Publications
Publications in Proceeding Volumes 

2018 
Strainmediated magnetoelectric coupling in soft composites.
Proceedings of the Third Seminar on the Mechanics of Multifunctional Materials
(2018), 97–100.

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Efficient and reliable phase‐field simulation of brittle fracture using a nonsmooth multigrid solution scheme.
Proceedings in Applied Mathematics and Mechanics
18
(2018).

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Computational stability analysis of magnetorheological elastomers across scales.
Proceedings in Applied Mathematics and Mechanics
18
(2018).

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Multiscale computational stability analysis of magnetorheological elastomers.
Proceedings of the Third Seminar on the Mechanics of Multifunctional Materials
(2018), 53–56.

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2017 
Micro and Macrostructural magnetoelectric coupling in soft composites.
Proceedings of the 7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry
(2017), 600–604.

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A phase field model for porous plastic solids at ductile fracture.
Proceedings of the 7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry
(2017), 326–329.

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A Phase Field Approach to Fracture in Anisotropic Brittle Solids.
Proceedings of the 7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry
(2017), 288–291.

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Affine Full Network Model for StrainInduced Crystallization in Rubbery Polymers.
Proceedings of the 7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry
(2017).

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Magneto‐electro‐active polymers: material properties and structural effects.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 545–546.

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Phase Field Modeling of Ductile Fracture in Soil Mechanics.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 383–384.

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A Large‐Deformation Phase‐Field Approach for the Modeling of Magneto‐Sensitive Elastomers.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 569–570.

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A Variational Homogenization Approach on Large Strain Micro‐Electro‐Mechanics.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 571–572.

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Computational Multi‐Scale Stability Analysis of Periodic Electroactive Polymer Composites at Finite Strains.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 543–544.

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Consistent macroscopic tangent computation for FFT‐based computational homogenization at finite strains.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 589–590.

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A large‐strain phase‐field model for nematic elastomers based on Landau‐de‐Gennes theory.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 437–438.

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An Affine Micro‐Sphere Model for Strain‐Induced Crystallization in Rubbery Polymers.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 439–440.

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Variational framework for phase field modeling of ductile fracture in porous solids at finite strains.
Proceedings in Applied Mathematics and Mechanics
17
(2017), 279–280.

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2016 
A PhaseField Model of Ductile Fracture at Finite Strains.
Proceedings in Applied Mathematics and Mechanics
16
(2016), 181–182.

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Poiseuille‐Type Fluid Transport in Poro‐Elastic Solids at Fracture.
Proceedings in Applied Mathematics and Mechanics
16
(2016), 149–150.

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Minimization‐and Saddle‐Point‐Based Modeling of Diffusion‐Deformation‐Processes in Hydrogels.
Proceedings in Applied Mathematics and Mechanics
16
(2016), 307–308.

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A multiscale view on shape effects in the computational characterization of magnetorheological elastomers.
Proceedings in Applied Mathematics and Mechanics
16
(2016), 383–384.

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Variational Treatment and Stability Analysis of Coupled ElectroMechanics.
Proceedings in Applied Mathematics and Mechanics
16
(2016), 401–402.

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An anisotropic phasefield model for transversely isotropic barium titanate with bounded moduli.
Proceedings in Applied Mathematics and Mechanics
16
(2016), 467–468.

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A Magneto‐Mechanically Coupled Phase‐Field Model at Large Deformation.
Proceedings in Applied Mathematics and Mechanics
16
(2016), 489–490.

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2015 
Variational Structural and Material Stability Analysis in Finite ElectroMagnetoMechanics of Active Materials.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 7–10.

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Rupture in soft biological tissues modeled by a phasefield method.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 103–104.

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PhaseField Modeling of Hydraulic Fracture.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 141–142.

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Computation of nonlinear magnetoelectric product properties of 0–3 composites.
GAMMMitteilungen
38
(2015), 8–24.

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Coordinateinvariant phasefield modeling of ferroelectrics, part I: Model formulation and singlecrystal simulations.
GAMMMitteilungen
38
(2015), 102–114.

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PhaseField Modeling of Fracture in Anisotropic Media.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 159–160.

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Ductile failure with gradient plasticity coupled to the phasefield fractureat finite strains.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 271–272.

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Coordinateinvariant phasefield modeling of ferroelectrics, part II: Application to composites and polycrystals.
GAMMMitteilungen
38
(2015), 115–131.

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Computational Homogenization in MicroMagnetoElasticity.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 363–364.

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Simulation of Atomic Force Microscopy for investigating BaTiO_{3} and LiMn_{2}O_{4} nanostructures.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 719–722.

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Computational characterization of magnetoelectric composites: the role of ferroelectric prepolarization.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 457–459.

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Analysis of Micro and MacroInstability Phenomena in Computational Homogenization of Finite ElectroStatics.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 369–370.

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On the generation of soft magnetoelectric effects through Maxwell interactions.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 309–311.

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Variational Formulation and Numerical Implementation of Diffusion in Hydrogels at Finite Strains.
Proceedings in Applied Mathematics and Mechanics
15
(2015), 411–412.

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2014 
Phase field modeling of complex crack patterns in multiphysics problems.
Proceedings in Applied Mathematics and Mechanics
14
(2014), 131–132.

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Variational Phase Field Modeling of Fracture Caused by Fluid Transport in Poroelastic Solids.
Proceedings in Applied Mathematics and Mechanics
14
(2014), 145–146.

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Towards Phase Field Modeling of Ductile Fracture in GradientExtended ElasticPlastic Solids.
Proceedings in Applied Mathematics and Mechanics
14
(2014), 411–412.

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Variational Based Stability Analysis in Coupled ElectroMechanics at Finite Strains.
Proceedings in Applied Mathematics and Mechanics
14
(2014), 483–484.

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A MagnetoViscoElastic Model for Magnetorheological Elastomers.
Proceedings in Applied Mathematics and Mechanics
14
(2014), 515–516.

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Phasefield simulation of piezoresponse force microscopy in consideration of different environmental conditions.
Proceedings in Applied Mathematics and Mechanics
14
(2014), 385–386.

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Computation of effective nonlinear inelastic properties of magnetostrictive composites.
Proceedings in Applied Mathematics and Mechanics
14
(2014), 559–560.

