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Parametric Study on Responses of a Self-Anchored Suspension Bridge to Sudden Breakage of a Hanger

机译:自锚式悬架桥突然破损悬挂器响应的参数研究

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摘要

The girder of self-anchored suspension bridge is subjected to large compression force applied by main cables. So, serious damage of the girder due to breakage of hangers may cause the collapse of the whole bridge. With the time increasing, the hangers may break suddenly for their resistance capacities decrease due to corrosion. Using nonlinear static and dynamic analysis methods and adopting 3D finite element model, the responses of an actual self-anchored suspension bridge to sudden breakage of hangers are studied in this paper. The results show that the sudden breakage of a hanger causes violent vibration and large changes in internal forces of the bridge. In the process of the vibration, the maximum tension of hanger produced by breakage of a hanger exceeds 2.22 times its initial value, and the reaction forces of the bearings increase by more than 1.86 times the tension of the broken hanger. Based on the actual bridge, the influences of some factors including flexural stiffness of girder, torsion stiffness of girder, flexural stiffness of main cable, weight of girder, weight of main cable, span to sag ratio of main cable, distance of hangers, span length, and breakage time of hanger on the dynamic responses are studied in detail, and the influencing extent of the factors is presented.
机译:自锚固悬架桥的梁经受主电缆施加的大压缩力。因此,由于挂衣架的破损可能会严重损坏梁可能导致整个桥梁的崩溃。随着时间的推移,吊架可能因腐蚀而突然断裂。采用非线性静态和动态分析方法和采用3D有限元模型,本文研究了实际自锚悬架桥的响应突然破损。结果表明,悬挂器的突然破裂会导致桥梁内部力的剧烈振动和大变化。在振动的过程中,由悬挂器破裂产生的悬挂器的最大张力超过其初始值的2.22倍,并且轴承的反作用力增加了破碎悬挂器的张力的张力的1.86倍。基于实际桥梁,对一些因素的影响,包括弯曲刚度的梁,梁的扭转刚度,主电缆的弯曲刚度,梁的重量,主电缆的重量,主电缆的距离距离,悬挂距离,距离悬挂式距离详细研究了动态响应上衣架的长度和破损时间,并提出了因素的影响程度。

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