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Experimental and numerical behaviour of reinforced mortar plates subjected to accelerated corrosion
Authors:Quang Thanh Nguyen  Sabine Caré  Yves Berthaud  Alain Millard  Frédéric Ragueneau
Institution:1. LMT, ENSC/CNRS/UPMC Paris Universitas/PRES UniverSud Paris, 61 avenue Président Wilson, 94235 Cachan, France;2. Université Paris‐Est, laboratoire Navier, école des Ponts Paris Tech, LCPC, CNRS, 2 allée Kepler, 77420 Champs sur Marne, France;3. CEA/DEN/DM2S/SEMT/LM2S, 91191 Gif‐sur‐Yvette cedex, France
Abstract:Most reinforced concrete structures are damaged due to corrosion of reinforcements in concrete. In normal conditions the pH near the reinforcements is around 12–13 which means that steel is in a passive state. But aggressive species, such as chloride ions or carbon dioxide, may penetrate into concrete and promote active corrosion. As a consequence (hydro)oxides are produced leading to degradation of concrete structures. For instance cracking of the concrete is generated due to the pressure induced by rust. In this paper, we study the inception and the propagation of cracking on reinforced mortar plates with rebars located either in the middle or at the corner. Additional experiments have been performed on cylindrical specimens to determine the local effect of rust pressure at the interface rust/mortar. The specimens have been subjected to imposed current density in order to enhance the corrosion and digital image intercorrelation has been used to determine displacement fields. The experiments have been compared to numerical modelling. Copyright © 2010 John Wiley & Sons, Ltd.
Keywords:corrosion  reinforced concrete  damage modelling
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