Load device for testing mobile digital speckle interferometers of deformative displacements
Vestnik Samarskogo universiteta. Estestvennonaučnaâ seriâ, no. 9 (2013), pp. 87-96 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

The problem of working out and creation of verification load device for testing mobile digital speckle-interferometers with the current-wave laser, that provides definition of normal deformation displacements is solved. The analytical expression linking difference in phase of interference fields of strained and initial states of object with an offset value of points of its surface. The results of investigation of strains of plates with different requirements of attaching and loading are given.
Keywords: speckle-interferometer, modeling, load device, testing, deformation displacement.
@article{VSGU_2013_9_a11,
     author = {O. A. Zhuravlyov and S. Ju. Komarov and R. N. Sergeev},
     title = {Load device for testing mobile digital speckle interferometers of deformative displacements},
     journal = {Vestnik Samarskogo universiteta. Estestvennonau\v{c}na\^a seri\^a},
     pages = {87--96},
     year = {2013},
     number = {9},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VSGU_2013_9_a11/}
}
TY  - JOUR
AU  - O. A. Zhuravlyov
AU  - S. Ju. Komarov
AU  - R. N. Sergeev
TI  - Load device for testing mobile digital speckle interferometers of deformative displacements
JO  - Vestnik Samarskogo universiteta. Estestvennonaučnaâ seriâ
PY  - 2013
SP  - 87
EP  - 96
IS  - 9
UR  - http://geodesic.mathdoc.fr/item/VSGU_2013_9_a11/
LA  - ru
ID  - VSGU_2013_9_a11
ER  - 
%0 Journal Article
%A O. A. Zhuravlyov
%A S. Ju. Komarov
%A R. N. Sergeev
%T Load device for testing mobile digital speckle interferometers of deformative displacements
%J Vestnik Samarskogo universiteta. Estestvennonaučnaâ seriâ
%D 2013
%P 87-96
%N 9
%U http://geodesic.mathdoc.fr/item/VSGU_2013_9_a11/
%G ru
%F VSGU_2013_9_a11
O. A. Zhuravlyov; S. Ju. Komarov; R. N. Sergeev. Load device for testing mobile digital speckle interferometers of deformative displacements. Vestnik Samarskogo universiteta. Estestvennonaučnaâ seriâ, no. 9 (2013), pp. 87-96. http://geodesic.mathdoc.fr/item/VSGU_2013_9_a11/

[1] I. T. Belyakov (red.), Tekhnologiya sborki i ispytanii kosmicheskikh apparatov, Mashinostroenie, M., 1990, 552 pp.

[2] A. I. Belousov (red.), Prochnostnaya i vibratsionnaya otrabotka kosmicheskikh apparatov, Izd-vo SNTs RAN, Samara, 2002, 502 pp.

[3] D. I. Kozlov (red.), Konstruirovanie avtomaticheskikh kosmicheskikh apparatov, Mashinostroenie, M., 1996, 448 pp.

[4] Lizin V. T., Proektirovanie tonkostennykh konstruktsii, Mashinostroenie, M., 2003, 448 pp.

[5] Bodin B. V., Panichkin N. G., “Osnovnye polozheniya kontseptsii eksperimentalnoi otrabotki izdelii raketno-kosmicheskoi tekhniki i razvitiya eksperimentalnoi bazy raketno-kosmicheskoi promyshlennosti”, Kosmonavtika i raketostroenie, 2010, no. 3(60), 8–19 | MR

[6] B. B. Gorbatenko i dr., “Opticheskie skhemy i statisticheskie kharakteristiki signala spekl-interferometrov peremeschenii”, Kompyuternaya optika, 33:3 (2009), 268–280

[7] Komarov S. Yu., Pomekhoustoichivyi tsifrovoi spekl-interferometr dlya vibrometrii ob'ektov na osnove metoda usredneniya vo vremeni, Dis. ... kand. tekhn. nauk, SGAU, Samara, 2004, 234 pp.

[8] Volkov I. V., Spekl-golografiya v eksperimentalnoi mekhanike, monografiya, Izd-vo Penz. gos. tekhnol. akadem., Penza, 2010, 199 pp.

[9] Vladimirov A. P., Dinamicheskaya spekl-interferometriya deformiruemykh tel, UrO RAN, Ekaterinburg, 2001, 241 pp.

[10] O. A. Zhuravliov et al., “Th Noiseproof Digital Speckle Pattern Interferometer for Vibration Modes Study to Industrial Demands”, International Conference on Applications for Image based Measurements (ICAIM), DANTEC DYNAMICS, Germany, 2012

[11] A. I. Zhuzhukin i dr., “Mobilnyi tsifrovoi spekl-interferometr s nepreryvnym lazerom dlya kontrolya deformatsionnykh peremeschenii elementov konstruktsii”, Kratkie soobscheniya XXXI Rossiiskoi shkoly po problemam nauki i tekhnologii (Ekaterinburg, 2011), 200–205

[12] Sergeev R. N., Kharchikova Yu. V., “Mobilnyi tsifrovoi spekl-interferometr s nepreryvnym lazerom dlya registratsii deformatsionnykh polei peremeschenii i defektoskopii konstruktsionnykh materialov”, Izvestiya SNTs RAN, 14:4 (2012), 216–220

[13] O. A. Zhuravlev i dr., “Razrabotka avtomatizirovannogo metoda issledovaniya vibratsionnykh kharakteristik energoustanovok”, Kompyuternaya optika, 2001, no. 21, 143–149

[14] Ustanovka golograficheskaya malogabaritnaya UGM-1, Pasport R065.00.000 PS

[15] Zhuzhukin A. I., Ustroistvo dlya issledovaniya form kolebanii, Patent No 71429 G01H 9/00, opubl. 10.03.2008, byul. No 7, Rossiiskaya Federatsiya

[16] Sergeev R. N., “Issledovanie deformatsii plastin s pomoschyu tsifrovogo spekl-interferometra”, VI Samarskaya konkurs-konferentsiya nauchnykh rabot studentov i molodykh issledovatelei po optike i lazernoi fizike, Sb. konkursnykh dokladov, SF FIRAN: Izd-vo “Univers grupp”, Samara, 2008, 31–37 | MR

[17] Volmir A. S., Gibkie plastiny i obolochki, Gostekhteorizdat, M., 1956, 419 pp. | MR