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  Coupled role of alloying and manufacturing on deep cryogenic treatment performance on high-alloyed ferrous alloys

Jovičević-Klug, P., Guštin, A. Z., Jovičević-Klug, M., Šetina Batič, B., Lebar, A., & Podgornik, B. (2022). Coupled role of alloying and manufacturing on deep cryogenic treatment performance on high-alloyed ferrous alloys. Journal of Materials Research and Technology, 18, 3184-3197. doi:10.1016/j.jmrt.2022.04.025.

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1-s2.0-S2238785422005257-main.pdf (Publisher version), 3MB
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2022
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The Author(s). Published by Elsevier B.V.

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 Creators:
Jovičević-Klug, Patricia1, 2, Author           
Guštin, Agnieszka Zuzanna1, Author
Jovičević-Klug, Matic3, 4, Author           
Šetina Batič, Barbara1, Author
Lebar, Andrej5, 6, Author
Podgornik, Bojan1, 2, Author           
Affiliations:
1Institute of Metals and Technology, Lepi pot 11, 1000 Ljubljana, Slovenia, ou_persistent22              
2Jožef Stefan International Postgraduate School, Jamova Cesta 39, 1000 Ljubljana, Slovenia, ou_persistent22              
3Sustainable Synthesis of Materials, Interdepartmental and Partner Groups, Max-Planck-Institut für Eisenforschung GmbH, Max Planck Society, ou_3289784              
4Institute of Metals and Technology, Lepi Pot 11, 1000 Ljubljana, Slovenia, ou_persistent22              
5University of Ljubljana, Faculty of Mechanical Engineering, Aškrčeva Ulica 6, 1000 Ljubljana, Slovenia, ou_persistent22              
6University of Ljubljana, Faculty of Health Sciences, Zdravstvena Pot 5, 1000 Ljubljana, Slovenia, ou_persistent22              

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Free keywords: Deep cryogenic treatment, Alloying content, Manufacturing type, Ferrous alloy, Carbides precipitation, Mechanical properties
 Abstract: This study focuses on influence of alloying content and type of manufacturing on the effectiveness of deep cryogenic treatment (DCT) on properties of selected high-alloyed ferrous alloys (HAFA): EN HS6-5-2, EN HS6-5-2-5, EN HS6-5-3 and EN HS12-1-4. In order to evaluate the dependency of DCT performance on chemical composition and manufacturing type, the microstructure, hardness, impact and fracture toughness and fatigue properties were analyzed. Additionally, the fatigue data was evaluated using an adapted strain-life model in order to understand the unique effects of DCT with selected factors and provide a model for estimating the fatigue limit of DCT HAFA. The study indicates that DCT affects carbide precipitation, size and morphology of nanocarbides, average distance between carbides and nanocarbides, as well as the base matrix (martensitic laths). The induced microstructural changes cause an overall positive change of mechanical properties in selected HAFA, which correlates well with individual alloying and manufacturing differences. Overall, DCT has greater effect on wrought HAFA than powder metallurgy manufactured HAFA, at which high content of W and Co generally degenerates the DCT induced microstructure modifications.

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Language(s): eng - English
 Dates: 2022-06
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1016/j.jmrt.2022.04.025
 Degree: -

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Title: Journal of Materials Research and Technology
  Abbreviation : J. Mater. Res. Technol.
Source Genre: Journal
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Publ. Info: Rio de Janeiro : Elsevier
Pages: - Volume / Issue: 18 Sequence Number: - Start / End Page: 3184 - 3197 Identifier: ISSN: 2238-7854
CoNE: https://pure.mpg.de/cone/journals/resource/2238-7854