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Holzbau-Formen für Stuttgart 21 : Modellbasierte Entwicklung und Fertigung eines Schalungssystems aus Brettsperrholz zur Herstellung von Schalentragwerken aus Stahlbeton

, , and . Bautechnik, 95 (7): 505-511 (2018)
DOI: 10.1002/bate.201800042

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Univ. -Prof. Dr. Norbert Frühauf University of Stuttgart

Replication Data for: Highly efficient real-time spatially resolved sensing of ultraviolet light, , , , , , , and . Dataset, (2025)Related to: Yannick Schellander, Fabian Munkes, Alexander Trachtmann, Patrick Schalberger, Robert Löw, Harald Kübler, Tilman Pfau, Norbert Fruehauf, "Highly efficient real-time spatially resolved sensing of ultraviolet light," Proc. SPIE 13109, Metamaterials, Metadevices, and Metasystems 2024, 1310906 (2024). doi: 10.1117/12.3028038.
Replication Data for: Highly efficient real-time spatially resolved sensing of ultraviolet light, , , , , , , and . Dataset, (2025)Related to: Yannick Schellander, Fabian Munkes, Alexander Trachtmann, Patrick Schalberger, Robert Löw, Harald Kübler, Tilman Pfau, Norbert Fruehauf, "Highly efficient real-time spatially resolved sensing of ultraviolet light," Proc. SPIE 13109, Metamaterials, Metadevices, and Metasystems 2024, 1310906 (2024). doi: 10.1117/12.3028038.Replication Data for: Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology, , , , , , , and . Dataset, (2025)Related to: Schellander Y, Winter M, Schamber M, Munkes F, Schalberger P, Kuebler H, et al. Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology. J Soc Inf Display. 2023; 31(5): 363-372. doi: 10.1002/jsid.1202.Replication Data for: Ultraviolet Photodetectors and their Readout Realization for Future Active-Matrix Sensing, , , , , , , and . Dataset, (2025)Related to: Y. Schellander, M. Schamber, F. Munkes, R. Loew, P. Schalberger, H. Kübler, T. Pfau, and N. Fruehauf, “Ultraviolet photodetectors and their readout realization for future active-matrix sensing”, Proceedings of the International Display Workshops,30 (2023), 151-154. doi: 10.36463/idw.2023.0151.
 

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Multi-stage filament winding : Integrative design and fabrication method for fibre-reinforced composite components of complex geometries, and . Composite structures, (2021)Structural design of a lattice composite cantilever, , , , , and . Structures, (2019)Holzbau-Formen für Stuttgart 21 : Modellbasierte Entwicklung und Fertigung eines Schalungssystems aus Brettsperrholz zur Herstellung von Schalentragwerken aus Stahlbeton, , and . Bautechnik, 95 (7): 505-511 (2018)The ITECH approach: Building(s) to learn, , , , , , , , , and 1 other author(s). Proceedings of the IASS Annual Symposium 2018, Boston, USA, MIT, (16-19 July 2018)Applying BIM to a 250 m high tower built with slip forming, , , and . Lake Constance 5D Conference 2015 - proceedings, 222, page 223-231. Düsseldorf, VDI-Verl., (2015)ICD/ITKE Research Pavilion 2016/2017: Integrative Design of a Composite Lattice Cantilever, , , , , , , , and . Proceedings of the IASS Annual Symposium 2018 Creativity in Structural Design, Boston, USA, MIT, (16-19 July 2018)Building Information Modelling (BIM) in der Qualitätskontrolle: Laser-Scanning der Brettschichtholz-Schalenbauteile für die Herstellung des Schalentragwerks des neuen Stuttgarter Hauptbahnhof (S 21), , and . Bauingenieur, (2017)Integrative structural design of a timber-fibre hybrid building system fabricated through coreless filament winding: Maison Fibre, , , and . Journal of Building Engineering, (May 2022)Visualization for public participation procedures in major infrastructure and industrial projects, , , , and . Lake Constance 5D Conference 2015 - proceedings, 222, Düsseldorf, VDI-Verl., (2015)Integrative structural design of a timber-fibre hybrid building system fabricated through coreless filament winding : Maison Fibre, , , and . Journal of building engineering, (2022)