works on

From the 1 of 7 linked papers with an AI index.

collaborators
Showing cs.CEShow all

7 papers · 1 filter

cs.CE2026

Mechanical Modeling of Braided Neurovascular Flow Diverters using a Beam-to-Beam and Beam-to-Surface Contact Formulation

Martin Frank, Ivo Steinbrecher, Matthias Mayr +1

Braided neurovascular flow diverters are widely used for the endovascular treatment of intracranial aneurysms, where their mechanical response and final deployed configuration are…

cs.CE2026

Modified augmented Lagrangian preconditioning for mixed-dimensional beam-solid coupling

Max Firmbach, Ivo Steinbrecher, Alexander Popp +1

This paper presents modified augmented Lagrangian block preconditioners for the mixed-dimensional coupling of three-dimensional solid bodies with embedded one-dimensional torsion-f…

cs.CE2026

A variationally consistent beam-to-beam point coupling formulation for geometrically exact beam theories

Ivo Steinbrecher, Nora Hagmeyer, Christoph Meier +1

Slender beam-like structures frequently occur in engineering applications and often interact at discrete locations through joints or connectors. Accurate modeling of such interacti…

cs.CE2026

An Embedded Mesh Approach for Isogeometric Boundary Layers in Contact Mechanics

Eugenia Gabriela Loera Villeda, Ivo Steinbrecher, Alexander Popp

This paper proposes a novel discretization workflow for contact problems in which the discretization of the contact interface is decoupled from that of the bulk domain. This separa…

cs.CE2026

Smoothed aggregation algebraic multigrid for problems with heterogeneous and anisotropic materials

Max Firmbach, Malachi Phillips, Christian Glusa +3

This paper introduces a material-aware strength-of-connection measure for smoothed aggregation algebraic multigrid methods, aimed at improving robustness for scalar partial differe…

cs.CE2025

A consistent mixed-dimensional coupling approach for 1D Cosserat beams and 2D surfaces in 3D space

Ivo Steinbrecher, Nora Hagmeyer, Christoph Meier +1

The present article proposes a novel computational method for coupling arbitrarily curved 1D fibers with a 2D surface as defined, e.g., by the 2D surfaces of a 3D solid body or by…