Physical simulation of individual heat-affected zones in s960mc steel

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Abstract

This research is focused on the analysis of heat-affected sub-zones in 2 mm thick steel S960MC samples, with the aim of observing and evaluating the mechanical properties after exposure to temperatures corresponding to individual heat-affected sub-zones. Test samples were prepared using a Gleeble 3500 thermo-mechanical simulator. The samples were heated in the range from 550°C to 1350°C and were subsequently quickly cooled. The specimens, together with the base material, were then subjected to tensile testing, impact testing, and micro-hardness measurements in the sample cross-section, as well as evaluation of their microstructure. Fracture surfaces are investigated in samples after impact testing. The heat-affected sub-zones studied indicate high sensitivity to the thermal input of welding. There is a significant decrease in tensile strength and yield strength at temperatures around 550°C.

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Mičian, M., WINCZEK, J., HARMANIAK, D., Koňár, R., GUCWA, M., & MORAVEC, J. (2021). Physical simulation of individual heat-affected zones in s960mc steel. Archives of Metallurgy and Materials, 66(1), 81–89. https://doi.org/10.24425/amm.2021.134762

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