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Number of items: 16.

Wu, Yuye ; Skokov, Konstantin P. ; Schäfer, Lukas ; Maccari, Fernando ; Xu, Hao ; Wang, Xiaoxiao ; Jiang, Chengbao ; Gutfleisch, Oliver (2024)
A systematic investigation of Pr-rich Pr-(Fe,Co)-B material system: phase formation, microstructure and magnetic property.
In: Acta Materialia, 263
doi: 10.1016/j.actamat.2023.119517
Article, Bibliographie

Schäfer, Kilian ; Lutzi, Matthias ; Khan, Muhammad Bilal ; Schäfer, Lukas ; Dirba, Imants ; Bruns, Sebastian ; Valizadeh, Iman ; Weeger, Oliver ; Hartmann, Claas ; Kupnik, Mario ; Adabifiroozjaei, Esmaeil ; Molina-Luna, Leopoldo ; Skokov, Konstantin P. ; Gutfleisch, Oliver (2024)
Magneto-active composites with locally tailored stiffness produced by laser powder bed fusion.
In: Additive Manufacturing, 79
doi: 10.1016/j.addma.2023.103905
Article, Bibliographie

Adabifiroozjaei, Esmaeil ; Maccari, Fernando ; Schäfer, Lukas ; Jiang, Tianshu ; Recalde-Benitez, Oscar ; Chirkova, Alisa ; Shayanfar, Navid ; Dirba, Imants ; Kani, Nagaarjhuna A ; Shuleshova, Olga ; Winkler, Robert ; Zintler, Alexander ; Rao, Ziyuan ; Pfeuffer, Lukas ; Kovács, András ; Dunin-Borkowski, Rafal E. ; Skokov, Konstantin P. ; Gault, Baptiste ; Gruner, Markus ; Gutfleisch, Oliver ; Molina-Luna, Leopoldo (2024)
Martensitic phase transformation in short-range ordered Fe50Rh50 system induced by thermal stress and mechanical deformation.
In: Acta Materialia, 264
doi: 10.1016/j.actamat.2023.119577
Article, Bibliographie

Liu, Jianing ; Xie, Ruiwen ; Aubert, Alex ; Schäfer, Lukas ; Zhang, Hongbin ; Gutfleisch, Oliver ; Skokov, Konstantin (2023)
Magnetic properties of Nd6Fe13Cu single crystals.
In: Applied Physics Letters, 122 (24)
doi: 10.1063/5.0147678
Article, Bibliographie

Schäfer, Kilian ; Lutzi, Matthias ; Khan, Muhammad Bilal ; Schäfer, Lukas ; Skokov, Konstantin P. ; Dirba, Imants ; Bruns, Sebastian ; Valizadeh, Iman ; Weeger, Oliver ; Hartmann, Claas ; Kupnik, Mario ; Adabifiroozjaei, Esmaeil ; Molina-Luna, Leopoldo ; Gutfleisch, Oliver (2023)
Local stiffness tailoring of magneto-active composites produced by laser powder bed fusion.
doi: 10.48550/arXiv.2305.02643
Article, Bibliographie

Staab, Franziska ; Bruder, Enrico ; Schäfer, Lukas ; Skokov, Konstantin P. ; Koch, David ; Zingsem, Benjamin ; Adabifiroozjaei, Esmaeil ; Molina-Luna, Leopoldo ; Gutfleisch, Oliver ; Durst, Karsten (2023)
Hard magnetic SmCo5-Cu nanocomposites produced by severe plastic deformation.
In: Acta Materialia, 246
doi: 10.1016/j.actamat.2023.118709
Article, Bibliographie

Tosoni, Olivier ; Borges Mendonça, Elisa ; Reijonen, Joni ; Antikainen, Atte ; Schäfer, Lukas ; Riegg, Stefan ; Gutfleisch, Oliver (2023)
High-coercivity copper-rich Nd-Fe-B magnets by powder bed fusion using laser beam method.
In: Additive Manufacturing, 64
doi: 10.1016/j.addma.2023.103426
Article, Bibliographie

Schäfer, Lukas (2023)
Unconventional Alloy Design of (Nd, Pr)-Fe-B Based Alloys for the Production of Permanent Magnets by Additive Manufacturing.
Technische Universität Darmstadt
doi: 10.26083/tuprints-00024242
Ph.D. Thesis, Primary publication, Publisher's Version

