Material parameter identification using finite elements with time-adaptive higher-order time integration and experimental full-field strain information
DOI10.1007/s00466-021-01998-3zbMath1481.74371OpenAlexW3158501534WikidataQ113326734 ScholiaQ113326734MaRDI QIDQ2666122
Rose Rogin Gilbert, Stefan Hartmann
Publication date: 22 November 2021
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-021-01998-3
finite element methodevolution equationRunge-Kutta schemedigital image correlationLagrange multiplier methodmaterial parameter identificationleast-square methodfinite-strain voscoelasticity
Finite element methods applied to problems in solid mechanics (74S05) Finite difference methods applied to problems in solid mechanics (74S20) Nonlinear constitutive equations for materials with memory (74D10) Inverse problems in dynamical solid mechanics (74H75)
Related Items (3)
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Contribution of heterogeneous strain field measurements and boundary conditions modelling in inverse identification of material parameters
- Comparison of diagonal-implicit, linear-implicit and half-explicit Runge-Kutta methods in nonlinear finite element analyses
- Rosenbrock-type methods applied to finite element computations within finite strain viscoelasticity
- Automation of primal and sensitivity analysis of transient coupled problems
- Generalized parameter identification for finite viscoelasticity
- Quasi-incompressible finite elasticity in principal stretches. Continuum basis and numerical algorithms
- The simple tension problem at large volumetric strains computed from finite hyperelastic material laws
- A theory of finite viscoelasticity and numerical aspects
- Identification of response functions from axisymmetric membrane inflation tests: Implications for biomechanics
- Computation in finite-strain viscoelasticity: finite elements based on the interpretation as differential-algebraic equations
- A unified approach for parameter identification of inelastic material models in the frame of the finite element method
- Parameter identification for finite deformation elasto-plasticity in principal directions
- Automatic generation of finite-element code by simultaneous optimization of expressions
- Polyconvexity of generalized polynomial-type hyperelastic strain energy functions for near-incompressibility.
- Finite deformations of a carbon black-filled rubber. Experiment, optical measurement and material parameter identification using finite elements
- Delaunay refinement algorithms for triangular mesh generation
- Diagonally implicit Runge-Kutta (DIRK) integration applied to finite strain crystal plasticity modeling
- Advances in mechanics of materials and structural analysis. In honor of Reinhold Kienzler
- Numerical data fitting in dynamical systems. A practical introduction with applications and software. With CD-ROM
- Determination of constitutive properties from spherical indentation data using neural networks. I: The case of pure kinematic hardening in plasticity laws. II: Plasticity with nonlinear isotropic and kinematic hardening
- Elasto-plastic material parameter identification by inverse methods: Calculation of the sensitivity matrix
- A remark on the application of the Newton-Raphson method in nonlinear finite element analysis
- On the local identifiability of constituent stress-strain laws for hyperelastic composite materials
- Remarks on the interpretation of current non‐linear finite element analyses as differential–algebraic equations
- Comparison of the identification performance of conventional FEM updating and integrated DIC
- Solving Ordinary Differential Equations I
- Iterative solvers within sequences of large linear systems in non-linear structural mechanics
- Identification and estimation of constitutive parameters for material laws in elastoplasticity
- The simultaneous solution and sensitivity analysis of systems described by ordinary differential equations
- A multilevel Newton algorithm with macromodeling and latency for the analysis of large-scale nonlinear circuits in the time domain
- An inverse method for determining elastic material properties and a material interface
- Diagonally Implicit Runge–Kutta Methods for Stiff O.D.E.’s
- Numerical Optimization
- Differential-Algebraic Equations in Elasto-Viscoplasticity
- Displacement control in time‐adaptive non‐linear finite‐element analysis
- Numerical studies on the identification of the material parameters of Rivlin's hyperelasticity using tension-torsion tests
- Viscoplasticity of elastomeric materials: Experimental facts and constitutive modelling
- Statistical aspects of the identification of material parameters for elasto-plastic models
This page was built for publication: Material parameter identification using finite elements with time-adaptive higher-order time integration and experimental full-field strain information