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A phasefield approach for the modeling of nematic liquid crystal elastomers.
Proceedings in Applied Mathematics and Mechanics
14
(2014), 577–578.

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Computation of the effective magnetostrictive coefficient of magnetomechanically coupled composites .
In: E. O ̃nate, J. Oliver & A. Huerta (Eds.): Proceedings of the 11th World Congress of Computational Mechanics
(2014), 1–12.

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Straininduced product properties of two phase magnetoelectric composites .
In: Schroeder, J., Lupascu, D. C., Keip, M.A. & Brands, D. (Eds.): Proceedings of the Second Seminar on The Mechanics of Multifunctional Materials
(2014), 69–72.

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A phase field model for nematic elastomers: continuum mechanical formulation and finite element implementation.
In: Schröder, J., Lupascu, D. C., Keip, M.A. & Brands, D. (Eds.): Proceedings of the Second Seminar on The Mechanics of Multifunctional Materials
(2014), 45–48.

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2013 
On ConfigurationalForceDriven Crack Propagation and Adaptive Mesh Refinement in Finite Inelasticity.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 77–78.

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Mixed Variational Principles and Robust Finite Element Design of Gradient Plasticity at Finite Strains.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 173–174.

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A Finite Deformation Microsphere Model for MagnetoViscoElastic Response in Magnetorheological Elastomers.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 197–198.

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Coupled chemomechanics and phase field modeling of failure in electrode materials of Liion batteries.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 207–208.

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Numerical analysis of twophase magnetoelectric composites.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 261–262.

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Phasefield simulation of the electromechanical response of ferroelectrics during piezoresponse force microscopy.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 131–132.

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Phase Field Modeling of Brittle and Ductile Fracture.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 533–536.

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Twoscale computational homogenization of magnetoelectric composites.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 529–532.

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On MicromechanicallyBased Approaches to Failure in Polymers.
Proceedings in Applied Mathematics and Mechanics
13
(2013), 557–560.

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2012 
Variational Homogenization of MicroElectroElasticity.
Proceedings in Applied Mathematics and Mechanics
12
(2012), 27–30.

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Variational Phase Field Modeling of Laminate Deformation Microstructure in Finite Gradient Crystal Plasticity.
Proceedings in Applied Mathematics and Mechanics
12
(2012), 37–40.

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Phase Field Modeling of Fracture in Plates and Shells.
Proceedings in Applied Mathematics and Mechanics
12
(2012), 171–172.

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A Phase Field Model for Ductile to Brittle Failure Mode Transition.
Proceedings in Applied Mathematics and Mechanics
12
(2012), 173–174.

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A new continuum approach to the coupling of shear yielding and crazing with fracture in glassy polymers.
PAMM Proceedings of Applied Mathematics and Mechanics
12
(2012), 337–338.

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A Formulation of Finite Gradient Crystal Plasticity with Systematic Separation of Long and ShortRange States.
Proceedings in Applied Mathematics and Mechanics
12
(2012), 343–344.

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A projection method for phase field models in micromagnetics.
Proceedings in Applied Mathematics and Mechanics
12
(2012), 399–400.

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2011 
Hybrid MicroMacroModeling of Evolving Anisotropies and Length Scales in Finite Plasticity of Polycrystals.
Proceedings in Applied Mathematics and Mechanics
11
(2011), 515–518.

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A Regularized Sharp Interface Model for Martensitic Phase Transformations at Large Strains.
Proceedings in Applied Mathematics and Mechanics
11
(2011), 383–384.

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A Phase Field Model for ThreeDimensional Dynamic Fracture and its Efficient Numerical Implementation.
Proceedings in Applied Mathematics and Mechanics
11
(2011), 153–154.

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A Geometrically Exact Incremental Variational Formulation for Phase Field Models in Micromagnetics.
Proceedings in Applied Mathematics and Mechanics
11
(2011), 461–462.

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Phase Field Modeling of Crack Propagation at Large Strains with Application to Rubbery Polymers.
Proceedings in Applied Mathematics and Mechanics
11
(2011), 429–430.

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MicroElectroElastic Modeling of Electric Field and StressDriven Domain Wall Motion.
Proceedings in Applied Mathematics and Mechanics
11
(2011), 493–494.

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Hybrid MicroMacroModeling of Evolving Anisotropies and Length Scales in Finite Plasticity of Polycrystals.
PAMM Proceedings of Applied Mathematics and Mechanics
11
(2011), 515–518.

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2010 
A hybrid micromacromodel for the description of evolving anisotropy in finite polycrystal plasticity.
Proceedings in Applied Mathematics and Mechanics
10
(2010), 291–292.

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A regularized sharp interface model for phase transformation accounting for prescribed sharp interface kinetics.
Proceedings in Applied Mathematics and Mechanics
10
(2010), 673–676.

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A thermodynamicallyconsistent phase field model for electromechanical diffusive crack propagation.
Proceedings in Applied Mathematics and Mechanics
10
(2010), 117–118.

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Formulation and numerical implementation of ferroelectrics at large strains.
Proceedings in Applied Mathematics and Mechanics
10
(2010), 319–320.

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Thermoviscoplasticity of glassy polymers in the logarithmic strain space based on the free volume theory.
Proceedings in Applied Mathematics and Mechanics
10
(2010), 321–322.

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Configurationalforcebased adaptive FE solver for a phase field model of fracture.
Proceedings in Applied Mathematics and Mechanics
10
(2010), 689–692.

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A variational homogenization approach to electromechanical hystereses caused by domain wall movement.
Proceedings in Applied Mathematics and Mechanics
10
(2010), 439–440.

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2009 
A hybrid micromacromodel of finite plasticity with discrete codftextures.
Proceedings in Applied Mathematics and Mechanics
9
(2009), 47–50.

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A variationalbased formulation of regularized brittle fracture.
Proceedings in Applied Mathematics and Mechanics
9
(2009), 207–208.

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Geometrical aspects of the incorporation of free space in magnetomechanics at finite strains.
Proceedings in Applied Mathematics and Mechanics
9
(2009), 389–390.

