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首页> 外文期刊>Journal of bridge engineering >Life-Cycle Cost Comparison of Corrosion Management Strategies for Steel Bridges
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Life-Cycle Cost Comparison of Corrosion Management Strategies for Steel Bridges

机译:钢桥腐蚀管理策略的生命周期成本比较

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Corrosion of metals is one of the primary factors leading to the deterioration of bridge structures in the US. Protective coatings applied to the surface of the metal have been widely used as a corrosion protection system for steel bridge components. Because the coating also can deteriorate over time, other strategies, such as using steels with better corrosion resistance (i.e., weathering steels), have also been adopted. A recently developed structural stainless steel has shown better performance than conventional weathering steels, particularly in harsh environments, but it comes with a high initial cost. The aim of this study is to compare the life-cycle costs (LCCs) of various corrosion management strategies for bridge steel structures, using either coated carbon steel or structural stainless steel. To evaluate the structural performance of the coated carbon steel structure, a new probabilistic corrosion model is developed for the first time that explicitly incorporates the coating degradation in the steel deterioration process. Using two case studies, this study compares the LCCs of cyclical- and condition-based maintenance strategies and investigates the impact of different coating systems on the LCC. The results show that the structural stainless steel may be more economically beneficial than coated carbon steel, but the payoff time depends on the parameters used in the LCC analysis, such as the maintenance strategies adopted for the coated carbon steel, the coating type, the discount factor, and the size of the structure considered. (c) 2019 American Society of Civil Engineers.
机译:金属腐蚀是导致美国桥梁结构恶化的主要因素之一。涂在金属表面的防护涂层已被广泛用作钢桥构件的腐蚀防护系统。由于涂层也会随着时间的流逝而变质,因此还采用了其他策略,例如使用具有更好耐腐蚀性的钢(即耐候钢)。最近开发的结构不锈钢表现出比常规耐候钢更好的性能,特别是在恶劣的环境中,但是它的初始成本很高。这项研究的目的是比较使用涂层碳钢或结构不锈钢的桥梁钢结构各种腐蚀管理策略的生命周期成本(LCC)。为了评估涂层碳钢结构的结构性能,首次开发了一种新的概率腐蚀模型,该模型明确将涂层降解纳入了钢的劣化过程。本研究使用两个案例研究,比较了周期性和基于条件的维护策略的LCC,并研究了不同涂料系统对LCC的影响。结果表明,结构不锈钢可能比涂层碳钢更具经济效益,但放线时间取决于LCC分析中使用的参数,例如涂层碳钢的维护策略,涂层类型,折扣因素,以及所考虑结构的大小。 (c)2019美国土木工程师学会。

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