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Ivo Steinbrecher
Ivo Steinbrecher
Postdoc, University of the Bundeswehr Munich
Bestätigte E-Mail-Adresse bei unibw.de - Startseite
Titel
Zitiert von
Zitiert von
Jahr
A mortar-type finite element approach for embedding 1D beams into 3D solid volumes
I Steinbrecher, M Mayr, MJ Grill, J Kremheller, C Meier, A Popp
Computational Mechanics 66, 1377-1398, 2020
362020
Eulerian description of non-stationary motion of an idealized belt-pulley system with dry friction
E Oborin, Y Vetyukov, I Steinbrecher
International Journal of Solids and Structures 147, 40-51, 2018
302018
On the numerical modeling of sliding beams: A comparison of different approaches
I Steinbrecher, A Humer, L Vu-Quoc
Journal of Sound and Vibration 408, 270-290, 2017
272017
General sliding-beam formulation: A non-material description for analysis of sliding structures and axially moving beams
A Humer, I Steinbrecher, L Vu-Quoc
Journal of Sound and Vibration 480, 115341, 2020
262020
Consistent coupling of positions and rotations for embedding 1D Cosserat beams into 3D solid volumes
I Steinbrecher, A Popp, C Meier
Computational Mechanics 69 (3), 701-732, 2022
172022
One-way coupled fluid–beam interaction: capturing the effect of embedded slender bodies on global fluid flow and vice versa
N Hagmeyer, M Mayr, I Steinbrecher, A Popp
Advanced Modeling and Simulation in Engineering Sciences 9 (1), 9, 2022
152022
MeshPy–A general purpose 3D beam finite element input generator
I Steinbrecher, A Popp
112021
A consistent mixed-dimensional coupling approach for 1D Cosserat beams and 2D solid surfaces
I Steinbrecher, N Hagmeyer, C Meier, A Popp
arXiv preprint arXiv:2210.16010, 2022
42022
Efficient mortar‐based algorithms for embedding 1D fibers into 3D volumes
I Steinbrecher, A Popp
PAMM 20 (1), e202000151, 2021
32021
Mixed-dimensional finite element formulations for beam-to-solid interaction
IS Steinbrecher
2*
Finite Element Formulations for Beam-to-Solid Interaction–from Embedded Fibers Towards Contact
A Popp, I Steinbrecher
Current Trends and Open Problems in Computational Mechanics, 425-434, 2022
2022
Fluid-beam interaction: Capturing the effect of embedded slender bodies on global fluid flow and vice versa
N Hagmeyer, M Mayr, I Steinbrecher, A Popp
arXiv preprint arXiv:2104.09844, 2021
2021
Modelling disc-brake squeal in a multi-body-dynamics environment
I Steinbrecher
2015
Embedding of 1D beams into 3D solid volumes–Translational and rotational coupling
I Steinbrecher, C Meier, A Popp
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