Publications and projects according to DDC
Publications
Publications and projects according to DDC 620: Engineering
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Radis, Rene; Friso, Francesca; Mayer, Thomas,
2024.
Transformation induced anisotropic thermal expansion of LPBF processed Ti-6Al-4V.
In:
3rd Materials Science Colloquium, Lech am Arlberg, Austria, 15-18 April 2024.
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Schneider, Toni,
2024.
Möglichkeiten des PFAS-Ersatzes und wissenschaftliche Ansätze.
In:
Workshop Materials IQ: «Tribologische Herausforderungen beim Ersatz von halogenierten Alkylverbindungen», Brugg, Schweiz, 14. März 2024.
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Mehreganian, Navid; Safa, Yasser; Boiger, Gernot Kurt,
2024.
Impact analysis of wind turbines subjected to ship collision and blast loading
.
In:
Fallah, Arash Soleiman; Khawaja, Hassan Abbas; Moatamedi, Mojtaba, eds.,
Multiphysics of Wind Turbines in Extreme Loading Conditions.
Academic Press.
pp. 101-138.
Available from: https://doi.org/10.1016/B978-0-323-91852-7.00008-8
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Eberlein, Robert; Düzel, Sven,
2024.
Fatigue lifetime analysis of POM gears for generalized tooth root loading and shapes [paper].
In:
39th International Conference of the Polymer Processing Society (PPS-39), Cartagena de Indias, Colombia, 19-23 May 2024.
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Attenhofer, Mariline,
2024.
Optimierung einer Wandbegrünung mit integrierter Grauwasseraufbereitung.
Winterthur:
ZHAW Zürcher Hochschule für Angewandte Wissenschaften.
Available from: https://doi.org/10.21256/zhaw-30578
Projects
Projects according to DDC 620: Engineering
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High Integrity Satellite Navigation for UAV using the Galileo HAS
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AI for Industrial Product, Service & Innovation Management
Over the last years, Artificial Intelligence (AI) emerged as central technology for all areas of life. For instance, computer vision enabled Tesla`s autonomous vehicles and natural language processing set the foundation for Amazon`s smart assistants. However, AI reshapes not only innovation outcomes, but also ...
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Medtech Ventil Cloudsim
Cloud-simulation based development of a novel type of valve, specifically scaled for application in the med-tech sector.
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Simulation-based further development of an aseptic process valve with free-floating piston for Non-Newtonian Fluids
Simulation based development of a novel, aseptic process-valve for non-newtonian fluids. We apply finite-volume and finite-element based numerical methods, multiphysics simulations and massive simultaneous cloud computing.
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Simulation-based-process-development of an industrial scale technology for temperature stable vaccines
Within LaPaSim we will develop the Multiphysics simulation models for an industrial unit of a novel ambient temperature drying tech-nology (LaminarPace) enabling dry powder and temperature-stable vaccines, at an industrial scale and ready for integration in commercial production. An innovative ...