Project detail
BAANG - BUILDING ACTIONS IN SMART AVIATION WITH ENVIRONMENTAL GAINS
Duration: 1.9.2022 — 31.8.2025
Funding resources
Evropská unie - HORIZON EUROPE
On the project
BAANG creates the scientific strategy that connects 3 disciplines - aerospace, mechatronics and additive technologies and collaborates in 5 areas - smart materials, novel structures, new design, simulation techniques and optimal wing shape adaptation. It brings together four institutions: Brno University of Technology (BUT) – the widening coordinator and three top-class leading universities - TU Delft, Imperial College London (ICL) and TU Wien.
Mark
HORIZON-WIDERA-2021-ACCESS-03, SEP-210806308
Default language
English
People responsible
Kotoul Michal, prof. RNDr., DrSc. - principal person responsible
Hadaš Zdeněk, doc. Ing., Ph.D. - fellow researcher
Koutný Daniel, doc. Ing., Ph.D. - fellow researcher
Marušincová Blanka, Ing., MSc - fellow researcher
Navrátil Jan, Ing., Ph.D. - fellow researcher
Zikmund Pavel, doc. Ing., Ph.D. - fellow researcher
Units
Institute of Aerospace Engineering
- responsible department (16.5.2022 - not assigned)
Institute of Aerospace Engineering
- responsible department (7.1.2022 - 16.5.2022)
Centre of New Technologies for Mechanical Engineering
- co-beneficiary (1.9.2022 - 31.8.2025)
Institute of Machine and Industrial Design
- co-beneficiary (1.9.2022 - 31.8.2025)
Institute of Solid Mechanics, Mechatronics and Biomechanics
- co-beneficiary (1.9.2022 - 31.8.2025)
Institute of Aerospace Engineering
- beneficiary (7.1.2022 - not assigned)
Results
HRSTKA, M.; KOTOUL, M.; PROFANT, T.; KIANICOVÁ, M. Small-scale domain switching near sharp piezoelectric bi-material notches. INTERNATIONAL JOURNAL OF FRACTURE, 2025, vol. 250, no. 1, p. 1-30. ISSN: 0376-9429.
Detail
Jan Bajer; Miroslav Hrstka; Zahra Sharif Khodaei; M.H. Aliabadi; Zdenek Hadas. Geometry Optimization of a Highly Flexible Gradient Metamaterial Structure Using a Differential Evolution Algorithm. In 2024 21st International Conference on Mechatronics - Mechatronika (ME). 21. Brno, Czech Republic: IEEE, 2024. p. 186-191. ISBN: 979-8-3503-9490-0.
Detail
HRSTKA, M.; BAJER, J.; HADAŠ, Z.; KHODAEI, Z.; ALIABADI, F.; KOTOUL, M. Modelling of leading edge morphing by using geometrically exact beam theory. In Engineering Mechanics 2024. Engineering Mechanics .... 1. Milovy: Institute of Solid Mechanics, Mechatronics and Biomechanics, Faculty of Mechanical Engineering, Brno University of Technology, 2024. p. 134-137. ISBN: 978-80-214-6235-9. ISSN: 1805-8248.
Detail
ZIKMUND, P.; KOFLER, M.; NAVRÁTIL, J.; HRSTKA, M.; POLLÁK, J.; VAN KAMPEN, E. Multidisciplinary Design Optimization Framework for Morphing Wing using Metamaterials. In 2024 New Trends in Aviation Development (NTAD). 2024 New Trends in Aviation Development (NTAD). IEEE, 2025. p. 236-241. ISBN: 979-8-3315-2774-7. ISSN: 2836-2764.
Detail
JAROŠ, J.; DUCHOŇ, M.; VÍCHA, D.; PCHÁLEK, V.; ŠVÁB, Č.; KOUTNÝ, D. TiAl6V4 bistable mechanism produced by Laser Powder Bed Fusion. Aachen, Germany: Metal Additive Manufacturing Conference 2024, 2024.
Detail
NAVRÁTIL, J.; HOSTINSKÝ, V.; SODJA, J. Design of morphing wing for aerodynamic performance considering the wing flexibility effects. In 13th EASN International Conference on Innovation in Aviation & Space for opening New Horizons. Journal of Physics: Conference Series. IOP Publishing, 2024. p. 1-8. ISSN: 1742-6596.
Detail
BAJER, J.; KŠICA, F.; MARCIÁN, P.; HRSTKA, M.; NAVRÁTIL, J.; HADAŠ, Z. Concept of Autonomous Self-Sensing Metamaterial Structures for Future Aircraft. In 2023 IEEE 10th International Workshop on Metrology for AeroSpace (MetroAeroSpace). Milan, Italy: IEEE, 2023. p. 424-429. ISBN: 978-1-6654-5690-6.
Detail
SNOPIŇSKI, P., APPIAH, A.N.S., HILŠER, O.,KOTOUL, M. Investigation of Microstructure and Mechanical Properties of SLM-Fabricated AlSi10Mg Alloy Post-Processed Using Equal Channel Angular Pressing (ECAP). Materials, 2022, vol. 15, no. 22, p. 7940-7940. ISSN: 1996-1944.
Detail
Link
Responsibility: Kotoul Michal, prof. RNDr., DrSc.