Microstructural deterioration near the cut line and presence of residual stresses both affect the magnetic properties of cut parts. In this paper, the differences between microstructural deterioration resulting from mechanical and laser cutting as well as the sample size effects observed upon hysteresis will be discussed. It will be shown that the underlying mechanism for changes in magnetic properties due to mechanical cutting is distinct from that of laser cutting
Based on the application demand of laser cutting technology in non-oriented electrical steel, the in...
Improving the performance of electrical steels within the magnetic circuits is essential to save ene...
Electrical steel M470-50A belongs to the most often used materials in electrical machines. Due to th...
Microstructural deterioration near the cut line and presence of residual stresses both affect the ma...
Typical Fe-Si sheets were cut using various techniques, reducing the material to ribbons having thei...
Non-oriented electrical steels have been cut with two different techniques, the laser cutting and th...
The magnetic properties, namely the iron losses and the relative permeability, of SiFe electrical st...
It is well established that laser cutting or mechanical cutting of nonoriented electrical steel caus...
The magnetic properties in electrical steels are strongly dependent on the crystallographic texture ...
The energy efficiency of electric machines can be improved by optimizing their manufacturing process...
Magnetization curve and energy losses have been analyzed in non-oriented (NO) Fe-Si alloys with vari...
Fe-Ni-Si soft magnetic parts, using Ni coated high silicon steel powder, were manufactured by select...
The carbon steel for quenching and tempering has been cut with two different techniques, plasma arc ...
The present work investigates the influence of laser scribing of grain-oriented silicon steel on the...
The paper addresses the investigation of microstructures from AISI 52100 and AISI 4140 in hardened a...
Based on the application demand of laser cutting technology in non-oriented electrical steel, the in...
Improving the performance of electrical steels within the magnetic circuits is essential to save ene...
Electrical steel M470-50A belongs to the most often used materials in electrical machines. Due to th...
Microstructural deterioration near the cut line and presence of residual stresses both affect the ma...
Typical Fe-Si sheets were cut using various techniques, reducing the material to ribbons having thei...
Non-oriented electrical steels have been cut with two different techniques, the laser cutting and th...
The magnetic properties, namely the iron losses and the relative permeability, of SiFe electrical st...
It is well established that laser cutting or mechanical cutting of nonoriented electrical steel caus...
The magnetic properties in electrical steels are strongly dependent on the crystallographic texture ...
The energy efficiency of electric machines can be improved by optimizing their manufacturing process...
Magnetization curve and energy losses have been analyzed in non-oriented (NO) Fe-Si alloys with vari...
Fe-Ni-Si soft magnetic parts, using Ni coated high silicon steel powder, were manufactured by select...
The carbon steel for quenching and tempering has been cut with two different techniques, plasma arc ...
The present work investigates the influence of laser scribing of grain-oriented silicon steel on the...
The paper addresses the investigation of microstructures from AISI 52100 and AISI 4140 in hardened a...
Based on the application demand of laser cutting technology in non-oriented electrical steel, the in...
Improving the performance of electrical steels within the magnetic circuits is essential to save ene...
Electrical steel M470-50A belongs to the most often used materials in electrical machines. Due to th...