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Structural reliability of concrete bridges including improved chloride-induced corrosion models
Authors:Kim Anh T. Vu  Mark G. Stewart  
Affiliation:

Department of Civil, Surveying and Environmental Engineering, The University of Newcastle, Rankin Drive, Newcastle, NSW 2308, Australia

Abstract:A structural deterioration reliability (probabilistic) model has been used herein to calculate probabilities of structural failure. New reinforced concrete corrosion initiation, corrosion rate and time-variant load models are proposed. Three durability design specifications are considered in a lifetime reliability analysis of a RC slab bridge. Time-variant increases in loads are considered also. It was found that the application of de-icing salts causes significant long-term deterioration and reduction in structural safety for poor durability design specifications. A reduced cover or increased water-cement ratio increases failure probabilities. When compared to the case of “no deterioration”, it was observed also that the probability of failure only marginally increased for good durability design specifications. The approaches described herein are relevant to other physical infrastructure also.
Keywords:Structural reliability   Deterioration   Corrosion   Reinforced concrete   Bridges
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