COMBINED TECHNOLOGIES FOR INCREASING THE RELIABILITY AND SERVICE LIFE OF AEROSPACE PRODUCTS
- Autores: Smolencev V.P.1, Kondratiev M.V.1, Smolentsev E.V.1
-
Afiliações:
- Voronezh State Technical University
- Edição: Nº 8 (146) (2023)
- Páginas: 27-34
- Seção: Technologies of electromachining and combined processing
- URL: https://journals.rcsi.science/2223-4608/article/view/350438
- DOI: https://doi.org/10.30987/2223-4608-2023-27-34
- ID: 350438
Citar
Texto integral
Resumo
The paper considers a major scientific and applied problem of improving the quality and reliability of scientific products by technological methods and means, forming the basis for the production of competitive products of domestic engineering, primarily in the aerospace industry. The analysis of the defect appearance causes in technology and the decrease in its reli-ability at the stages of product life cycle is carried out. Measures were identified to ensure established reliability while maintaining or increasing the resource with minimizing costs at the stage of commercializing by gradually increasing opera-tional characteristics underway product test. It is shown that combined methods of part process allow creating small-sized multilayer vibration-resistant filters with an increased area of the working area and a total wall thickness that ensures the stability of the product to repeated vibrations, which previously caused undesirable increase in the dimensions and mass of a manufactured product. The possibilities of using combined processing methods with the imposition of electromagnetic fields to improve the operational characteristics of upgraded and aircraft parts under formation, including their elements, in the expansion of mass production of scientific products, particularly developed for their import substitution, are found.The change in the mechanical characteristics of materials under various processing methods has been studied. Specimens test for strength at failure and stretch have shown that the consistent use of highly efficient electrochemical sizing followed by jackhammering (or other) way of hardening allows the increase in the characteristics of products up to 10%, achieving a result not lower than that obtained after tooling with hardening.
Palavras-chave
Sobre autores
Vladislav Smolencev
Voronezh State Technical University
Autor responsável pela correspondência
Email: vsmolen@inbox.ru
ORCID ID: 0009-0000-0327-0354
Dep. “Engineering Technique”, professor, doctor of technical sciences
Mihail Kondratiev
Voronezh State Technical University
Email: 540520@mail.ru
Evgeny Smolentsev
Voronezh State Technical University
Email: smolentsev.rabota@gmail.com
ORCID ID: 0000-0002-8747-588X
Código SPIN: 6366-6108
department “Mechanical Engineering Technology”, professor, doctor of technical sciences
Bibliografia
Мухин В.С. Поверхность: технологические ас-пекты прочности деталей ГТД // М: Наука, 2005. 296 с. Бондарь А.В. Качество и надежность. М: Ма-шиностроение. 2007. 308 с EDN: QMFKWJ Патент 2619410 РФ. Способ плазменного напыления покрытия / В.П. Смоленцев, Е.В. Смоленцев, С.В. Сафонов, М.В. Кондратьев, Е.С. Бобров // Заявлен 20.01.2015. Опуб. 15.05.2017. Бюл. № 14 Смоленцев Е.В. Проектирование электрических и комбинированных методов обработки. // М: Машиностроение. 2005. 511 с. EDN: QNBFMR Патент 2405662 (РФ). Способ нанесения чугун-ного покрытия на алюминиевые сплавы / В.П. Смолен-цев, А.В. Гребенщиков, А.В. Перова, Б.И. Омигов // Бюл. изоб. 2010 № 34. Перова А.В., Смоленцев В.П., Грибанов А.С. Формирование покрытий на алюминиевых сплавах методом электроэрозионного легирования // Авиакосмические технологии «АКТ - 2008», Труды ІХ Всерос. науч.-техн. конф. и школы молодых ученых, аспирантов и студентов, Воронеж: ВГТУ, 2008. С. 48-53. Контроль и управление качеством продукции в гибкоструктурном производстве / Н.М. Бородкин, В.И. Клейменов, А.С. Белякин, В.П. Смоленцев // Воро-неж: Изд-во ВГУ, 2001. 138 с. EDN: PCEIRU Наукоёмкие технологии в машиностроении / А.Г. Суслов, Б.М. Базров, В.Ф. Безъязычный и др.; под ред. А.Г. Суслова. М.: Машиностроение, 2012. 528 с. Справочник технолога-машиностроителя. В 2 т. Т. 2 / Под ред. А.С. Васильева, А.А. Кутина // М: Ин-новационное машиностроение. 2018. 818 с. Смоленцев В.П., Смоленцев Е.В. Состояние и перспективы развития комбинированных методов об-работки // Вестник Рыбинской государственной авиа-ционной технологической академии им. П.А. Соловье-ва. 2017. № 2 (41). С. 5-9.
Arquivos suplementares


