Improving the performance of parts of the cylinder piston group of marine diesel engines

  • Yuri I. Matveev Volga State Unuversity of Water Transport, Nizhny Novgorod, Russia
  • Mikhail Y. Khramov Volga State Unuversity of Water Transport, Nizhny Novgorod, Russia
  • Vladimir V. Kolyvanov Volga State Unuversity of Water Transport, Nizhny Novgorod, Russia
  • Sergey Y. Kuritsyn Volga State Unuversity of Water Transport, Nizhny Novgorod, Russia

Abstract

For the repaired engine installed on the vessel, in order to ensure its normal operation, it is necessary to run-in. This operation consists in the running-in of rubbing surfaces to ensure the necessary surface roughness, surface shape, and an increase in the contact area of the mating surfaces. The result of proper running-in is considered to be the efficient operation of the engine, in which all engine parameters are stable, such as coolant temperature, exhaust gas temperature, fuel consumption, oil consumption. In most cases, the details of the cylinder piston group, especially the piston rings, which operate under the most extreme conditions, are responsible for all the listed engine parameters. New piston rings, with an ideal shape inserted into the piston groove of the piston, cannot ensure a tight fit to the cylinder surface during movement, in this regard, gaps appear in some places that violate the tightness of the combustion chamber. Elimination of these gaps is one of the main tasks of running-in of the mating surfaces. The main factors affecting the duration of the run-in are the macrogeometry of the piston rings, the profiles of the working surface of the piston ring and cylinder, the roughness of the surfaces, the running-in modes, lubrication and maintenance coatings. Analyzing scientific research in this field and relying on their experience, an algorithm of running-in works was formed, which was subsequently tested on engines. The final stage of the research in this direction consisted of the analysis of the positive results of the experiment and on its basis formulas for engines of different turnovers were proposed.

Keywords: piston rings, wear, running-in, running-in, combustion chamber, cylinder piston group

References

Андрусенко, С. Е., Андрусенко, О. Е., Колыванов, В. В., & Матвеев, Ю. И. (2021). Механизмы управления рабочим процессом дизельного двигателя. Научные проблемы водного транспорта, (68), 98-108. https://doi.org/10.37890/jwt.vi68.206

Крагельский, И.В. и др. Основы расчетов на трение и износ. – М. «Машиностроение». – 1977.

Асташкевич, Б.М. Вопросы повышения износостойкости ЦПГ транспортных двигателей. – Вестник машиностроения. – 1976.

Семенов, В.С. Долговечность ЦПГ судовых дизелей / В.С. Семенов, П.С. Трофимов // – М. «Транспорт». – 1969.

Семенов, В.С. Теплонапряженность и долговечность ЦПГ судовых двигателей. – М. «Транспорт». – 1977.

Rogers, M.D. The mechanism of scuffing in diesel engines. – 1980.

Старосельский, А.А. Долговечность трущихся деталей машин /А.А. Старосельский, Д.Н. Гаркунов// М. «Машиностроение». – 1967.

Munro R., Hughes G.N., Current piston and ring practice and the problem of scuffing in diesel engine. – DE and USP. – 1970.

Воинов, Н.П. Выбор оптимальных условий обкатки ДВС. – Вестник машиностроения. – 1955.

Шаронов, Г.П. Применение присадок к маслам для ускорения приработки двигателей. – М. «Химия». – 1965.

Мишин, И.А. Долговечность двигателей. – Л. «Машиностроение» 1976.

Каган, С.Г. Снижение расхода ГСМ, МОД. – ЦБТНИИ, ММФ. – 1979.

Матвеевский, Р.М. и др. Противозадирная стойкость смазочных сред при трении в режиме граничной смазки. – М. «Наука». – 1978.

Сомов, В.А. Смазка судовых дизелей. – Л. «Судостроение». – 1985.

Владимиров, В.А. Обкатка судовых двигателей / В.А. Владимиров, А.Е. Гриншпун // М. «Транспорт». – 1982

Владимиров, В.А. Некоторые вопросы теории приработки ЦПГ. – ЦНИИМФ. – 1977.

Владимиров, В.А. Исследования и оптимизация процесса приработки ЦПГ. – Диссертация. – Одесса-Ленинград. – 1979.

Author Biographies

Yuri I. Matveev , Volga State Unuversity of Water Transport, Nizhny Novgorod, Russia

Doctor of Technical Sciences, Professor,  Volga State University of Water Transport, 5, Nesterov st, Nizhny Novgorod, 603951

Mikhail Y. Khramov , Volga State Unuversity of Water Transport, Nizhny Novgorod, Russia

Ph.D. in Engineering Science, Associate Professor, Volga State University of Water Transport, 5, Nesterov st, Nizhny Novgorod, 603951

Vladimir V. Kolyvanov , Volga State Unuversity of Water Transport, Nizhny Novgorod, Russia

Ph.D. in Engineering Science, Associate Professor,  Volga State University of Water Transport, 5, Nesterov st, Nizhny Novgorod, 603951, e-mail:  v.v.kolyvanov@yandex.ru

Sergey Y. Kuritsyn , Volga State Unuversity of Water Transport, Nizhny Novgorod, Russia

postgraduate student of the Department of ESEU (Operation of Ship power plants) Volga State University of Water Transport, 603950, Nizhny Novgorod, Nesterova str., 5, e-mail: kuritsyn@gckb.ru

Published
18-09-2023
How to Cite
Matveev, Y. I., Khramov, M. Y., Kolyvanov, V. V., & Kuritsyn, S. Y. (2023). Improving the performance of parts of the cylinder piston group of marine diesel engines. Russian Journal of Water Transport, (76), 99-110. https://doi.org/10.37890/jwt.vi76.400
Section
Ship power equipment