Prof. Dr.-Ing. Kai Willner

Scopus Author ID: 6602808118



Organisation


Professur für Strukturmechanik



Project lead

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(FOR 2271: Prozessorientiertes Toleranzmanagement mit virtuellen Absicherungsmethoden):
Fuzzy-arithmetical modeling of processes with uncertain prarameters
Prof. Dr.-Ing. Kai Willner
(01/01/2016 - 28/02/2019)

(SPP 1897: Calm, Smooth and Smart - Novel Approaches for Influencing Vibrations by Means of Deliberately Introduced Dissipation):
Vibration reduction by energy transfer using shape adaption
Prof. Dr.-Ing. Kai Willner
(01/01/2016 - 31/12/2019)

(SPP 1886: Polymorphic uncertainty modelling for the numerical design of structures):
A hybrid Sampling-Stochastic-Finite-Element-Method for polymorphic, microstructural uncertainties in heterogeneous materials
Prof. Dr.-Ing. Paul Steinmann; Prof. Dr.-Ing. Kai Willner
(01/01/2016 - 31/03/2020)

Material modelling of sheet-layered lamination stacks
Prof. Dr.-Ing. Kai Willner
(01/01/2015)

Structural dynamics of rotating systems
Prof. Dr.-Ing. Kai Willner
(01/01/2015 - 31/05/2020)


Publications (Download BibTeX)

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Süß, D., Jerschl, M., & Willner, K. (2018). Calculating the Dynamic Response of Jointed Structures in the Frequency Domain Using Contact Interface Elements. In Matthew R.W. Brake (Eds.), The Mechanics of Jointed Structures (pp. 491-510). Cham: Springer.
Oberleiter, T., & Willner, K. (2018). Fuzinsumo ‐ Fuzzy investigation with surrogate models. In PAMM, Volume 17 (pp. 725-726). Ilmenau/Weimar: Weinheim: WILEY‐VCH Verlag GmbH & Co. KGaA.
Oberleiter, T., Heling, B., Schleich, B., Willner, K., & Wartzack, S. (2018). Fuzzy Sensitivity Analysis in the Context of Dimensional Management. ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering, Volume 5(Issue 1). https://dx.doi.org/10.1115/1.4040919
Löffler, M., Engel, U., Willner, K., Beyer, F., & Merklein, M. (2018). Investigation of the tribological behaviour of microstructures for controlling the material flow in sheet-bulk metal forming. CIRP Journal of Manufacturing Science and Technology. https://dx.doi.org/10.1016/j.cirpj.2018.05.002
Weidauer, T., & Willner, K. (2018). Model reduction of gyroscopic systems in ALE formulation with and without non-linearities. In PAMM, Volume 18. München: Weinheim: Wiley-VCH Verlag GmbH & Co. KGaA.
Weidauer, T., & Willner, K. (2018). Numerical and experimental modal analysis of structures under gyroscopic influence in ALE formulation. Leuven, Belgien, BE.
Härtel, M., Pfeiffer, S., Schmaltz, S., Söhngen, B., Kulawinski, D., Willner, K.,... Wagner, M.F.-X. (2018). On the identification of an effective cross section for a cruciform specimen. Strain, 54(1). https://dx.doi.org/10.1111/str.12257
Weidauer, T., & Willner, K. (2018). Reduced Order Modelling for Non-Linear Rotating Systems in ALE Formulation with Contact. In Gaetan Kerschen (Eds.), Nonlinear Dynamics, Volume 1; Proceedings of the 36th IMAC, A Conference and Exposition on Structural Dynamics 2018 (pp. 287-302). Orlando, FL, USA, US: Springer International Publishing.
Nowak, A., Willner, K., Campanile, L.F., & Hasse, A. (2017). Active Vibration Control of Excited Structures by means of Shape Adaption. Krakau, PL.
Heling, B., Oberleiter, T., Schleich, B., Willner, K., & Wartzack, S. (2017). Comparison of Different Sensitivity Analysis Methods in the Context of Dimensional Management. In ASME (Eds.), ASME 2017 International Mechanical Engineering Congress and Exposition, Volume 2: Advanced Manufacturing. Tampa, Florida, USA.

Last updated on 2016-05-05 at 05:19