Publikationen von Markus Benjamin Wilms
Alle Typen
Zeitschriftenartikel (6)
1.
Zeitschriftenartikel
73, 103647 (2023)
Designing an Fe–Ni–Ti maraging steel tailor-made for laser additive manufacturing. Additive Manufacturing 2.
Zeitschriftenartikel
582, S. 515 - 519 (2020)
High-strength Damascus steel by additive manufacturing. Nature 3.
Zeitschriftenartikel
32, 100910 (2020)
Control of thermally stable core-shell nano-precipitates in additively manufactured Al–Sc–Zr alloys. Additive Manufacturing 4.
Zeitschriftenartikel
129, S. 52 - 60 (2017)
Massive nanoprecipitation in an Fe-19Ni-xAl maraging steel triggered by the intrinsic heat treatment during laser metal deposition. Acta Materialia 5.
Zeitschriftenartikel
23 (S1), S. 694 - 695 (2017)
In-process Precipitation During Laser Additive Manufacturing Investigated by Atom Probe Tomography. Microscopy and Microanalysis 6.
Zeitschriftenartikel
111, S. 60 - 69 (2016)
Efficient additive manufacturing production of oxide- and nitride-dispersion-strengthened materials through atmospheric reactions in liquid metal deposition. Materials and Design Konferenzbeitrag (2)
7.
Konferenzbeitrag
94, S. 41 - 45 (2020)
Effect of nanoparticle additivation on the microstructure and microhardness of oxide dispersion strengthened steels produced by laser powder bed fusion and directed energy deposition. 11th CIRP Conference on Photonic Technologies [LANE 2020], virtuel edition, 07. September 2020 - 10. September 2020. Procedia CIRP 8.
Konferenzbeitrag
25, S2 Aufl., S. 2514 - 2515 (2019)
Application of Atom Probe Tomography to Complex Microstructures of Laser Additively Manufactured Samples. Microscopy and Microanalysis Vortrag (13)
9.
Vortrag
Exploiting intrinsic heat treatment to trigger precipitation reactions in Maraging steels during Laser Additive Manufacturing. Metal Additive Manufacturing Conference, Örebro, Sweden (2019)
10.
Vortrag
Application of Atom Probe Tomography to Complex Microstructures of Laser Additively Manufactured Samples. Microscopy & Microanalysis Conference, Portland, OR, USA (2019)
11.
Vortrag
Process and Alloy Design for In-Situ Precipitation Strengthening of Al–Sc Alloys During Laser Metal Deposition. Metal Additive Manufacturing Conference, Vienna, Austria (2018)
12.
Vortrag
Designing a novel Fe–Ni–Al–Ti Maraging steel tailor-made for Laser Metal Deposition. Metal Additive Manufacturing Conference, Vienna, Austria (2018)
13.
Vortrag
Designing Fe–Ni–Al and Fe–Ni–Ti Maraging steels tailor-made for Laser Metal Deposition by exploiting Intrinsic Heat Treatment. Alloys for Additive Manufacturing Symposium, Sheffield, UK (2018)
14.
Vortrag
Design eines Fe–Ni–Ti–Al Maraging Stahls optimiert für in-situ Ausscheidungshärtung während des Laserauftragschweißens. Fachtagung Werkstoffe und Additive Fertigung, Potsdam, Germany (2018)
15.
Vortrag
Designing Fe–Ni–Al and Fe–Ni–Ti Maraging Steels for In-situ Precipitation Hardening During Laser Metal Deposition. TMS2018 Annual Meeting & Exhibition, Phoenix, AZ, USA (2018)
16.
Vortrag
Preventing the Coarsening of Al3Sc Precipitates by the Formation of a Zr-rich Shell During Laser Metal Deposition. TMS2018 Annual Meeting & Exhibition, Phoenix, AZ, USA (2018)
17.
Vortrag
In-process precipitation strengthening during Laser Metal Deposition of Aluminum alloys by Al3(Sc,Zr) nano-precipitates. EUROMAT 2017 Conference, Thessaloniki, Greece (2017)
18.
Vortrag
In-process precipitation strengthening in Al–Sc during Laser Metal Deposition by exploiting the Intrinsic Heat Treatment. Alloys for Additive Manufacturing Symposium, Zürich, Switzerland (2017)
19.
Vortrag
In-process Precipitation During Laser Additive Manufacturing Investigated by Atom Probe Tomography. Microscopy & Microanalysis, St. Louis, MO, USA (2017)
20.
Vortrag
Designing a novel Maraging steel for Laser Metal Deposition exploiting Intrinsic Heat Treatment. Advances in Materials & Processing: Challenges & Opportunities (AMPCO17), Roorkee, India (2017)