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Segregation stabilizes nanocrystalline bulk steel with near theoretical strength

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Li,  Yujiao
Atom Probe Tomography, Microstructure Physics and Alloy Design, Max-Planck-Institut für Eisenforschung GmbH, Max Planck Society;
Georg-August-Universität Göttingen, Friedrich-Hund-Platz 1, D-37077 Göttingen, Germany;

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Raabe,  Dierk
Microstructure Physics and Alloy Design, Max-Planck-Institut für Eisenforschung GmbH, Max Planck Society;

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Herbig,  Michael
Atom Probe Tomography, Microstructure Physics and Alloy Design, Max-Planck-Institut für Eisenforschung GmbH, Max Planck Society;

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Choi,  Pyuck-Pa
Atom Probe Tomography, Microstructure Physics and Alloy Design, Max-Planck-Institut für Eisenforschung GmbH, Max Planck Society;

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Goto,  Shoji
Akita University, Tegata Gakuencho, Akita 010-8502, Japan;
Microstructure Physics and Alloy Design, Max-Planck-Institut für Eisenforschung GmbH, Max Planck Society;

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Kostka,  Aleksander
High-Temperature Materials, External Max Planck Fellow, Max-Planck-Institut für Eisenforschung GmbH, Max Planck Society;

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Kirchheim,  Reiner
Microstructure Physics and Alloy Design, Max-Planck-Institut für Eisenforschung GmbH, Max Planck Society;
Georg-August-Universität Göttingen, Friedrich-Hund-Platz 1, D-37077 Göttingen, Germany;

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Citation

Li, Y., Raabe, D., Herbig, M., Choi, P.-P., Goto, S., Kostka, A., et al. (2014). Segregation stabilizes nanocrystalline bulk steel with near theoretical strength. Physical Review Letters, 113(10): 106104. doi:10.1103/PhysRevLett.113.106104.


Cite as: http://hdl.handle.net/11858/00-001M-0000-0023-DC75-8
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