Improving the magnetic properties of non-oriented electrical steel (NOES) through the optimization of crystallographic texture has been an on-going research activity for decades. However, using traditional rolling and annealing procedures, the obtained final textures were usually very similar, i.e., exhibiting the {111} (γ) and 〈 (α) fibres, which were not the desired {001} texture (θ-fibre) for optimal magnetic quality. In the current work, a 1.8 wt% Si NOES was processed using a new sheet metal deformation method, i.e., repetitive bending under tension (R-BUT), also known as continuous bending under tension (C-BUT), to modify the texture of the electrical steel. The hot-rolled and annealed NOES plates were repeatedly bent and unbent when ...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
The optimization of magnetic and physical properties of electrical steel is imperative for many engi...
The aim of this research is to improve the magnetic properties of non-oriented electrical steels (NO...
The magnetic properties in electrical steels are strongly dependent on the crystallographic texture ...
The magnetic properties in electrical steels are strongly dependent on the crystallographic texture ...
Electrical steels, in particular Fe-Si alloys, are used as magnetic flux carrier in transformers and...
Nonoriented electrical steels are mainly used as the core materials in motors and generators. The m...
Conventional thermomechanical processing of low-carbon steels leads to a characteristic texture domi...
Conventional thermomechanical processing of low-carbon steels leads to a characteristic texture domi...
Electrical steels, in particular Fe-Si alloys, are used as magnetic flux carrier in transformers and...
Electrical steels, in particular Fe-Si alloys, are used as magnetic flux carrier in transformers and...
The magnetic properties of non-oriented electrical steel, widely used in electric machines, are clos...
The core loss and magnetic induction of electrical steels are dependent on the microstructure and te...
This paper presents a classic process-structure-properties approach for optimizing the magnetic prop...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
The optimization of magnetic and physical properties of electrical steel is imperative for many engi...
The aim of this research is to improve the magnetic properties of non-oriented electrical steels (NO...
The magnetic properties in electrical steels are strongly dependent on the crystallographic texture ...
The magnetic properties in electrical steels are strongly dependent on the crystallographic texture ...
Electrical steels, in particular Fe-Si alloys, are used as magnetic flux carrier in transformers and...
Nonoriented electrical steels are mainly used as the core materials in motors and generators. The m...
Conventional thermomechanical processing of low-carbon steels leads to a characteristic texture domi...
Conventional thermomechanical processing of low-carbon steels leads to a characteristic texture domi...
Electrical steels, in particular Fe-Si alloys, are used as magnetic flux carrier in transformers and...
Electrical steels, in particular Fe-Si alloys, are used as magnetic flux carrier in transformers and...
The magnetic properties of non-oriented electrical steel, widely used in electric machines, are clos...
The core loss and magnetic induction of electrical steels are dependent on the microstructure and te...
This paper presents a classic process-structure-properties approach for optimizing the magnetic prop...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
The optimization of magnetic and physical properties of electrical steel is imperative for many engi...