Effect of vacuum oxy-nitrocarburizing on the microstructure of tool steels: An experimental and modeling study

Maria Nikolova*, Danail Nikolov, Bora Derin, Emil Yankov

*Corresponding author for this work

Research output: Contribution to journalConference articlepeer-review

2 Citations (Scopus)

Abstract

The thermochemical treatments of tool steels improve the performance of the components with respect to surface hardness, wear and tribological performance as well as corrosion resistance. Compared to the conventional gas ferritic nitrocarburizing process, the original vacuum oxy-nitrocarburizing is a time-, cost-effective and environmentally-friendly gas process. Because of the oxidizing nature of the gas atmosphere, there is no need to perform subsequent post-oxidation.In this study, a vacuum oxynitrocarburizing process was carried out onto four tool steels (AISI H10, H11, H21 and D2) at 570 °C, after hardening and single tempering. The structural analysis of the compound and diffusion layers was performed by optical and electron microscopy, X-ray diffraction and glow discharge optical emission spectrometry (GDOES) methods. A largely monophase ϵ-layer is formed with a carbon accumulation at the substrate adjacent area. The overlaying oxides adjacent to the ϵ-carbonitride phase contained Fe3O4 (magnetite) as a main constituent. A thermodynamic modelling approach was also performed to understand and optimize the process. The "Equilib module" of FactSage software which uses Gibbs energy minimization method, was used to estimate the possible products during vacuum oxynitrocarburising process.

Original languageEnglish
Article number03011
JournalMATEC Web of Conferences
Volume94
DOIs
Publication statusPublished - 4 Jan 2017
Event4th International Conference on Computing and Solutions in Manufacturing Engineering, CoSME 2016 - Brasov, Romania
Duration: 3 Nov 20164 Nov 2016

Bibliographical note

Publisher Copyright:
© 2017 The Authors, published by EDP Sciences.

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