dr inż. Roger Sauer | Politechnika Gdańska

Treść strony

dr inż. Roger Sauer

Kontakt:

email:
roger.sauer@pg.edu.pl
strona:
https://mostwiedzy.pl/roger-sauer,1238602-1

Zajmowane stanowiska:

Profesor uczelni ze stop. nauk. dr

dr inż. Roger Sauer

Publikacje:

  1. Publikacja
    • A. Borković
    • M. Gfrerer
    • R. Sauer
    • B. Marussig
    • T. Bui

    - COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING - Rok 2024

    We derive a novel formulation for the interaction potential between deformable fibers due to short-range fields arising from intermolecular forces. The formulation improves the existing section–section interaction potential law for in-plane beams by considering an offset between interacting cross sections. The new law is asymptotically consistent, which is particularly beneficial for computationally demanding scenarios involving...

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  2. Publikacja

    This work presents a new hybrid discretization approach to alleviate membrane locking in isogeometric finite element formulations for Kirchhoff–Love shells. The approach is simple, and requires no additional dofs and no static condensation. It does not increase the bandwidth of the tangent matrix and is effective for both linear and nonlinear problems. It combines isogeometric surface discretizations with classical Lagrange-based...

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  3. Publikacja
    • M. Choi
    • S. Klinkel
    • S. Klarmann
    • R. Sauer

    - MULTIBODY SYSTEM DYNAMICS - Rok 2024

    We present a stable mixed isogeometric finite element formulation for geometrically and materially nonlinear beams in transient elastodynamics, where a Cosserat beam formulation with extensible directors is used. The extensible directors yield a linear configuration space incorporating constant in-plane cross-sectional strains. Higher-order (incompatible) strains are introduced to correct stiffness, whose additional degrees of...

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  4. Publikacja

    - PHYSICAL REVIEW B - Rok 2024

    Understanding the interaction mechanics between graphene layers and co-axial carbon nanotubes (CNTs) is essential for modeling graphene and CNT-based nanoelectromechanical systems. This work proposes a new continuum contact model to study interlayer interactions between curved graphene sheets. The continuum model is calibrated and validated using molecular dynamics (MD) simulations. These are carried out employing the reactive...

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  5. Publikacja

    - MATHEMATICS AND MECHANICS OF SOLIDS - Rok 2024

    We respond to David Steigmann's discussion of our paper "A general theory for anisotropic Kirchhoff-Love shells with in-plane bending of embedded fibers, Math. Mech. Solids, 28(5):1274-1317" (arXiv:2101.03122). His discussion allows us to clarify two misleading statements in our original paper, and confirm that its formulation is fully consistent with the formulation of Steigmann. We also demonstrate that some of our original statements...

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