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Title:Enhancing ductility of hot-work tool steel through isothermal bainitic transformation
Authors:ID Bajželj, Anže (Author)
ID Nagode, Aleš (Author)
ID Balaško, Tilen (Author)
ID Šetina, Barbara (Author)
ID Burja, Jaka (Author)
Files:.pdf PDF - Presentation file, download (1,02 MB)
MD5: EADAA8E495A06DD36A759D32897534A5
 
URL URL - Source URL, visit https://www.confer.cz/metal/2023/4703-enhancing-ductility-of-hot-work-tool-steel-through-isothermal-bainitic-transformation
 
Language:English
Typology:1.08 - Published Scientific Conference Contribution
Organization:Logo IMT - Institute of Metals and Technology
Abstract:Hot-work tool steels are extensively used in industrial applications that require high resistance to mechanical and chemical degradation at elevated temperatures. To meet these requirements, hot-work tool steels must exhibit good mechanical properties, including high tensile strength, hardness, wear resistance, and tempering resistance, as well as high thermal conductivity and ductility. This study investigates the ductility of the hot-work tool steel HTCS-130, which suffers from low ductility due to the presence of stable molybdenum-tungsten carbides (M6C) on the prior austenite crystal grain boundaries. Increasing austenitisation temperatures or prolonging the dwelling time at temperature can promote intensive migration of grain boundaries, leading to negative effects on the mechanical properties of the steel. To address this issue, isothermal transformation in the bainitic area between 350 and 500 °C was performed. Isothermal transformation at around 350 °C leads to the formation of lower bainite, which has similar hardness to tempered martensite. As the temperature of isothermal transformation increases, the hardness of the material decreases, due to the formation of upper bainite. The hardness analysis was measured using the Vickers method, the impact toughness of the steel samples was measured using a Charpy test with V-notched samples. The microstructure characterization was performed using optical and scanning electron microscopy. The improvement of ductility can be achieved by controlling the isothermal transformation of bainite and adjusting the heat treatment conHot-work tool steels are extensively used in industrial applications that require high resistance to mechanical and chemical degradation at elevated temperatures. To meet these requirements, hot-work tool steels must exhibit good mechanical properties, including high tensile strength, hardness, wear resistance, and tempering resistance, as well as high thermal conductivity and ductility. This study investigates the ductility of the hot-work tool steel HTCS-130, which suffers from low ductility due to the presence of stable molybdenum-tungsten carbides (M6C) on the prior austenite crystal grain boundaries. Increasing austenitisation temperatures or prolonging the dwelling time at temperature can promote intensive migration of grain boundaries, leading to negative effects on the mechanical properties of the steel. To address this issue, isothermal transformation in the bainitic area between 350 and 500 °C was performed. Isothermal transformation at around 350 °C leads to the formation of lower bainite, which has similar hardness to tempered martensite. As the temperature of isothermal transformation increases, the hardness of the material decreases, due to the formation of upper bainite. The hardness analysis was measured using the Vickers method, the impact toughness of the steel samples was measured using a Charpy test with V-notched samples. The microstructure characterization was performed using optical and scanning electron microscopy. The improvement of ductility can be achieved by controlling the isothermal transformation of bainite and adjusting the heat treatment conditions. These findings provide useful insights into the design and optimization of heat treatment processes for hot-work tool steels.ditions. These findings provide useful insights into the design and optimization of heat treatment processes for hot-work tool steels.
Keywords:hot-work tool steel, austempering, bainitic transformation, ductility, dilatometry
Publication status:Published
Publication version:Version of Record
Publisher:TANGER
Year of publishing:2024
Number of pages:Str. 308-314
Source:Češka
PID:20.500.12556/DiRROS-18286 New window
UDC:669.14
ISSN on article:2694-9296
DOI:10.37904/metal.2023.4703 New window
COBISS.SI-ID:185399299 New window
Copyright:Licenca Creative Commons je navedena na pristajalni strani članka (glej izvorni URL): "© This is an open access article distributed under the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/)". (Datum opombe 4. 4. 2023)
Note:Nasl. z nasl. zaslona; Opis vira z dne 14. 2. 2024;
Publication date in DiRROS:28.02.2024
Views:154
Downloads:67
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Record is a part of a proceedings

Title:Metal 2023
COBISS.SI-ID:185388291 New window

Record is a part of a journal

Title:Metal ...
Shortened title:Metal
Publisher:Tanger s.r.o.
ISSN:2694-9296
COBISS.SI-ID:128396547 New window

Document is financed by a project

Funder:ARRS - Slovenian Research Agency
Project number:P2-0050
Name:Kovinski materiali in tehnologije

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.

Secondary language

Language:Slovenian
Keywords:orodna jekla za delo v vročem, austempranje, bainitna transformacija, duktilnost, dilatometrija


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