Classification and selection of the test method for the reliability of the power supply system
Peculiarities of research into the problem of reliability of automotive power supply systems. The main characteristic of the power supply system testing methodology. Consideration of the main classification of failures of automotive electrical equipment.
Рубрика | Физика и энергетика |
Вид | статья |
Язык | английский |
Дата добавления | 08.12.2024 |
Размер файла | 46,9 K |
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Jizzakh Polytechnic Institute
Classification and selection of the test method for the reliability of the power supply system
Adilov O.K. Professor of the Department of "Vehicle Engineering"
Musurmonov U.Kh. Second-year master's student in the specialty "Automobiles and automotive industry"
Jizzakh, Uzbekistan
Abstract
The article considers the problem of reliability of electrical supply systems for cars. The method of testing the power supply system is given. The classification of failures of electrical equipment of the car is considered
Keywords: car, ecology, environmental safety, indicators, quantity.
Tests of cars aimed at determining the resource indicators of their aggregates, systems and the car as a whole are divided into several groups. The first group consists of tests related to the creation and refinement of a new design of elements, the car system as a whole, as well as the modernization of production cars or its elements [1,2]. The second group should include control tests, the purpose of which is to verify the compliance of serial products with the requirements of technical specifications. The third group consists of research tests covering all areas of experimental study of the properties of elements and systems, as well as factors affecting the reliability of cars or its individual units, systems and parts. The fourth group of tests can be attributed to the normal operation of cars by the consumer, which is essentially an important source of information about the reliability of the elements as a whole[3,4,5].
For clarity, shows one of the possible variants of the classification of tests aimed at determining reliability indicators, i.e. resource tests. Operational tests include such tests of the car (elements), which are carried out directly during its operation (GOST 16504-81). Such tests can have three types:
experienced, carried out by qualified personnel, with regular monitoring by specialists, automotive power supply system
controlled, carried out by systematic monitoring of the technical condition of each element or system of the car by specially trained personnel for this purpose,
ordinary, conducted by the consumer with possible deviations from the rules for the use and maintenance of the car or its elements.
Tests can be normal and short. Each group of life tests has its own set of classification features. Tests carried out on bench and landfill conditions are most often accelerated and when they are carried out, the necessary information about the reliability of the elements is obtained in a shorter time than during normal tests[6].
To estimate the rate of accelerated tests, the acceleration coefficient is usually used according to the operating time
Le, Li - operating and testing time, respectively,
Те, Ті - calendar duration of operation, respectively, during operation and testing.
The results obtained by accelerated tests are conditional and do not always reveal the essence of the process under study, it allows you to get only an approximate estimate of the essence of the process under study. However, the value of accelerated tests is inexorable, since such tests in a short time allow you to choose the right strategy, for example, in improving the reliability of car components.
An objective assessment of the pace and nature of changes in the technical condition of elements and systems is possible only during operational tests, and primarily in the operational reliability of cars[7]. Systematic study of this indicator creates prospects and opportunities for systematic improvement of the quality of cars by eliminating various defects found during operational tests, structural and technological miscalculations when creating cars.
With the help of studies to assess the operational reliability of car components, the following main results can be obtained [8]:
determination of numerical values of operational reliability indicators,
classification of failures of elements and systems of cars,
identification of typical failures of elements and identification of possible causes of their occurrence,
determination of parts critical from the point of view of reliability, i.e. limiting reliability,
determination of parameters and types of patterns of resource allocation of elements,
identification of the relationship of operational reliability with the technical and economic performance of the car.
Therefore, operational testing, despite the duration of the conduct, is the only possible measure that allows you to obtain objective information about the process of natural quality change not only of elements and systems, but also of the car as a whole, to evaluate the efficiency of using the car[9].
Based on the analysis of data on the operational reliability of cars, it was obtained [10,12] that each model has a limited number of parts under certain operating conditions with a fixed operating time, which fail more often than others. The amount of expenses for such parts determines the main material and labor costs for maintaining the car in technically sound condition. Their presence determines the degree of reliability of the engine or the car as a whole.
Determining the reliability indicators of the elements and systems of the car with the help of operational tests is a long and time-consuming process that requires significant material costs. At the same time, the most reliable information about the reliability indicators of cars can be achieved only in tests conducted under operational conditions and subsequently develop radical measures to improve the quality of elements and systems of the car.
Список литературы
1. Эрназаров А.А. Необходимость применения систем автоматизированного проектирования при обучении студентов инженерных специальностей высших учебных заведений // Вестник науки. 2019. №11 (20);
2. Ernazarov A. A. The relevance of the use of computer-aided design systems for teaching students of higher educational institutions //Scientific and Technical Journal of Namangan Institute of Engineering and Technology. - 2020. - Т. 2. - №. 8. - С. 348-353;
3. Эрназаров А.А., Хаккулов К.Б. Безопасности дорожного движения на дорогах республики Узбекистан // Вестник науки. 2021. №1 (34);
4. Эрназаров А.А. Необходимость синхронизации перекрестков на автомагистрали // Вестник науки. 2022. №3 (48);
5. Ernazarov A. The calculation of the amount of emissions of harmful substances by cars at urban intersections //Acta of Turin Polytechnic University in Tashkent. - 2022. - Т. 12. - №. 1. - С. 51-54;
6. Эрназаров А. А. Закономерность образования задержек автотранспортных средств перед перекрестками //Транспорт: наука, техника, управление. Научный информационный сборник,(2). - 2022. - Т. 7;
7. Эрназаров А. А. Математическая модель проезда регулируемых перекрестков //Грузовик. - 2022. - №. 5. - С. 10;
8. Emazarov A. Efficiency of functioning of intersections with high-intensity traffic and pedestrian flows //Technical science and innovation. - 2022. - Т. 2022. - №. 1. - С. 192-197;
9. Эрназаров А.А. Разработка алгоритма определения потока насыщения на регулируемых пересечениях // Вестник науки. 2022. №12 (57);
10. Эрназаров А.А. Методика расчета количества выброса токсичных веществ в окружающую среду транспортным потоком // Вестник науки. 2022. №9 (54);
11. ЭРНАЗАРОВ А. А. Транспорт: наука, техника, управление. научный информационный сборник //транспорт: наука, техника, управление. научный информационный сборник Учредители: Всероссийский институт научной и технической информации РАН. - №. 7. - С. 48-52
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