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The effect of stress triaxiality on the phase transformation in transformation induced plasticity steels: experimental investigation and modelling the transformation kinetics
Polatidis, E., Haidemenopoulos, G. N., Krizan, D., Aravas, N., Panzner, T., Šmíd, M., … Van Swygenhoven, H. (2021). The effect of stress triaxiality on the phase transformation in transformation induced plasticity steels: experimental investigation and modelling the transformation kinetics. Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing, 800, 140321 (10 pp.). https://doi.org/10.1016/j.msea.2020.140321
Grain orientation dependence of the forward and reverse fcc ↔ hcp transformation in FeMnSi-based shape memory alloys studied by <em>in situ</em> neutron diffraction
Arabi-Hashemi, A., Polatidis, E., Smid, M., Panzner, T., & Leinenbach, C. (2020). Grain orientation dependence of the forward and reverse fcc ↔ hcp transformation in FeMnSi-based shape memory alloys studied by in situ neutron diffraction. Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing, 782, 139261 (11 pp.). https://doi.org/10.1016/j.msea.2020.139261
Measurement and prediction of the transformation strain that controls ductility and toughness in advanced steels
Maresca, F., Polatidis, E., Šmíd, M., Van Swygenhoven, H., & Curtin, W. A. (2020). Measurement and prediction of the transformation strain that controls ductility and toughness in advanced steels. Acta Materialia, 200, 246-255. https://doi.org/10.1016/j.actamat.2020.08.028
Deformation mechanisms in a superelastic NiTi alloy: an in-situ high resolution digital image correlation study
Polatidis, E., Šmíd, M., Kuběna, I., Hsu, W. N., Laplanche, G., & Van Swygenhoven, H. (2020). Deformation mechanisms in a superelastic NiTi alloy: an in-situ high resolution digital image correlation study. Materials and Design, 191, 108622 (10 pp.). https://doi.org/10.1016/j.matdes.2020.108622
Deformation and degradation of superelastic NiTi under multiaxial loading
Hsu, W. N., Polatidis, E., Šmíd, M., van Petegem, S., Casati, N., & van Swygenhoven, H. (2019). Deformation and degradation of superelastic NiTi under multiaxial loading. Acta Materialia, 167, 149-158. https://doi.org/10.1016/j.actamat.2019.01.047
The interplay between deformation mechanisms in austenitic 304 steel during uniaxial and equibiaxial loading
Polatidis, E., Šmíd, M., Hsu, W. N., Kubenova, M., Capek, J., Panzner, T., & Van Swygenhoven, H. (2019). The interplay between deformation mechanisms in austenitic 304 steel during uniaxial and equibiaxial loading. Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing, 764, 138222 (7 pp.). https://doi.org/10.1016/j.msea.2019.138222
<em>In situ </em>characterization of a high work hardening Ti-6Al-4V prepared by electron beam melting
Sofinowski, K., Šmíd, M., Kuběna, I., Vivès, S., Casati, N., Godet, S., & Van Swygenhoven, H. (2019). In situ characterization of a high work hardening Ti-6Al-4V prepared by electron beam melting. Acta Materialia, 179, 224-236. https://doi.org/10.1016/j.actamat.2019.08.037
<em>In situ</em> characterization of work hardening and springback in grade 2 <em>α</em>-titanium under tensile load
Sofinowski, K., Šmíd, M., van Petegem, S., Rahimi, S., Connolley, T., & van Swygenhoven, H. (2019). In situ characterization of work hardening and springback in grade 2 α-titanium under tensile load. Acta Materialia, 181, 87-98. https://doi.org/10.1016/j.actamat.2019.09.039
Load path change on superelastic NiTi alloys: in situ synchrotron XRD and SEM DIC
Hsu, W. N., Polatidis, E., Šmíd, M., Casati, N., Van Petegem, S., & Van Swygenhoven, H. (2018). Load path change on superelastic NiTi alloys: in situ synchrotron XRD and SEM DIC. Acta Materialia, 144, 874-883. https://doi.org/10.1016/j.actamat.2017.11.035
A high resolution digital image correlation study under multiaxial loading
Polatidis, E., Hsu, W. N., Šmíd, M., & Van Swygenhoven, H. (2018). A high resolution digital image correlation study under multiaxial loading. Experimental Mechanics. https://doi.org/10.1007/s11340-018-00443-6