| Zugehörige Institution(en) am KIT | Graduiertenkolleg 2561: Materials Compounds from Composite Materials (GRK 2561) Karlsruhe Nano Micro Facility (KNMF) Laboratorium für Elektronenmikroskopie (LEM) Institut für Angewandte Materialien – Werkstoffkunde (IAM-WK) |
| Publikationstyp | Forschungsdaten |
| Publikationsdatum | 07.07.2025 |
| Erstellungsdatum | 30.06.2025 |
| Identifikator | DOI: 10.35097/pgppvxcdzrwjn3ns KITopen-ID: 1000182713 |
| HGF-Programm | 38.04.01 (POF IV, LK 01) Gas turbines |
| Lizenz | Creative Commons Namensnennung – Nicht kommerziell – Weitergabe unter gleichen Bedingungen 4.0 International |
| Projektinformation | 424801257 (DFG, DFG EIN, HE 1872/38-1) GRK 2561/1 - 2020 ; MatCom-ComMat, 413956820 (DFG, DFG KOORD, GRK 2561/1 - 2020) GRK 2561/2 - 2024; MatCom-ComMat, 281041241 (DFG, DFG KOORD, GRK 2561/2 - 2024) |
| Vorab online veröffentlicht am | 04.07.2025 |
| Schlagwörter | KNMFi proposal 2022-029 031563 |
| Liesmich | Raw data set to "Microstructure and mechanical properties of a laser-based directed energy deposited Mo-Si-Ti alloy". The data sets are labelled according to the figures in the manuscript. DED-v or DED-h refers to the eutectic Mo-20Si-52.8Ti alloy manufactured by DED-LB in the vertical or horizontal direction with respect to the build direction Fig.1a = Scanning electron grayscale micrographs using secondary electron contrast as *.jpg image of powder particles Fig.2a = Scanning electron grayscale micrographs using backscattered electron contrast as .jpg image of DED-v Fig.3 = Color-coded IPF maps of (a) (Mo,Ti,Si) solid solution and (b) (Ti,Mo)5Si3. (c) + (d) Orientation relationship of Mo,Ti,Si) solid solution and (Ti,Mo)5Si3 Fig.4a = True stress as a function of true strain at 900°C for DED-v, AC and HT Fig.5 = Scanning electron grayscale micrographs using backscattered electron contrast as *.jpg image of DED-v after compression strain of 6% |
| Art der Forschungsdaten | Dataset |
| Nachgewiesen in | OpenAlex |
| Relationen in KITopen | |
| Globale Ziele für nachhaltige Entwicklung |