This chapter presents a computational homogenization strategy, which provides a rigorous approach to determine the macroscopic response of heterogeneous materials with accurate account for microstructural characteristics and evolution. When using this micro-macro strategy there is no necessity to define homogenized macroscopic constitutive equations, which in case of large deformations and complex microstructures, would be generally a hardly feasible task. Instead, the constitutive behaviour at macroscopic integration points isdetermined by averaging the response of the deforming microstructure. This enables a straight forward application of the method to geometrically and physically non-linear problems, making it a particularly valuable to...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
Computational homogenization is nowadays one of the most active research topics in computational mec...
A computational homogenization procedure for a material layer that possesses an underlying heterogen...
This chapter presents a computational homogenization strategy, which provides a rigorous approach to...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
This part of the CISM course addresses basics and advanced topics onthe computational homogenization...
Predicting the macroscopic behaviour of materials on the basis of the mechanics of their microstruct...
The computational homogenization method enables to derive the overall behavior of heterogeneous mate...
A gradient-enhanced computational homogenization procedure, that allows for the modelling of microst...
An accurate homogenization method that accounts for large deformations and viscoelastic material beh...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
This paper addresses a first-order and a second-order framework for the multiscale modelling of hete...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
Computational homogenization is nowadays one of the most active research topics in computational mec...
A computational homogenization procedure for a material layer that possesses an underlying heterogen...
This chapter presents a computational homogenization strategy, which provides a rigorous approach to...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
This part of the CISM course addresses basics and advanced topics onthe computational homogenization...
Predicting the macroscopic behaviour of materials on the basis of the mechanics of their microstruct...
The computational homogenization method enables to derive the overall behavior of heterogeneous mate...
A gradient-enhanced computational homogenization procedure, that allows for the modelling of microst...
An accurate homogenization method that accounts for large deformations and viscoelastic material beh...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
This paper addresses a first-order and a second-order framework for the multiscale modelling of hete...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
Computational homogenization is nowadays one of the most active research topics in computational mec...
A computational homogenization procedure for a material layer that possesses an underlying heterogen...