[go: up one dir, main page]

Reinlein et al., 2019 - Google Patents

Impact of different cutting methods on core losses and magnetizing demand of electrical steel sheets

Reinlein et al., 2019

Document ID
912183522347731826
Author
Reinlein M
Regnet M
Szary P
Abele U
Kremser A
Publication year
Publication venue
IKMT 2019-Innovative small Drives and Micro-Motor Systems; 12. ETG/GMM-Symposium

External Links

Snippet

In this paper, the influence of cutting edges on the core losses and magnetizing demand is illustrated. First, measurements are done of the magnetic properties of electrical steel test strips with different widths in the Single Sheet Tester (SST). The cutting techniques water jet …
Continue reading at ieeexplore.ieee.org (other versions)

Similar Documents

Publication Publication Date Title
Weiss et al. Impact of punching parameter variations on magnetic properties of nongrain-oriented electrical steel
Hofmann et al. Magnetic properties of electrical steel sheets in respect of cutting: Micromagnetic analysis and macromagnetic modeling
Elfgen et al. Influences of material degradation due to laser cutting on the operating behavior of PMSM using a continuous local material model
Elfgen et al. Continuous local material model for cut edge effects in soft magnetic materials
Bali et al. Influences of CO 2 laser, FKL laser, and mechanical cutting on the magnetic properties of electrical steel sheets
Reinlein et al. Impact of different cutting methods on core losses and magnetizing demand of electrical steel sheets
JP6562055B2 (en) Processing state evaluation method, processing state evaluation device, and manufacturing method of grain-oriented electrical steel sheet
FI80146C (en) FRAMEWORK FOR MEASUREMENT FOR THE MAINTENANCE OF BUTTERFLY MACHINES WITH A REFINERY.
Schneider et al. Influence of cutting edge on core loss induced through various manufacturing parameters
Regnet et al. Influence of cutting tool wear on core losses and magnetizing demand of electrical steel sheets
Bali et al. The degradation depth of electrical steel sheets due to mechanical and laser cutting
CN104165815B (en) A kind of method of differentiating silicon steel punched chip performance by measuring microhardness
Steentjes et al. On the effect of material processing: Microstructural and magnetic properties of electrical steel sheets
Leuning et al. Loss parameter identification after cutting for different non-oriented electrical steel grades
Manescu et al. The effect of mechanical and electrical discharge cutting technologies on the magnetic properties of non-oriented silicon iron steels
Weiss et al. Loss reduction due to blanking parameter optimization for different non-grain oriented electrical steel grades
Reinlein et al. Semi-analytical and numerical calculation of a great number of induction machines taking into account cutting edges
Gmyrek et al. Investigation of local properties of the Fe-Si alloy subjected to mechanical and laser cutting
Kraemer et al. Analysis of wear behavior of stamping tools in the production of electrical steel sheets
Ziegler et al. Potentials of the Rotary Cutting Process for Electrical Steel Strip
Elfgen et al. Continuous model of magnetic material degradation due to cutting effects in the numerical simulation of electro laminations
Bali et al. Influence of different cutting techniques on the magnetic characteristics of electrical steels determined by a permeameter
Karthaus et al. Continuous local material model for the mechanical stress-dependency of magnetic properties in non-oriented electrical steel
El Youssef et al. The effect of punching on electrical machine
Mierczak et al. Influence of manufacturing processes on magnetic properties of stator cores