This paper applies stress-based shape optimization to microstructures, a scarcely explored topic in the literature. As the actual stresses arising at the macroscopic structure are scale separated, the microstrucural stress is considered herein as the state of a representative volume element (RVE) after applying test unit strain load cases, not related to the macroscale loads. The three stress states in 2D are aggregated via p-norm functions, which are used for stress minimization. A stress-based level set method is applied. The method linearizes the objective and constraint functions and solves an optimization problem at every iteration to obtain the boundary velocities. The Ersatz material approach is used to compute the stiffness of the e...
The present dissertation seeks to optimize the unit cell of a two-dimensional cellular material, pu...
This work was partially supported by Fundacao para a Ciencia e a Tecnologia (Portugal) through the p...
A level set topology optimization method is introduced and used to design periodic architected mater...
This paper applies stress-based shape optimization to microstructures, a scarcely explored topic in ...
This paper proposes a level set method to solve minimum stress and stress-constrained shape and topo...
This work aims at introducing stress responses within a topology optimization framework applied to t...
As suggested by Sigmund, material tailoring can be formulated as a structural optimization problem. ...
The present paper investigates the tailoring of bimaterial microstructures minimizing their local st...
New additive manufacturing techniques break the limitations encountered for years when producing com...
This work focuses on the problem of finding the optimal microstructural design for a material to sui...
This paper aims at designing microstructures using stress-based topology optimization. Most of the d...
Lattice structures are periodic porous bodies which are becoming popular since they are a goodcompro...
Sizing and shape structural optimization problems are normally stated in terms of a minimum weight a...
This paper presents and applies a novel shape optimization approach based on the level set descripti...
The present dissertation seeks to optimize the unit cell of a two-dimensional cellular material, pu...
This work was partially supported by Fundacao para a Ciencia e a Tecnologia (Portugal) through the p...
A level set topology optimization method is introduced and used to design periodic architected mater...
This paper applies stress-based shape optimization to microstructures, a scarcely explored topic in ...
This paper proposes a level set method to solve minimum stress and stress-constrained shape and topo...
This work aims at introducing stress responses within a topology optimization framework applied to t...
As suggested by Sigmund, material tailoring can be formulated as a structural optimization problem. ...
The present paper investigates the tailoring of bimaterial microstructures minimizing their local st...
New additive manufacturing techniques break the limitations encountered for years when producing com...
This work focuses on the problem of finding the optimal microstructural design for a material to sui...
This paper aims at designing microstructures using stress-based topology optimization. Most of the d...
Lattice structures are periodic porous bodies which are becoming popular since they are a goodcompro...
Sizing and shape structural optimization problems are normally stated in terms of a minimum weight a...
This paper presents and applies a novel shape optimization approach based on the level set descripti...
The present dissertation seeks to optimize the unit cell of a two-dimensional cellular material, pu...
This work was partially supported by Fundacao para a Ciencia e a Tecnologia (Portugal) through the p...
A level set topology optimization method is introduced and used to design periodic architected mater...