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Peculiarities of Fatigue Crack Growth in Steel 17H1S after Long-Term Operations on a Gas Pipeline

This work presents the results of metallographic studies and the tensile, impact, and fatigue crack growth (FCG) resistance tests of 17H1S main gas pipeline steel in the as-received (AR) state and after a long-term operation (LTO). A significant number of non-metallic inclusions forming chains stret...

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Autores principales: Vira, Volodymyr, Krechkovska, Halyna, Kulyk, Volodymyr, Duriagina, Zoia, Student, Oleksandra, Vasyliv, Bogdan, Cherkes, Veronika, Loskutova, Tetiana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145600/
https://www.ncbi.nlm.nih.gov/pubmed/37109800
http://dx.doi.org/10.3390/ma16082964
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author Vira, Volodymyr
Krechkovska, Halyna
Kulyk, Volodymyr
Duriagina, Zoia
Student, Oleksandra
Vasyliv, Bogdan
Cherkes, Veronika
Loskutova, Tetiana
author_facet Vira, Volodymyr
Krechkovska, Halyna
Kulyk, Volodymyr
Duriagina, Zoia
Student, Oleksandra
Vasyliv, Bogdan
Cherkes, Veronika
Loskutova, Tetiana
author_sort Vira, Volodymyr
collection PubMed
description This work presents the results of metallographic studies and the tensile, impact, and fatigue crack growth (FCG) resistance tests of 17H1S main gas pipeline steel in the as-received (AR) state and after a long-term operation (LTO). A significant number of non-metallic inclusions forming chains stretched along the direction of pipe rolling were found in the microstructure of the LTO steel. The lowest values of elongation at break and impact toughness of the steel were determined for the lower part of the pipe close to its inner surface. FCG tests at a low stress ratio (R = 0.1) did not reveal a significant change in its growth rate in degraded 17H1S steel compared to steel in the AR state. During tests at a stress ratio R = 0.5, the effect of degradation was more pronounced. The Paris’ law region of the da/dN—∆K diagram for the LTO steel corresponding to the lower part of the pipe close to its inner surface was higher than those for the steel in the AR state and the LTO steel corresponding to the higher part of the pipe. Fractographically, a significant number of delaminations of non-metallic inclusions from the matrix were recognized. Their role in the embrittlement of steel, especially steel from the lower part of the pipe close to its inner surface, was noted.
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spelling pubmed-101456002023-04-29 Peculiarities of Fatigue Crack Growth in Steel 17H1S after Long-Term Operations on a Gas Pipeline Vira, Volodymyr Krechkovska, Halyna Kulyk, Volodymyr Duriagina, Zoia Student, Oleksandra Vasyliv, Bogdan Cherkes, Veronika Loskutova, Tetiana Materials (Basel) Article This work presents the results of metallographic studies and the tensile, impact, and fatigue crack growth (FCG) resistance tests of 17H1S main gas pipeline steel in the as-received (AR) state and after a long-term operation (LTO). A significant number of non-metallic inclusions forming chains stretched along the direction of pipe rolling were found in the microstructure of the LTO steel. The lowest values of elongation at break and impact toughness of the steel were determined for the lower part of the pipe close to its inner surface. FCG tests at a low stress ratio (R = 0.1) did not reveal a significant change in its growth rate in degraded 17H1S steel compared to steel in the AR state. During tests at a stress ratio R = 0.5, the effect of degradation was more pronounced. The Paris’ law region of the da/dN—∆K diagram for the LTO steel corresponding to the lower part of the pipe close to its inner surface was higher than those for the steel in the AR state and the LTO steel corresponding to the higher part of the pipe. Fractographically, a significant number of delaminations of non-metallic inclusions from the matrix were recognized. Their role in the embrittlement of steel, especially steel from the lower part of the pipe close to its inner surface, was noted. MDPI 2023-04-07 /pmc/articles/PMC10145600/ /pubmed/37109800 http://dx.doi.org/10.3390/ma16082964 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vira, Volodymyr
Krechkovska, Halyna
Kulyk, Volodymyr
Duriagina, Zoia
Student, Oleksandra
Vasyliv, Bogdan
Cherkes, Veronika
Loskutova, Tetiana
Peculiarities of Fatigue Crack Growth in Steel 17H1S after Long-Term Operations on a Gas Pipeline
title Peculiarities of Fatigue Crack Growth in Steel 17H1S after Long-Term Operations on a Gas Pipeline
title_full Peculiarities of Fatigue Crack Growth in Steel 17H1S after Long-Term Operations on a Gas Pipeline
title_fullStr Peculiarities of Fatigue Crack Growth in Steel 17H1S after Long-Term Operations on a Gas Pipeline
title_full_unstemmed Peculiarities of Fatigue Crack Growth in Steel 17H1S after Long-Term Operations on a Gas Pipeline
title_short Peculiarities of Fatigue Crack Growth in Steel 17H1S after Long-Term Operations on a Gas Pipeline
title_sort peculiarities of fatigue crack growth in steel 17h1s after long-term operations on a gas pipeline
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145600/
https://www.ncbi.nlm.nih.gov/pubmed/37109800
http://dx.doi.org/10.3390/ma16082964
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