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Experimental and Numerical Evaluation of the Postfracture Redundancy of a Simple Span Truss Bridge

机译:简单跨度桁架桥断裂后冗余的试验与数值评估

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The fracture critical (FC) classification was developed and implemented for bridges in which the failure of a single member could lead to failure or collapse of the structure. The FC classification can increase the fabrication cost of the bridge, but far more expensive are the required arms-length biennial in-service inspections. To reduce costs for state highway agencies, it would be beneficial to reconsider the FC designation or, at least, the frequency of the arms-length in-service inspections for bridges, where appropriate. This research evaluated (1) the redundancy of a full-scale 45.72-m (150-ft) truss bridge structure by conducting controlled fracture tests in the field and (2) the use of numerical analysis techniques for quantifying the postfracture behavior and redundancy of the full-scale truss bridge. The experimental results indicate that the truss bridge structure had significant member-level and system-level redundancies, which prevented failure or collapse of the structure caused by failure of the FC member. The numerical models can predict the postbehavior and redundancy of the full-scale truss bridge reasonably well, but with some limitations. The experimental and numerical approaches presented in this paper are recommended for conducting additional investigations, expanding the knowledge database, and eventually for reconsidering the FC classification or the frequency of arms-length inspections.
机译:针对桥梁的断裂关键(FC)分类已开发并实施,其中单个构件的失效可能导致结构失效或坍塌。 FC分类可能会增加桥梁的制造成本,但所需的单臂两年一次在役检查成本更高。为了减少国有公路机构的成本,在适当的情况下,重新考虑FC的指定,或者至少重新考虑对桥梁进行独立运行检查的频率将是有益的。这项研究(1)通过在现场进行受控断裂试验评估了全尺寸45.72米(150英尺)桁架桥结构的冗余度,以及(2)使用数值分析技术来量化后断裂行为和冗余度完整的桁架桥。实验结果表明,桁架桥结构具有显着的构件级和系统级冗余性,从而防止了因FC构件失效而导致的结构失效或坍塌。数值模型可以较好地预测全尺寸桁架桥的后行为和冗余,但有一些限制。建议本文中介绍的实验和数值方法用于进行其他研究,扩展知识数据库,并最终用于重新考虑FC分类或独立检查的频率。

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