Prediction of cover crack propagation in RC structures caused by corrosion
Author(s) -
Leon Chernin,
Dimitri V. Val,
Mark G. Stewart
Publication year - 2011
Publication title -
magazine of concrete research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.901
H-Index - 57
eISSN - 1751-763X
pISSN - 0024-9831
DOI - 10.1680/macr.10.00108
Subject(s) - corrosion , rebar , materials science , concrete cover , structural engineering , composite material , finite element method , crack closure , fracture mechanics , bar (unit) , steel bar , enhanced data rates for gsm evolution , engineering , geology , telecommunications , oceanography
The paper proposes a model relating the level of reinforcement corrosion (in terms of loss of rebar radius) with the width of corrosion-induced cracks. The model is developed using a simulation of the process of corrosion-induced crack opening by means of finite-element (FE) modelling. Concrete is treated as a linear elastic material, a vertical crack is introduced above a reinforcing bar and expansive behaviour of corrosion products is modelled using a thermal analogy. Corrosion products are divided into those that penetrate (dissipate) into cracks (no crack propagation) and those that cause crack opening. The amount of corrosion products penetrating into cracks at a specified crack width is evaluated using FE modelling and analyses of experimental results. It was found that a corrosion loss of 0·1–0·4 mm dissipated into the cracks when the crack width was 1·0 mm. The influence of geometric parameters such as rebar diameter, spacing and location, and thickness of top and edge concrete covers were investi...
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