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On the formulation and numerical implementation of dissipative electromechanics at large strains.
Proceedings in Applied Mathematics and Mechanics
9
(2009), 343–344.

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Configurationalforcebased adaptive methods in nonlocal gradienttype inelastic solids.
Proceedings in Applied Mathematics and Mechanics
9
(2009), 345–346.

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2008 
Exploitation of configurational forces in extended nonlocal continua with microstructure.
Proceedings in Applied Mathematics and Mechanics
8
(2008), 10421–10422.

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Modeling and computational analysis of materials exhibiting intrinsic magnetomechanical coupling.
Proceedings of SPIE, Smart Structures and Materials
6929
(2008).

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Finite element analysis of general magnetomechanical coupling phenomena.
Proceedings in Applied Mathematics and Mechanics
8
(2008), 10505–10506.

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Temperature and rate effects in finite viscoplasticity of glassy polymers at different deformation modes: Experiments and simulations.
Proceedings in Applied Mathematics and Mechanics
8
(2008), 10445–10446.

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A ratedependent incremental variational formulation of ferroelectricity.
Proceedings of SPIE, Smart Structures and Materials
6929
(2008).

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Theory and numerics of ratedependent incremental variational formulations in ferroelectricity.
Proceedings in Applied Mathematics and Mechanics
8
(2008), 10459–10460.

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Variational formulations and FE activeset strategies for rateindependent nonlocal material response.
Proceedings in Applied Mathematics and Mechanics
8
(2008), 10475–10476.

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2007 
Finite thermoviscoplasticity of amorphous glassy polymers: Experiments, modeling and simulations.
Proceedings in Applied Mathematics and Mechanics
7
(2007), 4060041–4060042.

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A computational framework of three dimensional configurationalforcedriven crack propagation.
Proceedings in Applied Mathematics and Mechanics
7
(2007), 4030019–4030020.

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On the modeling of thermoelectromagnetomechanical solids at finite strains.
Proceedings in Applied Mathematics and Mechanics
7
(2007), 4070025–4070026.

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Ratedependent incremental variational formulation of ferroelectricity.
Proceedings in Applied Mathematics and Mechanics
7
(2007), 4070013–4070014.

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A variational formulation of nonlocal materials with microstructure based on dual macro and microbalances.
Proceedings in Applied Mathematics and Mechanics
7
(2007), 4080015–4080016.

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Configurationalforcebased structural updates and adaptive remeshing strategies.
Proceedings in Applied Mathematics and Mechanics
7
(2007), 1090101–1090102.

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2006 
On variational based scalebridging of inelastic composites.
Proceedings in Applied Mathematics and Mechanics
6
(2006), 465–466.

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Coupled finite thermoviscoplasticity of glassy polymers.
Proceedings in Applied Mathematics and Mechanics
6
(2006), 437–438.

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Robust algorithm for brittle fracture based on energy minimization.
Proceedings in Applied Mathematics and Mechanics
6
(2006), 167–168.

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Experiments and identifications for finite polymer inelasticity.
Proceedings in Applied Mathematics and Mechanics
6
(2006), 401–402.

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A robust adaptive algorithm for materialforcedriven brittle fracture based on incremental energy minimization.
Proceedings of the 6th European Solid Mechanics Conference, Budapest
(2006).

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Nonisothermal shear band localization in crystal plasticity.
Proceedings in Applied Mathematics and Mechanics
6
(2006), 407–408.

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Materialforcebased refinement indicators in adaptive strategies.
Proceedings in Applied Mathematics and Mechanics
6
(2006), 421–422.

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2005 
Incompatibility induced nonlocal crystal plasticity.
Proceedings in Applied Mathematics and Mechanics
5
(2005), 259–260.

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A formulation of finite viscoplasticity for glassy polymers in the logarithmic strain space.
Proceedings in Applied Mathematics and Mechanics
5
(2005), 269–270.

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Deformation driven homogenization of fracturing solids.
Proceedings in Applied Mathematics and Mechanics
5
(2005), 333–334.

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Computation of material forces in thermoplasticity based on alternative smoothing algorithms.
Proceedings in Applied Mathematics and Mechanics
5
(2005), 323–324.

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2004 
Eine algebraische und geometrische Mehrgitterstrategie für heterogene Materialien mit homogenisierungs basierten Transferoperatoren.
Proceedings in Applied Mathematics and Mechanics
4
(2004), 300–301.

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Micromechanicallybased modelling in nonlocal crystal plasticty.
Proceedings in Applied Mathematics and Mechanics
4
(2004), 213–214.

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Macroscopic finite element analyses of discrete materials based on directly evaluated micromacro transitions.
Proceedings in Applied Mathematics and Mechanics
4
(2004), 306–307.

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The microsphere model for rubber viscoelasticity: A micromechanically based network model for polymers.
Proceedings in Applied Mathematics and Mechanics
4
(2004), 191–192.

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Numerical computation of anisotropically evolving yield surfaces based on microtomacro transitions.
Proceedings in Applied Mathematics and Mechanics
4
(2004), 219–220.

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Parameteridentification of macroscopic material models based on virtual testing of given material mesostructures.
Proceedings in Applied Mathematics and Mechanics
4
(2004), 412–413.

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Material forces in standard dissipative solids obtained from an incremental variational formulation.
Proceedings in Applied Mathematics and Mechanics
4
(2004), 274–275.

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2003 
Classes of anisotropic finite plasticity models and their implementation in a bricktype shell element.
Proceedings in Applied Mathematics and Mechanics
2
(2003), 180–181.

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Mehrgitterlöser für heterogene Materialien mit einem homogenisierungsbasierten Transfer für unstrukturierte Netze.
Proceedings in Applied Mathematics and Mechanics
2
(2003), 521–522.

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Homogenisierungsbasierte MehrgitterTransferoperatoren für nichtlineare heterogene Materialien.
Proceedings in Applied Mathematics and Mechanics
3
(2003), 248–249.

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Stability problems of microtomacro transitions in finite plasticity.
Proceedings in Applied Mathematics and Mechanics
3
(2003), 200–201.

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Alternative definitions of microtomacro transitions in particle aggregates of granular materials.
Proceedings in Applied Mathematics and Mechanics
3
(2003), 264–265.

