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Friedrich-Alexander-Universität Institute of Applied Mechanics
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    • 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
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  5. 2012

2012

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2012

Joint colloquium of the Institute of Applied Mechanics and of the Chair of Applied Dynamics

 

06.12.2012

François Demoures, EPFL / ENAC / IIC / IBOIS (Laboratoire de construction en bois, Lausanne, Switzerland)

Lie group and Lie algebra variational integrators for flexible beam and plate in R3

 

05.12.2012

Johannes Rudolph, Lehrstuhl für Technische Dynamik, FAU-Erlangen-Nürnberg

Modellierung und Simulation des Unwuchtverhaltens eines CT-Systems

 

Marion Stadler,Lehrstuhl für Technische Dynamik, FAU Erlangen-Nürnberg

Index Investitations in Discrete Mechanics and Optimal Control for Differential Algebraic Systems

 

04.12.2012

Maik Ringkamp, Lehrstuhl für Technische Dynamik, FAU Erlangen-Nürnberg

Using Discrete Mechanics and Reference Point Techniques to Solve Multiobjective Optimal Control Problems in Space Mission Design and Optimal Control Multi-Body Dynamics

 

22.11.2012

Dr. Axel Kohlmeyer, Abdus Salam International Centre for Theoretical Physics (ICTP), Trieste, Italy und Institute for Computational Molecular Simulations (ICMS), Temple University, Philadelphia, USA

Accelerating classical MD for multi-core CPUs and GPUs

 

20.11.2012

Tobias Gail, Lehrstuhl für Technische Dynamik, FAU Erlangen-Nürnberg

Computing time investigations of variational multirate schemes

 

19.11.2012

Dr. Frank Fischer, Structure Research Lab, Beiersdorf AG, Hamburg

The detailed structure of human skin layers

 

05.11.12

Hossein Talebi, Institute of Structure Mechanics, Bauhaus-University Weimar

Single and Multi Scale Methods for Modeling Fracture and Crack Propagation: Methods, Software and Tools

 

22.10.2012

Prof. Dr. Markus Lazar, Heisenberg Research Group, Continuum Mechanics, Department of Physics, Darmstadt University of Technology, Germany

Non-singular Dislocations in the Theory of Gradient Elasticity

 

27.09.2012

Dr.-Ing. Joachim Linn, Fraunhofer-Institut für Techno- und Wirtschaftsmathematik, Kaiserslautern

Viscoelastic Cosserat rods of Kelvin-Voigt and generalized Maxwell type

 

21.09.2012

Prof. Roger Bustamante, Departamento de Ingenieria Mecánica, Universidad de Chile

Implicit constitutive relations for electro-elastic bodies

 

06.09.2012

Kathrin Flaßkamp, Department of Mathematics, University of Paderborn

Varational Formulation and Optimal Control of Hybrid Lagrangian Systems

 

09.08.2012

Wencheng Li, Northwestern Polytechnic University, China

Introduction of My Research Interesting on Structure Preserving Methods

 

03.07.2012

Prof. Karali Patra, Mechanical Engineering, Indian Institute of Technology Patna, India

Study on mechanical and dielectric behavior of VHB 4910 for sensors and actuators applications

 

26.06.2012

Prof. Valery Levitas, Departments of Aerospace Engineering, Mechanical Engineering and Material Science and Engineering, Iowa State University, Ames, Iowa 50011, USA

Stress- and Surface-induced Phase Transformations: Phase Field Approach

 

12.06.2012

Prashant Saxena, Department of Mathematics, University of Glasgow, UK

Nonlinear magneto-elasticity: some boundary value problems

 

05.06.2012

B. Röhrnbauer, E. Mazza, Institute of Mechanical Systems, Swiss Federal Institute of Technology, Zurich, Switzerland

Mechanical characterization and modelling of prosthetic meshes at different length scales

 

22.05.2012

Dipl.-Math. Zoufine Bare, Fraunhofer Institut für Techno- und Wirtschaftsmathematik, Kaiserslautern

Asymptotic dimension reduction for linearized contact of thin fibers and simulation of textiles based on 1D models including large deformation

 

21.05.2012

Oleg M. Zarechnyy, Department of Aerospace Engineering, Iowa State University, Ames, IA, USA

Modeling and Simulation of Strain-Induced Phase Transformations in Rotational Diamond Anvil Cell

 

09.05.2012

Olivier Verdier, Department of Mathematical Sciences, NTNU Trondheim, Norwegen

Geometric Generalisations of the Shake and Rattle methods

 

03.04.2012

Kim-Henning Sauerland, Lehrstuhl für Technische Mechanik, Universität Paderborn

Process Simulation and Two Scale Tool Simulation related to Hybrid Forming

 

23.03.2012

Prof. Dr.-Ing. Ellen Kuhl, Computational Biomechanics Laboratory, Stanford University, USA

Computational Optogenetics: A Novel Continuum Framework for the Photoelectrochemistry of Living Systems

 

06.03.2012

Prof. Francesco dell’Isola, DISG, Università di Roma „La Sapienza“, Rome, Italy

How contact interactions may depend on the shape of Cauchy cuts in N-tn gradient continua: approach “à la D’Alembert”

 

07.02.2012

Daniel Riedlbauer, Lehrstuhl für Technische Mechanik, FAU Erlangen-Nürnberg

Thermomechanical Modelling & Simulation of Electron Beam Melting

 

26.01.2012

Fernando Jiménez Alburquerque, Instituto de Ciencias Matemáticas ICMAT-CSIC, Madrid, Spain

On Discrete Mechanics for Optimal Control Theory

 

19.01.2012

Philipp Landkammer, Ingenieurbüro KAE GmbH, Hausen b. Forchheim

Das Antwortspektrenverfahren für Erdbebensimulationen

Institute of Applied Mechanics
Friedrich-Alexander-Universität Erlangen-Nürnberg

Egerlandstrasse 5
91058 Erlangen
Germany
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