In this contribution, we apply adaptive isogeometric analysis to a diffuse interface model for topology optimization. First, the influence of refinement and coarsening parameters on the optimization procedure are evaluated and discussed on a two-dimensional problem and a possible workflow to convert smooth isogeometric solutions into 3D printed products is described. Second, to assess the required numerical accuracy of the proposed simulation framework, numerical results obtained adopting different stopping criteria are experimentally evaluated for a three-dimensional benchmark problem
Additive manufacturing (AM) offers exciting opportunities to manufacture parts of unprecedented comp...
The development of new materials and new manufacturing techniques have experienced a rapid developme...
AbstractIn most of structural optimization approaches, finite element method (FEM) has been employed...
We consider a phase field model for the formulation and solution of topology optimization problems i...
We consider a phase field model for the formulation and solution of topology optimization problems i...
Recently, isogeometric analysis (IGA), which unifies the computer-aided design (CAD) model and the c...
This paper gives an overview of the issues and opportunities for the application of topology optimi...
Manufacturing-oriented topology optimization has been extensively studied the past two decades, in p...
© 2019 John Wiley & Sons, Ltd. This paper will propose a more effective and efficient topology optim...
In this thesis a method is presented to couple additive manufacturing simulations with topology opti...
Abstract In topology optimization the goal is to find the ideal material distribution in a domain su...
A computer-aided FEM-based structure design system configured to: ■ acquire an initial structure des...
In recent years, Topology Optimization (TO) gained interest in the scientific community. It assists ...
In this work, the Solid Isotropic Material with Penalization (SIMP) topology optimization (TO) metho...
The Finite Element Method (FEM) is widely used in engineering for solving Partial Differential Equat...
Additive manufacturing (AM) offers exciting opportunities to manufacture parts of unprecedented comp...
The development of new materials and new manufacturing techniques have experienced a rapid developme...
AbstractIn most of structural optimization approaches, finite element method (FEM) has been employed...
We consider a phase field model for the formulation and solution of topology optimization problems i...
We consider a phase field model for the formulation and solution of topology optimization problems i...
Recently, isogeometric analysis (IGA), which unifies the computer-aided design (CAD) model and the c...
This paper gives an overview of the issues and opportunities for the application of topology optimi...
Manufacturing-oriented topology optimization has been extensively studied the past two decades, in p...
© 2019 John Wiley & Sons, Ltd. This paper will propose a more effective and efficient topology optim...
In this thesis a method is presented to couple additive manufacturing simulations with topology opti...
Abstract In topology optimization the goal is to find the ideal material distribution in a domain su...
A computer-aided FEM-based structure design system configured to: ■ acquire an initial structure des...
In recent years, Topology Optimization (TO) gained interest in the scientific community. It assists ...
In this work, the Solid Isotropic Material with Penalization (SIMP) topology optimization (TO) metho...
The Finite Element Method (FEM) is widely used in engineering for solving Partial Differential Equat...
Additive manufacturing (AM) offers exciting opportunities to manufacture parts of unprecedented comp...
The development of new materials and new manufacturing techniques have experienced a rapid developme...
AbstractIn most of structural optimization approaches, finite element method (FEM) has been employed...