Преглед Radovi istraživača / Researchers' publications тема: "HSLA steel"
Приказ резултата 1-12 од 12
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Assessment of the behaviour of fatigue loaded HSLA welded steel joint by applying fracture mechanics parameters
(New Trends in Fatigue and Fracture NT2F12, Brasov, Romania, Proceedings, 2012) -
Cavitation damages morphology of high-strength low-alloy steel
(Faculty of Metallurgy, 2016) -
Determination of polynomial depending between hardness and cooling time t8/5 of steel NIONICRAL 70 heat affected zone
(18th International Conference on New Trends in Fatigue and Fracture NT2F18, 2018) -
Determining of the Fatigue Crack Growth Rate of HSLA Steel at Room Temperature
(Advanced Technologies & Materials, 2022) -
Experimental Determination of JIc for a HSLA Steel Welded Joint
(Elsevier B.V., 2023) -
Experimental Determination of JIc for a HSLA Steel Welded Joint
(2nd International Symposium on Risk Analysis and Safety of Complex Structures and Components (IRAS 2023), 2023) -
Experimental Determination of the Critical Value of the J-Integral that Refers to the HSLA Steel Welded Joint
(Strojarski Facultet, 2023) -
Identification of low cycle fatigue parameters of high strength low-alloy (HSLA) steel at room temperature
(Croatian Metallurgical Soc, Zagreb, 2014) -
Impact of choice of stabilized hysteresis loop on the end result of investigation of high-strength low-alloy (HSLA) steel on low cycle fatigue
(Croatian Metallurgical Soc, Zagreb, 2014) -
Methodology for determining the region of stabilization of low-cycle fatigue
(Fakultet strojarstva i brodarsta, Univerzitet u Zagrebu, Hrvatska, 2016) -
Procena ponašanja zavarenog spoja HSLA čelika opterećenog na zamor primenom parametara mehanike loma / Assessment of the behaviour of fatigue loaded HSLA steel welded joint by applying fracture mechanics parameters
(Institut za ispitivanje materijala, Beograd, 2012) -
Processing of Data Obtained by the Testing of Steel under Low Cyclic Fatigue (Part I)
(University of Zagreb Faculty of Mechanical Engineering and Naval Architecture, 2022)