Numerical analysis of the effect of initial plasticity on transient creep in compact tension specimen under mechanical load
Marko Katinić
; College of Slavonski Brod, Technical Department, Dr. Mile Budaka 1, 35000 Slavonski Brod, Croatia
Dražan Kozak
orcid.org/0000-0001-5245-4686
; Josip Juraj Strossmayer University of Osijek, Mechanical Engineering Faculty in Slavonski Brod, Trg Ivane Brlić Mažuranić 2, 35000 Slavonski Brod, Croatia
Pejo Konjatić
; Josip Juraj Strossmayer University of Osijek, Mechanical Engineering Faculty in Slavonski Brod, Trg Ivane Brlić Mažuranić 2, 35000 Slavonski Brod, Croatia
APA 6th Edition Katinić, M., Kozak, D. i Konjatić, P. (2016). Numerical analysis of the effect of initial plasticity on transient creep in compact tension specimen under mechanical load. Tehnički vjesnik, 23 (5), 1417-1421. https://doi.org/10.17559/TV-20160923100833
MLA 8th Edition Katinić, Marko, et al. "Numerical analysis of the effect of initial plasticity on transient creep in compact tension specimen under mechanical load." Tehnički vjesnik, vol. 23, br. 5, 2016, str. 1417-1421. https://doi.org/10.17559/TV-20160923100833. Citirano 02.03.2021.
Chicago 17th Edition Katinić, Marko, Dražan Kozak i Pejo Konjatić. "Numerical analysis of the effect of initial plasticity on transient creep in compact tension specimen under mechanical load." Tehnički vjesnik 23, br. 5 (2016): 1417-1421. https://doi.org/10.17559/TV-20160923100833
Harvard Katinić, M., Kozak, D., i Konjatić, P. (2016). 'Numerical analysis of the effect of initial plasticity on transient creep in compact tension specimen under mechanical load', Tehnički vjesnik, 23(5), str. 1417-1421. https://doi.org/10.17559/TV-20160923100833
Vancouver Katinić M, Kozak D, Konjatić P. Numerical analysis of the effect of initial plasticity on transient creep in compact tension specimen under mechanical load. Tehnički vjesnik [Internet]. 2016 [pristupljeno 02.03.2021.];23(5):1417-1421. https://doi.org/10.17559/TV-20160923100833
IEEE M. Katinić, D. Kozak i P. Konjatić, "Numerical analysis of the effect of initial plasticity on transient creep in compact tension specimen under mechanical load", Tehnički vjesnik, vol.23, br. 5, str. 1417-1421, 2016. [Online]. https://doi.org/10.17559/TV-20160923100833
APA 6th Edition Katinić, M., Kozak, D. i Konjatić, P. (2016). Numerička analiza utjecaja početne plastičnosti na tranzijentno puzanje kompaktne vlačne epruvete pod mehaničkim opterećenjem. Tehnički vjesnik, 23 (5), 1417-1421. https://doi.org/10.17559/TV-20160923100833
MLA 8th Edition Katinić, Marko, et al. "Numerička analiza utjecaja početne plastičnosti na tranzijentno puzanje kompaktne vlačne epruvete pod mehaničkim opterećenjem." Tehnički vjesnik, vol. 23, br. 5, 2016, str. 1417-1421. https://doi.org/10.17559/TV-20160923100833. Citirano 02.03.2021.
Chicago 17th Edition Katinić, Marko, Dražan Kozak i Pejo Konjatić. "Numerička analiza utjecaja početne plastičnosti na tranzijentno puzanje kompaktne vlačne epruvete pod mehaničkim opterećenjem." Tehnički vjesnik 23, br. 5 (2016): 1417-1421. https://doi.org/10.17559/TV-20160923100833
Harvard Katinić, M., Kozak, D., i Konjatić, P. (2016). 'Numerička analiza utjecaja početne plastičnosti na tranzijentno puzanje kompaktne vlačne epruvete pod mehaničkim opterećenjem', Tehnički vjesnik, 23(5), str. 1417-1421. https://doi.org/10.17559/TV-20160923100833
Vancouver Katinić M, Kozak D, Konjatić P. Numerička analiza utjecaja početne plastičnosti na tranzijentno puzanje kompaktne vlačne epruvete pod mehaničkim opterećenjem. Tehnički vjesnik [Internet]. 2016 [pristupljeno 02.03.2021.];23(5):1417-1421. https://doi.org/10.17559/TV-20160923100833
IEEE M. Katinić, D. Kozak i P. Konjatić, "Numerička analiza utjecaja početne plastičnosti na tranzijentno puzanje kompaktne vlačne epruvete pod mehaničkim opterećenjem", Tehnički vjesnik, vol.23, br. 5, str. 1417-1421, 2016. [Online]. https://doi.org/10.17559/TV-20160923100833
Sažetak The effect of initial plasticity on transient creep in plain strain compact tension C(T) specimen under load control is numerically analyzed in this paper. The detailed finite element (FE) analysis was performed by varying the magnitude of the initial step-load, and for general material properties where different plastic and creep stress exponents were systematically varied. Comparisons have been performed between the FE computed C(t) values and available estimation equation. It has been found that the estimation equation provides good agreement with the FE results.