References |
Gilanyi, A., Morishita, K., Sukegawa, T., Uesaka, M., Miya, K., Magnetic nondestructive evaluation of fatigue damage of ferromagnetic steels for nuclear fusion energy systems (1998) Fusion Engineering and Design, 42 (1-4), pp. 485-491; Marom, E., Muller, R.K., Optical correlation for impending fatigue failure detection (1971) International Journal of Nondestructive Testing, 3 (2), pp. 171-187; Kozubenlo, V.P., Potichenko, V.A., Borodin, Yu.S., Examination of fatigue of metals by the specklecorrelation (1989) Strength of Materials, 21 (7), pp. 953-958; Tupikin, D.A., Thermoelectric method of monitoring fatigue phenomena (2003) Control. Diagnosis, 11, pp. 53-61. , in Russian; Yermishkin, V.A., Murat, D.P., Podbelsky, V.V., Application of a photometric analysis of structural images to assess the resistance to fatigue failure (2008) Automation and Modern Technology, 2, pp. 11-21. , in Russian; Plekhov, O.A., Panteleev, I.A., Leont'Ev, V.A., Peculiarities of heat and generation of signals of acoustic emission during cyclic deformation of Armco-iron (2012) Physical Mesomechanics, 12 (5), pp. 37-43. , in Russian; Vladimirov, A.P., Time-average dynamic speckle interferometry (2014) AIP Conf. Proc., 1600, pp. 237-242; Vladimirov, A.P., Kamantsev, I.S., Ishchenko, A.V., Gorkunov, E.S., Gladkovsky, S.V., The study of the process of nucleation of fatigue cracks by changing the surface topography of the sample and its speckle images (2015) Deformation and Fracture of Materials, 1, pp. 21-26. , in Russian; Vladimirov, A.P., Kamantsev, I.S., Veselova, V.E., Gladkovski, S.V., Using speckle images correlation for real-time inspection of fatigue crack initiation and propagation (2015) Proc. SPIE, 9525, pp. 9525251-9525256; Vladimirov, A.P., Three-dimensional diffuser and three-dimensional speckles (1998) Technical Physics, 43 (12), pp. 1454-1458; Vladimirov, A.P., Dynamic speckle interferometry of microscopic processes in thin biological objects (2015) Radiophysics and Quantum Electronics, 57 (8), pp. 564-576 |