Wissenschaftliche Artikel

Rosenberger, P., Cosgun, A., Rhys, N., Kwan, J., Ortenzi, V., Corke, P., & Grafinger, M. (2021). Object-Independent Human-to-Robot Handovers using Real Time Robotic Vision. IEEE Robotics and Automation Letters, 6(1), 17–23. https://doi.org/10.1109/lra.2020.3026970 ( reposiTUm)
Hennig, M., Grafinger, M., Hofmann, R., Gerhard, D., Dumss, S., & Rosenberger, P. (2021). Introduction of a time series machine learning methodology for the application in a production system. Advanced Engineering Informatics, 47(101197), 101197. https://doi.org/10.1016/j.aei.2020.101197 ( reposiTUm)
Hoelbling, D., Grafinger, M., Smiech, M. M., Cizmic, D., Dabnichki, P., & Baca, A. (2021). Acute response on general and sport specific hip joint flexibility to training with novel sport device. Sports Biomechanics. https://doi.org/10.1080/14763141.2021.1922742 ( reposiTUm)
Hölbling, D., Grafinger, M., Baca, A., & Dabnichki, P. (2020). The Flexibility Trainer: Feasibility Analysis, Prototype- and Test Station development for a Sports Device for Hip-Joint Flexibility and Strength Enhancement. Proceedings of the 8th International Conference on Sport Sciences Research and Technology Support. https://doi.org/10.5220/0010019400220029 ( reposiTUm)
Riegler, R., & Grafinger, M. (2020). Analytische Betrachtung von gewickelten Pressverbänden in Anwendung bei Axialflussmaschinen. Forschung Im Ingenieurwesen, 84(4), 369–378. https://doi.org/10.1007/s10010-020-00421-2 ( reposiTUm)
Tafaghodi Helali, H., & Grafinger, M. (2016). The precision of FEM simulation results compared with theoretical composite layup calculation. Composites Part B: Engineering, 95, 282–292. https://doi.org/10.1016/j.compositesb.2016.04.003 ( reposiTUm)