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A new micromechanically based approach for the elastic response of rubberlike materials at large strains.
Proceedings in Applied Mathematics and Mechanics
3
(2003), 174–175.

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Application of relaxation techniques to nonconvex isotropic damage model.
Proceedings in Applied Mathematics and Mechanics
3
(2003), 222–223.

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Adaptive finite element procedures for elastoplastic problems at finite strains.
Proceedings in Applied Mathematics and Mechanics
2
(2003), 523–524.

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Relaxation analysis of material instabilities in damage mechanics based on incremental convexification techniques.
In
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(eds.):
Proceedings of the VII International Conference on Computational Plasticity.
2003.

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Computational homogenization of materials with microstructures based on incremental variational formulations.
In
(ed.):
IUTAM Symposium on Computational Mechanics of Solid Materials at Large Strains.
Kluwer Academic Publishers,
2003.

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Microstructure development in standard dissipative solids based on incremental energy minimization principles.
In
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(eds.):
Proceedings of the VII International Conference on Computational Plasticity.
2003.

Parameter identification of a finite viscoplastic material model using different deterministic optimization methods.
Proceedings in Applied Mathematics and Mechanics
2
(2003), 525–526.

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Aspects of the theoretical and numerical formulation of single crystal plasticity at finite strains.
Proceedings in Applied Mathematics and Mechanics
2
(2003), 202–203.

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Viskoelastizität von Elastomeren bei grossen Deformationen.
Proceedings in Applied Mathematics and Mechanics
3
(2003), 198–199.

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2002 
A micromechanical approach to the description of anisotropic elasticity at finite strains based on orientation functions.
Proceedings in Applied Mathematics and Mechanics
1
(2002), 125–126.

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Anisotropic finite plasticity in the logarithmic strain space. A modular formulation based on a 'smallstrain box' of incremental variational updates.
In
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(eds.):
Proceedings of the Fifth World Congress on Computational Mechanics (WCCM V), Vienna.
Vienna University of Technology,
2002.

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Application of notions of quasiconvexity to the modeling and simulation of martensitic and shape memory phase transformations.
In
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(eds.):
Proceedings of the Fifth World Congress on Computational Mechanics (WCCM V), Vienna.
Vienna University of Technology,
2002.

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Adaptive finiteelement procedures in space and time for elastoplastic problems at finite strains.
In
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(eds.):
Proceedings of the Fifth World Congress on Computational Mechanics (WCCM~V), Vienna.
Vienna University of Technology,
2002.

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A unified computational framework for parameter identification of material models in finite inelasticity.
Proceedings in Applied Mathematics and Mechanics
1
(2002), 189–190.

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2001 
Ein Mehrskalenmodell zur Beschreibung des Bruchversagens von Betonstrukturen.
Zeitschrift für angewandte Mathematik und Mechanik
81
(2001), 367–368.

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Alternative MehrgitterTransferoperatoren für heterogene Strukturen.
Zeitschrift für angewandte Mathematik und Mechanik
81
(2001), 385–386.

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Aspekte adaptiver Berechnungsverfahren bei Elastoplastizität inhomogener Materialien und kleiner Verzerrungen.
Zeitschrift für angewandte Mathematik und Mechanik
1
(2001), 395–396.

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Aspects of the pre and postcritical localization analysis of solids.
Zeitschrift für angewandte Mathematik und Mechanik
81
(2001), 347–348.

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Parameteridentifikation finiter Elastizität bei inhomogenen Deformationen.
Zeitschrift für angewandte Mathematik und Mechanik
81
(2001), 425–426.

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Texturbildung in Schalenstrukturen aus polykristallinen Metallen.
Zeitschrift für angewandte Mathematik und Mechanik
81
(2001), 361–362.

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A physicallybased constitutive model for finite viscoelastic deformations in rubbery polymers based on a directly evaluated micromacrotransition.
In
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(eds.):
Constitutive Models for Rubber.
Swets & Zeitlinger,
2001.

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2000 
Konzept zur Bestimmung makroskopischer Moduli von Verbundmaterialien.
Zeitschrift für angewandte Mathematik und Mechanik
80
(2000), 373–374.

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Aspects of adaptive remeshing techniques in finite elasticity.
Zeitschrift für angewandte Mathematik und Mechanik
80
(2000), 531–532.

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Application of a new regularization technique to localized failure.
Zeitschrift für angewandte Mathematik und Mechanik
80
(2000), 477–478.

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Perspective of computational micromacrotransition for the postcritical analysis of localized failure.
In
(ed.):
IUTAM Symposium on Theoretical and Numerical Methods in Continuum Mechanics of Porous Materials.
Kluwer Academic Publishers,
2000.

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Identifikation eines Materialmodells für viskoplastische Deformationen.
Zeitschrift für angewandte Mathematik und Mechanik
80
(2000), 603–604.

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Simulation des elastoplastischen Verhaltens dünner Metallschichten.
Zeitschrift für angewandte Mathematik und Mechanik
80
(2000), 455–456.

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1999 
A stressupdate algorithm in spectral form for an elastoviscoplastic model.
Zeitschrift für angewandte Mathematik und Mechanik
79
(1999), 537–538.

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On the localization analysis of frictional materials at small strains.
Zeitschrift für angewandte Mathematik und Mechanik
79
(1999), 463–464.

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Formulation of plasticity models for frictional materials in the eigenvalue space.
Zeitschrift für angewandte Mathematik und Mechanik
79
(1999), 579–580.

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Aspects of largestrain thermoplastic analysis of shelllike structures.
In
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(eds.):
IUTAMSymposium on Discretization Methods in Structural Mechanics II.
Kluwer Academic Publishers,
1999.

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Texture simulations of polycrystalline materials.
Zeitschrift für angewandte Mathematik und Mechanik
79
(1999), 559–560.

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Computational micromacrotransitions in thermoplastic analysis at finite strains.
In
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(eds.):
IUTAMSymposium on MicroMacrostructural Aspects of Thermoplasticity.
Kluwer Academic Publishers,
1999.

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1998 
On the localization analysis of frictional materials.
In
(ed.):
Große plastische Deformationen.
Mitteilungen aus dem Institut für Mechanik der RuhrUniversität Bochum,
1998.

