APA 6th Edition Drobne, M., Gubeljak, N. i Glodež, S. (2014). Experimental determination of fatigue parameters of high chromium steel under different loading and temperature conditions. Tehnički vjesnik, 21 (4), 853-860. Preuzeto s https://hrcak.srce.hr/126081
MLA 8th Edition Drobne, Matej, et al. "Experimental determination of fatigue parameters of high chromium steel under different loading and temperature conditions." Tehnički vjesnik, vol. 21, br. 4, 2014, str. 853-860. https://hrcak.srce.hr/126081. Citirano 26.02.2021.
Chicago 17th Edition Drobne, Matej, Nenad Gubeljak i Srečko Glodež. "Experimental determination of fatigue parameters of high chromium steel under different loading and temperature conditions." Tehnički vjesnik 21, br. 4 (2014): 853-860. https://hrcak.srce.hr/126081
Harvard Drobne, M., Gubeljak, N., i Glodež, S. (2014). 'Experimental determination of fatigue parameters of high chromium steel under different loading and temperature conditions', Tehnički vjesnik, 21(4), str. 853-860. Preuzeto s: https://hrcak.srce.hr/126081 (Datum pristupa: 26.02.2021.)
Vancouver Drobne M, Gubeljak N, Glodež S. Experimental determination of fatigue parameters of high chromium steel under different loading and temperature conditions. Tehnički vjesnik [Internet]. 2014 [pristupljeno 26.02.2021.];21(4):853-860. Dostupno na: https://hrcak.srce.hr/126081
IEEE M. Drobne, N. Gubeljak i S. Glodež, "Experimental determination of fatigue parameters of high chromium steel under different loading and temperature conditions", Tehnički vjesnik, vol.21, br. 4, str. 853-860, 2014. [Online]. Dostupno na: https://hrcak.srce.hr/126081. [Citirano: 26.02.2021.]
APA 6th Edition Drobne, M., Gubeljak, N. i Glodež, S. (2014). Eksperimentalno određivanje parametara zamornog ponašanja visokokromnog lijevanog čelika pri različitim režima opterećenja i temperature. Tehnički vjesnik, 21 (4), 853-860. Preuzeto s https://hrcak.srce.hr/126081
MLA 8th Edition Drobne, Matej, et al. "Eksperimentalno određivanje parametara zamornog ponašanja visokokromnog lijevanog čelika pri različitim režima opterećenja i temperature." Tehnički vjesnik, vol. 21, br. 4, 2014, str. 853-860. https://hrcak.srce.hr/126081. Citirano 26.02.2021.
Chicago 17th Edition Drobne, Matej, Nenad Gubeljak i Srečko Glodež. "Eksperimentalno određivanje parametara zamornog ponašanja visokokromnog lijevanog čelika pri različitim režima opterećenja i temperature." Tehnički vjesnik 21, br. 4 (2014): 853-860. https://hrcak.srce.hr/126081
Harvard Drobne, M., Gubeljak, N., i Glodež, S. (2014). 'Eksperimentalno određivanje parametara zamornog ponašanja visokokromnog lijevanog čelika pri različitim režima opterećenja i temperature', Tehnički vjesnik, 21(4), str. 853-860. Preuzeto s: https://hrcak.srce.hr/126081 (Datum pristupa: 26.02.2021.)
Vancouver Drobne M, Gubeljak N, Glodež S. Eksperimentalno određivanje parametara zamornog ponašanja visokokromnog lijevanog čelika pri različitim režima opterećenja i temperature. Tehnički vjesnik [Internet]. 2014 [pristupljeno 26.02.2021.];21(4):853-860. Dostupno na: https://hrcak.srce.hr/126081
IEEE M. Drobne, N. Gubeljak i S. Glodež, "Eksperimentalno određivanje parametara zamornog ponašanja visokokromnog lijevanog čelika pri različitim režima opterećenja i temperature", Tehnički vjesnik, vol.21, br. 4, str. 853-860, 2014. [Online]. Dostupno na: https://hrcak.srce.hr/126081. [Citirano: 26.02.2021.]
Sažetak Fatigue investigation of high chromium steel (HCS) at different loading ratios (R = 0, R = –1) and different temperatures (20 °C, 600 °C) is presented in this paper. Before fatigue testing, monotonic mechanical properties (ultimate compressive and ultimate tensile strength) are determined at different temperatures, using standardized testing procedures according to DIN 50125 standard. Moreover Charpy impact tests at different temperatures were done with specimens that comply with the standard ISO 14556. Fatigue testing is performed on a servo – hydraulic testing machine with consideration of different loading conditions as described above. On the basis of the experimental results the S – N curves are constructed from which typical fatigue parameters (the fatigue strength coefficient σf’ and the fatigue strength exponent b) are determined. After fatigue testing a comprehensive investigation of fracture surfaces is performed using the Scanning Electron Microscope (SEM). Experimental results presented in this paper will serve as a basis for further investigations related to fatigue behaviour of real working rolls in hot strip mills made of HCS.