Cargando…

Corrosion Behavior of Alumina-Forming Austenitic Steel in Supercritical Carbon Dioxide Conditions: Effects of Nb Content and Temperature

The corrosion behavior of alumina-forming austenitic (AFA) stainless steels with different Nb additions in a supercritical carbon dioxide environment at 500 °C, 600 °C, and 20 MPa was investigated. The steels with low Nb content were found to have a novel structure with a double oxide as an outer Cr...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Zhaodandan, Cong, Shuo, Chen, Huan, Liu, Zhu, Dong, Yuanyuan, Tang, Rui, Qiu, Tian, Chen, Yong, Guo, Xianglong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254796/
https://www.ncbi.nlm.nih.gov/pubmed/37297214
http://dx.doi.org/10.3390/ma16114081
_version_ 1785056726757670912
author Ma, Zhaodandan
Cong, Shuo
Chen, Huan
Liu, Zhu
Dong, Yuanyuan
Tang, Rui
Qiu, Tian
Chen, Yong
Guo, Xianglong
author_facet Ma, Zhaodandan
Cong, Shuo
Chen, Huan
Liu, Zhu
Dong, Yuanyuan
Tang, Rui
Qiu, Tian
Chen, Yong
Guo, Xianglong
author_sort Ma, Zhaodandan
collection PubMed
description The corrosion behavior of alumina-forming austenitic (AFA) stainless steels with different Nb additions in a supercritical carbon dioxide environment at 500 °C, 600 °C, and 20 MPa was investigated. The steels with low Nb content were found to have a novel structure with a double oxide as an outer Cr(2)O(3) oxide film and an inner Al(2)O(3) oxide layer with discontinuous Fe-rich spinels on the outer surface and a transition layer consisting of Cr spinels and γ’-Ni(3)Al phases randomly distributed under the oxide layer. Oxidation resistance was improved by accelerating diffusion through refined grain boundaries after the addition of 0.6 wt.% Nb. However, the corrosion resistance decreased significantly at higher Nb content due to the formation of continuous thick outer Fe-rich nodules on the surface and an internal oxide zone, and Fe(2)(Mo, Nb) laves phases were also detected, which prevented the outward diffusion of Al ions and promoted the formation of cracks within the oxide layer, resulting in unfavorable effects on oxidation. After exposure at 500 °C, fewer spinels and thinner oxide scales were found. The specific mechanism was discussed.
format Online
Article
Text
id pubmed-10254796
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102547962023-06-10 Corrosion Behavior of Alumina-Forming Austenitic Steel in Supercritical Carbon Dioxide Conditions: Effects of Nb Content and Temperature Ma, Zhaodandan Cong, Shuo Chen, Huan Liu, Zhu Dong, Yuanyuan Tang, Rui Qiu, Tian Chen, Yong Guo, Xianglong Materials (Basel) Article The corrosion behavior of alumina-forming austenitic (AFA) stainless steels with different Nb additions in a supercritical carbon dioxide environment at 500 °C, 600 °C, and 20 MPa was investigated. The steels with low Nb content were found to have a novel structure with a double oxide as an outer Cr(2)O(3) oxide film and an inner Al(2)O(3) oxide layer with discontinuous Fe-rich spinels on the outer surface and a transition layer consisting of Cr spinels and γ’-Ni(3)Al phases randomly distributed under the oxide layer. Oxidation resistance was improved by accelerating diffusion through refined grain boundaries after the addition of 0.6 wt.% Nb. However, the corrosion resistance decreased significantly at higher Nb content due to the formation of continuous thick outer Fe-rich nodules on the surface and an internal oxide zone, and Fe(2)(Mo, Nb) laves phases were also detected, which prevented the outward diffusion of Al ions and promoted the formation of cracks within the oxide layer, resulting in unfavorable effects on oxidation. After exposure at 500 °C, fewer spinels and thinner oxide scales were found. The specific mechanism was discussed. MDPI 2023-05-30 /pmc/articles/PMC10254796/ /pubmed/37297214 http://dx.doi.org/10.3390/ma16114081 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
Ma, Zhaodandan
Cong, Shuo
Chen, Huan
Liu, Zhu
Dong, Yuanyuan
Tang, Rui
Qiu, Tian
Chen, Yong
Guo, Xianglong
Corrosion Behavior of Alumina-Forming Austenitic Steel in Supercritical Carbon Dioxide Conditions: Effects of Nb Content and Temperature
title Corrosion Behavior of Alumina-Forming Austenitic Steel in Supercritical Carbon Dioxide Conditions: Effects of Nb Content and Temperature
title_full Corrosion Behavior of Alumina-Forming Austenitic Steel in Supercritical Carbon Dioxide Conditions: Effects of Nb Content and Temperature
title_fullStr Corrosion Behavior of Alumina-Forming Austenitic Steel in Supercritical Carbon Dioxide Conditions: Effects of Nb Content and Temperature
title_full_unstemmed Corrosion Behavior of Alumina-Forming Austenitic Steel in Supercritical Carbon Dioxide Conditions: Effects of Nb Content and Temperature
title_short Corrosion Behavior of Alumina-Forming Austenitic Steel in Supercritical Carbon Dioxide Conditions: Effects of Nb Content and Temperature
title_sort corrosion behavior of alumina-forming austenitic steel in supercritical carbon dioxide conditions: effects of nb content and temperature
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254796/
https://www.ncbi.nlm.nih.gov/pubmed/37297214
http://dx.doi.org/10.3390/ma16114081
work_keys_str_mv AT mazhaodandan corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature
AT congshuo corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature
AT chenhuan corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature
AT liuzhu corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature
AT dongyuanyuan corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature
AT tangrui corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature
AT qiutian corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature
AT chenyong corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature
AT guoxianglong corrosionbehaviorofaluminaformingausteniticsteelinsupercriticalcarbondioxideconditionseffectsofnbcontentandtemperature