Title :
Magnetomechanical Vibrations of Three-Phase Three-Leg Transformer With Different Amorphous-Cored Structures
Author :
Yeong-Hwa Chang ; Chang-Hung Hsu ; Huei-Lung Chu ; Ching-Pei Tseng
Author_Institution :
Dept. of Electr. Eng., Chang Gung Univ., Taoyuan, Taiwan
Abstract :
This paper mainly studies the magnetomechanical effects of three-phase three-leg transformers with amorphous cores in different bending structures, where the magnetic properties of audible noises related to core vibrations are discussed. In general, a Fe-based amorphous SA1 core exhibits higher audible noise and magnetostriction than that of a silicon steel core. Audible noises and core vibrations of amorphous cores can be more easily induced especially after the lamination process. Experiments performed in this study use different core bending structures to determine torsion stresses between core leg and yoke. Three different core structures, including C-core with rectangular corner, C-core with arc corner, and torodial core, are investigated. Experimental results indicate that amorphous-cored transformer with a rectangular core has higher vibration intensities. This is likely due to the condensed distribution of magnetic flux lines in core corners that may induce higher magnetic inductions associated with higher magnetostriction. The effects of core vibrations and audible noises on amorphous-cored transformers due to magnetostriction variations are addressed. It is concluded that a three-phase three-leg amorphous transformer with a toroidal core should have lower core vibrations and audible noises than the counterparts of conventional C-core transformers.
Keywords :
amorphous magnetic materials; bending; laminations; magnetic flux; magnetostriction; noise; torsion; transformer cores; vibrations; C-core transformers; Fe-based amorphous SA1 core; amorphous-cored structures; amorphous-cored transformer; arc corner; audible noises; core bending structures; core corners; core leg; core vibrations; lamination process; magnetic flux lines; magnetic inductions; magnetic properties; magnetomechanical effects; magnetomechanical vibrations; magnetostriction variations; rectangular corner; silicon steel core; three-phase three-leg amorphous transformer; torodial core; torsion stresses; vibration intensities; yoke; Acoustic noise; Magnetostriction; Toroidal magnetic fields; Transformer cores; Vibrations; Amorphous core; audible noise; transformer; vibration;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2011.2146242