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Surface deformation relief features under multiaxial fatigue

НазваSurface deformation relief features under multiaxial fatigue
Назва англійськоюSurface deformation relief features under multiaxial fatigue
АвториMykhailo Karuskevych (https://orcid.org/0000-0003-1698-0296); Tetiana Maslak (https://orcid.org/0000-0001-8320-8613); Łukasz Pejkowski (http://orcid.org/0000-0002-5388-487X)
ПринадлежністьNational Aviation University, Kyiv, Ukraine Uniwersytet Technologiczno-Przyrodniczy, Bydgoszcz, Poland
Бібліографічний описSurface deformation relief features under multiaxial fatigue / Mykhailo Karuskevych; Tetiana Maslak; Łukasz Pejkowski / Scientific Journal of TNTU. — Tern. : TNTU, 2019. — Vol 96. — No 4. — P. 45–50.
Bibliographic description:Karuskevych M.; Maslak T.; Pejkowski L. (2019) Surface deformation relief features under multiaxial fatigue. Scientific Journal of TNTU (Tern.), vol 96, no 4, pp. 45–50.
DOI: https://doi.org/10.33108/visnyk_tntu2019.04.045
УДК

620.179.1

Ключові слова

aircraft, multiaxial fatigue damage, deformation relief, extrusion/intrusion structure.

The paper presents experimental results directed on the development of new empirical criterion for multiaxial fatigue. The proposed criterion may be applied for materials responding the cyclical loading by the formation of deformation relief, i.e. system of extrusions, intrusions, persistent slip bands. The tests were carried out on aluminum alloy D16AT, the aluminum cladding layer of which is able to react cyclical loading by formation and evolving of relief pattern.

ISSN:2522-4433
Перелік літератури
  1. Kenmeugne B., Soh Fotsing B. D., Anago G. F., Fogue M., Robert J.-L., Kenne J.-P. On the evolution and comparison of multiaxial fatigue criteria. International Journal of Engineering and Technology. 2012.
    Vol. 4. № 1. P. 37–46.
  2. Karuskevich M. V., Radchenko A. I., Zasimchuk E. E. Single-crystal as an indicator of fatigue damage. Fatigue Fract. Engng. Mater. Struct. 1992. Vol. 15. № 12. Р. 1281–1283.
  3. Karuskevich M., Karuskevich O., Maslak T., Schepak S. Extrusion/intrusion structures as quantitative indicators of accumulated fatigue damage. International Journal of Fatigue. ISSN: 0142-1123. 2012.
    Vol. 39. P. 116–121.
  4. Karuskevych M. V., Zhuravel’ I. M., Maslak T. P. Application of Fractal Geometry to the Problems of Prediction of the Residual Service Life of Aircraft Structures. Materials Science. ISSN: 1068-820X
    2012. Vol. 47. Issue. 5. P. 621–626.
  5. Karuskevich M. V., Vogt J. B., Serre I. P., Maslak T. P. Surface relief sensor for Structural Health Monitoring. Fatigue behaviour: from specimen to structure (JIP 2013): 13-the intern. spring meeting, 22-23 May 2013. Paris: 2013, P. 18.
References:
  1. Kenmeugne B., Soh Fotsing B. D., Anago G. F., Fogue M., Robert J.-L., Kenne J.-P. On the evolution and comparison of multiaxial fatigue criteria. International Journal of Engineering and Technology. 2012.
    Vol. 4. № 1. P. 37–46.
  2. Karuskevich M. V., Radchenko A. I., Zasimchuk E. E. Single-crystal as an indicator of fatigue damage. Fatigue Fract. Engng. Mater. Struct. 1992. Vol. 15. № 12. Р. 1281–1283.
  3. Karuskevich M., Karuskevich O., Maslak T., Schepak S. Extrusion/intrusion structures as quantitative indicators of accumulated fatigue damage. International Journal of Fatigue. ISSN: 0142-1123. 2012.
    Vol. 39. P. 116–121.
  4. Karuskevych M. V., Zhuravel’ I. M., Maslak T. P. Application of Fractal Geometry to the Problems of Prediction of the Residual Service Life of Aircraft Structures. Materials Science. ISSN: 1068-820X
    2012. Vol. 47. Issue. 5. P. 621–626.
  5. Karuskevich M. V., Vogt J. B., Serre I. P., Maslak T. P. Surface relief sensor for Structural Health Monitoring. Fatigue behaviour: from specimen to structure (JIP 2013): 13-the intern. spring meeting, 22-23 May 2013. Paris: 2013, P. 18.
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