A complex approach to the selection of film-forming anti-corrosion compounds for the protection aviation structures against corrosion
Abstract
Keywords
Full Text:
PDF (Українська)References
30690975/SDS_GEN_US/EN. Safety data sheet. Ardrox AV8. [Effective from 2023-01-05]. Official edition: BASF Group, 2023. 11 p. Available at: https://cdn11.bigcommerce.com/s-jifykode7m/product_images/uploaded_images/msds/SGP98072.pdf. (accessed 12.6.2024).
30690979/SDS_GEN_US/EN. Safety data sheet. Ardrox AV25. [Effective from 2012-11-22]. Official edition: BASF Group, 2015. 13 p. Available at: https://p11.secure.hostingprod.com/@site.skygeek. com/ssl/MSDS/chemetall-ardrox-av-25-corrosion-inhibiting-compound-5-gallon%20(1).pdf. (accessed 12.6.2024).
30690983/SDS_GEN_GB/EN. Safety data sheet. Ardrox AV30. [Effective from 2020-04-04]. Official edition: BASF Group, 2020. 17 p. Available at: https://www.fds.supavia.eu/ARDROX%20AV% 2030%20FDS%20ENG.PDF.
Jaya, A., Tiong, U. H., Reza, M., Cees, B., & Graham, C. The influence of corrosion treatments on fatigue of aircraft structural joints. 27th International Congress of the Aeronautical Sciences, Nice, France. 2010. 8 p. Available at: https://www.icas.org/ICAS_ARCHIVE/ICAS2010/PAPERS/354.PDF. (accessed 12.6.2024).
Schijve, J., Jacobs, F. A. & Tromp, P. J. Effect on anticorrosion penetrant on the fatigue life in flight simulation tests of various riveted joints: National Aerospace Laboratory report TR 77103/1977. Amsterdam: NLR, 1977. Available at: http://resolver.tudelft.nl/uuid:3936dd4e-7e77-4f76-9259-956359492bbc. (accessed 12.6.2024).
Gavrylov, I., Karuskevich, M., Ignatovich, S., Yutskevych, S., & Maslak, T. Influence of corrosion preventive compounds on the friction force in aircraft lap joints. Fatigue & Fracture of Engineering Materials & Structures, 2021, vol. 45, iss. 3, pp. 938–941. DOI: 10.1111/ffe.13621.
Karuskevich, M., Gavrylov, I., Ignatovich, S., Yutskevych, S., & Maslak, T. Prystrii dlia vyznachennia koefitsiientiv tertia spokoiu v aviatsiinykh zaklepkovykh ziednanniakh [Device for determining the coefficients of resting friction in aircraft riveted joints]. Patent UA, № 155484, 2024. Available at: https://sis.nipo.gov.ua/uk/search/detail/1787270/#!. (accessed 12.6.2024).
Jaya, A., Tiong, U. H., Mohammed, R., Bil, C., & Clark, G. Corrosion treatments and the fatigue of aerospace structural joints. Procedia Engineering, 2010, vol. 2. iss. 1, pp. 1523–1529. DOI: 10.1016/j.proeng.2010.03.164.
Rebinder, P. A. Poverhnostnye javlenija v disperstnyh sistemah. Fiziko-himicheskaja mehanika. Izbrannye trudy [Surface phenomena in dispersed systems. Physicochemical mechanics. Selected works]. Moscow, Nauka Publ., 1978. 384 p.
Karpenko, G. V. Vlijanie aktivnyh zhidkih sred na vynoslivost' stali [The impact of active liquid media on the endurance of steel]. Kyiv, Publ. АS USSR, 1955. 207 p.
Nikol's, H., & Rostoker, U. Hrupkoe razrushenie stali v prisutstvii organicheskih zhidkostej. Chuvstvitel'nost' mehanicheskih svojstv k dejstviju sredy [Brittle fracture of steel in the presence of organic liquids. Sensitivity of mechanical properties to environmental exposure]. Moscow, Mir Publ., 1969, pp. 121-128.
Pejkowski, Ł., Karuskevich, M., & Maslak, T. Extrusion/intrusion structure as a fatigue indicator for uniaxial and multiaxial loading. Fatigue and Fracture of Engineering Materials and Structures, 2019, vol. 42, iss. 10, pp. 2315-2324. DOI: 10.1111/ffe.13066.
Lihtman, V. I. Fiziko-himicheskie javlenija pri deformacii metallov [Physical-chemical phenomena during the deformation of metals]. Uspehi fizicheskih nauk – Advances in Physical Sciences, 1954, vol. 54 (4). pp. 587-618. DOI: 10.3367/UFNr.0054.195412d.0587.
Schijve, J., Campoli, G., & Monaco., A. Fatigue of structures and secondary bending in structural elements. International Journal of Fatigue, 2009, vol. 31, pp. 1111–1123. DOI: 10.1016/j.ijfatigue.2009.01.009.
Freed, Y., Machnes, L. S., & Magidish, O. Analytical and Numerical Investigation of the Effect of Secondary Bending in Hard-Point Joints. 30th Symposium of the International Committee on Aeronautical Fatigue: ICAF 2019 – Structural Integrity in the Age of Additive Manufacturing, Krakow, Poland, 2019, pp. 159-175. DOI: 10.1007/978-3-030-21503-3_13.
DOI: https://doi.org/10.32620/aktt.2024.4sup2.05