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Friedrich-Alexander-Universität Institute of Applied Mechanics
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  1. Friedrich-Alexander-Universität
  2. Technische Fakultät
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Friedrich-Alexander-Universität Institute of Applied Mechanics
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  • Research
    • Biomechanics
      • Novel Biopolymer Hydrogels for Understanding Complex Soft Tissue Biomechanics
      • BRAIn mechaNIcs ACross Scales: Linking microstructure, mechanics and pathology
      • Multiscale modeling of nervous tissue: comprehensively linking microstructure, pathology, and mechanics
      • Modelling and simulation of nonlinear electro-thermo-visco-elastic EAPs(Electronic Electro-Active Polymers)
      • Modeling and computation of growth in soft biological matter
    • Contact mechanics
      • Material modelling of sheet-layered lamination stacks
      • Reduced order modelling of non-linear gyroscopic systems in ALE formulation with frictional contact
      • A coupled MD-FE simulation method accounting for interphases in nanoparticle filled thermoplastics.
      • C1: Constitutive friction law for the description and optimization of tailored surfaces
    • Material Mechanics
      • On the Formulation and the Micromechanical Origin of Non-Classical Models of Diffusion
      • Mehrskalenmodellierung und -simulation der Mechanik von Materialien mit Faserstruktur
      • BRAIn mechaNIcs ACross Scales: Linking microstructure, mechanics and pathology
      • A coupled MD-FE simulation method accounting for interphases in nanoparticle filled thermoplastics.
      • Modelling and simulation of nonlinear electro-thermo-visco-elastic EAPs(Electronic Electro-Active Polymers)
      • Modeling and computation of growth in soft biological matter
      • Teilprojekt P11 – Fracture Control by Material Optimization
      • Teilprojekt P8 – Fracture in Polymer Composites: Meso to Macro
      • Novel Biopolymer Hydrogels for Understanding Complex Soft Tissue Biomechanics
      • A coupled MD-FE simulation method accounting for interphases in nanoparticle filled thermoplastics.
      • Teilprojekt P5 – Compressive Failure in Porous Materials
      • Modelling and simulation of nonlinear electro-thermo-visco-elastic EAPs(Electronic Electro-Active Polymers)
      • Modeling and computation of solvent penetration in glassy polymers
      • Modeling and computation of growth in soft biological matter
      • Multi-scale modeling of nano-structured polymeric materials: from chemistry to materials performance
      • Multiscale modeling of nervous tissue: comprehensively linking microstructure, pathology, and mechanics
      • Fractures across Scales: Integrating Mechanics, Materials Science, Mathematics, Chemistry, and Physics/ Skalenübergreifende Bruchvorgänge: Integration von Mechanik, Materialwissenschaften, Mathematik, Chemie und Physik
      • Kontinuumsmechanische Modellierung und Simulation der Aushärtung und Inelastizität von Polymeren sowie Interphasen in Klebverbunden
      • Bridging scales – from Quantum Mechanics to Continuum Mechanics. A Finite Element approach.
      • Teilprojekt P12 – Postdoctoral Project: Quantum-to-Continuum Model of Thermoset Fracture
      • A hybrid Sampling-Stochastic-Finite-Element-Method for polymorphic, microstructural uncertainties in heterogeneous materials
      • Mikroskalige Charakterisierungsmethoden zur Kalibrierung von Stoffgesetzen für Biomaterialien und Kunststoffe
