DocumentCode :
1155596
Title :
Simulation of surface heating effects and effective permeabilities using a Jiles-Atherton model
Author :
Lloyd, George ; Wang, Ming L. ; Singh, Varsha ; Indochochea, Ernesto
Author_Institution :
Dept. of Civil & Mater. Eng., Univ. of Illinois, Chicago, IL, USA
Volume :
40
Issue :
6
fYear :
2004
Firstpage :
3463
Lastpage :
3466
Abstract :
The hysteretic, nonlinear character of ferromagnetic steels, coupled with pronounced stress and temperature sensitivities, make detailed magnetoelastic sensor design and calibration very difficult at present, particularly under possible high repetition rates during disaster scenarios, and in large cables (δ/R<1,Bi<0.1, where δ is the magnetic skin depth and Bi is the thermal Biot number) with inhomogeneous stress and thermal fields. The desire also exists to associate bulk magnetic material parameters with microstructural features to enable generally useful correlations to be developed. The Jiles-Atherton class of thermodynamic models potentially fit these requirements, and we explore their use for investigating field thermomagnetic effects in A36/1018 steels. Model development is supported by microstructural characterization of the anhysteretic via magnetic force microscopy and tunneling electron microscope imaging.
Keywords :
crystal microstructure; differential equations; magnetic force microscopy; magnetic hysteresis; permeability; steel; thermomagnetic effects; transmission electron microscopy; A36-1018 steel; Jiles-Atherton model; bulk magnetic material parameters; effective permeabilities; field thermomagnetic effects; magnetic force microscopy; magnetoelasticity; microstructural characterization; microstructural features; surface heating effects; thermodynamic models; tunneling electron microscope imaging; tunneling electron microscopy; Biosensors; Couplings; Electron microscopy; Heating; Magnetic force microscopy; Magnetic hysteresis; Permeability; Steel; Temperature sensors; Thermal stresses; 65; Dislocations; MFM; TEM; magnetic force microscopy; magnetoelasticity; tunneling electron microscopy;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2004.832274
Filename :
1353451
Link To Document :
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