In this paper, a long span prestressed concrete box-girder bridge is analyzed by FEM for solid elements with reinforcement. Normal stresses of flange of the box-girder bridge in different prestress conditions are compared to explain interaction mechanism of the prestresses. Suggestions about vertical prestress arrangement are also provided by normal stress distribution of the bridge web in vertical direction.
机译:预应力混凝土箱梁桥是一种典型的空间结构。三个方向的预应力通常用于控制板坯的应力,以满足可维护性有限的状态的需求。由于大多数桥梁设计软件在实践中使用平面光束的有限元方法(FEM),因此必须单独设计不同方向的预应力。关于预应力在三个方向上的相互作用的研究是通过箱梁的空间应力分布布置的稀有和预应力 - 肌腱布局很少。本文采用了一款长跨度预应力混凝土箱梁梁桥,用加固的固体元素分析。比较不同预应力条件的箱梁桥法兰的正常应力,以解释预应力的相互作用机制。关于垂直预应力布置的建议也由桥网沿垂直方向的正常应力分布提供。

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