Schäfer, Lukas ; Skokov, Konstantin P. ; Maccari, Fernando ; Radulov, Iliya ; Koch, David ; Mazilkin, Andrey ; Adabifiroozjaei, Esmaeil ; Molina‐Luna, Leopoldo ; Gutfleisch, Oliver (2022)
A Novel Magnetic Hardening Mechanism for Nd‐Fe‐B Permanent Magnets Based on Solid‐State Phase Transformation.
In: Advanced Functional Materials, 33 (4)
doi: 10.1002/adfm.202208821
Article, Bibliographie

Wu, Yuye ; Skokov, Konstantin P. ; Schäfer, Lukas ; Maccari, Fernando ; Aubert, Alex ; Rao, Ziyuan ; Schweinar, Kevin ; Gault, Baptiste ; Xu, Hao ; Jiang, Chengbao ; Gutfleisch, Oliver (2022)
A comparative study of Nd15Fe78B7 and Nd15Co78B7 systems: phase formations and coercivity mechanisms.
In: Acta Materialia, 240
doi: 10.1016/j.actamat.2022.118311
Article, Bibliographie

Wu, Yuye ; Skokov, Konstantin P. ; Schäfer, Lukas ; Maccari, Fernando ; Aubert, Alex ; Xu, Hao ; Wu, Haichen ; Jiang, Chengbao ; Gutfleisch, Oliver (2022)
Microstructure, coercivity and thermal stability of nanostructured (Nd,Ce)-(Fe,Co)-B hot-compacted permanent magnets.
In: Acta Materialia, 235
doi: 10.1016/j.actamat.2022.118062
Article, Bibliographie

Schäfer, Lukas ; Skokov, Konstantin ; Liu, Jianing ; Maccari, Fernando ; Braun, Tobias ; Riegg, Stefan ; Radulov, Iliya ; Gassmann, Jürgen ; Merschroth, Holger ; Harbig, Jana ; Weigold, Matthias ; Gutfleisch, Oliver (2021)
Design and Qualification of Pr-Fe-Cu-B Alloys for the Additive Manufacturing of Permanent Magnets.
In: Advanced Functional Materials, 11
doi: 10.1002/adfm.202102148
Article, Bibliographie

Ye, Xinglong ; Yan, Fengkai ; Schäfer, Lukas ; Wang, Di ; Geßwein, Holger ; Wang, Wu ; Chellali, Mohammed Reda ; Stephenson, Leigh T. ; Skokov, Konstantin ; Gutfleisch, Oliver ; Raabe, Dierk ; Hahn, Horst ; Gault, Baptiste ; Kruk, Robert (2021)
Magnetoelectric Tuning of Pinning‐Type Permanent Magnets through Atomic‐Scale Engineering of Grain Boundaries.
In: Advanced Materials, 33 (5)
doi: 10.1002/adma.202006853
Article, Bibliographie

Palanisamy, Dhanalakshmi ; Ener, Semih ; Maccari, Fernando ; Schäfer, Lukas ; Skokov, Konstantin P. ; Gutfleisch, Oliver ; Raabe, Dierk ; Gault, Baptiste (2020)
Grain boundary segregation, phase formation, and their influence on the coercivity of rapidly solidified SmFe11Ti hard magnetic alloys.
In: Physical Review Materials, 4 (5)
doi: 10.1103/PhysRevMaterials.4.054404
Article, Bibliographie

Rao, Ziyuan ; Dutta, Biswanath ; Körmann, Fritz ; Ponge, Dirk ; Li, Linlin ; He, Junyang ; Stephenson, Leigh ; Schäfer, Lukas ; Skokov, Konstantin ; Gutfleisch, Oliver ; Raabe, Dierk ; Li, Zhiming (2020)
Unveiling the mechanism of abnormal magnetic behavior of FeNiCoMnCu high-entropy alloys through a joint experimental-theoretical study.
In: Physical Review Materials, 4 (1)
doi: 10.1103/PhysRevMaterials.4.014402
Article, Bibliographie

Schäfer, Lukas (2015)
Einfluss der Grenzflächendichte auf die Koerzitivfeldstärke von ARMCO Eisen und VACOFLUX17.
Technische Universität Darmstadt
Bachelor Thesis, Bibliographie

This list was generated on Sat Jan 18 01:50:55 2025 CET.