In this paper, we investigate the modeling of ferromagnetic multiscale materials. We propose a computational homogenization technique based on the heterogeneous multiscale method (HMM) that includes both eddy-current and hysteretic losses at the mesoscale. The HMM comprises: 1) a macroscale problem that captures the slow variations of the overall solution; 2) many mesoscale problems that allow to determine the constitutive law at the macroscale. As application example, a laminated iron core is considered
The authors present a novel nonlinear homogenization technique for laminated iron cores in three-dim...
This paper presents 2D and 3D homogenization techniques for laminated iron cores in the frequency do...
© 2018 Society for Industrial and Applied Mathematics. In this paper we develop magnetic induction c...
In this paper, we investigate the modeling of ferromagnetic multiscale materials. We propose a compu...
Abstract—In this paper, a heterogeneous multiscale method (HMM) based technique is applied to model ...
Electromagnetic fields and eddy currents in thin electrical steel laminations are governed by the la...
In this paper, a heterogeneous multiscale method (HMM) based technique is applied to model the behav...
The effective use of composite materials in the technology industry requires the development of accu...
Abstract—Homogenization represents a promising method to simulate eddy current losses in laminated i...
In this paper, we compare qualitatively and quan- titatively the performance and validity range of a...
The increasing use of composite materials in the technological industry (automotive, aerospace) requ...
This paper deals with the time-domain homogenization of laminated cores in 2D or 3D finite element (...
This paper deals with the time-domain homogenization of laminated cores in 2-D or 3-D finite-element...
This paper deals with the time-domain homogenization of laminated cores in 2-D or 3-D finite-element...
peer reviewedThis paper deals with the time-domain homogenization of laminated cores in 2D or 3D fin...
The authors present a novel nonlinear homogenization technique for laminated iron cores in three-dim...
This paper presents 2D and 3D homogenization techniques for laminated iron cores in the frequency do...
© 2018 Society for Industrial and Applied Mathematics. In this paper we develop magnetic induction c...
In this paper, we investigate the modeling of ferromagnetic multiscale materials. We propose a compu...
Abstract—In this paper, a heterogeneous multiscale method (HMM) based technique is applied to model ...
Electromagnetic fields and eddy currents in thin electrical steel laminations are governed by the la...
In this paper, a heterogeneous multiscale method (HMM) based technique is applied to model the behav...
The effective use of composite materials in the technology industry requires the development of accu...
Abstract—Homogenization represents a promising method to simulate eddy current losses in laminated i...
In this paper, we compare qualitatively and quan- titatively the performance and validity range of a...
The increasing use of composite materials in the technological industry (automotive, aerospace) requ...
This paper deals with the time-domain homogenization of laminated cores in 2D or 3D finite element (...
This paper deals with the time-domain homogenization of laminated cores in 2-D or 3-D finite-element...
This paper deals with the time-domain homogenization of laminated cores in 2-D or 3-D finite-element...
peer reviewedThis paper deals with the time-domain homogenization of laminated cores in 2D or 3D fin...
The authors present a novel nonlinear homogenization technique for laminated iron cores in three-dim...
This paper presents 2D and 3D homogenization techniques for laminated iron cores in the frequency do...
© 2018 Society for Industrial and Applied Mathematics. In this paper we develop magnetic induction c...