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Название: The design of responsible details of an axial piston hydraulic machine improving
Другие названия: Совершенствование конструкций ответственных деталей аксиально-поршневой гидромашины
Авторы: Nikolenko, Illia
Khomyak, Yurii
Zheglova, Viktoriia
Николенко, Илья Викторович
Хомяк, Юрий Мефодиевич
Жеглова, Виктория Михайловна
Ніколенко, Ілля Вікторович
Хомяк, Юрій Мефодійович
Ключевые слова: axial piston hydraulic machine
Дата публикации: Дек-2019
Издательство: IOP Conference Series: Earth and Environmental Scienc
Библиографическое описание: Nikolenko V., Khomyak Yu. M., Zheglovа V. M., Kibakov O. G., Medvedev S. O. (2019). The design of responsible details of an axial piston hydraulic machine improving. Sustainable and Efficient Use of Energy, Water and Natural Resources : 2nd International Scientific Conference 16–20 September 2019, Irkutsk Region, Russian Federation, 408, 1-12.
The design of responsible details of an axial piston hydraulic machine improving / V. Nikolenko, Yu. M. Khomyak, V. M. Zheglovа, O. G. Kibakov, S. O. Medvedev // Sustainable and Efficient Use of Energy, Water and Natural Resources : 2nd International Scientific Conference 16–20 September 2019. – Irkutsk, 2019. – Vol. 408. – Р. 1-12.
Краткий осмотр (реферат): Methods of improving the designs of the most complex details of the axial piston hydraulic machine (APHM), cylinder block (CB) and face distributor (FD) are proposed in order to increase their strength. The possibility of modernization is demonstrated by the example of APHM 210.25 with a CB inclined. For samples of CB material, bronze CuSn12, tests were performed and fatigue curves are constructed. Based on the results of these tests, the endurance limit of the CB is determined using the theory of similarity fatigue fracture. The calculation of the BC by the finite element method showed that maximum stresses arise in its inter-cylinder wall (jumper). With conserved CB dimensions, a decrease in the maximum stress level by 30% is achieved if the axial cylinders are shifted in the peripheral direction by 2 ... 3 mm. In the proposed design of the CB the calculated stresses became lower than its endurance limit. For FD an increase in the thickness of its peripheral zone was proposed, which also made it possible to reduce stresses by 12%. As a result, the level of acting stresses turned out to be 5.3% lower than the FD endurance limit. The achieved reduction in stress level for the considered details and an increase in their durability is a factor that growing the environmental safety of APHM
URI (Унифицированный идентификатор ресурса): http://dspace.opu.ua/jspui/handle/123456789/10120
Располагается в коллекциях:Матеріали конференцій, семінарів каф. МВМС

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