<div class="csl-bib-body">
<div class="csl-entry">Führer, M., Retzl, P., Kahlenberg, R., Zamberger, S., Haslberger, P., Kozeschnik, E., & Povoden-Karadeniz, E. (2025). Experimental investigation via torsion testing and simulation of static recrystallization of ferrite in ultra-low carbon steel. <i>Materials & Design</i>, <i>254</i>, Article 114024. https://doi.org/10.1016/j.matdes.2025.114024</div>
</div>
-
dc.identifier.issn
0264-1275
-
dc.identifier.uri
http://hdl.handle.net/20.500.12708/215452
-
dc.description.abstract
High-strain cold deformation introduces high driving forces for recrystallization, i.e., high dislocation densities, which in turn remarkably alters the microstructure. The static recrystallization behavior of ultra-low carbon steel during annealing, following cold torsion tests with engineering strain greater than 2, is experimentally investigated. Metallographic and EBSD analysis are used to evaluate the resulting microstructure after deformation and annealing. The recrystallized grain size decreases with increasing strain until reaching a saturation point. The study reveals that torsion tests are well suited to investigate the recrystallization behavior for a wide range of strain in ferritic steel. The experimental results are compared to computer simulations using a mean-field recrystallization model implemented in MatCalc. By using an extended Kocks-Mecking model approach and considering the subgrain boundary misorientation, the simulations consistently reproduce the experimental results, validating the accuracy of the model.
en
dc.language.iso
en
-
dc.publisher
ELSEVIER SCI LTD
-
dc.relation.ispartof
Materials & Design
-
dc.rights.uri
http://creativecommons.org/licenses/by/4.0/
-
dc.subject
computational materials engineering
en
dc.subject
Ultra-low Carbon Steel
en
dc.subject
static recrystallization
en
dc.subject
Cold torsion test
en
dc.subject
Microstructure control
en
dc.title
Experimental investigation via torsion testing and simulation of static recrystallization of ferrite in ultra-low carbon steel