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Evaluation of Structure and Corrosion Behavior of FeAl Alloy after Crystallization, Hot Extrusion and Hot Rolling

The paper presents the results of tests on the corrosion resistance of Fe40Al5Cr0.2TiB alloy after casting, plastic working using extrusion and rolling methods. Examination of the microstructure of the Fe40Al5Cr0.2TiB alloy after casting and after plastic working was performed on an Olympus GX51 lig...

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Autores principales: Cebulski, Janusz, Pasek, Dorota, Chmiela, Bartosz, Popczyk, Magdalena, Swinarew, Andrzej Szymon, Stanula, Arkadiusz, Waśkiewicz, Zbigniew, Knechtle, Beat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7254227/
https://www.ncbi.nlm.nih.gov/pubmed/32349439
http://dx.doi.org/10.3390/ma13092041
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author Cebulski, Janusz
Pasek, Dorota
Chmiela, Bartosz
Popczyk, Magdalena
Swinarew, Andrzej Szymon
Stanula, Arkadiusz
Waśkiewicz, Zbigniew
Knechtle, Beat
author_facet Cebulski, Janusz
Pasek, Dorota
Chmiela, Bartosz
Popczyk, Magdalena
Swinarew, Andrzej Szymon
Stanula, Arkadiusz
Waśkiewicz, Zbigniew
Knechtle, Beat
author_sort Cebulski, Janusz
collection PubMed
description The paper presents the results of tests on the corrosion resistance of Fe40Al5Cr0.2TiB alloy after casting, plastic working using extrusion and rolling methods. Examination of the microstructure of the Fe40Al5Cr0.2TiB alloy after casting and after plastic working was performed on an Olympus GX51 light microscope. The stereological relationships of the alloy microstructure in the state after crystallization and after plastic working were determined. The quantitative analysis of the structure was conducted after testing with the EBSD INCA HKL detector and the Nordlys II analysis system (Channel 5), which was equipped with the Hitachi S-3400N microscope. Structure tests and corrosion tests were performed on tests cut perpendicular to the ingot axis, extrusion direction, and rolling direction. As a result of the tests, it was found that the crystallized alloy has better corrosion resistance than plastically processed material. Plastic working increases the intensity of the electrochemical corrosion of the examined alloy. It was found that as-cast alloy is the most resistant to corrosion in a 5% NaCl compared with the alloys after hot extrusion and after hot rolling. The parameters in this study show the smallest value of the corrosion current density and corrosion rate as well as the more positive value of corrosion potential.
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spelling pubmed-72542272020-06-10 Evaluation of Structure and Corrosion Behavior of FeAl Alloy after Crystallization, Hot Extrusion and Hot Rolling Cebulski, Janusz Pasek, Dorota Chmiela, Bartosz Popczyk, Magdalena Swinarew, Andrzej Szymon Stanula, Arkadiusz Waśkiewicz, Zbigniew Knechtle, Beat Materials (Basel) Article The paper presents the results of tests on the corrosion resistance of Fe40Al5Cr0.2TiB alloy after casting, plastic working using extrusion and rolling methods. Examination of the microstructure of the Fe40Al5Cr0.2TiB alloy after casting and after plastic working was performed on an Olympus GX51 light microscope. The stereological relationships of the alloy microstructure in the state after crystallization and after plastic working were determined. The quantitative analysis of the structure was conducted after testing with the EBSD INCA HKL detector and the Nordlys II analysis system (Channel 5), which was equipped with the Hitachi S-3400N microscope. Structure tests and corrosion tests were performed on tests cut perpendicular to the ingot axis, extrusion direction, and rolling direction. As a result of the tests, it was found that the crystallized alloy has better corrosion resistance than plastically processed material. Plastic working increases the intensity of the electrochemical corrosion of the examined alloy. It was found that as-cast alloy is the most resistant to corrosion in a 5% NaCl compared with the alloys after hot extrusion and after hot rolling. The parameters in this study show the smallest value of the corrosion current density and corrosion rate as well as the more positive value of corrosion potential. MDPI 2020-04-27 /pmc/articles/PMC7254227/ /pubmed/32349439 http://dx.doi.org/10.3390/ma13092041 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cebulski, Janusz
Pasek, Dorota
Chmiela, Bartosz
Popczyk, Magdalena
Swinarew, Andrzej Szymon
Stanula, Arkadiusz
Waśkiewicz, Zbigniew
Knechtle, Beat
Evaluation of Structure and Corrosion Behavior of FeAl Alloy after Crystallization, Hot Extrusion and Hot Rolling
title Evaluation of Structure and Corrosion Behavior of FeAl Alloy after Crystallization, Hot Extrusion and Hot Rolling
title_full Evaluation of Structure and Corrosion Behavior of FeAl Alloy after Crystallization, Hot Extrusion and Hot Rolling
title_fullStr Evaluation of Structure and Corrosion Behavior of FeAl Alloy after Crystallization, Hot Extrusion and Hot Rolling
title_full_unstemmed Evaluation of Structure and Corrosion Behavior of FeAl Alloy after Crystallization, Hot Extrusion and Hot Rolling
title_short Evaluation of Structure and Corrosion Behavior of FeAl Alloy after Crystallization, Hot Extrusion and Hot Rolling
title_sort evaluation of structure and corrosion behavior of feal alloy after crystallization, hot extrusion and hot rolling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7254227/
https://www.ncbi.nlm.nih.gov/pubmed/32349439
http://dx.doi.org/10.3390/ma13092041
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