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首页> 外文期刊>KSCE journal of civil engineering >Indirect fatigue evaluation of CFRP-reinforced bridge deck slabs under variable amplitude cyclic loading
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Indirect fatigue evaluation of CFRP-reinforced bridge deck slabs under variable amplitude cyclic loading

机译:可变振幅循环荷载下CFRP加固桥面板的间接疲劳评估

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摘要

Currently, bridge deck slabs reinforced with Fiber Reinforced Polymer (FRP) bars have been widely studied and applied to the bridge deck slabs in North America. However, there is still a lack of knowledge on the structural performance of the concrete bridge slabs reinforced using FRP bars, especially Carbon Fiber Reinforced Polymer (CFRP) bars. This aim of this study was to investigate the fatigue performance of bridge deck slabs reinforced with CFRP bars. The fatigue capacity was investigated using indirect fatigue evaluation when the number of cycles to failure was unknown, by using the equivalent number of cycles. The variable amplitude cyclic loadings effectively contribute to damage acceleration even at fatigue cycles of 1,000,000. The evaluation of fatigue capacity with respect to serviceability showed that deflection and crack width under variable amplitude loading were evaluated over a reasonable range to ensure that serviceable capacity is satisfied for CFRP bar reinforced bridge slabs. For fatigue design, S-N curves were analyzed using the different fatigue life models proposed by previous studies. It was found that the fatigue limit under variable amplitude loading should be analyzed by using the fatigue life model based on the variable amplitude loading cases.
机译:当前,已经对纤维增强聚合物(FRP)棒增强的桥面板进行了广泛的研究,并将其应用于北美的桥面板。但是,对于使用FRP筋,特别是碳纤维增强聚合物(CFRP)筋加固的混凝土桥梁板的结构性能仍然缺乏知识。这项研究的目的是研究CFRP筋加固的桥面板的疲劳性能。当故障循环数未知时,使用间接疲劳评估法研究疲劳能力,方法是使用等效循环数。即使在1,000,000的疲劳循环下,可变振幅的循环载荷也有效地促进了损伤的加速。疲劳能力相对于可使用性的评估表明,在合理范围内评估了可变振幅载荷下的挠度和裂缝宽度,以确保CFRP筋桥结构的可使用能力得到满足。对于疲劳设计,使用先前研究提出的不同疲劳寿命模型分析了S-N曲线。研究发现,在变幅载荷情况下,应采用疲劳寿命模型来分析变幅载荷下的疲劳极限。

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