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Largestrain thermoplastic analysis of shelllike structures.
In
(ed.):
Große plastische Deformationen.
Mitteilungen aus dem Institut für Mechanik der RuhrUniversität Bochum,
1998.

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Computational micromacroTransitions in thermoplastic analysis of polycrystalline materials.
In
(ed.):
Große plastische Deformationen.
Mitteilungen aus dem Institut für Mechanik der RuhrUniversität Bochum,
1998.

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Recent progress in computational plasticity of single crystals at large strains.
Zeitschrift für angewandte Mathematik und Mechanik
78
(1998), 621–622.

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Numerical homogenization analysis of polycrystals.
Zeitschrift für angewandte Mathematik und Mechanik
78
(1998), 721–722.

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1997 
A stressupdate algorithm for viscoplastic solids at large strains.
Zeitschrift für angewandte Mathematik und Mechanik
77
(1997), 155–156.

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An Eulerian overstresstype viscoplastic constitutive model in spectral form. Formulation and numerical implementation.
In
,
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(eds.):
Proceedings of the V International Conference on Computational Plasticity.
CIMNE, Barcelona,
1997.

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Comparative studies of algorithms for single crystal plasticity.
In
(ed.):
Proceedings of the VI International Symposium of Plasticity and its Current Applications.
1997.

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Theoretical and computational homogenization analysis at small and large strains.
Zeitschrift für angewandte Mathematik und Mechanik
77
(1997), 307–308.

&
A formulation of finite elastoplasticity in shells based on dual co and contravariant eigenvectors normalized with respect to a plastic metric.
In
,
&
(eds.):
Proceedings of the V International Conference on Computational Plasticity.
CIMNE, Barcelona,
1997.

Design of robust general return algorithms based on a perturbation stabilization technique.
In
,
&
(eds.):
Proceedings of the V International Conference on Computational Plasticity.
CIMNE, Barcelona,
1997.

Isotropic finite elastoplasticity based on dual co and contravariant eigenvectors normalized with respect to a plastic metric.
In
(ed.):
Proceedings of the VI International Symposium of Plasticity and ist Current Applications.
1997.

Aspects of computational homogenization analysis of polycrystalline materials.
In
,
&
(eds.):
Proceedings of the V International Conference on Computational Plasticity.
CIMNE, Barcelona,
1997.

&
Computational homogenization analysis of polycrystalline materials.
In
(ed.):
Proceedings of the VI International Symposium of Plasticity and ist Current Applications.
1997.

&
1995 
Algorithmic formulations of largestrain rateindependent multisurface thermoplasticity.
In
,
&
(eds.):
Proceedings of the V International Conference on Computational Plasticity.
Pineridge Press,
1995.

Computational modelling of instability phenomena in plasticity.
In
,
&
(eds.):
Proceedings of the V International Conference on Computational Plasticity.
Pineridge Press,
1995.

,
&
1994 
Aspects of anisotropic multiplicative elastoplasticity.
In
(ed.):
Große plastische Deformationen.
Mitteilungen aus dem Institut für Mechanik der RuhrUniversität Bochum,
1994.

Numerische Behandlung von Homogenisierungsprozessen zur Beschreibung von MikroMakroÜbergängen.
In
(ed.):
Große plastische Deformationen.
Mitteilungen aus dem Institut für Mechanik der RuhrUniversität Bochum,
1994.

&
Localization of orthotropic elastoplastic solids. Theory and numerical analysis.
In
,
&
(eds.):
Recent Developments in Finite Element Analysis.
CIMNE, Barcelona,
1994.

,
&
1992 
On thermomechanical contact within large deformation problems.
In
(ed.):
Proceedings of the International Symposium on Contact Mechanics.
Presses Polytechniques et Universitaires Romandes, Lausanne,
1992.

&
Recent advances in the simulation of thermomechanical contact processes.
In
,
&
(eds.):
Proceedings of the V International Conference on Computational Plasticity.
Pineridge Press,
1992.

&
1991 
Ein Modell zur finiten ElastoViskoPlastizität. Formulierung und numerische Integration.
In
(ed.):
Große plastische Deformationen.
Mitteilungen aus dem Institut für Mechanik der RuhrUniversität Bochum,
1991.

&
Zur Formulierung multiplikativer ElastoPlastizität.
In
(ed.):
Große plastische Deformationen.
Mitteilungen aus dem Institut für Mechanik der RuhrUniversität Bochum,
1991.

On the treatment of contact constraints within coupled thermomechanical analysis.
In
&
(eds.):
IUTAM Symposium on Finite Inelastic Deformations  Theory and Applications.
Springer, Heidelberg,
1991.

&
1990 
The impact of computer aided teaching in lecturing computational mechanics.
In
,
,
,
&
(eds.):
Proceedings of the International Conference of Computer Aided Training in Science and Technology.
1990.

&
1989 
Zur numerischen Behandlung thermomechanischer Prozesse mit großen Deformationen.
In
(ed.):
Große plastische Deformationen.
Mitteilungen aus dem Institut für Mechanik der RuhrUniversität Bochum,
1989.

On the coupled thermomechanical treatment of necking problems via finite element methods.
In
,
&
(eds.):
Computational Plasticity. Models, Software and Applications.
Pineridge Press,
1989.

,
,
&
1988 
Zur konsistenten Linearisierung thermomechanischer Prozesse.
Zeitschrift für angewandte Mathematik und Mechanik
68
(1988), 225–228.

