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Santarini, G.; Pinard-Legry, G.
CEA Centre d'Etudes Nucleaires de Fontenay-aux-Roses, 92 (France). Dept. de Chimie Appliquee et d'Etudes Analytiques1988
CEA Centre d'Etudes Nucleaires de Fontenay-aux-Roses, 92 (France). Dept. de Chimie Appliquee et d'Etudes Analytiques1988
AbstractAbstract
[en] For many years, studies have been carried out in several laboratories to characterize the IGSCC (Intergranular Stress Corrosion Cracking) behaviour of nickel base alloys in aqueous environments. For their relative shortness, CERTs (Constant Extension Rate Tests) have been extensively used, especially at the Corrosion Department of the CEA. However, up to recently, the results obtained with this method remained qualitative. This paper presents a first approach to a quantitative interpretation of CERT results. The basic datum used is the crack trace depth distribution determined on a specimen section at the end of a CERT. It is shown that this information can be used for the calculation of initiation and growth parameters which quantitatively characterize IGSCC phenomenon. Moreover, the rationale proposed should lead to the determination of intrinsic cracking parameters, and so, to in-service behaviour prediction
Primary Subject
Source
1988; 9 p; EUROCORR'88: Symposium on Corrosion; Brighton (UK); 3-5 Oct 1988
Record Type
Report
Literature Type
Conference
Report Number
Country of publication
ALLOYS, ALUMINIUM ADDITIONS, BOILERS, CHEMICAL REACTIONS, CHROMIUM ALLOYS, CORROSION, CORROSION RESISTANT ALLOYS, HEAT RESISTING ALLOYS, HYDROGEN COMPOUNDS, INCOLOY ALLOYS, INCONEL ALLOYS, IRON ALLOYS, IRON BASE ALLOYS, NICKEL ALLOYS, NICKEL BASE ALLOYS, NIMONIC, OXYGEN COMPOUNDS, POLAR SOLVENTS, SOLVENTS, TESTING, TITANIUM ADDITIONS, VAPOR GENERATORS
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