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Fatigue Life Estimation for Suspenders of a Three-Pylon Suspension Bridge Based on Vehicle–Bridge-Interaction Analysis

机译:基于车桥相互作用分析的三塔式悬索桥吊架疲劳寿命估算

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摘要

Fatigue damage of suspenders is a main concern during the life-cycle maintenance of arch bridges and suspension bridges. This paper presents a practical framework for estimating the fatigue life of suspenders under repeated traffic loads by taking a three-pylon suspension bridge as an example. First, the basic theory of vehicle–bridge interaction (VBI) is introduced and a finite element model of the bridge structure is established. Second, the fatigue load spectrum is defined in detail based on the analysis of WIM (weigh-in-motion) data. And then, parametric analysis is carried out to clarify the influence of road roughness, vehicle speed, and driving lanes. Among which, the time-dependent stress laws are simulated according to the defined fatigue load spectrum and the stress range is counted through the Rain flow counting method. At last, the fatigue life of uncorroded suspenders and naturally corroded suspenders is estimated by an S–N curve and Miner cumulative damage criterion. Results reveal that the fatigue life of suspenders is more than 100 years if no corrosion happens, while less than 20 years for short suspenders considering the influence of natural corrosion.
机译:在拱桥和悬索桥的生命周期维护中,悬索的疲劳损坏是主要关注的问题。本文以三塔式悬索桥为例,提出了一种在反复交通负荷下估算悬架疲劳寿命的实用框架。首先,介绍了车桥相互作用的基本理论,并建立了桥梁结构的有限元模型。其次,基于对WIM(运动中称重)数据的分析,详细定义了疲劳载荷谱。然后,进行参数分析以弄清道路不平度,车速和行车道的影响。其中,根据定义的疲劳载荷谱模拟随时间变化的应力定律,并通过雨流计数法对应力范围进行计数。最后,通过S–N曲线和Miner累积损伤准则估算未腐蚀的悬挂器和自然腐蚀的悬挂器的疲劳寿命。结果表明,如果不发生腐蚀,吊架的疲劳寿命将超过100年,而考虑自然腐蚀的影响,短吊架的疲劳寿命将不到20年。

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