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Electrochemical induction of alkali-silica reaction in concrete
Abstract The use of cathodic protection as a method of countering chloride-induced corrosion of steel in concrete causes the formation of hydroxyl ions at the surface of the embedded metal. The preliminary experiments described in this note were aimed at evaluating a possible side-effect of this process under circumstances where the concrete contains a potentially reactive aggregate. For concrete specimens containing calcined flint aggregate, it was shown that deleterious local expansion of the material was generated owing to alkali-silica reaction induced in the vicinity of embedded steel when the latter was subjected to potentiostatic polarization for a period of several months at −850 mV (SCE scale). Continuing investigations are aimed at providing further insight into this phenomenon to aid the assessment of its practical implications.
Electrochemical induction of alkali-silica reaction in concrete
Abstract The use of cathodic protection as a method of countering chloride-induced corrosion of steel in concrete causes the formation of hydroxyl ions at the surface of the embedded metal. The preliminary experiments described in this note were aimed at evaluating a possible side-effect of this process under circumstances where the concrete contains a potentially reactive aggregate. For concrete specimens containing calcined flint aggregate, it was shown that deleterious local expansion of the material was generated owing to alkali-silica reaction induced in the vicinity of embedded steel when the latter was subjected to potentiostatic polarization for a period of several months at −850 mV (SCE scale). Continuing investigations are aimed at providing further insight into this phenomenon to aid the assessment of its practical implications.
Electrochemical induction of alkali-silica reaction in concrete
Sergi, G. (Autor:in) / Page, C. L. (Autor:in) / Thompson, D. M. (Autor:in)
1991
Aufsatz (Zeitschrift)
Englisch
Electrochemical induction of alkali-silica reaction in concrete
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