      • Electronic electro-active polymers under electric loading: Experiment, modeling and simulation
      • Material modelling of sheet-layered lamination stacks
      • Teilprojekt P6 – Fracture in Thermoplastics: Discrete-to-Continuum
      • Teilprojekt P10 – Configurational Fracture/Surface Mechanics
      • Multi-scale, Multi-physics Modelling and Computation of magneto-sensitive POLYmeric materials
      • Identifikation von Interphaseneigenschaften in Nanokompositen
      • Discrete and Continuous Methods for Modelling and Simulation of Polymeric Materials
      • Material modelling of sheet-layered lamination stacks
      • On the Modelling and Computation of Magneto-Sensitive-Elastomers
      • Mehrskalenmodellierung und -simulation der Mechanik von Materialien mit Faserstruktur
    • Uncertainty Quantification
      • C3: Parameter and shape optimization in finite elastoplasticity
      • Fuzzy-arithmetical modeling of processes with uncertain prarameters
      • A hybrid Sampling-Stochastic-Finite-Element-Method for polymorphic, microstructural uncertainties in heterogeneous materials
      • A hybrid Sampling-Stochastic-Finite-Element-Method for polymorphic, microstructural uncertainties in heterogeneous materials
    • Multiscale mechanics
      • BRAIn mechaNIcs ACross Scales: Linking microstructure, mechanics and pathology
      • BRAIn mechaNIcs ACross Scales: Linking microstructure, mechanics and pathology
      • Teilprojekt P6 – Fracture in Thermoplastics: Discrete-to-Continuum
      • Teilprojekt P10 – Configurational Fracture/Surface Mechanics
      • Teilprojekt P11 – Fracture Control by Material Optimization
      • Teilprojekt P8 – Fracture in Polymer Composites: Meso to Macro
      • Novel Biopolymer Hydrogels for Understanding Complex Soft Tissue Biomechanics
      • Novel Biopolymer Hydrogels for Understanding Complex Soft Tissue Biomechanics
      • BRAIn mechaNIcs ACross Scales: Linking microstructure, mechanics and pathology
      • Teilprojekt P6 – Fracture in Thermoplastics: Discrete-to-Continuum
      • Teilprojekt P5 – Compressive Failure in Porous Materials
      • Multi-scale, Multi-physics Modelling and Computation of magneto-sensitive POLYmeric materials
      • Multi-scale modeling of nano-structured polymeric materials: from chemistry to materials performance
      • Identifikation von Interphaseneigenschaften in Nanokompositen
      • Novel Biopolymer Hydrogels for Understanding Complex Soft Tissue Biomechanics
      • Mesoscopic modelling and simulation of properties of additively manufactured metallic parts (C5)
      • Teilprojekt P5 – Compressive Failure in Porous Materials
      • Discrete and Continuous Methods for Modelling and Simulation of Polymeric Materials
      • Multi-scale, Multi-physics Modelling and Computation of magneto-sensitive POLYmeric materials
      • Multiscale modeling of nervous tissue: comprehensively linking microstructure, pathology, and mechanics
      • Multiscale modeling of nervous tissue: comprehensively linking microstructure, pathology, and mechanics
      • Multi-scale modeling of nano-structured polymeric materials: from chemistry to materials performance
      • Fractures across Scales: Integrating Mechanics, Materials Science, Mathematics, Chemistry, and Physics/ Skalenübergreifende Bruchvorgänge: Integration von Mechanik, Materialwissenschaften, Mathematik, Chemie und Physik
      • Identifikation von Interphaseneigenschaften in Nanokompositen
      • Bridging scales – from Quantum Mechanics to Continuum Mechanics. A Finite Element approach.
      • Teilprojekt P12 – Postdoctoral Project: Quantum-to-Continuum Model of Thermoset Fracture
