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Thermodynamic Modelling and Microstructural Study of Z-Phase Formation in a Ta-Alloyed Martensitic Steel

A thermokinetic computational framework for precipitate transformation simulations in Ta-containing martensitic Z-steels was developed, including Calphad thermodynamics, diffusion mobility data from the literature, and a kinetic parameter setup that considered precipitation sites, interfacial energi...

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Autores principales: Riedlsperger, Florian, Gsellmann, Bernadette, Povoden-Karadeniz, Erwin, Tassa, Oriana, Matera, Susanna, Dománková, Mária, Kauffmann, Florian, Kozeschnik, Ernst, Sonderegger, Bernhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7998842/
https://www.ncbi.nlm.nih.gov/pubmed/33801933
http://dx.doi.org/10.3390/ma14061332
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author Riedlsperger, Florian
Gsellmann, Bernadette
Povoden-Karadeniz, Erwin
Tassa, Oriana
Matera, Susanna
Dománková, Mária
Kauffmann, Florian
Kozeschnik, Ernst
Sonderegger, Bernhard
author_facet Riedlsperger, Florian
Gsellmann, Bernadette
Povoden-Karadeniz, Erwin
Tassa, Oriana
Matera, Susanna
Dománková, Mária
Kauffmann, Florian
Kozeschnik, Ernst
Sonderegger, Bernhard
author_sort Riedlsperger, Florian
collection PubMed
description A thermokinetic computational framework for precipitate transformation simulations in Ta-containing martensitic Z-steels was developed, including Calphad thermodynamics, diffusion mobility data from the literature, and a kinetic parameter setup that considered precipitation sites, interfacial energies and dislocation density evolution. The thermodynamics of Ta-containing subsystems were assessed by atomic solubility data and enthalpies from the literature as well as from the experimental dissolution temperature of Ta-based Z-phase CrTaN obtained from differential scanning calorimetry. Accompanied by a comprehensive transmission electron microscopy analysis of the microstructure, thermokinetic precipitation simulations with a wide-ranging and well-documented set of input parameters were carried out in MatCalc for one sample alloy. A special focus was placed on modelling the transformation of MX into the Z-phase, which was driven by Cr diffusion. The simulation results showed excellent agreement with experimental data in regard to size, number density and chemical composition of the precipitates, showing the usability of the developed thermokinetic simulation framework.
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spelling pubmed-79988422021-03-28 Thermodynamic Modelling and Microstructural Study of Z-Phase Formation in a Ta-Alloyed Martensitic Steel Riedlsperger, Florian Gsellmann, Bernadette Povoden-Karadeniz, Erwin Tassa, Oriana Matera, Susanna Dománková, Mária Kauffmann, Florian Kozeschnik, Ernst Sonderegger, Bernhard Materials (Basel) Article A thermokinetic computational framework for precipitate transformation simulations in Ta-containing martensitic Z-steels was developed, including Calphad thermodynamics, diffusion mobility data from the literature, and a kinetic parameter setup that considered precipitation sites, interfacial energies and dislocation density evolution. The thermodynamics of Ta-containing subsystems were assessed by atomic solubility data and enthalpies from the literature as well as from the experimental dissolution temperature of Ta-based Z-phase CrTaN obtained from differential scanning calorimetry. Accompanied by a comprehensive transmission electron microscopy analysis of the microstructure, thermokinetic precipitation simulations with a wide-ranging and well-documented set of input parameters were carried out in MatCalc for one sample alloy. A special focus was placed on modelling the transformation of MX into the Z-phase, which was driven by Cr diffusion. The simulation results showed excellent agreement with experimental data in regard to size, number density and chemical composition of the precipitates, showing the usability of the developed thermokinetic simulation framework. MDPI 2021-03-10 /pmc/articles/PMC7998842/ /pubmed/33801933 http://dx.doi.org/10.3390/ma14061332 Text en © 2021 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
Riedlsperger, Florian
Gsellmann, Bernadette
Povoden-Karadeniz, Erwin
Tassa, Oriana
Matera, Susanna
Dománková, Mária
Kauffmann, Florian
Kozeschnik, Ernst
Sonderegger, Bernhard
Thermodynamic Modelling and Microstructural Study of Z-Phase Formation in a Ta-Alloyed Martensitic Steel
title Thermodynamic Modelling and Microstructural Study of Z-Phase Formation in a Ta-Alloyed Martensitic Steel
title_full Thermodynamic Modelling and Microstructural Study of Z-Phase Formation in a Ta-Alloyed Martensitic Steel
title_fullStr Thermodynamic Modelling and Microstructural Study of Z-Phase Formation in a Ta-Alloyed Martensitic Steel
title_full_unstemmed Thermodynamic Modelling and Microstructural Study of Z-Phase Formation in a Ta-Alloyed Martensitic Steel
title_short Thermodynamic Modelling and Microstructural Study of Z-Phase Formation in a Ta-Alloyed Martensitic Steel
title_sort thermodynamic modelling and microstructural study of z-phase formation in a ta-alloyed martensitic steel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7998842/
https://www.ncbi.nlm.nih.gov/pubmed/33801933
http://dx.doi.org/10.3390/ma14061332
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