scholarly journals Major B-H Loop Measurement of Toroidal Shape Magnetic Powder Core

2014 ◽  
Vol 24 (3) ◽  
pp. 76-80
Author(s):  
Derac Son
2007 ◽  
Author(s):  
Katsunori Soejima ◽  
Tsuyoshi Higuchi ◽  
Takashi Abe ◽  
Tadashi Hirayama

2011 ◽  
Vol 298 ◽  
pp. 173-178 ◽  
Author(s):  
Qing Da Li ◽  
X.W. Dong ◽  
T.X. Liu ◽  
Jun Hua You ◽  
Fa Zeng Lian

The Fe-Si-Al soft magnetic composites were produced by cold pressing of water-atomized Fe-Si-Al powder using organic binder. The effect of shaping pressure, annealing temperature, magnetic annealing and dielectric content on properties of Fe-Si-Al soft magnetic composites was investigated. The results showed that increasing shaping pressure increases density and radial crushing strength of Fe-Si-Al soft magnetic cores, and decreases coercivity and total loss. Increasing annealing temperature can increase effective permeability and decrease total loss owing to decreasing hysteresis loss, and over-annealing (>660°C) can deteriorate magnetic properties. The magnetic annealing can decrease total loss of Fe-Si-Al magnetic powder core. Increasing dielectric content can reduce the eddy current loss of Fe-Si-Al magnetic powder core and decrease the real part of permeability. Fe-Si-Al magnetic powder core with shaping pressure of 1800 MPa, annealing temperature of 660 °C and dielelctric content of 0.7% presented the optimum magnetic properties with an effective permeability of 127, a total loss of 78mW/cm3 and a radial crushing strength of 18MPa.


2016 ◽  
Vol 63 (7) ◽  
pp. 643-646 ◽  
Author(s):  
Hijiri TSURUTA ◽  
Tomoyuki UENO ◽  
Kouji YAMADA

AIP Advances ◽  
2017 ◽  
Vol 7 (5) ◽  
pp. 056678 ◽  
Author(s):  
Shigeru Konda ◽  
Yukihiro Yoshida ◽  
Osamu Ichinokura

2019 ◽  
Vol 19 (8) ◽  
pp. 924-927 ◽  
Author(s):  
Zhen Wang ◽  
Xiansong Liu ◽  
Xucai Kan ◽  
Ruiwei Zhu ◽  
Wei Yang ◽  
...  

2006 ◽  
Vol 99 (8) ◽  
pp. 08F103 ◽  
Author(s):  
Zafer Turgut ◽  
Thomas Attenweiler ◽  
Meiqing Huang ◽  
John C. Horwath ◽  
Richard T. Fingers

Author(s):  
S. P. Bersenev ◽  
E. M. Slobtsova

Achievements in the area of automated ultrasonic control of quality of rails, solid-rolled wheels and tyres, wheels magnetic powder crack detection, carried out at JSC EVRAZ NTMK. The 100% nondestructive control is accomplished by automated control in series at two ultrasonic facilities RWI-01 and four facilities УМКК-1 of magnetic powder control, installed into the exit control line in the wheel-tyre shop. Diagram of location, converters displacement and control operations in the process of control at the facility RWI-01 presented, as well as the structural diagram of the facility УМКК-1. The automated ultrasonic control of rough tyres is made in the tyres control line of the wheel-tyre shop at the facility УКБ-1Д. The facility enables to control internal defects of tyres in radial, axis and circular directions of radiation. Possibilities of the facility УКБ-1Д software were shown. Nondestructive control of railway rails is made at two facilities, comprising the automated control line of the rail and structural shop. The УКР-64Э facility of automated ultrasonic rails control is intended to reveal defects in the area of head, web and middle part of rail foot by pulse echo-method with a immersion acoustic contact. The diagram of rail P65 at the facility УКР-64Э control presented. To reveal defects of the macrostructure in the area of rail head and web by mirror-shadow method, an ultrasonic noncontact electromagnetic-acoustic facility is used. It was noted, that implementation of the 100% nondestructive control into the technology of rolled stuff production enabled to increase the quality of products supplied to customers and to increase their competiveness.


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