Research into mineral hydraulic oil aging. II. Homologically and group composition of the fractions
DOI:
https://doi.org/10.15587/2312-8372.2015.47596Keywords:
oil aging, liquid chromatography, mass spectral analysis, reliability of the hydraulic systemAbstract
One of the indicators that determine the level of safety is the reliability of the aircraft, including the hydraulic system and its units. Reliability is a property of the system (or item) to store the parameters within specified limits under specified conditions for a specified time (service time). It should be a sufficient level of reliability of the hydraulic system of the aircraft and its units, along with others, ensure the quality of the hydraulic oil at the time of filling the hydraulic system, and for a long operation - the degree of preservation of the guaranteed shelf life of oil resources. In this regard, the task is urgent studies of chemical processes that occur in the hydrocarbon composition of oil during prolonged its use, and its impact on the conservation of the resource life of guaranteed oil. Hydrocarbon oil composition determines the values of the specified standards of quality oils, their change reduces the reliability of the hydraulic system of the aircraft.
Features of compression reactions of molecular unsaturated hydrocarbons are established, thereby forming secondary naphthenic structure in the second fraction of model samples of "Hydraunycoil FH-51" oil. It is also found that densification processes of thermal oxidative compression of olefin and naphthenic-aromatic hydrocarbons are intensified with the time of oil exploitation, resulting in formation of high-boiling compounds. The progress of the aforesaid processes leads to the formation of associates between molecules of phenyl-α-naphthylamine additives and aromatic molecules, and unsaturated oxygenates, aromatics and naphthenic-aromatic compounds.
References
- Rukovodstvo po letnoj jekspluatacii AN-148. Available: http://book.megasfera.biz/all-books/non-fiction/tehnika/55343-rukovodstva-po-letnoy-ekspluatacii-an-148-100.html
- 737 Flight Manual. Available: www.airwar.ru
- Aksenov, A. F., Litvinov, A. A. (1972). Himmotologija aviacionnyh special'nyh zhidkostej. Kiev, 136.
- Aksenov, A. F., Litvinov, A. A. (1974). Primenenie aviacionnyh tehnicheskih zhidkostej. M.: Transport, 156.
- Kuznetsova, O., Netreba, Zh. (2015). Research of aging of mineral hydraulic oils. I. Fraction composition. Technology Audit And Production Reserves, 3(4(23)), 64-68. doi:10.15587/2312-8372.2015.43878
- Komarov, A. A. (1976). Nadezhnost' gidravlicheskih ustrojstv samoletov. M.: Mashinostroenie, 224.
- Komarov, A. A. (1997). Nadezhnost' vozdushnyh sudov. K.: KMUGA, 414.
- Kucher, O. H., Vlasenko, P. O. (2010). Kontrol ta analiz stanu nadiinosti system i ahrehativ povitrianykh suden v ekspluatatsii. Naukoiemni tekhnolohii, 1 (5), 15–26.
- Zakupra, V. A., Krygina, P. M., Rybalkin, V. N., Tanasov, I. I. (1988). Uskorennaja zhidkostnaja hromatografija masel v proizvodstve sul'fonatnyh prisadok. Himija i tehnologija topliv i masel, 9, 35–38.
- Poljakova, A. A. (1973). Molekuljarnyj mass-spektral'nyj analiz neftej. M.: Nedra, 184.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2016 Олена Яківна Кузнєцова
This work is licensed under a Creative Commons Attribution 4.0 International License.
The consolidation and conditions for the transfer of copyright (identification of authorship) is carried out in the License Agreement. In particular, the authors reserve the right to the authorship of their manuscript and transfer the first publication of this work to the journal under the terms of the Creative Commons CC BY license. At the same time, they have the right to conclude on their own additional agreements concerning the non-exclusive distribution of the work in the form in which it was published by this journal, but provided that the link to the first publication of the article in this journal is preserved.