Title :
Improved Transformer Noise Behavior by Optimized Laser Domain Refinement at ThyssenKrupp Electrical Steel
Author :
Lahn, Ludger ; Wang, Chaoyong ; Allwardt, Andreas ; Belgrand, Thierry ; Blaszkowski, Jonathan
Author_Institution :
ThyssenKrupp Electr. Steel, Gelsenkirchen, Germany
fDate :
4/1/2012 12:00:00 AM
Abstract :
The present paper shows the impact of different laser domain refinement variants for grain oriented electrical steel on the noise of three-phase transformer cores. The impact is evaluated as well by calculated noise on basis of magnetostriction measurements of the electrical steel sheets as by measured noise of transformer core models built from these GO electrical steel sheets. The industrially relevant process of laser domain refinement is reviewed with respect to the influence of different process parameters on the later materials and transformer performance. Contrary to the usually admitted statement, it is demonstrated, that (a) the use of optimum laser domain refinement conditions will not increase the noise level of the transformer cores compared to the non DR status and (b) the use of magnetostriction data for judging about later transformer noise is resulting in only rough indications, but not the final behavior of the real cores.
Keywords :
laser materials processing; magnetic noise; magnetostriction; optimisation; steel; transformer cores; electrical steel sheets; grain oriented electrical steel; improved transformer noise behavior; industrially relevant processing; magnetostriction data; magnetostriction measurements; noise level; optimized laser domain refinement; optimum laser domain refinement conditions; process parameters; three-phase transformer cores; thyssenkrupp electrical steel; transformer core models; transformer performance; Laser noise; Magnetostriction; Noise measurement; Steel; Transformer cores; Grain oriented electrical steel; laser domain refinement; magnetostriction; transformer noise;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2011.2173924