Title : 
Rotational core loss features of soft magnetic composite materials under excitation frequencies from 5 Hz to 1000 Hz
         
        
            Author : 
Yong Jian Li ; Qing Xin Yang ; You Hua Wang ; Jian Guo Zhu ; Zhi Wei Lin
         
        
            Author_Institution : 
Province-Minist. Joint Key Lab. of Electromagn. Field & Electr. ApparatusReliability, Hebei Univ. of Technol., Tianjin, China
         
        
        
        
        
            Abstract : 
In this paper, core loss features of soft magnetic composite (SMC) material from 5 Hz to 1000 Hz have been properly measured and discussed under alternating and three dimensional (3-D) rotational magnetizations. The comparison results show that the rotational core losses are greater than that of the alternating core losses at the same magnitude of magnetic induction densities, especially at relatively higher excitation frequencies. The corresponding rotational hysteresis properties, such as magnetic flux density vector loci, magnetic field strength vector loci are also measured and analyzed. Experimental results show that SMC materials have good 3-D features, and great potential for application in rotational magnetic flux machines.
         
        
            Keywords : 
composite materials; electromagnetic induction; magnetic cores; magnetic fields; magnetic flux; magnetic hysteresis; soft magnetic materials; 3D rotational magnetizations; alternating rotational magnetizations; excitation frequencies; frequency 5 Hz to 1000 Hz; magnetic field strength vector loci; magnetic flux density vector loci; magnetic induction densities; rotational core loss; rotational hysteresis; rotational magnetic flux machines; soft magnetic composite materials; Core loss; Magnetic cores; Magnetic flux; Magnetic hysteresis; Magnetic properties; Soft magnetic materials; Superconducting magnets; core loss; excitation coil; rotational magnetic properties; soft magnetic composite (SMC); wide range frequency;
         
        
        
        
            Conference_Titel : 
Applied Superconductivity and Electromagnetic Devices (ASEMD), 2013 IEEE International Conference on
         
        
            Conference_Location : 
Beijing
         
        
            Print_ISBN : 
978-1-4799-0068-8
         
        
        
            DOI : 
10.1109/ASEMD.2013.6780817