Characterizations and boron diffusion modelling on the AISI H13 steel

A kinetic approach accounting for the linearity of boron profiles through the boronized layers on AISI H13 steel was developed. It aims to track the temporal evolution of the thicknesses of the FeB and (FeB + Fe2B) layers by considering new expressions for the mass balance equation at each growth fr...

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Main Authors: Ortiz-Domínguez M., Keddam M., Morales-Robles Á.J.
Format: Article
Language:English
Published: University of Belgrade, Technical Faculty, Bor 2024-01-01
Series:Journal of Mining and Metallurgy. Section B: Metallurgy
Subjects:
Online Access:https://doiserbia.nb.rs/img/doi/1450-5339/2024/1450-53392400029O.pdf
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author Ortiz-Domínguez M.
Keddam M.
Morales-Robles Á.J.
author_facet Ortiz-Domínguez M.
Keddam M.
Morales-Robles Á.J.
author_sort Ortiz-Domínguez M.
collection DOAJ
description A kinetic approach accounting for the linearity of boron profiles through the boronized layers on AISI H13 steel was developed. It aims to track the temporal evolution of the thicknesses of the FeB and (FeB + Fe2B) layers by considering new expressions for the mass balance equation at each growth front. These surface layers were generated by pack boronizing of AISI H13 steel in the temperature range of 1123 to 1273 K for duration ranging from 2 to 8 h. Finally, this linear model has been validated for two other sets of processing parameters (1323 K for 4.5 and 8.5 h). Iso-thickness diagrams were also proposed to optimize the thickness of the layers for targeted industrial usage.
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publishDate 2024-01-01
publisher University of Belgrade, Technical Faculty, Bor
record_format Article
series Journal of Mining and Metallurgy. Section B: Metallurgy
spelling doaj-art-e6685e7ac9794079b753c7a9173bd9c42025-08-20T02:56:36ZengUniversity of Belgrade, Technical Faculty, BorJournal of Mining and Metallurgy. Section B: Metallurgy1450-53392217-71752024-01-0160335336510.2298/JMMB240423029O1450-53392400029OCharacterizations and boron diffusion modelling on the AISI H13 steelOrtiz-Domínguez M.0Keddam M.1Morales-Robles Á.J.2Autonomous University of Hidalgo State, Escuela Superior de Ciudad Sahagún-Mechanical Engineering, Hidalgo, MéxicoLaboratory of Materials Technology, Faculty of Mechanical Engineering and Process Engineering, USTHB, Algiers, AlgeriaAutonomous University of Hidalgo State, Área Académica de Ciencias de la Tierra y Materiales- Instituto de Ciencias Básicas e Ingeniería, Hidalgo, MéxicoA kinetic approach accounting for the linearity of boron profiles through the boronized layers on AISI H13 steel was developed. It aims to track the temporal evolution of the thicknesses of the FeB and (FeB + Fe2B) layers by considering new expressions for the mass balance equation at each growth front. These surface layers were generated by pack boronizing of AISI H13 steel in the temperature range of 1123 to 1273 K for duration ranging from 2 to 8 h. Finally, this linear model has been validated for two other sets of processing parameters (1323 K for 4.5 and 8.5 h). Iso-thickness diagrams were also proposed to optimize the thickness of the layers for targeted industrial usage.https://doiserbia.nb.rs/img/doi/1450-5339/2024/1450-53392400029O.pdfboronizingboridesdiffusion modelactivation energycontour diagram
spellingShingle Ortiz-Domínguez M.
Keddam M.
Morales-Robles Á.J.
Characterizations and boron diffusion modelling on the AISI H13 steel
Journal of Mining and Metallurgy. Section B: Metallurgy
boronizing
borides
diffusion model
activation energy
contour diagram
title Characterizations and boron diffusion modelling on the AISI H13 steel
title_full Characterizations and boron diffusion modelling on the AISI H13 steel
title_fullStr Characterizations and boron diffusion modelling on the AISI H13 steel
title_full_unstemmed Characterizations and boron diffusion modelling on the AISI H13 steel
title_short Characterizations and boron diffusion modelling on the AISI H13 steel
title_sort characterizations and boron diffusion modelling on the aisi h13 steel
topic boronizing
borides
diffusion model
activation energy
contour diagram
url https://doiserbia.nb.rs/img/doi/1450-5339/2024/1450-53392400029O.pdf
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AT keddamm characterizationsandborondiffusionmodellingontheaisih13steel
AT moralesroblesaj characterizationsandborondiffusionmodellingontheaisih13steel