Development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolants

The article considers the main methods for studying the process of oxidation of structural steels and evaluating their corrosion resistance in heavy liquid metal coolants (HLMC) under static and dynamic conditions. It is shown that the main disadvantage of these methods is the impo...

Full description

Bibliographic Details
Main Authors: Konstantin D. Ivanov, Said-Ali S. Niyazov, Olga V. Lavrova, Sergey V. Salaev, Radomir S. Askhadullin
Format: Article
Language:English
Published: National Research Nuclear University (MEPhI) 2018-10-01
Series:Nuclear Energy and Technology
Online Access:https://nucet.pensoft.net/article/30387/download/pdf/
id doaj-0c989cb5655c4c2d96da63fcae9e0402
record_format Article
spelling doaj-0c989cb5655c4c2d96da63fcae9e04022020-11-25T01:30:42ZengNational Research Nuclear University (MEPhI)Nuclear Energy and Technology2452-30382018-10-0141737810.3897/nucet.4.3038730387Development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolantsKonstantin D. Ivanov0Said-Ali S. Niyazov1Olga V. Lavrova2Sergey V. Salaev3Radomir S. Askhadullin4JSC “SSC RF-IPPE”JSC “SSC RF-IPPE”JSC “SSC RF-IPPE”JSC “SSC RF-IPPE”JSC “SSC RF-IPPE” The article considers the main methods for studying the process of oxidation of structural steels and evaluating their corrosion resistance in heavy liquid metal coolants (HLMC) under static and dynamic conditions. It is shown that the main disadvantage of these methods is the impossibility of evaluating the results in real time. The authors propose a new method for the experimental determination of the oxidation rate of steels in molten HLMCs, which makes it possible to measure the reaction rate without depressurizing the plant, by periodically injecting air doses of a known volume and monitoring its response time. As additional data in the research methodology, the results of a chemical-spectral analysis of the coolant and slags were provided after the experimental campaign completion as well as a metallographic analysis of steel samples to determine the oxide coating thickness and its comparison with the calculated value for the integral oxygen assimilation by the system. To implement the methodology, a laboratory facility was proposed, equipped with an oxygen thermodynamic activity (TDA) sensor of the RF-IPPE design. The sensor is certified by Gosstandart of Russia (certificate RU. 31.002 A No. 15464), registered in the State Register of Measuring Instruments (No. 25282-03) and approved for use in the Russian Federation. https://nucet.pensoft.net/article/30387/download/pdf/
collection DOAJ
language English
format Article
sources DOAJ
author Konstantin D. Ivanov
Said-Ali S. Niyazov
Olga V. Lavrova
Sergey V. Salaev
Radomir S. Askhadullin
spellingShingle Konstantin D. Ivanov
Said-Ali S. Niyazov
Olga V. Lavrova
Sergey V. Salaev
Radomir S. Askhadullin
Development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolants
Nuclear Energy and Technology
author_facet Konstantin D. Ivanov
Said-Ali S. Niyazov
Olga V. Lavrova
Sergey V. Salaev
Radomir S. Askhadullin
author_sort Konstantin D. Ivanov
title Development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolants
title_short Development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolants
title_full Development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolants
title_fullStr Development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolants
title_full_unstemmed Development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolants
title_sort development of the technique for determination the rate of oxidation of structural steels in heavy liquid metal coolants
publisher National Research Nuclear University (MEPhI)
series Nuclear Energy and Technology
issn 2452-3038
publishDate 2018-10-01
description The article considers the main methods for studying the process of oxidation of structural steels and evaluating their corrosion resistance in heavy liquid metal coolants (HLMC) under static and dynamic conditions. It is shown that the main disadvantage of these methods is the impossibility of evaluating the results in real time. The authors propose a new method for the experimental determination of the oxidation rate of steels in molten HLMCs, which makes it possible to measure the reaction rate without depressurizing the plant, by periodically injecting air doses of a known volume and monitoring its response time. As additional data in the research methodology, the results of a chemical-spectral analysis of the coolant and slags were provided after the experimental campaign completion as well as a metallographic analysis of steel samples to determine the oxide coating thickness and its comparison with the calculated value for the integral oxygen assimilation by the system. To implement the methodology, a laboratory facility was proposed, equipped with an oxygen thermodynamic activity (TDA) sensor of the RF-IPPE design. The sensor is certified by Gosstandart of Russia (certificate RU. 31.002 A No. 15464), registered in the State Register of Measuring Instruments (No. 25282-03) and approved for use in the Russian Federation.
url https://nucet.pensoft.net/article/30387/download/pdf/
work_keys_str_mv AT konstantindivanov developmentofthetechniquefordeterminationtherateofoxidationofstructuralsteelsinheavyliquidmetalcoolants
AT saidalisniyazov developmentofthetechniquefordeterminationtherateofoxidationofstructuralsteelsinheavyliquidmetalcoolants
AT olgavlavrova developmentofthetechniquefordeterminationtherateofoxidationofstructuralsteelsinheavyliquidmetalcoolants
AT sergeyvsalaev developmentofthetechniquefordeterminationtherateofoxidationofstructuralsteelsinheavyliquidmetalcoolants
AT radomirsaskhadullin developmentofthetechniquefordeterminationtherateofoxidationofstructuralsteelsinheavyliquidmetalcoolants
_version_ 1725090539612667904