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Research on Mechanism of Overturning Failure for Single-column Pier Bridge

机译:单柱墩桥翻转失效机制研究

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This paper presents the research on mechanism of overturning failure on box girder under overload and partial load for the single-column pier bridges. It includes (1) the definition of two key states before the box girder overturas(i.e., the disengaging state leading to the unbalanced load bearing and the ultimate state of overturning stability),(2) the depiction of three stages along overturning (stable stage, transitional stage, and overturning stage, (3) the development of an ABAQUS finite element model considering contact nonlinear and geometry nonlinear for analyzing Chunhui bridge collapse, and (4)the undertaking on identifying the relationships between overturning ultimate load and elastic modulus of box girder, load position, bridge length and friction coefficient of bearing and box girder. The results indicate that the overturning load calculated by finite element simulation conforms to the measurements collected at the collapse site of Chunhui bridge, reflecting the validity of the proposed study. The ultimate state of the overturning stability can be used to judge whether the bridge is overturning. It is more accurate than using the disengaging state of one side end bearing to judge, and the overturning ultimate load is 1.5-2 times than the rotating ultimate load.
机译:本文介绍了单柱墩桥下箱梁倾斜失效机理的研究。它包括(1)在箱梁转移前的两个关键状态的定义(即,脱离状态导致不平衡的负载轴承和倾覆稳定性的最终状态),(2)沿推翻的三个阶段的描述(稳定阶段,过渡阶段和推翻阶段,(3)考虑联系非线性和几何非线性的ABAQUS有限元模型的开发,用于分析春水桥崩溃,(4)识别推翻最终负荷和弹性模量之间的关系的承诺梁,负荷位置,桥梁长度和轴承箱梁摩擦系数和箱梁。结果表明,有限元模拟计算的倾覆负荷符合春晖桥梁塌陷现场收集的测量,反映了拟议研究的有效性。该推翻稳定性的最终状态可用于判断桥是否倾斜。它比利用一个侧端轴承的脱离状态判断,倾覆的最终负载比旋转极限负载为1.5-2次。

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