The work deals on computational design of structural materials by resorting to computational homogenization and topological optimization techniques. The goal is then to minimize the structural (macro-scale) compliance by appropriately designing the material distribution (microstructure) at a lower scale (micro-scale), which, in turn, rules the mechanical properties of the material. The specific features of the proposed approach are: (1) The cost function to be optimized (structural stiffness) is defined at the macro-scale, whereas the design variables defining the micro-structural topology lie on the low scale. Therefore a coupled, two-scale (macro/micro), optimization problem is solved unlike the classical, single-scale, topological optimi...
The present dissertation aims at addressing multiscale topology optimization problems. For this purp...
The two scale topology optimization formulation is a mathematical procedure which focuses on finding...
The authors wish also to thank Professor Krister Svanberg (Royal Institute of Technology, Stockholm,...
The work deals on computational design of structural materials by resorting to computational homogen...
The work deals on computational design of structural materials by resorting to computational homogen...
Multiscale topological material design, aiming at obtaining optimal distribution of the material at ...
In this work, a new strategy for solving multiscale topology optimization problems is presented. An ...
In this work, a new strategy for solving multiscale topology optimization problems is presented. An ...
Computational material design has gained considerable interest, along the last years, in the computa...
Computational material design has gained considerable interest, along the last years, in the computa...
This paper introduces a new approach to multiscale optimization, where design optimization is applie...
This paper introduces a new approach to multiscale optimization, where design optimization is applie...
This paper introduces a new approach to multiscale optimization, where design optimization is applie...
This paper introduces a new approach to multiscale optimization, where design optimization is applie...
Acknowledgments The authors acknowledge the support from Engineering and Physical Sciences Research ...
The present dissertation aims at addressing multiscale topology optimization problems. For this purp...
The two scale topology optimization formulation is a mathematical procedure which focuses on finding...
The authors wish also to thank Professor Krister Svanberg (Royal Institute of Technology, Stockholm,...
The work deals on computational design of structural materials by resorting to computational homogen...
The work deals on computational design of structural materials by resorting to computational homogen...
Multiscale topological material design, aiming at obtaining optimal distribution of the material at ...
In this work, a new strategy for solving multiscale topology optimization problems is presented. An ...
In this work, a new strategy for solving multiscale topology optimization problems is presented. An ...
Computational material design has gained considerable interest, along the last years, in the computa...
Computational material design has gained considerable interest, along the last years, in the computa...
This paper introduces a new approach to multiscale optimization, where design optimization is applie...
This paper introduces a new approach to multiscale optimization, where design optimization is applie...
This paper introduces a new approach to multiscale optimization, where design optimization is applie...
This paper introduces a new approach to multiscale optimization, where design optimization is applie...
Acknowledgments The authors acknowledge the support from Engineering and Physical Sciences Research ...
The present dissertation aims at addressing multiscale topology optimization problems. For this purp...
The two scale topology optimization formulation is a mathematical procedure which focuses on finding...
The authors wish also to thank Professor Krister Svanberg (Royal Institute of Technology, Stockholm,...