Журнал Российского общества по неразрушающему контролю и технической диагностике
The journal of the Russian society for non-destructive testing and technical diagnostic
 
| Русский Русский | English English |
 
Главная Archive
22 | 09 | 2026
2019, 09 September

DOI: 10.14489/td.2019.09.pp.014-019

Budadin O. N., Kutyurin W. Yu., Rykov A. N., Gnusin P. I.
MEASUREMENT OF STRAINS IN CARBON-REINFORCED POLYMER COMPOSITE PRODUCTS AT ELEVATED TEMPERATURES USING FIBER-OPTIC SENSORS
(pp. 14-19)

Abstract. The main task of the contribution was the estimation of the possibility of using Fiber Bragg Gratings as a mean of measuring the deformation in standard carbon fiber samples at elevated temperatures. The article presents the results of experiments on the measurement of deformations in a carbon sample using Fiber Bragg Gratings on an optical fiber. Deformations were measured in the process of stretching the sample at different temperatures (range from 20 to 140 °C). It is shown that FBGs integrated into the sample material give more stable, reproducible readings, unlike to inlay on the outer surface. It has been established that the use of several FBGs with different sensitivity to temperature or deformation (created by mechanically decoupling the sensor from the sample) makes it possible to compensate the effect of temperature when measuring deformations. The quantitative results of measurements are provided.

Keywords: carbon-reinforced polymer composite products, strain, Bragg grating, fiber-optic sensors, temperature compensation.

 

O. N. Budadin, W. Yu. Kutyurin, A. N. Rykov (Central Research Institute for Special Machinery, JSC, Khotkovo, Russia) E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра. , 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.
P. I. Gnusin (Neva Technology LLC, Saint-Petersburg, Russia) E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра.

1. Gnusin P. I., Vasil'ev S. A., Medvedkov O. I. et al. (2009). The use of fiber gratings as sensitive elements in composite materials. Foton-ekspress, 78(6), pp. 90–91. [in Russian language]
2. Davis C., Tejedor S., Grabovac I. et al. (2012). High-Strain Fiber Gratings for Structural Fatigue Testing of Military Aircraft. Photonic Sensors, Vol. 2, (3), pp. 215 – 224.
3. Klyuev V. V., Budadin O. N., Abramova E. V. et al. (2017). Thermal testing of composite structures under conditions of power and shock loading. Moscow: ID «Spektr». [in Russian language]
4. Aniskovich V. A., Budadin O. N., Zaikina N. L. et al. (2018). Measurement of strains using fiber-optic sensors in the process of strength tests of anisogrid structures made of composite materials. Kontrol'. Diagnostika, (7), pp. 44 – 49. [in Russian language] DOI: 10.14489/td.2018.07.pp.044-049
5. Shchevelev A. S., Kikot V. V., Udalov A. Yu. (2016). Information-measuring system for monitoring space products. Raketno-kosmicheskoe priborostroenie I informatsionnye sistemy, Vol. 3, (2), pp. 60 – 65. [in Russian language]
6. Flockhart В G. M. H., Maier R. R. J., Barton J. S. et al. (2004). Quadratic behavior fiber Bragg grating temperature coefficients. Applied Optics, 43(13), pp. 2744 – 2751.
7. Aniskovich V. A., Budadin O. N., Zaikina N. L. et al. (2018). Measurement of strains using fiber-optic sensors in the process of strength tests of anisogrid structures made of composite materials. Kontrol'. Diagnostika, (7), pp. 44 – 49. [in Russian language] DOI: 10.14489/td.2018.07.pp.044-049
8. Mihaylovskiy K. V., Bazanov M. A. (2016). Measurement of residual technological strains in carbon fiber by introducing fiber Bragg gratings into it. Konstruktsii iz kompozitsionnyh materialov, (2), pp. 54 – 58. [in Russian language]
9. Fedotov M. Yu., Goncharov V. A., Shienok A. M. (2014). Polymer composites with integrated electrical sensors. Zavodskaya laboratoriya. Diagnostika materialov, 80(4), pp. 25 – 31. [in Russian language]

 

 

This article  is available in electronic format (PDF).

DOI: 10.14489/td.2019.09.pp.014-019

Copy the article DOI and follow the link https://id-spektr.ru/product/pokupka-elektronnoy-stati-iz-zhurnala-kontrol-diagnostika

Please specify the article DOI in the order comments.

 

 
Search