Beiträge in Tagungsbänden

Kugu, O., Zhou, S., Reiterer, S. H., Schwaiger, M., Wurth, L., & Grafinger, M. (2025). Pipeline-Based Automated Integration and Delivery Testing of Simulation Assets with FMI/SSP in a Railway Digital Twin. In M. Tiller, H. Tummescheit, L. Vanfretti, C. Laughman, M. Wetter, & Modelica Association and Linköping University Electronic Press (Eds.), Proceedings of the American Modelica Conference 2024, Storrs, Connecticut, USA, October 14-16, 2024 (pp. 189–198). https://doi.org/10.3384/ecp207189 ( reposiTUm)
Nigischer, C., Reiterer, F., Bougain, S., & Grafinger, M. (2023). Finding the proper level of detail to achieve sufficient model fidelity using FlexSim: An industrial use case. In A. Liu & S. Kara (Eds.), Procedia CIRP : The 33rd CIRP Design Conference (pp. 1240–1245). Elsevier BV. https://doi.org/10.1016/j.procir.2023.02.192 ( reposiTUm)
Zhou, S., Meierhofer, A., Kugu, O., Xia, Y., & Grafinger, M. (2023). A Machine-Learning-based Surrogate Modeling Methodology for Submodel Integration in the Holistic Railway Digital Twin Platform. In The 33rd CIRP Design Conference (pp. 345–350). Elsevier. https://doi.org/10.1016/j.procir.2023.02.141 ( reposiTUm)
Vukašinović Nikola, Becatini Niccolo, Schramek Maximilian, Grafinger, M., & Škec Stanko. (2023). COVID-19 pandemic study: ad-hoc reaction and premeditated transition of project-based product design courses. In A. Chakrabarti & V. Singh (Eds.), ICORD 2023: Design in the Era of Industry 4.0, Volume 3 (pp. 1069–1078). https://doi.org/10.1007/978-981-99-0428-0_87 ( reposiTUm)
Kugu, O., Zhou, S., Nowak, R., Müller, G., Reiterer, S. H., Meierhofer, A., Lachinger, S., Wurth, L., & Grafinger, M. (2023). An FMI- and SSP-based Model Integration Methodology for a Digital Twin Platform of a Holistic Railway Infrastructure System. In D. Müller, A. Monti, & A. Benighi (Eds.), Proceedings of the 15th International Modelica Conference (pp. 717–726). Modelica Association and Linköping University Electronic Press. https://doi.org/10.3384/ecp204717 ( reposiTUm)
Zhou, S., Dumss, S., Nowak, R., Riegler, R., Kugu, O., Krammer, M., & Grafinger, M. (2022). A Conceptual Model-based Digital Twin Platform for Holistic Large-scale Railway Infrastructure Systems. In 32nd CIRP Design Conference (CIRP Design 2022) - Design in a changing world (pp. 362–367). Elsevier. https://doi.org/10.1016/j.procir.2022.05.263 ( reposiTUm)
Schramek Maximilian, Becattini, N., Škec, S., Vukašinović, N., Grafinger, M., & Rosenberger, P. (2022). FRAMEWORK FOR CRISIS-RESISTANT ENGINEERING PRODUCT DEVELOPMENT COURSES. In E. Bohemia, L. Buck, & H. Grierson (Eds.), DS 117: Proceedings of the 24th International Conference on Engineering and Product Design Education (E&PDE 2022), London South Bank University in London, UK. 8th - 9th September 2022. https://doi.org/10.35199/EPDE.2022.39 ( reposiTUm)
Dumss, S., Weber, M., Schwaiger, C., Sulz, C., Rosenberger, P., Grafinger, M., & Weigold, M. (2021). EuProGigant – A Concept Towards an Industrial System Architecture for Data-Driven Production Systems. In Procedia CIRP (pp. 324–329). Elsevier B.V. https://doi.org/10.1016/j.procir.2021.11.055 ( reposiTUm)
Grafinger, M. (2020). Using kinematic analysis to develop a new tooth system for gearings with variable shaft angle. In Proceedings of the Design Society (pp. 2505–2510). Cambridge University Press. https://doi.org/10.1017/dsd.2020.8 ( reposiTUm)
Hennig, M., Grafinger, M., Gerhard, D., Dumss, S., & Rosenberger, P. (2020). Comparison of Time Series Clustering Algorithms for Machine State Detection. In R. X. Gao & K. Ehmann (Eds.), 53rd CIRP Conference on Manufacturing Systems 2020 (pp. 1352–1357). Elsevier BV. https://doi.org/10.1016/j.procir.2020.03.084 ( reposiTUm)
Dumss, S., Grafinger, M., Hennig, M., & Rosenberger, P. (2020). Combining multiple data sources and enriching the dataset using Industrial Edge Devices. In R. X. Gao & K. Ehmann (Eds.), 53rd CIRP Conference on Manufacturing Systems 2020 (pp. 1346–1351). Elsevier BV. https://doi.org/10.1016/j.procir.2020.03.081 ( reposiTUm)
Rosenberger, P., Grafinger, M., Gerhard, D., Hennig, M., & Dumss, S. (2020). The CASAD Matrix Method: Introduction of a Technique for the Documentation, Analysis, and Optimization of Context-Aware Systems. In K. Mpofu & P. Butala (Eds.), Enhancing design through the 4th Industrial Revolution Thinking (pp. 427–432). https://doi.org/10.1016/j.procir.2020.03.106 ( reposiTUm)
Grafinger, M. (2010). Entwurf und Berechnung von Rotorprofilen mit der Profilsteigungsfunktion und dem Computerprogramm SV_Win. In VDI Wissensforum GmbH (Ed.), Schraubenmaschinen 2010 (pp. 357–372). VDI-Berichte. http://hdl.handle.net/20.500.12708/66211 ( reposiTUm)
Gerhard, D., & Grafinger, M. (2009). Integrative Engineering Design Using Product Data Management Systems In Education. In 11th International Conference on Engineering and Product Design Education (p. 6). http://hdl.handle.net/20.500.12708/65969 ( reposiTUm)
Grafinger, M., & Woitsch, G. (2009). EDGE - Vom virtuellen Produkt zum realen Rennfahrzeug. In Kongress zur Simulation im Produktentstehungsprozess (pp. 521–530). http://hdl.handle.net/20.500.12708/65925 ( reposiTUm)
Grafinger, M., Woitsch, G., Weigand, M., & Gerhard, D. (2009). EDGE - Vom virtuellen Produkt zum realen Rennfahrzeug. In SIMPEP - Kongress zur Simulation im Produktentstehungsprozess (pp. 521–552). FVA - Forschungsvereinigung Antriebstechnik, Frankfurt am Main. http://hdl.handle.net/20.500.12708/65939 ( reposiTUm)
Bojanic, N., Gföhler, M., Pandy, M., Grafinger, M., & Kronnerwetter, C. (2006). MR-based Lower-limb Musculoskeletal Model of a Child. In J. Middleton & N. Shrive (Eds.), Computer Methods in Biomechanics and Biomedical Engineering (p. 6). First Numerics Ltd. http://hdl.handle.net/20.500.12708/65511 ( reposiTUm)

Präsentationen

Grafinger, M. (2010). Nichtlineare Finite Elemente Simulation mit dem neuen CATIA V5 ANL - Modul. PLM Forum 2010, Mannheim, EU. http://hdl.handle.net/20.500.12708/93079 ( reposiTUm)
Grafinger, M. (2008). CATIA FEM Effiziente Simulationen im Produktentwicklungsprozess. PLM Forum 2008, Steyregg, Linz, Austria. http://hdl.handle.net/20.500.12708/92675 ( reposiTUm)
Grafinger, M. (2006). PLM-Produkte an der TU-Wien. IBM PLM-Forum 2006, Wien, Austria. http://hdl.handle.net/20.500.12708/92676 ( reposiTUm)

Hochschulschriften

Grafinger, M. (2010). Die computerunterstützte Entwicklung der Flankenprofile für Sonderverzahnungen von Schraubenkompressoren [Professorial Dissertation, Technische Universität Wien]. reposiTUm. http://hdl.handle.net/20.500.12708/159508 ( reposiTUm)