Alle Typen
21.
Zeitschriftenartikel
60 (16), S. 5791 - 5802 (2012)
Multistage strain hardening through dislocation substructure and twinning in a high strength and ductile weight-reduced Fe–Mn–Al–C steel. Acta Materialia 22.
Zeitschriftenartikel
60 (4), S. 1889 - 1904 (2012)
In situ analysis of the tensile and tensile-creep deformation mechanisms in rolled AZ31. Acta Materialia 23.
Zeitschriftenartikel
60 (9), S. 3994 - 4004 (2012)
Adiabatic temperature increase associated with deformation twinning and dislocation plasticity. Acta Materialia 24.
Zeitschriftenartikel
4, S. 35 - 38 (2012)
New insights on electron channeling. Imaging & Microscopy 25.
Zeitschriftenartikel
702 - 703, S. 523 - 529 (2012)
Study of deformation twinning and planar slip in a TWIP steel by Electron Channeling Contrast Imaging in a SEM. Materials Science Forum 26.
Zeitschriftenartikel
66, S. 343 - 346 (2012)
Dislocation density measurement by electron channeling contrast imaging in a scanning electron microscope. Scripta Materialia 27.
Zeitschriftenartikel
66, S. 992 - 996 (2012)
Grain size effect on strain hardening in twinning-induced plasticity steels. Scripta Materialia 28.
Zeitschriftenartikel
18 (2), S. 686 - 687 (2012)
New insights on quantitative microstructure characterization by electron channeling contrast imaging under controlled diffraction conditions in SEM. Microscopy and Microanalysis 29.
Zeitschriftenartikel
46, S. 3144 - 3150 (2011)
Study of isothermal δ’ (Al3Li) precipitation in an Al-Li alloy by thermoelectric power. Journal of Materials Science 30.
Zeitschriftenartikel
59 (16), S. 6449 - 6462 (2011)
Dislocation and twin substructure evolution during strain hardening of an Fe–22 wt.% Mn–0.6 wt.% C TWIP steel observed by electron channeling contrast imaging. Acta Materialia 31.
Zeitschriftenartikel
45, S. 6604 - 6610 (2010)
Study of internal stresses in a TWIP steel analyzing transient and permanent softening during reverse shear tests. Journal of Materials Science 32.
Zeitschriftenartikel
527, S. 3552 - 3560 (2010)
The effect of grain size and grain orientation on deformation twinning in a Fe–22 wt.% Mn–0.6 wt.% C TWIP steel. Materials Science and Engineering A 33.
Zeitschriftenartikel
633 - 634, S. 263 - 272 (2010)
The Influence of Work Hardening, Internal Stresses, and Stress Relaxation on Ductility of Ultrafine Grained Materials Prepared by Severe Plastic Deformation. Materials Science Forum 34.
Zeitschriftenartikel
528, S. 143 - 153 (2010)
Recrystallization in Fe3Al following rolling to high levels of strain. Materials Science Engineering A 35.
Zeitschriftenartikel
61, S. 737 - 740 (2009)
Electron channeling contrast imaging of twins and dislocations in twinning-induced plasticity steels under controlled diffraction conditions in a scanning electron microscope. Scripta Materialia 36.
Zeitschriftenartikel
17, S. 404 - 413 (2009)
Precipitation in ductile Fe–18Al–5Cr alloys with additions of Mo, W and C and effects on high-temperature strength. Intermetallics 37.
Konferenzbeitrag
783-786, S. 755 - 760 (2014)
Revealing the strain-hardening mechanisms of advanced high-Mn steels by multi-scale microstructure characterization. 8th International Conference on Processing and Manufacturing of Advanced Materials, THERMEC 2013, Las Vegas, NV, USA, 02. Dezember 2013 - 06. Dezember 2013. Materials Science Forum 38.
Konferenzbeitrag
783-786, S. 750 - 754 (2014)
Study of dislocation substructures in high-Mn steels by electron channeling contrast imaging. 8th International Conference on Processing and Manufacturing of Advanced Materials, THERMEC 2013, Las Vegas, NV, USA, 02. Dezember 2013 - 06. Dezember 2013. Materials Science Forum 39.
Konferenzbeitrag
In situ analysis of the tensile and tensile-creep deformation mechanisms in rolled AZ31. In: Magnesium Technology 2012, S. 99 - 104 (Hg. Mathaudhu, S. N.; Sillekens, W. H.; Neelameggham, N. R.; Hort, N.). TMS 2012, 141st Annual Meeting & Exhibition, Orlando, FL, USA, 11. März 2012 - 15. März 2012. Wiley, USA (2012)
40.
Konferenzbeitrag
Electron channelling contrast imaging under controlled diffraction conditions: A powerful technique for quantitative microstructural characterization of deformed materials. In: Proceedings of International Symposium on Plastic Deformation and Texture Analysis, S. 149 - 159. International Symposium on Plastic Deformation and Texture Analysis, Alcoy, Spain, 24. September 2012 - 25. September 2012. (2012)