In the past decades, considerable progress had been made in bridging the mechanics of materials to other disciplines, e.g. downscaling to the field of materials science or upscaling to the field of structural engineering. Within this wide context, this paper reviews the state-of-the-art of a particular, yet powerful, method, i.e. computational homogenization. The paper discusses the main trends since the early developments of this approach up to the ongoing contributions and upcoming challenges in the field. © 2009 Elsevier B.V. All rights reserved
The recent decades have seen significant progress in linking the mechanical performance of materials...
The recent decades have seen significant progress in linking the mechanical performance of materials...
The recent decades have seen significant progress in linking the mechanical performance of materials...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
This paper briefly focuses on some recent trends and development in the past years on computational ...
This paper briefly focuses on some recent trends and development in the past years on computational ...
This paper briefly focuses on some recent trends and development in the past years on computational ...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
The recent decades have seen significant progress in linking the mechanical performance of materials...
The recent decades have seen significant progress in linking the mechanical performance of materials...
The recent decades have seen significant progress in linking the mechanical performance of materials...
The recent decades have seen significant progress in linking the mechanical performance of materials...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
This paper briefly focuses on some recent trends and development in the past years on computational ...
This paper briefly focuses on some recent trends and development in the past years on computational ...
This paper briefly focuses on some recent trends and development in the past years on computational ...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
The recent decades have seen significant progress in linking the mechanical performance of materials...
The recent decades have seen significant progress in linking the mechanical performance of materials...
The recent decades have seen significant progress in linking the mechanical performance of materials...
The recent decades have seen significant progress in linking the mechanical performance of materials...