DEFORMATION RELIEF AND DESTRUCTION OF SURFACE AS AN ALUMINUM ALLOY CLAD LAYER FATIGUE DAMAGE INDICATOR
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Ignatovich, S. R., Karuskevich, M. V. Monitoring vyrabotki ustalostnogo resursa letatel'nykh apparatov [Aircraft lifetime exhaustion monitoring]. Kyiv, National aviation university Publ., 2014. 260 p.
Ignatovich, S. R., Menou, A., Karuskevich, M. V., Maruschak, P. O. Fatigue damage and sensor development for aircraft structural health monitoring. Theoretical and applied fracture mechanics, 2013, no. 65, pp. 23-27.
Petrasek, M., Ignatovich, S., Karuskevich, M., Maslak, T. Surface of metal as an indicator of fatigue damage. Advances in Military Technology, 2013, vol. 8, no. 2, pp. 83-91.
Ignatovich, S. R., Yutskevich, S. S. Kontrol' ustalosti splava D16AT po kharakteristikam deformatsionnogo rel'efa poverkhnosti [Fatigue control of the alloy D16AT according to the characteristics of the surface deformation relief]. Fiziko-him. mexanika materialov, 2011, vol. 47, no. 5, pp. 60-65.
Ignatovich, S. R., Karuskevich, M. V., Yutskevych, S. S. Evolution of the deformation relief on the surface of a clad aluminum alloy at random cyclic loads. Int. J. Fatigue, 2017, vol. 101, pp. 45-50.
Ignatovich, S. R., Karuskevich, M. V., Yutskevich, S. S. Model' destruktsii plakiruyushchego sloya alyuminievykh splavov pri ustalosti [The model of an aluminium alloy clad layer destruction during fatigue]. Problemi tertya ta znoshuvannya, 2018, no.4 (81), pp. 54-61. DOI: 10.18372/0370-2197.4(81).13328
Lovejoy, S. Area-perimeter relation for rain and cloud areas. Science, 1982, vol. 216, pp. 185-187.
DOI: https://doi.org/10.32620/aktt.2019.8.15