Dissertations and Habilitations 

2019 
Magnetoelectromechanical coupling phenomena across multiple length scales : variational framework and stability analysis.
Dissertation, ReportNo. I2
(2019),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2016 
Mechanics of Nonlocal Dissipative Solids: Gradient Plasticity and Phase Field Modeling of Ductile Fracture.
Dissertation, ReportNo. I34
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2014 
Finite element based electronic structure calculations.
Dissertation, ReportNo. I28
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A thermodynamically consistent phase field approach to fracture.
Dissertation, ReportNo. I29
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Multi level descriptions of failure phenomena with the strong discontinuity approach.
Dissertation, ReportNo. I30
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Phase Field Modeling of Fracture in Rubbery and Glassy Polymers at Finite ThermoViscoelastic Deformations.
Dissertation, ReportNo. I31
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Variational Homogenization in ElectroMechanics: From MicroElectroElasticity to Electroactive Polymers.
Dissertation, ReportNo. I32
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Computational Modeling of Ferromagnetics and Magnetorheological Elastomers.
Dissertation, ReportNo. I33
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2013 
Hybrid MicroMacro Modeling of Texture Evolution in Polycrystal Plasticity Based on Microstructural Reorientation Continua.
Dissertation, ReportNo. I27
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

On the Computational Modeling of Micromechanical Phenomena in Solid Materials.
Habilitation, ReportNo. I26
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Variational Multifield Modeling of the Formation and Evolution of Laminate Microstructure.
Dissertation, ReportNo. I25
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2010 
A variational framework for gradientextended dissipative continua: Application to damage mechanics, fracture, and plasticity.
Dissertation, ReportNo. I24
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

On the formulation and numerical implementation of dissipative electromechanics at large strains.
Dissertation, ReportNo. I23
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Thermoviscoplasticity of glassy polymers: Experimental characterization, parameter identification and model validation.
Dissertation, ReportNo. I22
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2008 
Material forces in finite inelasticity and structural dynamics: Topology optimization, mesh refinement and fracture.
Dissertation, ReportNo. I21
(2008),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2007 
Micromacro approaches to rubbery and glassy polymers: Predictive micromechanicallybased models and simulations.
Dissertation, ReportNo. I20
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Aspects of energy minimization in solid mechanics: Evolution of inelastic microstructures and crack propagation.
Dissertation, ReportNo. I19
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2006 
Incompatibility and instability based size effects in crystals and composites at finite elastoplastic strains.
Dissertation, ReportNo. I18
(2006),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2005 
Static and dynamic homogenization analyses of discrete granular and atomistic structures on different time and length scales.
Dissertation, ReportNo. I17
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Mehrskalenmodelle in der Festkörpermechanik und Kopplung von Mehrgittermethoden mit Homogenisierungsverfahren.
Dissertation, ReportNo. I16
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Viskoelastisches Verhalten von Elastomeren bei finiten Verzerrungen: Experimente, Modellierung und Simulationen.
Dissertation, ReportNo. I15
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Zur Parameteridentikation komplexer Materialmodelle auf der Basis realer und virtueller Testdaten.
Dissertation, ReportNo. I14
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2004 
Temperaturabhängige Beschreibung viskoelastoplastischer Deformationen kurzglasfaserverstärkter Thermoplaste: Modellbildung, Numerik und Experimente.
Dissertation, ReportNo. I13
(2004),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Approaches to the description of anisotropic material behaviour at finite elastic and plastic deformations, theory and numerics.
Dissertation, ReportNo. I12
(2004),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2003 
Theorie und Numerik der Parameteridentikation von Materialmodellen der finiten Elastizität und Inelastizität auf der Grundlage optischer Feldmessmethoden.
Dissertation, ReportNo. I11
(2003),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Adaptive FiniteElementeBerechnungen der nichtlinearen Festkörpermechanik bei kleinen und grossen Verzerrungen.
Dissertation, ReportNo. I10
(2003),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2002 
Mikromechanisch motivierte Modelle zur Beschreibung finiter Deformationen gummiartiger Polymere: Physikalische Modellbildung und numerische Simulation.
Dissertation, ReportNo. I09
(2002),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Theorie und Numerik von Materialinstabilitäten elastoplastischer Festkörper auf der Grundlage inkrementeller Variationsformulierungen.
Dissertation, ReportNo. I08
(2002),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2000 
Homogenisierungsmethoden der nichtlinearen Kontinuumsmechanik unter Beachtung von Stabilitätsproblemen.
Dissertation, ReportNo. I07
(2000),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

1999 
Berechnungsverfahren instationär erregter Systeme im Frequenzbereich.
Dissertation, ReportNo. I06
(1999),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

1998 
Zur Beschreibung finiter Deformationen von Polymeren: Experimente, Modellbildung, Parameteridentikation und FiniteElementeFormulierung.
Dissertation, ReportNo. I05
(1998),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Verfahren zur Ermittlung der Erdbebenlasten mit Berücksichtigung des stochastischen Charakters des Bebens.
Dissertation, ReportNo. I04
(1998),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

1996 
Zur Modellierung des künstlichen InfrarotDichroismus in Polymerfolien bei grossen Verformungen.
Dissertation, ReportNo. I03
(1996),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Zur Theorie und Numerik finiter elastoplastischer Deformationen von Schalentragwerken.
Dissertation, ReportNo. I02
(1996),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Theoretische und algorithmische Konzepte zur phänomenologischen Beschreibung anisotropen Materialverhaltens.
Dissertation, ReportNo. I01
(1996),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

1993 
Kanonische Modelle Multiplikativer ElastoPlastizität. Thermodynamische Formulierung und Numerische Implementation.
Habilitation, ReportNo. F 93/1
(1993),
Forschungs und Seminarberichte aus dem Bereich der Mechanik,
Universität Hannover.

Diploma, Bachelor, and Master Theses 

2018 
Modeling the swelling phenomena of lithiumion battery cells based on a numerical chemomechanical coupled approach .
Master Thesis
(2018),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2017 
Numerical investigations on experiments for the characterization of magnetorheological elastomers.
Bachelor Thesis
(2017),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Prediction of Cracks During Forming of a Thin Bipolar Sheet of a FuelCell.
Master Thesis
(2017),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Towards Topology Optimization in MagnetoElectroMechanics.
Master Thesis
(2017),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Charakterisierung der Dehnratenabhängigkeit thermoplastischer Polymere zur FiniteElementeSimulation von stoßartigen Belastungen.
Master Thesis
(2017),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Modellierung, Simulation und Optimierung eines ultraschallbasierten Messverfahrens in einem Fluid.
Master Thesis
(2017),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2016 
3D Dynamic Simulation of Concrete Hammer Drilling for SDSmax Using FEM.
Master Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

On Variational Principles in Electrostatics at Large Strain: A Comparative Study.
Bachelor Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Efficient Computational Homogenization of Composites based on FEFFT Coupling.
Master Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

