首页> 外文会议>Annual conference of the Canadian Society for Civil Engineering >INVESTIGATING THE REMAINING FATIGUE LIFE OF AN AGING ORTHOTROPIC DECK WITH HEALTH MONITORING AND LABORATORY TESTING
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INVESTIGATING THE REMAINING FATIGUE LIFE OF AN AGING ORTHOTROPIC DECK WITH HEALTH MONITORING AND LABORATORY TESTING

机译:调查具有健康监测和实验室检测的老化正交甲板的剩余疲劳寿命

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The A. Murray MacKay Bridge is an aging structure which opened to traffic over 40 years ago. With many of our structures aging, the ability to make confident management decisions supported by reliable engineering has become increasingly important. Evaluating existing structures using the design code approach contains uncertainty which affects management decisions. This paper explores an alternate method that used structural health monitoring (SHM) coupled with laboratory testing to reduce uncertainty in these decisions. The MacKay is the first suspension bridge in North America to have an orthotropic steel plate deck (OSPD), which contains three fatigue prone details of interest. A planning decision is required for when to replace the OSPD, thus the remaining fatigue life of the OSPD is needed. During the summer of 2010, sections of the OSPD near the expansion joints on the MacKay were replaced and 29 specimens from the former deck were obtained for laboratory testing. These specimens were subjected to various stress ranges and number of load cycles to obtain the remaining life S-N curve. Concurrently, key details on the MacKay were instrumented with strain gauges to obtain the in-situ strain range from vehicle loads in the deck for a one year period. This paper will discuss the details of the fatigue testing and monitoring program. Early results and preliminary conclusions for both testing and monitoring will be presented, including the reduction of fatigue life due to corrosion. Ultimately, the evaluation method presented brings more certainty to management decisions regarding infrastructure.
机译:A. Murray Mackay Bridge是一座老化结构,在40年前开放到交通。随着我们的许多结构老化,使得可靠工程支持的自信管理决策的能力变得越来越重要。使用设计代码方法评估现有结构包含影响管理决策的不确定性。本文探讨了使用结构健康监测(SHM)与实验室测试相结合的替代方法,以减少这些决策中的不确定性。 Mackay是北美的第一座悬架桥,具有正向钢板甲板(OSPD),其中包含有三个疲劳易受感兴趣的细节。何时更换OSPD,需要规划决定,因此需要oSPD的剩余疲劳寿命。在2010年夏天,麦克田膨胀接头附近的OSPD部分被取代,并获得了前甲板的29个标本进行实验室检测。将这些样本进行各种应力范围和负载循环的数量以获得剩余的寿命S-N曲线。同时,麦片上的关键细节用应变仪仪表用,以获得甲板中的车辆载荷的原位应变范围一年。本文将讨论疲劳测试和监测计划的细节。将提出早期结果和测试和监测的初步结论,包括减少由于腐蚀引起的疲劳寿命。最终,提出了评估方法为基础设施的管理决策提供了更确定的。

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