The Impact Of The Nonlinear Effects On Thermally Stimulated Depolarization Currents In Ion Dielectrics
Kalytka V.A. Bashirov A.V. Tatkeyeva G.G. Sidorina Y.A. Ospanov B.S. Ten T.L.
2021International University of Sarajevo
Periodicals of Engineering and Natural Sciences
2021#9Issue 3195 - 217 pp.
In this paper, the methods described the calculation of thermally stimulated depolarization currents in materials of the HBC class. In the identification of nonlinear processes of thermally stimulated depolarization, at this stage of the research, as defining criteria the authors consider the calculation of the dielectric initial polarization in the infinite approximation of perturbation theory (at the fundamental frequency fields) and calculation of kinetic coefficients in functions of the polarizing field intensity. Generalized nonlinear expressions for the complex dielectric constant and polarization are formulated, which are performed at the fundamental frequency of the alternating polarizing field. The generalized equations that are nonlinear by the field for kinetic coefficients of the kinetic equation are formulated. The obtained theoretical results are of current interest from the perspective of further development of analytical and computer methods of research and prediction of HBC properties as perspective nonlinear materials for a number of branches of modern industry.
Kinetic theory , Nonlinear polarization effect , Polarization of dielectric , Thermally stimulated depolarization
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Department of Energy Systems, Karaganda State Technical University, Karaganda, Kazakhstan
Laboratory of Innovative Scientific and Educational Technologies, Research Institute of Economic and Legal Studies, Karaganda University of Kazpotrebsoyuz (KUK), Karaganda, Kazakhstan
Department of Electric Power Supply, Saken Seifullin Kazakh Agricultural Technical University, Karaganda, Kazakhstan
Department of Nanotechnology and Metallurgy, Karaganda State Technical University, Karaganda, Kazakhstan
Department of Automation of Manufacturing Processes, Karaganda State Technical University, Karaganda, Kazakhstan
Department of Digital Engineering and IT Analytics, Karaganda University of Kazpotrebsoyuz (KUK), Karaganda, Kazakhstan
Department of Energy Systems
Laboratory of Innovative Scientific and Educational Technologies
Department of Electric Power Supply
Department of Nanotechnology and Metallurgy
Department of Automation of Manufacturing Processes
Department of Digital Engineering and IT Analytics
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