Identification of low cycle fatigue parameters of high strength low-alloy (hsla) steel at room temperature
Apstrakt
Low cycle fatigue test was performed in ambient atmosphere at room temperature. cycle loading of material, in case of High strength low-alloy steel, entails modifications of its properties and in this paper is therefore shown behavior of fatigue life using low cycle fatigue parameters. Mere precisely, crack initiation life of tested specimens Was computed using theory of Coffin-Manson relation during the fatigue loading. The geometry Of the stabilized hysteresis loop of welded joint HSLA steel, marked as Nionikral 70, is also analyzed. This stabilized hysteresis loop is very important for determination of materials properties.
Ključne reči:
HSLA steel / mechanical properties / low cycle fatigue / fatigue life / material parametersIzvor:
Metalurgija, 2014, 53, 4, 466-468Izdavač:
- Croatian Metallurgical Soc, Zagreb
Finansiranje / projekti:
- Integritet opreme pod pritiskom pri istovremenom delovanju zamarajućeg opterećenja i temperature (RS-MESTD-Technological Development (TD or TR)-35011)
Institucija/grupa
Tehnološko-metalurški fakultetTY - JOUR AU - Bulatović, Srđan AU - Milović, Ljubica AU - Sedmak, Aleksandar AU - Samardžić, Ivan PY - 2014 UR - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/2848 AB - Low cycle fatigue test was performed in ambient atmosphere at room temperature. cycle loading of material, in case of High strength low-alloy steel, entails modifications of its properties and in this paper is therefore shown behavior of fatigue life using low cycle fatigue parameters. Mere precisely, crack initiation life of tested specimens Was computed using theory of Coffin-Manson relation during the fatigue loading. The geometry Of the stabilized hysteresis loop of welded joint HSLA steel, marked as Nionikral 70, is also analyzed. This stabilized hysteresis loop is very important for determination of materials properties. PB - Croatian Metallurgical Soc, Zagreb T2 - Metalurgija T1 - Identification of low cycle fatigue parameters of high strength low-alloy (hsla) steel at room temperature EP - 468 IS - 4 SP - 466 VL - 53 UR - https://hdl.handle.net/21.15107/rcub_technorep_2848 ER -
@article{ author = "Bulatović, Srđan and Milović, Ljubica and Sedmak, Aleksandar and Samardžić, Ivan", year = "2014", abstract = "Low cycle fatigue test was performed in ambient atmosphere at room temperature. cycle loading of material, in case of High strength low-alloy steel, entails modifications of its properties and in this paper is therefore shown behavior of fatigue life using low cycle fatigue parameters. Mere precisely, crack initiation life of tested specimens Was computed using theory of Coffin-Manson relation during the fatigue loading. The geometry Of the stabilized hysteresis loop of welded joint HSLA steel, marked as Nionikral 70, is also analyzed. This stabilized hysteresis loop is very important for determination of materials properties.", publisher = "Croatian Metallurgical Soc, Zagreb", journal = "Metalurgija", title = "Identification of low cycle fatigue parameters of high strength low-alloy (hsla) steel at room temperature", pages = "468-466", number = "4", volume = "53", url = "https://hdl.handle.net/21.15107/rcub_technorep_2848" }
Bulatović, S., Milović, L., Sedmak, A.,& Samardžić, I.. (2014). Identification of low cycle fatigue parameters of high strength low-alloy (hsla) steel at room temperature. in Metalurgija Croatian Metallurgical Soc, Zagreb., 53(4), 466-468. https://hdl.handle.net/21.15107/rcub_technorep_2848
Bulatović S, Milović L, Sedmak A, Samardžić I. Identification of low cycle fatigue parameters of high strength low-alloy (hsla) steel at room temperature. in Metalurgija. 2014;53(4):466-468. https://hdl.handle.net/21.15107/rcub_technorep_2848 .
Bulatović, Srđan, Milović, Ljubica, Sedmak, Aleksandar, Samardžić, Ivan, "Identification of low cycle fatigue parameters of high strength low-alloy (hsla) steel at room temperature" in Metalurgija, 53, no. 4 (2014):466-468, https://hdl.handle.net/21.15107/rcub_technorep_2848 .