Method for calculating annual duration of maintenance and repairs of domestic and foreign excavators considering time in service
https://doi.org/10.26518/2071-7296-2024-21-1-26-37
EDN: HZWSMV
Abstract
Introduction. Over the years of cooperation between foreign manufacturers and domestic operating enterprises, a significant amount of construction equipment has been supplied. In this regard, there is a need to develop and improve existing standards governing the methodology for calculating the operating modes of construction machines. Often, the use of indicators given in regulatory documents shows a significant discrepancy in comparison with the actual indicators obtained characterizing the annual operating modes of machines. The article presents a method for calculating the annual duration of technical maintenance and repairs (TM and R) using the example of single-bucket hydraulic excavators of domestic (EOD) and foreign production (EOFP).
Methods and materials. The method is based on the obtained patterns of changes in operating time between failures, the duration of maintenance and repair of analogues of EOD and EOFP.
Results. As the studies have shown, over the course of operation, the annual duration of maintenance and repair in the EOD increases by 1.73 times, and 1.13 times in the EOFP; the duration of a single maintenance and repair in the OED is 2 times, and 1.4 times in the EOFP; the average time between failures in the EOD is 1.65 times less than in the EOFP at the studied intervals. The indicator of the duration of the EOD in TO and P for 1 operating hours, based on the dependencies obtained, shows an excess of 4.25 times, and according to the regulatory source MDS 12-8.2007, it is 6.03 times higher than that of its foreign counterpart.
Discussion and conclusions. As a result of the application of the proposed method, the annual fund of time costs associated with maintaining and restoring the working technical condition can be predicted not only for domestic, but also for foreign single-bucket hydraulic excavators, the accuracy of planning the work performed increases compared with existing standards, this enables to take into account the unevenly distributed annual downtime depending on the planned working time, this will have a positive effect on the planning of the use of equipment. The data obtained can be used for the EOFP of the 5-th standard-sized group as normative
Keywords
About the Authors
R. F. SalikhovRussian Federation
Rinat F. Salikhov – Cand. of Sci., Associate Professor, Maintenance and operation of transport and technological machines and complexes in construction Department.
Mira street, 5, Omsk, 644050
I. E. Berdnikov
Russian Federation
Ilya E. Berdnikov – Cand. of Sci., Deputy Director for Development St. Petersburg.
Bolshoy Sampsonievsky ave., 61A, St. Petersburg, 194044
References
1. Ivanov V.N., Salihov R.F., Grusnev M.G. Optimal planning of the functioning of production and technical operation systems and the development of parks of road construction machines. Omsk: SibADI, 2013: 194. (in Russ.)
2. Berdnikov I.E., Ozornin S.P. Mathematical models for determining the transport-technological machines failure rate depending on the factors of operating conditions. Modern technologies. System analysis. Modeling. 2017; 2 (54): 134 – 141. (in Russ.)
3. Salikhov R.F., Permyakov V.B., Filippov Y.O., Grusnev M.G. A study of dynamics of the operational performance of a single-bucket excavator, taking into account the operating time during construction of transport infrastructure of oil and gas facilities. Journal of Physics: Conference Seriesthis link is disabled. 2021; 1901(1), 012098
4. Maksimenko A.N., Makacarija D.Ju., Kutuzov V.V., Kravchenko S.E., Lopatin A.I., Timofeev G.S. The impact of developments on the technical and economic indicators of construction and road vehicles. Gruzovik: transportnyj kompleks, spectehnika. 2007; 2: 32-36. (in Russ.)
5. Ljalinov, A.N., Kurakina E.V., Shimanova A.A. Improving the management system of the life cycle of ground transport and technological machines. Vestnik Grazhdanskikh Inzhenerov – Bulletin of Civil Engineers. 2017; 3 (62): 200 – 206. (in Russ.)
6. Mongush S.Ch., Evtjukov S.A. Analysis of problems of operation of construction equipment in the Republic of Tyva. Vestnik Tuvinskogo gosudarstvennogo universiteta. 2018; 3: 84-89. (in Russ.)