      • Mikroskalige Charakterisierungsmethoden zur Kalibrierung von Stoffgesetzen für Biomaterialien und Kunststoffe
      • Multiscale modeling of nervous tissue: comprehensively linking microstructure, pathology, and mechanics
      • Fractures across Scales: Integrating Mechanics, Materials Science, Mathematics, Chemistry, and Physics/ Skalenübergreifende Bruchvorgänge: Integration von Mechanik, Materialwissenschaften, Mathematik, Chemie und Physik
      • Bridging scales – from Quantum Mechanics to Continuum Mechanics. A Finite Element approach.
      • Teilprojekt P12 – Postdoctoral Project: Quantum-to-Continuum Model of Thermoset Fracture
      • Mikroskalige Charakterisierungsmethoden zur Kalibrierung von Stoffgesetzen für Biomaterialien und Kunststoffe
    • Process Simulation
      • Experimentell basierte Modellierung, Simulation und Kompensation thermischer Einflüsse beim Drehen mesoheterogener Werkstoffe aus Al-MMC.
      • Macroscopic modeling, simulation, and optimization of the selective beam melting process (C3)
      • Simulations- und versuchsbasierte Untersuchung der Wechselwirkung zwischen Zerspanprozess und Maschinenstruktur beim Hochleistungsflachschleifen
      • Experimentell basierte Modellierung, Simulation und Kompensation thermischer Einflüsse beim Drehen mesoheterogener Werkstoffe aus Al-MMC. Phase 2
    • Structural dynamics
      • Reduced order modelling of non-linear gyroscopic systems in ALE formulation with frictional contact
      • Vibration reduction by energy transfer using shape adaption
      • Structural dynamics of rotating systems
      • Investigation and reduction of nonlinear oscillation systems using modal approaches
      • Reduced order modelling of non-linear gyroscopic systems in ALE formulation with frictional contact
    • Optimization
      • Teilprojekt P11 – Fracture Control by Material Optimization
      • Teilprojekt P11 – Fracture Control by Material Optimization
      • Teilprojekt P8 – Fracture in Polymer Composites: Meso to Macro
      • Teilprojekt P8 – Fracture in Polymer Composites: Meso to Macro
      • Structural optimization of shape and topology using an embedding domain discretization technique
      • Discrete and Continuous Methods for Modelling and Simulation of Polymeric Materials
      • Discrete and Continuous Methods for Modelling and Simulation of Polymeric Materials
      • Teilprojekt P10 – Configurational Fracture/Surface Mechanics
      • Teilprojekt P11 – Fracture Control by Material Optimization
      • Adaptive finite elements based on sensitivities for topological mesh changes
      • Teilprojekt P8 – Fracture in Polymer Composites: Meso to Macro
      • Discrete and Continuous Methods for Modelling and Simulation of Polymeric Materials
      • Teilprojekt P10 – Configurational Fracture/Surface Mechanics
    • Other Projects
      • A numerical model of translational and rotational momentum transfer of small on-spherical rigid particles in fluid dominated two-phase flows
      • Fracture Across Scales and Materials, Processes and Disciplines
      • Fracture across Scales: Integrating Mechanics, Materials Science, Mathematics, Chemistry, and Physics (FRASCAL)
      • Numerical and experimental study of the deposition of micro-sized non-spherical solid particles in the nasal cavity
    • Publications
    • Theses
    Portal Research
  • Teaching
    • Topics
    • Lectures
    • Examinations
    • LTM juniors
    Portal Teaching
  • Activities
    • Conferences
      • ICEAM2017
    • Invited talks
    Portal Activities
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Team

