IMPROVING THE PROCESS OF ACHIEVING REQUIRED MICROSTRUCTURE AND MECHANICAL PROPERTIES OF 38MNVS6 STEEL

1 SIWIEC Dominika
Co-authors:
2 DWORNICKA Renata 3 PACANA Andrzej
Institutions:
1 Rzeszow University of Technology, Rzeszow, Poland, EU, d.siwiec@prz.edu.pl, ORCID ID: 0000-0002-6663-6621
2 Cracow University of Technology, Cracow, Poland, EU, renata.dwornicka@mech.pk.edu.pl, ORCID ID: 0000-0002-2979-1614
3 Rzeszow University of Technology, Rzeszow, Poland, EU, app@prz.edu.pl, ORCID ID: 0000-0003-1121-6352
Conference:
29th International Conference on Metallurgy and Materials, Brno, Czech Republic, EU, May 20 - 22, 2020
Proceedings:
Proceedings 29th International Conference on Metallurgy and Materials
Pages:
591-596
ISBN:
978-80-87294-97-0
ISSN:
2694-9296
Published:
27th July 2020
Proceedings of the conference were published in Web of Science and Scopus.
Metrics:
569 views / 659 downloads
Abstract

The micro-alloyed steel 38MnVS6 (38MnSiVS5 or 38MnVS5) applied mostly in the automotive industry (for example production of forgings), has a high yield point and relatively good wear resistance. Aim of the study was preliminary to analyse the influence of twice the normalization process of micro-alloyed steel 38MnVS6 on its microstructure and mechanical properties. The normalization process was made in two steps in a pusher furnace PP-300 at temperatures 910 °C (cooling under the fan 5200 rpm) and 880 °C (cooling in open air). The total normalization time was 16200 seconds each time. Yield strength, tensile strength and hardness were analysed. Analysis was occurred based on results of the normalization process of three forgings for use in the automotive industry, ball-shaped and weight 28 N, forged from a temperature of 1250 ° C from micro-alloyed steel 38MnVS6. It has been shown that carrying out two processes for normalizing micro-alloy steel 38MnVS6 allows achieving its homogeneous and fine-grained microstructure and obtaining better mechanical properties and thus filled the gap regarding the lack of analysis of the impact of the normalization process on 38MnVS6 steel.

Keywords: 38MnVS6, mechanical engineering, normalization process, mechanical properties, quality of product

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