7. Choodu O.A., Mongush S.Ch., Sandan R.N., Balzanaj S.V. Monitoring system repair. Mining informational and analytical bulletin (scientific and technical journal). 2018; 6 (spec. vyp. № 28): 2-7. (in Russ.)
8. Macnev M.V., Ponomareva N.G., Tveritnev O.N. Calculation of the reserve value during the construction of logging roads. Lesnoy Zhurnal (Russian Forestry Journal). 2022; 4 (388): 156-172. (in Russ.)
9. Maksimenko A.N., Kravchenko S.E., Makacarija D.Ju., Kutuzov V.V., Timofeev G.S., Vasil’ev V.V. Use of information technologies in planning the technical operation of construction and road machines. Gruzovik &. 2006; 5: 20-22. (in Russ.)
10. Maksimenko A.N., Kravchenko S.E., Makacarija D.Ju., Kutuzov V.V., Timofeev G.S., Vasil’ev V.V. Development of annual plans and monthly maintenance and repair schedules using information technology. Gruzovik &. 2006; 9: 38-41. (in Russ.)
11. Maksimenko A.N., Kutuzov V.V., Kutuzova E.V., Barkovskij Ju.B., Kravchenko S.E., Timofeev G.S. The influence of intra-shift operation and operating time since the beginning of operation of construction and road machinery on the efficiency of their us]. Stroitel’naja nauka i tehnika. 2009; 1(22): 102-106. (in Russ.)
12. Maksimenko A.N., Kutuzov V.V., Sidorov A.N. Planning the annual amount of working time and annual operating time of construction and road machiner]. Avtomobil’nye dorogi i mosty. 2010; 1: 77-81. (in Russ.)
13. Maksimenko A.N., Maksimenko V.A., Maksimenko A.A. Evaluation of the efficiency of using machine-building products. Vestnik Belorussko-Rossijskogo universiteta. 2005; 2(9): 98–103. (in Russ.)
14. Kim B.G., Zakrevskaja L.V., Nasrullaeva R.A., Ovchinnikova M.S. Theoretical basis of serviceability and efficiency maintenance of construction machines parks. Construction and road building machinery. 2017; 7: 38-42. (in Russ.)
15. Apatenko A.S. Effect of vehicles service life on their operational reliability at land reclamation work. Tehnika i oborudovanie dlja sela. 2013; 10: 4-6. (in Russ.)
16. Ivanov Je.S. Features of modeling the operating modes of gas pumping units of compressor stations of mainline gas transport in modern operating conditions. Jelektronnyj nauchnyj zhurnal «Neftegazovoe delo». 2012; 5: 99-123. (in Russ.)
17. Repin S.V. The concept of the efficiency of operation of construction machine]. Construction and road building machinery. 2007; 2: 27–31. (in Russ.)
18. Repin S. V. Methodology of improving the operation of construction machines: monograp]. St. Petersburg: SPbGASU, 2005: 172. (in Russ.)
19. Mahmutov M.M., Muhametshina R.M., Zemdihanov M.M., Zaripov A.M. Reliability of machines in road construction. News KSUAE. 2018; 4 (46): 359-362. (in Russ.)
20. Sakhapov R.L., Nikolaeva R.V., Gatiyatullin M.H., Makhmutov M.M. Risk management model in road transport systems. Journal of Physics: Conference Series. 2016; Vol. 738. No. 1: 012008.
21. Salihov R.F., Popkov V.I. Methodology for calculation of change of productivity of the odnokovshovy excavator in the course of an operating time. Mehanizacija stroitel’stva. 2018; 1: 2-7. (in Russ.)
22. Mongush S.Ch., Mongush S.V. Criterial parameters proposed for describing the optimization ways to operate ground transporttechnological machines in the republic of Tyva. «Journal Bulletin of Tuva state University». 2019; 2(46). Vypusk 3: 42-50. (in Russ.)
Review
For citations:
Salikhov R.F., Berdnikov I.E. Method for calculating annual duration of maintenance and repairs of domestic and foreign excavators considering time in service. The Russian Automobile and Highway Industry Journal. 2024;21(1):26-37. (In Russ.) https://doi.org/10.26518/2071-7296-2024-21-1-26-37. EDN: HZWSMV