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Erschienen in: Measurement Techniques 9/2019

04.12.2019 | RADIO MEASUREMENTS

Reconstruction of The Structure of the Electrophysical Parameters of Multilayer Dielectric Materials and Coatings from The Frequency Dependence of the Attenuation Coefficient of the Field of a Surface Electromagnetic Wave

verfasst von: A. I. Kaz’min, P. A. Fedyunin

Erschienen in: Measurement Techniques | Ausgabe 9/2019

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Abstract

A new radio-wave method of reconstruction of the relative permittivities and thicknesses of multilayer materials and coatings is proposed. The method is based on the solution of inverse problems in the reconstructionof the structure of the electrophysical parameters of special multilayer materials and coatings from the frequency dependence of the attenuation coefficient of the field of a slow surface electromagnetic wave. The principal differences of the new method from well-known radio wave methods of determining the electrophysical parameters of multilayer materials are demonstrated. In contrast to methods that involve an informative parameter – the complex reflection coefficient – the proposed method yields an increase in the precision and reliability of the reconstruction of the structure of the relative permittivitties and thicknesses. Improved precision and reliability is achieved by taking into account the linear dependence of the attenuation coefficient on frequency as well as reducing the number of fixed measurement frequencies. The results of experimental studies that confirm the linear dependence of the attenuation coefficient of the field of a surface electromagnetic wave on frequency as well as a decrease in the number of fixed measurement frequencies are presented. The method implements a simple measurement procedure, since only the values of the field strength of the surface electromagnetic wave are measured and there is no need for phase measurements in the method. Reconstruction of the permittivity of a three-layer coating consisting of polymethyl methacrylate, F-4D PTFE, and semi-hard rubber with precision acceptable for practical applications is realized with the use of experimental results of measurements in a multifrequency measurement complex in the range 9–10 GHz by means of the new method. Experimental investigations of a multilayer dielectric coating demonstrated the theoretical capabilities gained with measurement of the relative permittivity and thickness of the individual layers with relative error not greater than 8 and 6%, respectively.

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Literatur
1.
Zurück zum Zitat V. F. Borul’ko, O. O. Drobakhin, and I. V. Slavin, Microwave Multifrequency Nondestructive Methods of Measuring the Parameters of Laminar Dielectrics, Izd. DGU, Dnepropetrovsk (1982). V. F. Borul’ko, O. O. Drobakhin, and I. V. Slavin, Microwave Multifrequency Nondestructive Methods of Measuring the Parameters of Laminar Dielectrics, Izd. DGU, Dnepropetrovsk (1982).
2.
Zurück zum Zitat M. I. Finkel’shtein (ed.), Subsurface Radar Location, Radio i Svyaz, Moscow (1994). M. I. Finkel’shtein (ed.), Subsurface Radar Location, Radio i Svyaz, Moscow (1994).
3.
Zurück zum Zitat V. V. Belyaev, O. E. Kir’yanov, and V. A. Pon’kin, Radio Location, Antenna, and Radiophysical Measurements, Nauch. Kniga, Voronezh (2013). V. V. Belyaev, O. E. Kir’yanov, and V. A. Pon’kin, Radio Location, Antenna, and Radiophysical Measurements, Nauch. Kniga, Voronezh (2013).
6.
Zurück zum Zitat P. A. Fedyunin and A. I. Kaz’min, Methods of Radio Wave Inspection of the Parameters of the Protective Coatings of Aircraft, Fizmatgiz, Moscow (2013). P. A. Fedyunin and A. I. Kaz’min, Methods of Radio Wave Inspection of the Parameters of the Protective Coatings of Aircraft, Fizmatgiz, Moscow (2013).
7.
Zurück zum Zitat P. A. Fediunin, A. I. Fesenko, and A. I. Kaz’min, “Theoretical evaluation of the use of electromagnetic surface waves in diagnostics of the state of dielectric and magneto-dielectric coatings,” Radiotekhnika, 2, 30–39 (2009). P. A. Fediunin, A. I. Fesenko, and A. I. Kaz’min, “Theoretical evaluation of the use of electromagnetic surface waves in diagnostics of the state of dielectric and magneto-dielectric coatings,” Radiotekhnika, 2, 30–39 (2009).
8.
Zurück zum Zitat V. V. Klyuev (ed.), Nondestructive Testing and Diagostics: Handbook, Mashinostroenie, Moscow (1995). V. V. Klyuev (ed.), Nondestructive Testing and Diagostics: Handbook, Mashinostroenie, Moscow (1995).
9.
Zurück zum Zitat V. A. Mikhnev, “Reconstruction of distribution profi le of permittivity of sheet materials by means of irregular waves,” Defektoskopiya, No. 4, 56–62 (1996). V. A. Mikhnev, “Reconstruction of distribution profi le of permittivity of sheet materials by means of irregular waves,” Defektoskopiya, No. 4, 56–62 (1996).
11.
Zurück zum Zitat L. B. Felsen and N. Markuvitz, Radiation and Scattering of Waves [Russian translation], Mir, Moscow (1978), Vol. 1. L. B. Felsen and N. Markuvitz, Radiation and Scattering of Waves [Russian translation], Mir, Moscow (1978), Vol. 1.
15.
Zurück zum Zitat L. M. Brekhovskikh, Waves in Laminar Media, Nauka, Moscow (1973). L. M. Brekhovskikh, Waves in Laminar Media, Nauka, Moscow (1973).
16.
Zurück zum Zitat A. I. Kaz’min, V. A. Manin, P. A. Fedyunin, and D. P. Fedyunin, Patent Nо. 2594761 RF, IPC G01N 22/02, G01R 27/26, “UHF device for measurement of electrophysical parameters and the detection of irregularities in dielectric and metal-dielectric coatings on metal,” Izobret. Polezn. Modeli, No. 23 (2016). A. I. Kaz’min, V. A. Manin, P. A. Fedyunin, and D. P. Fedyunin, Patent Nо. 2594761 RF, IPC G01N 22/02, G01R 27/26, “UHF device for measurement of electrophysical parameters and the detection of irregularities in dielectric and metal-dielectric coatings on metal,” Izobret. Polezn. Modeli, No. 23 (2016).
Metadaten
Titel
Reconstruction of The Structure of the Electrophysical Parameters of Multilayer Dielectric Materials and Coatings from The Frequency Dependence of the Attenuation Coefficient of the Field of a Surface Electromagnetic Wave
verfasst von
A. I. Kaz’min
P. A. Fedyunin
Publikationsdatum
04.12.2019
Verlag
Springer US
Erschienen in
Measurement Techniques / Ausgabe 9/2019
Print ISSN: 0543-1972
Elektronische ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-019-01699-7

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