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Prediction of quenched and tempered steel and cast steel properties (CROSBI ID 188163)

Prilog u časopisu | izvorni znanstveni rad

Smoljan, Božo ; Iljkić, Dario ; Novak, Hrvoje Prediction of quenched and tempered steel and cast steel properties // Journal of achievements in materials and manufacturing engineering, 49 (2011), 2; 369-374

Podaci o odgovornosti

Smoljan, Božo ; Iljkić, Dario ; Novak, Hrvoje

engleski

Prediction of quenched and tempered steel and cast steel properties

Purpose: The influence of processing parameters, such as pouring temperature and cooling rate during the casting, as well as application of hot working and pre-heat treatment, on strength and toughness of quenched and tempered steel was investigated. Design/methodology/approach: Strength and toughness were presented by yield strength and Charpy-V notch toughness, respectively. Experimental procedure of material properties optimization was done using the 25-2 factor experiment. Findings: It was found out that yield strength is insensitive on differences between applied manufacturing processes, but by application of hot working and with appropriate pouring temperature the Charpy-V notch toughness is increased. Also, Charpy-V notch toughness is increased by interactive effect of the appropriate cooling rate during the casting and application of hot working. Research limitations/implications: The research was focused mainly on Charpy-V notch toughness of carbon and low alloyed heat treatable steels. Practical implications: The established algorithms can be used for prediction of tensile strength, yield strength and Charpy-V notch toughness in heat treating practice. Originality/value: Original relation for prediction of quenched and tempered steel and cast steel Charpy-V notch toughness are developed.

Computational material science and mechanics; Quenching and tempering; Steel and cast steel; Charpy-V notch toughness

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Podaci o izdanju

49 (2)

2011.

369-374

objavljeno

1734-8412

Povezanost rada

Strojarstvo, Temeljne tehničke znanosti