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Analysis of Stress Inhomogeneous Coefficient of a Continuous Rigid Frame Bridge during Construction Stage

机译:连续刚构桥施工阶段应力不均匀系数分析

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The box section which can meet the requirements of wider deck is widely used in the construction of continuous rigid frame bridge. However, the shearing force lag is very obvious, which causes the inhomogeneous distribution of stress in the cross section, and it may threaten the safety of the bridge structure when it is serious. Taking a continuous rigid frame bridge located in Yunnan, China as an example, this paper establishes the finite element calculation model of the bridge to analyze the stress inhomogeneity in the construction stage. The results show that the shear lag coefficient of the section is constantly changing during the dynamic process of construction, with the increase of the length of the cantilever, the shear lag coefficient gradually converges to 1; prestress is the most important factor that causes the lateral inhomogeneity of the positive stress.
机译:满足较宽甲板要求的箱形截面广泛用于连续刚构桥的施工。但是,剪力滞后非常明显,会引起截面内应力的不均匀分布,严重时可能会威胁到桥梁结构的安全。以中国云南省的连续刚构桥为例,建立桥梁的有限元计算模型,以分析施工阶段的应力不均匀性。结果表明,该段剪力滞后系数在动态施工过程中是不断变化的,随着悬臂长度的增加,剪力滞后系数逐渐收敛为1。预应力是导致正应力横向不均匀的最重要因素。

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