THE EFFECT OF LOCOMOTIVE HOURS ON ADJUSTING PERIODICITY OF MAINTENANCE SERVICE AND CURRENT REPAIR

Authors

DOI:

https://doi.org/10.15802/stp2015/38265

Keywords:

maintenance, current repairs, traction rolling stock, locomotive, after a standard period of operation

Abstract

Purpose. The main purpose of this paper is to substantiate the necessity of period adjustment and volumes of maintenance, current repairs of locomotive approaching and regulatory exceeded of their useful operational time. Methodology. In connection with the physical and moral depreciation of rolling stock in modern conditions the most important area to ensure the effectiveness of rail transport in the foreseeable future is the rational use of the rolling stock in operation within the designated and extended service life. At the same time extending the operational time of the locomotives must be achieved by compliance with the optimum ratio of measures to adjust the timing and technology maintenance, current repairs and preparation of repair base. The paper presents the components of dependency forming work amount on maintenance, current repairs with time operation. By the modeling of its changes a graph that implement adjusted system to the content of the rolling stock traction after operation were constructed. The study found that the dynamics of change processes of necessary expenses for maintenance and current repair increases. It is shown that under aging conditions of locomotive fleet and repair base of locomotive economy, a situation that is a critical for the railway transport of Ukraine has appeared. According to it, to the end of operation the amount of work relative to the recommended rules of repair increases slightly. When the locomotive is new or renovated, deviations from the standard path for rigid observance of repair requirements (the compliance with technical standards) does not exceed the norm. However, when the standard period is exhausted, to comply with these standards is not possible. From the data it was found that the greater the amount of maintenance, routine repair in the repair cycle, the more effort you need to put in a multiplicity of software runs between scheduled of maintenance, current repairs. It is advisable to conduct more repair work to ensure lower costs for the maintenance of locomotives. Findings. The values for the effective maintenance of traction rolling stock for a variety of tactics to support them were obtained. Originality. Theoretically the need to adjust the timing and technology maintenance and current repair of traction rolling stock in the operation of locomotives, over normative was demonstrated. Practical value. Obtained results allow increasing the efficient use of traction rolling stock with effectively cost.

Author Biography

O. S. Krasheninin, Ukrainian State Academy of Railway Transport

Dep. «Operation and Repair of Rolling Stock»

References

Babanin O.B., Danko V.M. Vyznachennia ratsionalnykh periodiv kontroliu tekhnichnoho obladnannia lokomotyvnoho depo [The definition of rational periods of technical equipment control of the locomotive depot]. Zbirnyk naukovykh prats UkrDAZT [Proc. ofUkrainianNationalAcademy of Railway Transport], 2010, no. 113, pp. 68-75.

Baykhelt F., Franken P. Nadezhnost i tekhnicheskoye obsluzhivaniye. Matematicheskiy podkhod [Reliability and maintenance. A mathematical approach].Moscow, Radio i svyaz Publ., 1988. 390 p.

Bolotin V.V. Prognozirovaniye resursa mashin i konstruktsiy [The resource forecasting of machines and structures].Moscow, Mashinostroeniye Publ., 1984. 312 p.

Bodnar Ye.B. Osnovni vymohy ta pryntsypy stvorennia bortovykh system diahnostuvannia lokomotyviv [The main requirements and principles for the on-board diagnostic systems of locomotives]. Nauka ta prohres transportu. Visnyk Dnipropetrovskoho natsionalnoho universytetu zaliznychnoho transportu − Science and Transport Progress. Bulletin of Dnipropetrovsk National University of Railway Transport, 2014. no. 1 (49), pp. 68-74.

Hryniv Yu.V., Krasheninin O.S., Maksymov M.V. Metodyka otsinky terminu vyrobnytstva novoho TRS dlia zaminy ekspluatovanoho TRS, resurs yakoho nablyzyvsia do hranychnoho [The estimation method of the production period of the new TRS to replace exploited TRS, a resource that has reached to the limit]. Zbirnyk naukovykh prats UkrDAZT – Proc. of Ukrainian National Academy of Railway Transport. 2012. no. 133, pp. 247-250.

