Search Results - "Baghel, A.P.S."
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Hysteresis modelling of GO laminations for arbitrary in-plane directions taking into account the dynamics of orthogonal domain walls
Published in Journal of magnetism and magnetic materials (15-11-2016)“…The anisotropy of magnetic properties in grain-oriented steels is related to their microstructure. It results from the anisotropy of the single crystal…”
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An alternative approach to model mechanical stress effects on magnetic hysteresis in electrical steels using complex permeability
Published in Computational materials science (01-08-2019)“…•A complex permeability based magneto-elastic model for magnetic material is proposed.•A frequency dependent tanh function derived from Maxwell’s equations is…”
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A Frequency-Dependent Scalar Magneto-Elastic Hysteresis Model Derived Using Multi-Scale and Jiles-Atherton Approaches
Published in IEEE transactions on magnetics (01-03-2020)“…The effects of mechanical stress on static and dynamic (frequency-dependence) magnetic behaviors of soft magnetic materials have to be modeled. A scalar static…”
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A hybrid product-multi-scale model for magneto-elastic behavior of soft magnetic materials
Published in Physica. B, Condensed matter (15-10-2019)“…Magnetic properties of electrical steels exhibit a strong sensitivity to mechanical stress; this phenomenon is known as magneto-elastic coupling. Mechanical…”
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Comprehensive modelling of dynamic hysteresis loops in the rolling and transverse directions for transformer laminations
Published in Physica. B, Condensed matter (01-04-2015)“…Magnetic properties of grain-oriented materials are affected by hysteresis, anisotropy and dynamic effects. The attempts to describe dynamic hysteresis loops…”
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Modeling of dynamic hysteresis for grain-oriented laminations using a viscosity-based modified dynamic Jiles–Atherton model
Published in Physica. B, Condensed matter (01-09-2014)“…Grain-oriented (GO) materials exhibit arbitrary frequency-loss behaviors and anomalies in dynamic hysteresis loop shapes. Significant attempts have been made…”
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