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Microstructure and mechanical properties of X65MoCrWV3-2 cold-work tool steel produced by selective laser melting
Boes, J.; Röttger, A.; Mutke, C.; Escher, C.; Theisen, W.
Additive Manufacturing (2018), Volume 23, Pages 170–180
DOI: 10.1016/j.addma.2018.08.005

Effect of porosity and eutectics on the high-temperature low-cycle fatigue performance of a nickel-base single-crystal superalloy
Ruttert, B.; Meid, C.; Mujica Roncery, L.; Lopez-Galilea, I.; Bartsch, M.; Theisen, W.
Scripta Materialia (2018), Volume 155, Pages 139–143
DOI: 10.1016/j.scriptamat.2018.06.036

Densifying and hardening of martensitic steel powders in HIP units providing high cooling rates
Weddeling, A.; Wulbieter, N.; Theisen, W.
Powder Metallurgy (2016), Volume 59, Issue 1, Pages 9–19
DOI: 10.1080/00325899.2015.1109803

Untersuchung des Einflusses einer HIP-Nachbehandlung auf den selektiv lasergeschmolzenen (SLM) austenitischen Stahl AISI 316L
Frömel, F.; Awd, M.; Tenkamp, J.; Walther, F.; Boes, J.; Geenen, K.; Roettger, A.; Theisen, W.
Werkstoffe und Additive Fertigung - Tagungsband (2018), Pages 190–199

Gefügebildung in martensitischen und austenitischen Stählen beim Selective Laser Melting
Theisen, W.; Röttger, A.; Boes, J.; Geenen, K.; Krell, J.
Pulvermetallurgie in Wissenschaft und Praxis, Pulvermetallurgie – Schlüssel zur Mobilität (2017), Volume Band 33, Pages 135–157

Rejuvenation of Single-Crystal Ni-Base Superalloy Turbine Blades. Unlimited Service Life?
Ruttert, B.; Horst, O.; Lopez-Galilea, I.; Langenkämper, D.; Kostka, A.; Somsen, C.; Goerler, J.; Ali, M.; Shchyglo, O.; Steinbach, I.; Eggeler, G.; Theisen, W.
Metall and Mat Trans A (Metallurgical and Materials Transactions A) (2018), Volume 22, Pages 361
DOI: 10.1007/s11661-018-4745-6

Time-Dependent Evolution of Microstructure and Mechanical Properties of Mortar
Röttger, A.; Youn-Cale, B.Y.; Küpferle, J.; Lentz, J.; Breitenbücher, R.; Theisen, W.
Int J Civ Eng (International Journal of Civil Engineering) (2018), Volume 93, Issue 1, Pages 877
DOI: 10.1007/s40999-018-0305-0

Hardness and modulus of Fe 2 B, Fe 3 (C,B), and Fe 23 (C,B) 6 borides and carboborides in the Fe-C-B system
Lentz, J.; Röttger, A.; Theisen, W.
Materials Characterization (2018), Volume 135, Pages 192–202
DOI: 10.1016/j.matchar.2017.11.012

Enhancement of hardness, modulus and fracture toughness of the tetragonal (Fe,Cr) 2 B and orthorhombic (Cr,Fe) 2 B phases with addition of Cr
Lentz, J.; Röttger, A.; Großwendt, F.; Theisen, W.
Materials & Design (2018)
DOI: 10.1016/j.matdes.2018.06.040

Mechanism of the Fe 3 (B,C) and Fe 23 (C,B) 6 solid-state transformation in the hypoeutectic region of the Fe-C-B system
Lentz, J.; Röttger, A.; Theisen, W.
Acta Materialia (2016), Volume 119, Pages 80–91
DOI: 10.1016/j.actamat.2016.08.009

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