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Fatigue Assessment of Steel-UHPC Lightweight Composite Deck Based on Multiscale FE Analysis: Case Study

机译:基于多尺度有限元分析的钢-UHPC轻量化复合材料甲板疲劳评估:案例研究

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A lightweight steel-ultrahigh performance concrete (UHPC) composite deck (LWCD) was developed for alleviating deterioration issues in orthotropic steel decks (OSDs). In recent years, the LWCD has been increasingly applied to steel bridges in China. This paper focuses on the fatigue assessment of the LWCD on the basis of a pilot project on the 310-m cable-stayed Haihe Bridge. A multiscale finite-element (FE) model was built to integrate the global and local responses of the bridge without significantly increasing the computing cost. In the study, a parametric analysis was conducted to reveal the influences of the longitudinal position of the girder segment and the transverse position of the fatigue load on the stresses of the LWCD. In addition, a detailed fatigue assessment was performed that covered the following fatigue-prone details: the rib-to-deck connection and the rib-to-diaphragm connection in the OSD, the headed studs, and the UHPC layer. The analysis results show that for the OSD details, the values of the vehicle-induced stress ranges were significantly reduced when a thin UHPC layer was added, indicating that the fatigue-cracking risks in the details could be basically eliminated. In addition, the results also reveal that both the headed studs and the UHPC layer, generated by the application of the LWCD, can meet the design requirements in terms of fatigue. (C) 2017 American Society of Civil Engineers.
机译:开发了轻型钢-超高性能混凝土(UHPC)复合甲板(LWCD),以缓解正交异性钢甲板(OSD)中的劣化问题。近年来,LWCD已越来越多地应用于中国的钢桥。本文基于310m斜拉海河大桥的试点项目,重点研究了轻质混凝土的疲劳评估。建立了多尺度有限元(FE)模型,以在不显着增加计算成本的情况下集成桥梁的全局和局部响应。在研究中,进行了参数分析,以揭示大梁段的纵向位置和疲劳载荷的横向位置对轻质混凝土应力的影响。此外,还进行了详细的疲劳评估,涵盖了以下容易疲劳的细节:OSD,带头螺柱和UHPC层中的肋骨到甲板连接和肋骨到膜片连接。分析结果表明,对于OSD细节,当添加薄的UHPC层时,车辆引起的应力范围的值显着减小,这表明可以基本消除细节中的疲劳裂纹风险。此外,结果还表明,通过应用LWCD产生的双头螺栓和UHPC层都可以满足疲劳方面的设计要求。 (C)2017年美国土木工程师学会。

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