Kozlov B.A., Ushakov I.A. Spravochnik po raschetu nadezhnosti apparatury radioelektroniki i avtomatiki [Handbook for estimating the reliability of radio electronics and automation].Moscow, Sovetskoye radio Publ., 1975. 472 p.

Krasheninin O.S., Shapatina O.O., Oboznyi O.M. Metodyka otsinky efektyvnosti podovzhennia terminu sluzhby TRS pislia dosiagnennia normatyvnykh terminiv [Methods of evaluating the effectiveness of TRS extension services after reaching of the legal terms]. Zbirnyk naukovykh prats UkrDAZT [Proc. ofUkrainianNationalAcademy of Railway Transport], 2009, no. 111, pp. 183-189.

Krasheninin O.S., Falendysh A.P. Model rozrakhunku kilkosti remontiv lokomotyviv z urakhuvanniam imovirnisnoho rozpodilu yikh probihiv [The model calculation of the number of repairs of locomotives taking into account the probability distribution of their endurance]. Visnyk Mizhnarodnoho Slovianskoho universytetu [Bulletin of the International Slavic University], 2004, vol. VII, no. 2. pp. 33-35.

Krasheninin O.S., Kharlamov P.O. Otsinka efektyvnosti systemy podovzhennia terminu sluzhby TRS bilsh normatyvnoho i onovlennia ekspluatatsiinoho parku [The evaluation of the effectiveness of the system life extension of TRS more normative and operational update park]. Visnyk Skhidnoukrainskoho natsionalnoho universytetu imeni Volodymyra Dahlia [Bulletin of the East Ukrainian national University named after Volodymyr Dahl], 2012, no. 3 (174), pp. 109-113.

Mikhlin V.M. Prognozirovaniye tekhnicheskogo sostoyaniya mashin [Forecasting of technical condition of machinery].Moscow, Kolos Publ., 1976. 287 p.

Molchanov V.V., Shakhov V. G. Novyye tekhnologii i oborudovaniya kontrolya i diagnostirovaniya zheleznodorozhnoy tekhniki [New technologies and monitoring equipment and diagnostics of railway engineering]. Izvestiya TranssibaProceedings of Transsib, 2010, no. 4, pp. 116-120.

Tartakovskyi E.D., Ustenko O.V, Krasheninin O.S., Oboznyi O.M. Otsinka pokaznykiv TO pry podovzheni terminu ekspluatatsii TRS po narobtsi [Performance assessment of MS during the extended operation life of the TRS]. Zbirnyk naukovykh prats UkrDAZT [Proc. of Ukrainian National Academy of Railway Transport], 2012, issue 132, pp. 5-11.

Sukharev E.A. Teoriya ekspluatatsionnoy nadezhnosti mashin. Lektsionnyy kurs [The theory of operational reliability. Lecture course]. Rivne, UDAVG Publ., 1997. 162 p.

Tekhnicheskoye obsluzhivaniye podvizhnogo sostava v stranakh Yevropy [Maintenance of rolling stock in Europe]. Zheleznyye dorogi miraRailways of the world, 2009, no. 4, pp. 50-52.

Golovatyy A.T., Bortsova P.I. Elektropodvizhnoy sostav: ekspluatatsiya, nadezhnost, remont [Electric stock: operation, reliability, repair]. Moscow, Transport Publ., 1983. 350 p.

Cantos P., Pastor J.M., Serrano L. Efficiency Measures and Output Specification: The Case of European Railways . Journal of Transport and Statistics, 2000, vol. 3, no. 3, pp. 61-68.

Hughes M. Cost and capacity drive high speed train design. Railway Gazette International, 2010. no. 5. pp. 37-39.

New technology center for temple mills train service Eurostar. Railway Gazette International,. 2008. no. 10. pp. 820-821.

Published

2015-02-26

How to Cite

Krasheninin, O. S. (2015). THE EFFECT OF LOCOMOTIVE HOURS ON ADJUSTING PERIODICITY OF MAINTENANCE SERVICE AND CURRENT REPAIR. Science and Transport Progress, (1(55), 148–154. https://doi.org/10.15802/stp2015/38265

Issue

Section

ROLLING STOCK AND TRAIN TRACTION