首页> 外文期刊>Journal of bridge engineering >Behavior and Fatigue Performance of Details in an Orthotropic Steel Bridge with UHPC-Deck Plate Composite System under In-Service Traffic Flows
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Behavior and Fatigue Performance of Details in an Orthotropic Steel Bridge with UHPC-Deck Plate Composite System under In-Service Traffic Flows

机译:在役交通流量下带有UHPC-甲板板组合系统的正交异性钢桥的细节行为和疲劳性能

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Using field monitoring and finite-element analysis (FEA), this paper presents the results of an investigation on stress behavior and fatigue life estimation of fatigue-prone details on an orthotropic steel deck (OSD) with the ultrahigh-performance concrete (UHPC)-deck plate composite system. The work was performed on the Fochen West Bridge in southern China, a three-span-continuous OSD girder structure with a UHPC-deck plate composite system. The results of the study showed that welded details connected to the deck plate experienced one stress cycle for each passing individual axle, while other details away from the deck plate experienced one stress cycle for each passing axle group. Due to the significant contribution of the UHPC-deck plate composite system to deck stiffness, welded details connected to the deck plate experienced low stress ranges under direct wheel loads. However, local load effects under concentrated wheel loading still existed, and the magnitudes of stresses at fatigue-prone details were sensitive to the transverse position of individual wheel loads. Comparisons between FEA and field measurements indicated that the AASHTO fatigue truck may have underestimated stress ranges for fatigue evaluation of this bridge. The study concluded that all fatigue-susceptible details investigated on the Fochen West Bridge had sufficient resistance against fatigue cracking under the current traffic flows per AASHTO fatigue provisions. Finally, suggested guidance for the design of OSD with the UHPC-deck plate composite system was provided. (C) 2017 American Society of Civil Engineers.
机译:通过现场监测和有限元分析(FEA),本文介绍了采用超高性能混凝土(UHPC)的正交异性钢甲板(OSD)上易疲劳细节的应力行为和疲劳寿命估计的研究结果,甲板复合材料系统。这项工作是在中国南部的Fochen West桥上进行的,该桥是一个三跨连续的OSD大梁结构,带有UHPC-甲板板复合系统。研究结果表明,连接到桥面板的焊接零件对于每个通过的单独轴经历一个应力循环,而远离甲板的其他零件对于每个经过的轴组经历一个应力循环。由于UHPC-甲板板复合系统对甲板刚度的重要贡献,连接到甲板板上的焊接零件在直接车轮载荷下承受的应力范围很小。但是,在集中的车轮载荷下仍然存在局部载荷效应,易疲劳细节处的应力大小对单个车轮载荷的横向位置敏感。有限元分析和现场测量之间的比较表明,AASHTO疲劳卡车可能对该桥的疲劳评估的应力范围被低估了。该研究得出的结论是,根据AASHTO疲劳规定,在当前车流量下,在Fochen西桥上进行的所有疲劳敏感细节都具有足够的抵抗疲劳开裂的能力。最后,提供了使用UHPC-甲板板复合系统设计OSD的建议指南。 (C)2017年美国土木工程师学会。

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