This paper starts with the description of a purely mathematical model of the saturation curve and the hysteresis loop based on the fundamental similarities between the Langevin function the specified T(x) function and the sigmoid shape. The T(x) function which is composed of tangent hyperbolic and linear functions with its free parameters can describe the regular anhysteretic magnetisation curve. Developed from this function the model describes not only the regular hysteresis loop but also the biased and other minor loops like the ones produced by the interrupted and reversed magnetisation process and the open “loops” created by a piecewise monotonic magnetising field input of diminishing amplitude. The remanent magnetism as the function of the interrupted field co‐ordinates is predicted by the model in this mathematical form for the first time. The model presented here is based on the principle that all processes follow the shape of the T(x) function describing the shape of the major hysteresis loop of the ferromagnetic specimen under investigation. The model is also applicable to hysteretic processes in other fields.
Article navigation
1 December 2001
Review Article|
December 01 2001
A phenomenological mathematical model of hysteresis
J. Takács
J. Takács
Department of Engineering Science, University of Oxford, Oxford, UK
Search for other works by this author on:
Publisher: Emerald Publishing
Online ISSN: 2054-5606
Print ISSN: 0332-1649
© MCB UP Limited
2001
COMPEL (2001) 20 (4): 1002–1015.
Citation
Takács J (2001), "A phenomenological mathematical model of hysteresis". COMPEL, Vol. 20 No. 4 pp. 1002–1015, doi: https://doi.org/10.1108/EUM0000000005771
Download citation file:
New and popular articles
Suggested Reading
Vector hysteresis model based on neural network
COMPEL (September,2003)
Determination of the distribution function of Preisach’s model using centred cycles
COMPEL (December,2000)
Hysteresis loop modeling techniques and hysteresis loss estimation of soft magnetic materials
COMPEL (December,2001)
Fourier analysis of hysteretic distortions
COMPEL (June,2003)
A finite–element model for simulation of carbon dioxide sequestration
Environmental Geotechnics (August,2014)
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