FEAnalysis of a Wheel Assembly regarding Stresses of the Wheel Screws.
Master Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Crash Frame Design for Automotive High Voltage Battery Packs.
Master Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Phase Field Approaches to Topology Optimization.
Master Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Variational Framework of Porous Plasticity with Evolving Microstructure.
Master Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A Micromagnetic Approach For Large Deformation MagnetoMechanically Coupled Material Response.
Master Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Computational Multiscale Instability Analysis of Periodic EAP Composites in Finite Strains.
Master Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A Minimization Principle for the Modeling of DiffusionDeformation Processes in Hydrogels.
Bachelor Thesis
(2016),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2015 
Numerical and experimental investigations on the reliability of passive components subjected to drop impacts.
Master Thesis
(2015),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Conforming FEImplementation for Minimizer in PoroElasticity coupled with Fracture.
Master Thesis
(2015),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2014 
A finite deformation micromechanically motivated model for magneto rheological elastomers.
Master Thesis
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Coupled Thermomechanical Model for GradientExtended Dissipative Solids.
Master Thesis
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Modeling of SwellingInduced Mechanical Instabilities in Polymeric Hydrogels.
Bachelor Thesis
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Variational Diffusion Coupled with ElastoDynamics and its Application to Simulate Hydrogels.
Master Thesis
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A Phase Field Approach to the Fracture of Anisotropic Medium.
Master Thesis
(2014),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2013 
Discrete Network Models of Random Biopolymer Microstructures and NonWoven Textiles.
Bachelor Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A Threephasic Phasefield Model for Austenite and Twinned Martensite in Shape Memory Alloys.
Bachelor Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Coupled Thermoviscoelasticity of Rubbery Polymers in the Logarithmic Strain Space.
Bachelor Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A Phase Field Model of Twinning Induced Plasticity in Metal Crystals.
Bachelor Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

ConfigurationalForceDriven Crack Propagation in Viscoelastic Solids.
Bachelor Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Stability Analysis in ElectroMechanics at Finite Strains.
Master Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A coupled model for the diffusion in polymeric gels undergoing large deformations.
Master Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Multiscale Continuum Damage Model for Cavity Growth in Rubberlike Materials.
Master Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Intercalation Induced Stress Generation in High Performance Lithium Ion Battery Systems.
Master Thesis
(2013),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2012 
A Phase Field Model of Fracture for Brittle to Ductile Failure Mode Transition.
Diploma Thesis
(2012),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A Projection Method in Incremental Variational Formulation for Phase Field Models in Micromagnetics.
Master Thesis
(2012),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A Study on Brittle Fracture and Ductile Plastic Failure Mechanism under Dynamic Loading.
Bachelor Thesis
(2012),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A Plasticity Model for the Description of Crazing in Glassy Amorphous Polymers.
Bachelor Thesis
(2012),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2011 
Modeling of Ferroelectric Materials under Combined ElectroMechanical Loading.
Master Thesis
(2011),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Viscoelasticity in Electro Active Polymers.
Master Thesis
(2011),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Modeling of DislocationStructureBased Anisotropy in Finite Polycrystal Plasticity.
Bachelor Thesis
(2011),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Hybrid MicroMacro Modeling of TextureInduced Anisotropy in Finite Polycrystal Plasticity.
Bachelor Thesis
(2011),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Computational Homogenization in MicroElectroElasticity.
Master Thesis
(2011),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A MicromechanicallyBased Variational Formulation of GradientExtended Crystal Plasticity.
Diploma Thesis
(2011),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Variational Phase Field Modeling of Fracture in Beams, Plates, and Shells.
Diploma Thesis
(2011),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2010 
Material Modelling of Wood in Regard to Cutting Processes (Bosch).
Master Thesis
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Variational based formulation of gradienttype J_{2}plasticity in the logarithmic strain space.
Diploma Thesis
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Laminate microstructure in shape memory alloys: Algorithmic relaxation of twowell free energy functions.
Master Thesis
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A multilevel embedded finite element method for the modeling of crack branching.
Master Thesis
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A micromechanically based model for viscoelasticity of rubbery polymers.
Master Thesis
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Multiscale modeling of thermoset composite during cure to establish a rule of mixture for composite materials (Airbus).
Master Thesis
(2010),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2009 
Parameter Identification for Crystal Plasticity Homogenization Simulations (Fraunhofer).
Master Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Thermomechanical behavior of glassy polymers: Parameter identification and model validation.
Diploma Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Theory and Numerical Aspects of Constitutive Modeling in Finite Deformation Magnetomechanics.
Master Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Formulation and numerical implementation of ferroelectricity at large strains.
Diploma Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Configurationalforcebased hadaptive methods in gradienttype standard solids with application to regularized fracture.
Master Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Geometric aspects of strain gradient theories in finite inelasticity and damage mechanics.
Diploma Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Establishing material properties for modelling the effect of shims (TRW Automotive).
Master Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Simulation von warmverformten Bauteilen mit der FEM (Freundenberg Forschungsdienste, Weinheim).
Master Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Sintering simulation and optimization of multilayer ceramics (Bosch, Stuttgart).
Master Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Development of a reliability assessment method for brake caliper under application of specific conditions (Bosch, Stuttgart).
Master Thesis
(2009),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2008 
Material model for anisotropic rubber viscoelasticity at finite deformations.
Diploma Thesis
(2008),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Theory and numerical implementation of magnetomechanics in two and three dimensions.
Master Thesis
(2008),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Reliability analysis of ceramic components using form algorithm (Bosch, Stuttgart).
Master Thesis
(2008),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Sintering simulation and optimization of the ceramics/ceramic composites (Bosch, Stuttgart).
Master Thesis
(2008),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2007 
Temperaturedependent finite viscoplasticity of glassy polymers: Experiments and similations.
Master Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Configurational mechanics of nonlocal higherorder continua with microstructure.
Diploma Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

A variational approach to configurational solid dynamics. Theoretical formulation and algorithmic treatment.
Diploma Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

