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Logo: International Research and Training Group IRTG1627/Leibniz Universität Hannover
Logo Leibniz Universität Hannover
Logo: International Research and Training Group IRTG1627/Leibniz Universität Hannover
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Projects Class 1 (2010 - 2013)

Compressive Failure of Multidirectional Laminates and Woven Composites

Coupling Partially Converged Data and a Multiparametric Strategy for the Optimisation of Assemblies

Researcher: Nicolas Courrier

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Micromechanics of Nanoindentation: A Model of Gradient Crystal Plasticity

Researcher: Dipl.-Ing. Daniel Gottschalk

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Development of a Friction Approach for the FE Method of Sheet Metal Forming Based on Multi-Scale Modeling

Researcher: Dipl.-Math. Barbara Homann

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Development of Non-Convex Shaped Particles for the Discrete Element Method (DEM)

Researcher: Dipl.-Ing. Malte Hothan

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Micro-Mechanically Based Damage Analysis of Ultra High Performance Fibre Reinforced Concrete Structures with Uncertainties

hp-BEM for Contact Problems and Extended Ms-FEM in Linear Elasticity

Researcher: Dipl.-Math. A. Issaoui

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Virtual Development of Nanocomposites Using the Molecular-Dynamic Finite Element Method

Researcher: Andreas Kempe, M.Sc.

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Multilevel Optimisation of Structures Using a Multiparametric Strategy and Metamodels

Researcher: Luc Laurent

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2D Model for an Implicit XFEM Analysis in Linear Elastic Fracture Mechanics for Dynamic Crack Propagation

Researcher: Daniel Nolte, M.Sc.

A priori Model Reduction in an Micro/Macro Approach

Researcher: Dr. Nicolas Relun

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Application of Spray Cooling for Surface Hardening

Modelisation and Simulation in Structures Computation for Tolerancing and Assistance in Assembling of Large and Flexible Aeronautical Parts

Researcher: Guillaume Rosenzveig

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Development of a Fully Micromechanically Motivated Material Law for Filled Elastomers

Researcher: Dipl.-Ing.(FH) Ole Stegen

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Improvement of Cardiovascular Implants and a FE-Framework for Degradation of Mg-Alloys

Researcher: Dipl.-Ing.(FH) Martin Weidling, M.Sc.

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Classical Solutions for Stabilized Periodic Hele-Shaw Flows with a Free Surface

Researcher: Michael Wenzel, M.Sc.

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Current Projects Class 2 (2013 - 2016)

Modeling 3D Crack Coalescence and Percolation with the XFEM and Level Sets

Researcher: Hamidreza Attar

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Modelization and Computation of Composite Structure

Researcher: Hadrien Bainier

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Towards a Mechanical Characterisation of Manufacturing Defects in Thermoplastic Composites

Researcher: Eléna Barbarella

Innovative Concepts on Micro-Mechanically Based Modeling Approaches and Sophisticated Computational Techniques for High-Cycle Fatigue

Researcher: Mainak Bhattacharyya

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An Approximation Framework Dedicated to PGD Based Non-Linear Solver

Researcher: Mattéo Capaldo

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Virtual Chart Concept in Computational Structural Mechanics

Researcher: Amaury Courard

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Coupling Partially Converged Data and a Multiparametric Strategy for the Optimisation of Assemblies

Researcher: Nicolas Courrier

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Non-Intrusive Coupling between 2D and 3D Models of Composite Structures

Researcher: Guillaume Guguin

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Multi-stable Morphing Structures

Researcher: Ayan Haldar

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PGD Virtual Charts for Damping Prediction in Space Launchers in Uncertain Environment

Researcher: Maxime Jessus

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Micro-Mechanically Based Modeling of Degradation of Composite Materials with Random Microstructure

Researcher: Victoria Krupennikova

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Virtual Element Method Applied to Contact Problems

Researcher: Dr. Luc Laurent

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Modelisation and Simulation of Turbomachine Disk Burst

Researcher: Dominique Lindner

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Concepts for Chemical Degradation of Materials and Structures

Researcher: Milena Möhle

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Homogenization Procedures for Coupled Thermo-Chemo-Mechanical Problems

Researcher: Jin Man Mok

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PGD Approach for Low Frequency Dynamics Problems Involving Localized Non-Linearities

Researcher: Pierre Nargil

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Multiphysics Homogenization Schemes for Microstructured Interfaces

Researcher: Nima Noii

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A Micro-Meso Bridge for the Mesoscale Modelling of Woven Composites

Researcher: Enrico Obert

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3D Dynamic Fracture in Heterogeneous Media

Researcher: Sayedmahmoud Pezeshki

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Multi-Scale Modelisation of the Fracture Mechanisms in the New Generation of Composite Laminate

Researcher: Valentin Priasso

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Modelisation and Simulation in Structures Computation for Tolerancing and Assistance in Assembling of Large and Flexible Aeronautical Parts

Researcher: Guillaume Rosenzveig

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Stochastic Non-Local Material Models of Irreversible Behaviour

Researcher: Muhammad Sadiq Sarfaraz

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Modelling and Analysis of MEMS with General Permittivity Profile

Researcher: Christina Schmidt

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Experimental and Numerical Analysis of Forming Processes with Sandwich Plates Composed of a Sheet Metal Outer Skin and a Continuous Unidirectional Fibre Reinforced Thermoplastic Core

Researcher: Henrik Schulze

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A Finite Element Connector based on Design Parameters for the Simulation of Bolted Assemblies

Researcher: Marie-France Soulé de Lafont

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A Time-Space-Parameters PGD for Nonlinear Computations

Researcher: Matthieu Vitse

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Process Adapted Dual Phase Steels

Researcher: Lars Oliver Wolf

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New Projects Class 3 (2016 - 2019)

Model Reduction Techniques for Probabilistic High Cycle Fatigue Assessment

Researcher: Shadi Alameddin

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A micro-mechanically motivated approach for modelling the oxidative aging process of elastomers

Researcher: Darcy Beurle

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Isogeometric Multiscale Modeling of Composite Plates and Shells

Researcher: Amin Ghazani


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3D Printing of Composite Materials and Development of Related Predictive Simulation Tools

Researcher: Philipp Hartmann

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Virtual Design and Manufacturing of Tailored Tubes

Researcher: Ilya Hordych

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Multiscale Modelling of Buckling of Fiber-reinforced Polymers

Researcher: Samira Hosseini

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Virtual Elements for Cracks

Researcher: Ali Hussein

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3D Printing of Composite Materials and Development of Related Predictive Simulation Tools

Researcher: Sandeep Kumar

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Microstructure topology optimization of auxetic materials

Researcher: Chuong Than Nguyen

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Numerical and Experimental Investigations for Deep Drawing Roll-clad Plates

Researcher: Hendrik Wester

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Stochastic Modeling of Fatigue Processes

Researcher: Weiran Zhang

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