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Experimental validation of a damage detection approach on a full-scale highway sign support truss

机译:公路标牌支撑桁架上损伤检测方法的实验验证

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摘要

Highway sign support structures enhance traffic safety by allowing messages to be delivered to motorists related to directions and warning of hazards ahead, and facilitating the monitoring of traffic speed and flow. These structures are exposed to adverse environmental conditions while in service. Strong wind and vibration accelerate their deterioration. Typical damage to this type of structure includes local fatigue fractures and partial loosening of bolted connections. The occurrence of these types of damage can lead to a failure in large portions of the structure, jeopardizing the safety of passing traffic. Therefore, it is important to have effective damage detection approaches to ensure the integrity of these structures. In this study, an extension of the Angle-between-String-and-Horizon (ASH) flexibility-based approach (32] is applied to locate damage in sign support truss structures at bay level. Ambient excitations (e.g. wind) can be considered as a significant source of vibration in these structures. Considering that ambient excitation is immeasurable, a pseudo ASH flexibility matrix constructed from output-only derived operational deflection shapes is proposed. A damage detection method based on the use of pseudo flexibility matrices is proposed to address several of the challenges posed in real-world applications. Tests are conducted on a 17.5-m long full-scale sign support truss structure to validate the effectiveness of the proposed method. Damage cases associated with loosened bolts and weld failures are considered. These cases are realistic for this type of structure. The results successfully demonstrate the efficacy of the proposed method to locate the two common forms of damage on sign support truss structures instrumented with a few accelerometers.
机译:高速公路标志支持结构通过允许向驾驶员发送与方向指示和前方危险警告有关的消息,并促进了对交通速度和流量的监控,从而提高了交通安全性。这些结构在使用中会遭受不利的环境条件。强风和振动会加速其恶化。这种结构的典型损坏包括局部疲劳断裂和螺栓连接的部分松动。这些类型的损坏的发生会导致结构的大部分失效,从而危害过往交通的安全。因此,重要的是具有有效的损伤检测方法以确保这些结构的完整性。在这项研究中,基于弦和水平角(ASH)基于柔韧性的方法(32)的扩展被应用来定位海湾位置的标志支撑桁架结构中的损伤,可以考虑环境激励(例如风)考虑到环境激励是不可估量的,提出了由仅输出导出的工作挠度形状构成的伪ASH柔韧性矩阵,提出了一种基于伪柔韧性矩阵的损伤检测方法。在实际应用中面临的一些挑战:在17.5米长的全尺寸标志支撑桁架结构上进行测试以验证该方法的有效性,并考虑了与螺栓松动和焊接失效相关的损坏情况。对于这种类型的结构是很现实的,结果成功地证明了所提出的方法可以定位两种常见形式的损伤。装有一些加速度计的结构桁架结构。

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  • 来源
    《Mechanical systems and signal processing》 |2012年第4期|p.195-211|共17页
  • 作者单位

    School of Engineering at University of Western Sydney, Penrith, NSW 2747. Australia,School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, USA,Conducted part of this work while a post-doctoral research associate with the School of Mechanical Engineering at Purdue University, and part of this work at University of Western Sydney;

    School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, USA;

    School of Civil Engineering, Purdue University, West Lafayette, IN 47907, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sign support truss; damage detection; flexibility; full-scale experiment;

    机译:标志支撑桁架;损坏检测;灵活性;全面实验;

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