首页> 外文会议>26th Annual International Bridge Conference 2009 : IBC 2009 : Meeting bridge challenges in challenging times >Comparison of Cost Effectiveness of Various Corrosion-Resistant Reinforcing Bars and Other Corrosion Protection Strategies for New Bridge Decks
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Comparison of Cost Effectiveness of Various Corrosion-Resistant Reinforcing Bars and Other Corrosion Protection Strategies for New Bridge Decks

机译:新型桥架的各种耐腐蚀钢筋成本效益比较及其他防腐蚀策略的比较

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摘要

A service life model has been applied to predict the performance of corrosion-mitigation alternatives, including the use of MMFX-II reinforcing steel, epoxy-coated reinforcing steel, solid stainless reinforcing steel, stainless clad reinforcing steel, and high performance concrete (HPC), in a bridge deck setting. This was done to provide a rational basis for performing a life cycle cost analysis. This service life model is based on statistical distributions of exposure conditions, concrete quality and cover depth, and discrete estimates of the reinforcing chloride threshold, and predicts the amount of corrosion-related damage occurring over time. The base input deck properties and exposure conditions were selected to fall within ranges measured on actual structures in Virginia and Iowa, and represent a severe set of conditions. The HPC was modeled based on an excellent quality, low permeability concrete having a diffusion coefficient one-sixth that for the base concrete.
机译:已将使用寿命模型应用于预测缓蚀措施的性能,包括使用MMFX-II增强钢,环氧涂层增强钢,实心不锈钢增强钢,不锈包层增强钢和高性能混凝土(HPC) ,在桥面环境中。这样做是为了为执行生命周期成本分析提供合理的基础。该使用寿命模型基于暴露条件,混凝土质量和覆盖深度的统计分布以及增强氯化物阈值的离散估计,并预测随时间推移发生的与腐蚀相关的破坏量。基本输入甲板的性能和暴露条件选择为落入在弗吉尼亚州和爱荷华州的实际结构所测得的范围内,并代表着一系列严酷的条件。 HPC基于优质,低渗透性混凝土进行建模,其扩散系数是基础混凝土的六分之一。

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