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  • Grain size effect on strain... Grain size effect on strain hardening in twinning-induced plasticity steels
    Gutierrez-Urrutia, I.; Raabe, D. Scripta materialia, June 2012, 2012-6-00, 20120601, Volume: 66, Issue: 12
    Journal Article
    Peer reviewed

    We investigate the influence of grain size on the strain hardening of two Fe–22Mn–0.6C (wt.%) twinning-induced plasticity steels with average grain sizes of 3 and 50μm, respectively. The grain size ...
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  • Influence of Al content and... Influence of Al content and precipitation state on the mechanical behavior of austenitic high-Mn low-density steels
    Gutierrez-Urrutia, I.; Raabe, D. Scripta materialia, March 2013, 2013-3-00, Volume: 68, Issue: 6
    Journal Article
    Peer reviewed

    We investigate the strain hardening of two austenitic high-Mn low density steels, namely, Fe–30.5Mn–2.1Al–1.2C and Fe–30.5Mn–8.0Al–1.2C (wt.%), containing different precipitation states. The strain ...
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  • Linear complexions: Confine... Linear complexions: Confined chemical and structural states at dislocations
    Kuzmina, M.; Herbig, M.; Ponge, D. ... Science (American Association for the Advancement of Science), 09/2015, Volume: 349, Issue: 6252
    Journal Article
    Peer reviewed

    For 5000 years, metals have been mankind's most essential materials owing to their ductility and strength. Linear defects called dislocations carry atomic shear steps, enabling their formability. We ...
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  • High strength and ductile l... High strength and ductile low density austenitic FeMnAlC steels: Simplex and alloys strengthened by nanoscale ordered carbides
    Gutierrez-Urrutia, I.; Raabe, D. Materials science and technology, 07/2014, Volume: 30, Issue: 9
    Journal Article
    Peer reviewed
    Open access

    We introduce the alloy design concepts of high performance austenitic FeMnAlC steels, namely, Simplex and alloys strengthened by nanoscale ordered κ-carbides. Simplex steels are characterised by an ...
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  • Combining structural and ch... Combining structural and chemical information at the nanometer scale by correlative transmission electron microscopy and atom probe tomography
    Herbig, M.; Choi, P.; Raabe, D. Ultramicroscopy, June 2015, 2015-Jun, 2015-06-00, 20150601, Volume: 153
    Journal Article
    Peer reviewed

    In many cases, the three-dimensional reconstructions from atom probe tomography (APT) are not sufficiently accurate to resolve crystallographic features such as lattice planes, shear bands, stacking ...
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  • Joint contribution of trans... Joint contribution of transformation and twinning to the high strength-ductility combination of a FeMnCoCr high entropy alloy at cryogenic temperatures
    He, Z.F.; Jia, N.; Ma, D. ... Materials science & engineering. A, Structural materials : properties, microstructure and processing, 06/2019, Volume: 759
    Journal Article
    Peer reviewed

    The microstructure-mechanical property relationships of a non-equiatomic FeMnCoCr high entropy alloy (HEA), which shows a single face-centered cubic (fcc) structure in the undeformed state, have been ...
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  • Efficient and accurate simu... Efficient and accurate simulations of deformable particles immersed in a fluid using a combined immersed boundary lattice Boltzmann finite element method
    Krüger, T.; Varnik, F.; Raabe, D. Computers & mathematics with applications, 06/2011, Volume: 61, Issue: 12
    Journal Article
    Peer reviewed
    Open access

    The deformation of an initially spherical capsule, freely suspended in simple shear flow, can be computed analytically in the limit of small deformations D. Barthés-Biesel, J.M. Rallison, The ...
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  • Steels in additive manufact... Steels in additive manufacturing: A review of their microstructure and properties
    Bajaj, P.; Hariharan, A.; Kini, A. ... Materials science & engineering. A, Structural materials : properties, microstructure and processing, 01/2020, Volume: 772
    Journal Article
    Peer reviewed
    Open access

    Today, a large number of different steels are being processed by Additive Manufacturing (AM) methods. The different matrix microstructure components and phases (austenite, ferrite, martensite) and ...
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