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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22 | 12 | 2024
2018, 02 February

DOI: 10.14489/td.2018.02.pp.004-015

 

Danilov V. N., Voronkova L. V.
JUST ABOUT THE PHYSICAL BASICS OF ULTRASONIC TRANSDUCER PHASED ARRAY IN SIMPLE TERMS. Part 3 
(pp. 4-15)

Abstract. Part 3. Features the work of normal probes with a rectangular phased array This is the third article in a series of publications on transducers array probe (TAP) in which a simple (almost no formulas) description of the physical basics of operation of such probes are given. It deals with the features of the emitted and recorded signals normal TAP with a rectangular (two-dimensional) array with different size sides. The article shows the influence of the shape of the array on the variation of the amplitude of a signal emitted by the TAP along the acoustic axis, the directivity characteristic, the amplitude of the bottom signal, etc. The material is available for understanding the operators of all skill levels.

Keywords: normal probe , rectangular phased array, focus distance, directivity characteristics, crystal, beam axis, bottom echo, DGS-diagram.

 

V. N. Danilov, L. V. Voronkova (JSC “NPO “TSNIITMASH”, Moscow, Russia) E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра. , Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра.  

 

 

1. Voronkov I. V., Voronkova L. V., Danilov V. N. (2013). Transducers with phased arrays. Moscow: Izdatel'skii dom «Spektr». [in Russian language]
2. Danilov V. N., Voronkova L. V. (2015). Fundamentals of the theory and application of some aspects of the phased array transducers. Moscow: Izdatel'skii dom «Spektr». [in Russian language]
3. Danilov V. N., Voronkova L. V. (2017). Simple explanati on the physical fundamentals of the operation of transducers with phased arrays. Part 1. Features of the formation of the signal of a linear converter with a phased array. Kontrol'. Diagnostika, (6), pp. 26-33. doi: 10.14489/td.2017. 06.pp.026-033 [in Russian language]
4. Danilov V. N., Voronkova L. V. (2017). Simple explanati on the physical fundamentals of the operation of transducers with phased arrays. Part 2. Peculiarities of the acoustic delay influence on the formation of the signal of a direct and inclined transducer with a linear phased array. Kontrol'. Diagnostika, (8), pp. 26-33. doi: 10.14489/ td.2017.08.pp.026-033 [in Russian language]
5. Danilov V. N. (2011). The study of the model of the transducer with two-dimensional phased array in radiation mode. Defektoskopiia, (7), pp. 29-48. [in Russian language]
6. Klyuev V.V. (Ed.), Ermolov I. N., Lange Iu. V. (2006). Nondestructive testing. Handbook. In 8 volumes. Vol. 3. Ultrasonic inspection. 2nd Ed. (revised and complemented). Moscow: Mashinostroenie. [in Russian language]
7. Ermolov I. N., Vopilkin A. Kh., Badalian V. G. (2000). Calculations in ultrasonic testing: quick reference. Moscow: NPTs NK «EKhO». [in Russian language]
8. Danilov V. N. (2014). Calculation of a bottom echo for model of the straight beam transducer with the rectangular phased array. Kontrol'. Diagnostika, (7), pp. 39-51. doi: 10.14489/td.2014.07.pp.039-051 [in Russian language]
9. Danilov V. N., Voronkov I. V. (2013). Modelling back-wall echo of a normal linear probe with the phased array. Kontrol'. Diagnostika, (7), pp. 27-134 [in Russian language]
10. Danilov V. N., Ermolov I. N. (2000). To the question of calculating the DGS-diagrams. Defektoskopiia, (7), pp. 35-43. [in Russian language]
11. Danilov V. N. (2013). Simulation of the DGS-diagram of an angle transducer with a rectangular phased array. Kontrol'. Diagnostika, (12), pp. 9-16. [in Russian language]
12. Danilov V. N. (2007). To the question of calculating the echo from the flat-bottomed hole for direct transducer. Defektoskopiia, (11), pp. 23-33. [in Russian language].

 

 

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