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Numerical study on failure process and ultimate state of steel bearing under combined load

机译:组合载荷作用下钢轴承破坏过程与极限状态的数值研究

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摘要

The limit state and deformation performance of steel bearing under seismic load is one of the most critical points to consider the effective or rational design of bridge against strong ground motion. In the 2016 Kumamoto earthquake, various bridges are damaged by the earthquake. Among the components of the bridge, steel bearings are the most damaged part of the bridge, which affects the functionality of the entire bridge. Since the 1995 Southern Hyogo Prefecture Earthquake, several studies about the ultimate state of steel bearing during earthquake carried out. However, there are a few studies on analyzing the failure processes and ultimate state of steel bearing when various loads assumed at the time of the earthquake. Therefore, the study investigates the failure process and ultimate state of pin bearing and pin-roller bearing under combined load using static push-over analysis. First, the bridge axis and perpendicular bridge axis horizontal loading directions proposed depending on the actual earthquake directional behavior of the bridge. Then the analysis of each bearing conducted and clarified the failure process of each bearing that leads to failure based on the von mises stress yield criteria. Three-dimensional finite element method used to analyze the bearings. The analysis result found that set bolt and pin neck tensile failure were the probable failure mode of pin bearing, and failure mode of pin-roller bearing depends on vertical and horizontal loading direction. In the future, the result used to propose a new seismic resistance design and reinforcement method of bearings that satisfies the required performance.
机译:在地震作用下,钢轴承的极限状态和变形性能是考虑桥梁有效或合理设计以抵抗强烈地面运动的最关键点之一。在2016年的熊本地震中,各种桥梁都被地震破坏了。在桥梁的各个组成部分中,钢轴承是桥梁中受损最严重的部分,这会影响整个桥梁的功能。自1995年兵库县南部地震以来,对地震中钢轴承的极限状态进行了多项研究。但是,在地震发生时承担各种载荷的情况下,对钢轴承的破坏过程和极限状态进行分析的研究很少。因此,本研究利用静推力分析法研究了组合载荷作用下销轴承和销-滚子轴承的失效过程和极限状态。首先,根据桥梁的实际地震方向,提出了桥梁轴线和垂直桥梁轴线的水平荷载方向。然后根据冯·米斯应力屈服准则对每个轴承进行了分析,并弄清了导致失效的每个轴承的失效过程。用于分析轴承的三维有限元方法。分析结果发现,定位螺栓和销颈的拉伸失效是销轴承的可能失效方式,而销-滚子轴承的失效方式取决于垂直和水平载荷方向。将来,该结果将用于提出一种新的抗震设计和满足要求性能的轴承加固方法。

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