Журнал Российского общества по неразрушающему контролю и технической диагностике
The journal of the Russian society for non-destructive testing and technical diagnostic
 
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18 | 11 | 2024
2015, 10 October

DOI: 10.14489/td.2015.010.pp.043-052

 

Komarov V.A.
THE FORMATION OF THE SHEAR WAVES FIELD GENERATED BY ELECTROMAGNETIC MEANDER-LINE EMITTERS
(pp. 43-52)

Abstract. It is presented the calculation of the projections of elastic displacements generated in a halfspace of a solid conducting body owing to the electromagnetic transformation mechanisms (EMAT). The derived formulas are used to model the shear acoustic field of the attachable meanderline emitters (grates). It is shown that the main peak of the acoustic field is caused by the summation of the oscillations in the same phase generated with all sections of the grate. The magnitude of the peak increases with the number of the grate conductors due to the additional number of elastic oscillations which are summed in the phase. The magnitude of the coefficients adjusting the current density in the sections of the grate is determined by a number of the conductors in it, but it does not depend on its step. The oscillations propagation angle with the corrected field does not depend on the parity of a number of the grate conductors. The differences in the oscillation directions in all the areas of emission are eliminated with compensation of the additional peaks (in the far field zone). The emission is directed under the same angle.

Keywords: EMA transformation, meanderline emitters, modeling of the shear acoustic field.

 

B. A. Komarov
Physical-Technical Institute of the Ural Branch of the Russian Academy of Sciences, Izhevsk, Russia. E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра.  

 

 

1. Moles M. (2004). Introduction to phased array ultrasonic technology applications. R/D Tech Guideline. Olympus NDT.
2. Budenkov G. A., Kviatkovskii V. N., Petrov Iu. V., Sidel'nikova N. V. (1971). Study of the directivity diagrams of the electromagnetic-acoustic emitter. Defektoskopiia, (4), pp. 87-91.
3. Budenkov G. A., Golovacheva Z. L., Petrov Iu. V. (1973). Oblique electromagnetic acoustic transducers. Ultrasonic inspection of welded structures: proceedings of the scientific and technical conference. Leningrad, pp. 127-131.
4. Komarov V. A. (1986). Quasistationary electromagnetic-acoustic transformation in metals. Sverdlovsk: UNTs AN SSSR.
5. Muzhitskii V. F., Remezov V. B., Komarov V. A. (2006). Basics of EMAT thickness gauging using probes. I. Direct EMA transducers in a normal polarizing field. Defektoskopiia. (10), pp. 40-58.
6. Komarov V. A., Muzhitskii V. F. (1997). The theory of physical fields. Part 1. Electromagnetic field. Izhevsk: RIO UDGU.
7. Komarov V. A. (2013). Modeling manifestations of electromagnetic-acoustic transformation in metals. Part 2. Kontrol'. Diagnostika, (12), pp. 17-24.
8. Sobolev V. S., Shkarlet Iu. M. (1967). Overhead and screen sensors. Novosibirsk: Nauka.
9. Komarov V. A. (2013). Modeling manifestations of electromagnetic-acoustic transformation in metals. Part I. The transformation of the quasistationary inhomogeneous electromagnetic field in elastic shear vibrations. Kontrol'. Diagnostika. (3), pp. 17-25.
10. Komarov V. A. (2014). The dependence of the directional characteristic of plated transducer on its geometry and frequency of the emission. Part 3. Kontrol'. Diagnostika. (9), pp. 25-32. doi: 10.14489/td.2014.09.pp.017-024.

 

 

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