Management

Prof. Dr.-Ing. habil. Paul Steinmann

Management

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28501
  • Email: paul.steinmann@fau.de

Professorship for Structural Mechanics

Prof. Dr.-Ing. habil. Kai Willner

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28504
  • Email: kai.willner@fau.de

Research Group for Computational Mechanics

Prof. Dr.-Ing. Julia Mergheim

Arbeitsgruppe Numerische Mechanik

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28505
  • Email: julia.mergheim@fau.de

Visiting Professor

Prof. Dr.-Ing. Ellen Kuhl

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28502
  • Email: ellen.kuhl@fau.de

Contact person research assignments / Akademischer Oberrat

Dr.-Ing. Dipl.-Math.techn. Gunnar Possart, Akad. ORat

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28506
  • Email: gunnar.possart@fau.de

Research Group for Multiscale Simulation “CAPRICCIO”

PD Dr.-Ing. habil. Sebastian Pfaller, Akad. ORat

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28507
  • Email: sebastian.pfaller@fau.de

Team Assistance

Julia Deserno, M.A.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-67628
  • Email: julia.deserno@fau.de

Secretariat

Simone Schaetzlein

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28502
  • Email: simone.schaetzlein@fau.de

SFB 1540 – Office

Doris Bittner

Administration SFB 1540

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-20783
  • Email: doris.bittner@fau.de

Dr. Andrea Dakkouri-Baldauf

Koordination SFB 1540

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-20782
  • Email: andrea.dakkouri@fau.de

Assistant Lecturers

Özge Akar, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-67612
  • Email: oezge.akar@fau.de

Michael Lengger, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-67610
  • Email: michael.lengger@fau.de

Dr.-Ing. Markus Mehnert

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-20993
  • Email: markus.mehnert@fau.de

Dr.-Ing. Maximilian Ries

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-67620
  • Email: maximilian.ries@fau.de

Emely Schaller, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64403
  • Email: emely.schaller@fau.de

Lucie Spannraft, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-67620
  • Email: lucie.spannraft@fau.de

Scientific Assistants

Chaitanya Dev, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64402
  • Email: chaitanya.dev@fau.de

Soheil Firooz, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64412
  • Email: soheil.firooz@fau.de

Johannes Friedlein, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64400
  • Email: johannes.friedlein@fau.de

Dr. Rahul Gopalan Ramachandran

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 911 8571432
  • Email: rahul.ramachandran@fau.de

Dr.-Ing. Paras Kumar

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-20323
  • Email: paras.kumar@fau.de

Jose Lara, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-67621
  • Email: jose.a.lara@fau.de

Lukas Laubert, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64410
  • Email: lukas.laubert@fau.de

Marie Laurien, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64407
  • Email: marie.laurien@fau.de

Dr.-Ing. Denisa Martonová

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-20836
  • Email: denisa.martonova@fau.de

Miguel Ángel Moreno-Mateos, Ph.D.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28508
  • Email: miguel.moreno@fau.de

Dr.-Ing. Dmytro Pivovarov

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64412
  • Email: dmytro.pivovarov@fau.de

Eva Richter, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64400
  • Email: eva.richter@fau.de

Maxim Rodschei, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64410
  • Email: maxim.rodschei@fau.de

Maurice Rohracker, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-67617
  • Email: mau.rohracker@fau.de

Laura Ruhland, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-20972
  • Email: laura.ruhland@fau.de

Erodita Saliji, Ph.D.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64411
  • Email: erodita.saliji@fau.de

Lars Schmelzle, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-67614
  • Email: lars.schmelzle@fau.de

Michael Schwarz, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64406
  • Email: michael.stefan.schwarz@fau.de

Gabriel Stankiewicz, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64402
  • Email: gabriel.stankiewicz@fau.de

Daniel van Huyssteen, Ph.D.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64402
  • Email: daniel.van.huyssteen@fau.de

Yashasvi Verma, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 911 8571432
  • Email: yashasvi.verma@fau.de

Felix Weber, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64410
  • Email: felix.w.weber@fau.de

Jana Wedel, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64406
  • Email: jana.wedel@fau.de

Simon Wiesheier, M. Sc.

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-64411
  • Email: simon.wiesheier@fau.de

Dr.-Ing. Wuyang Zhao

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28511
  • Email: wuyang.zhao@fau.de

Technical Staff

Christian Bänsch

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-25162
  • Email: christian.baensch@fau.de

Associate Lecturers

Prof. Dr.-Ing. Ralf Meske

Department of Mechanical Engineering
Institute of Applied Mechanics (LTM, Prof. Steinmann)

  • Phone number: +49 9131 85-28502
  • Email: ralf.meske@fau.de
Institute of Applied Mechanics
Friedrich-Alexander-Universität Erlangen-Nürnberg

Egerlandstrasse 5
91058 Erlangen
Germany
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