The nuclear industry produces a wide range of radioactive waste in term of level of hazard, contaminants and material. For metallic equipment like steam generators, the radioactivity is mainly located in the oxide surface. In order to study and develop techniques for dismantling and for decontamination in a safe way, it is important to have access to oxide layers with a representative distribution of non-radioactive contaminants. We propose a method of formation of oxide layer on stainless steel 304L with europium (Eu) as contaminant marker. In this method, an Eu-solution is sprayed on the stainless steel samples. The specimen are firstly treated with a pulsed nanosecond laser and secondly the steel samples are exposed to a 600°C furnace fo...
En réponse aux opérations futures d’assainissement des installations nucléaires, la décontamination ...
The stable oxide layer formed through thermal oxidation (TO) process on selective laser melted 316 L...
International audienceThis paper describes the study of a new decontamination process of AISI 304L s...
The nuclear industry produces a wide range of radioactive waste in term of level of hazard, contamin...
The nuclear industry produces a wide range of radioactive waste in terms of hazard level, contaminan...
International audienceThe decommissioning of metallic equipment (pipes, lane surfaces, etc.) contami...
During the lifetime of a nuclear facility, radioactive material may become deposited onto process an...
Metal surface cleaning is highly required in different fields of modern industry. Nuclear industry s...
International audienceAmong the numerous laser applications, laser surface melting by using a pulsed...
The preparation of future decommissioning of nuclear installations is currently facing economical an...
The effectiveness in reducing the corrosion of a ferritic (430) stainless steel at moderate and high...
International audienceAmong the numerous laser applications, laser surface melting by using a pulsed...
En réponse aux opérations futures d’assainissement des installations nucléaires, la décontamination ...
The stable oxide layer formed through thermal oxidation (TO) process on selective laser melted 316 L...
International audienceThis paper describes the study of a new decontamination process of AISI 304L s...
The nuclear industry produces a wide range of radioactive waste in term of level of hazard, contamin...
The nuclear industry produces a wide range of radioactive waste in terms of hazard level, contaminan...
International audienceThe decommissioning of metallic equipment (pipes, lane surfaces, etc.) contami...
During the lifetime of a nuclear facility, radioactive material may become deposited onto process an...
Metal surface cleaning is highly required in different fields of modern industry. Nuclear industry s...
International audienceAmong the numerous laser applications, laser surface melting by using a pulsed...
The preparation of future decommissioning of nuclear installations is currently facing economical an...
The effectiveness in reducing the corrosion of a ferritic (430) stainless steel at moderate and high...
International audienceAmong the numerous laser applications, laser surface melting by using a pulsed...
En réponse aux opérations futures d’assainissement des installations nucléaires, la décontamination ...
The stable oxide layer formed through thermal oxidation (TO) process on selective laser melted 316 L...
International audienceThis paper describes the study of a new decontamination process of AISI 304L s...