An incremental variational formulation of viscous polarization in piezoceramics.
Master Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Coupling of efficient software tools in materialforcebased hadaptive strategies for threedimensional analyses at finite inelastic deformations.
Diploma Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Stability assessment of a mems package considering mixedmode loading (Bosch, Stuttgart).
Master Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Material parameter identification for elastoplastic and elastoviscoplastic models using Kriging approximation (Fraunhofer Institute, Freiburg).
Master Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Consistent linearization and finite element implementation of an incrementally objective canonical form return mapping algorithm for large deformation inelasticity (Fraunhofer Institute, Freiburg).
Master Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Investigation of different optimization strategies with application to spark plug insulators (Bosch, Stuttgart).
Master Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Finite element analysis of nanoindentation (McGill University).
Master Thesis
(2007),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2006 
A twoscale model of anisotropic polycrystalplasticity with discrete codfevolution.
Master Thesis
(2006),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Micromechanically based thermoviscoplasticity of glassy polymers: Experiments and constitutive modeling.
Master Thesis
(2006),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Modeling of phase transformations in shape memory alloys based on energy relaxation.
Master Thesis
(2006),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Computational modelling of high temperature creep behaviour of siliconoxycarbide ceramic composites (Bosch, Stuttgart).
Master Thesis
(2006),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Numerical simulation of cold isostatic pressing with application to spark plug insulators (Bosch, Stuttgart).
Master Thesis
(2006),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2005 
Anwendungen des Konzepts Materieller Kräfte in der Strukturoptimierung.
Diploma Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Fehlerindikatoren in hadaptiven FEStrategien. Ein alternativer Zugang auf Basis Materieller Kräfte.
Diploma Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Approaches to the modeling of thermoviscoplastic behavior of glassy polymers.
Master Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Theory and numerics of material forces in thermoelasticplastic materials.
Master Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Parameter identification of material models from inhomogeneous experiments with threedimensional surface matching.
Master Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Localization and stability problems in strain softening elastoplastic materials.
Master Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Numerische Lösungsverfahren für die Modellierung heterogener Materialien.
Diploma Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Thermomechanical multisurface crystal plasticity at finite strains.
Master Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Simulation of instrumented indentation tests on filmsubstrate systems (Fraunhofer Institute, Freiburg).
Master Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Fluid mechanical investigation of a molten salt tank for thermal energy storage systems (German Aerospace Centre).
Master Thesis
(2005),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2004 
A constitutive formulation of finite viscoplasticity for glassy polymers in the logarithmic strain space.
Master Thesis
(2004),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Theory and numerics of nonlocal single crystal plasticity including the effects of geometrically necessary dislocations.
Master Thesis
(2004),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Three dimensional finite element analysis of fracture and fragmentation using cohesive elements at large deformations.
Master Thesis
(2004),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Finite elastic and inelastic behaviour of rubbery polymers: Experiments and modeling.
Master Thesis
(2004),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Macroscopic finite element analyses of granular materials based on twoscale micromacro transitions.
Master Thesis
(2004),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2003 
On the modeling of material growth in anisotropic solids. Internal variable approach and numerical implementation.
Diploma Thesis
(2003),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Comparison of alternative kinematical approaches to finite element formulations with embedded strong discontinuities.
Master Thesis
(2003),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Implementation eines Bisektionsalgorithmus für adaptive Dreiecks und Tetraedernetze.
Diploma Thesis
(2003),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Zur Konstruktion von Materialgleichungen mittels Tensorfunktionen zweiter Stufe. Theorie mit Beispielen aus der finiten Elastizität und Plastizität.
Diploma Thesis
(2003),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Identification of material parameters using instrumented indentation test data (Fraunhofer Institute, Freiburg).
Master Thesis
(2003),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Ein implizites Gradientenmodell zur Beschreibung nichtlokaler finiter Plastizität formuliert in logarithmischen Verzerrungen: Konstitutiver Ansatz und numerische Implementation.
Diploma Thesis
(2003),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2002 
Micromechanically based constitutive description of elasticity and damage in rubberlike materials.
Master Thesis
(2002),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Twoscale relaxation analysis of finitestrain singleslip plasticity based on a firstorder rankone convexification.
Master Thesis
(2002),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Determination of the service life of elastomers using the FE method and experimental data of physical and chemical relaxation.
Master Thesis
(2002),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Development of a PCbased program for the dynamic design of vibration isolation elements.
Master Thesis
(2002),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Arbitrary LagrangeanEulerian finite element formulations at large strains.
Master Thesis
(2002),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2001 
Zur Theorie und Numerik elastischer und elastoplastischer Schädigungsmodelle bei kleinen Deformationen.
Diploma Thesis
(2001),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Deformationsgetriebene Homogenisierung von heterogenen Mikrostrukturen bei finiten elastischen Deformationen unter Beachtung von Stabilitätsproblemen.
Diploma Thesis
(2001),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Theoretische Konzepte zur Konstruktion anisotroper Stoffgesetze am Beispiel elastischer Materialien.
Diploma Thesis
(2001),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Incremental variational formulation and convexification analysis for elastoplastic materials with nonlinear strainsoftening.
Diploma Thesis
(2001),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

2000 
Experimentelle Analyse zur Elastizität, Plastizität und Viskosität.
Diploma Thesis
(2000),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Algorithmische Konzeption von Mehrgitterverfahren mit grundlegenden Konvergenz und Effektivitätsanalysen.
Diploma Thesis
(2000),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Parameteridentifikation finiter Elastizität rußgefüllter Polymere bei homogenen und inhomogenen Deformationen.
Diploma Thesis
(2000),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Ein Mehrskalenmodell zur Regularisierung lokalisierten Versagens elastoplastischer Reibungsmaterialien.
Diploma Thesis
(2000),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

1999 
Mikromechanisch begründete phänomenologische Materialmodelle für Polymere.
Diploma Thesis
(1999),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Parameteridentifikation ausgewählter makroskopischer Materialmodelle zur finiten Elastizität und Inelastizität auf der Grundlage optischer Feldmessmethoden.
Diploma Thesis
(1999),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

1997 
Lokalisierungsanalyse NichtAssoziierter Plastizität und deren Anwendung auf Reibungsmaterialien.
Diploma Thesis
(1997),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.

Orientierungsverteilungen von Kristalliten und Berechnung von Fließortkurven polykristalliner Materialien.
Diploma Thesis
(1997),
Institute of Applied Mechanics (CE), Chair I,
University of Stuttgart.
