Effect of Cu Alloying on Mechanical Properties of Medium-C Steel after Long-Time Tempering at 500 °C

Author:

Salvetr Pavel1ORCID,Gokhman Aleksandr12,Svoboda Milan3,Donik Črtomir4ORCID,Podstranská Ivana3,Kotous Jakub1,Nový Zbyšek1

Affiliation:

1. COMTES FHT a.s., Prumyslova 995, 334 41 Dobrany, Czech Republic

2. Department of Physics, South Ukrainian National Pedagogical University (SUNPU), Staroprotfrankivska 26, 65020 Odessa, Ukraine

3. Institute of Physics of Materials ASCR, Žižkova 22, 616 00 Brno, Czech Republic

4. Institute of Metals and Technology (IMT), Lepi pot 11, 1000 Ljubljana, Slovenia

Abstract

This research studies the influence of the copper alloying of medium-carbon steel on mechanical properties after quenching and tempering at 500 °C. The microstructure was characterised using SEM, EBSD, TEM, and XRD analysis. The mechanical properties were comprehensively investigated using hardness measurements, tensile and Charpy impact tests and solid solution, grain boundary, dislocation, and precipitation strengthening contributions were estimated. Higher yield strength for Cu-alloyed steel was confirmed at about 35–73 MPa. The precipitation strengthening contribution from Cu precipitates in the range of 11–49 MPa was calculated. The interaction between Cu precipitates and dislocations retards the decrease in dislocation density. Similar values of effective grain size of martensite crystals were measured for Cu-alloyed and Cu-free steel as well. Copper alloyed steel exhibited significantly deteriorated impact toughness, total plastic elongation, and reduction of area. The size of Cu precipitates ranged from 8.3 nm after tempering at 500 °C for 6 h to 13.9 nm after tempering for 48 h.

Funder

ERDF Research of advanced steels with unique properties

Slovenian Research Agency

Publisher

MDPI AG

Subject

General Materials Science

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