Optimizing the service life of plant machinery and vehicles using information system for management of engineering status

Sergey Repin, Sergey Evtiukov, Jaroslav Rajczyk

Abstract


The paper contains results of studies of changes in performance of plant machinery and vehicles during operation: non-failure operating time, costs, revenue, profit and cost efficiency. It is shown that decrease of non-failure operating time and increase of operating costs can be described by the exponential law. Mathematical models based on changes of performance parameters were developed in order to determine optimum service life of machinery according to economic criteria. The paper describes application of an information system for collection and processing of data necessary for models.

Application of the developed method for determining of optimum service life would contribute to rational formation of machinery fleet.

Keywords


plant machinery and vehicles; service life; operation; information system

Full Text:

PDF

References


Bujaczek R, Sławiński K, Grieger A(2013) Agricultural Machines Maintenance And Repair Services In Western Pomerania. Technical Sciences, 16(1): 13-18. See http://www.uwm.edu.pl/wnt/technicalsc/tech_16_1/b02.pdf (accessed 10.05.2016).

Chernyavsky A, Shadchin A (2010) Evaluation of reliability of low damage probability calculations for unitary structures. Journal of Machinery Manufacture and Reliability, 39(4): 402-406.

GOSSTROI ROSSII (GOSUDARSTVENNYI KOMITET ROSSIISKOI FEDERATsII PO STROITEL''STVU I ZhILIShchNO-KOMMUNAL''NOMU KOMPLEKSU) (1999) MDS 81-3.99: Metodicheskie ukazaniya po razrabotke smetnykh norm i rastsenok na eksplu-atatsiyu stroitel'nykh mashin i avtotransportnykh sredstv [Guidelines for Development of Estimate Standards and Prices for Operation of Building Machines and Vehicles]. GOSSTROI ROSSII, Moscow, RF (in Russia).

Makhutov N, Reznikov D (2015) Application of scenario analysis in the assessment of structural reliability of complex technical systems. Journal of Machinery Manufacture and Reliability, 44(8): 675-686.

Protasov A, Nikolaychuk O (2011) Applying the finite-element method for evaluating the reliability of mechanical systems. Journal of Machinery Manufacture and Reliability, 40(1): 27-30.

Repin S (2015) Renewal Methods of Construction Machinery According to Technical and Economic Indicators. Applied Mechanics and Materials, 725-726: 990-995.

Repin SV, Bondarenko AV (2012) Optimizatsiya periodichnosti zamen uzlov transportnykh i tekhnologicheskikh mashin na osnove informatsii po dinamike parametrov ikh tekhnicheskogo sostoyaniya [Optimization of Frequency of Component Overhauling for Transport and Production Machines Taken the Information on Dynamics of Their Technical Condition]. Vestnik grazhdanskikh ingenerov [Bulletin of Civil Engineers], 2(31): 236–243.

Repin SV, Rulis KV, Zazykin AV, Krupin SA (2012) Metodologija obespechenija rabotosposobnosti transportno-tehnologicheskih mashin i kompleksov sredstvami tehnicheskoj jekspluatacii [Methods of efficient maintenance of transport and production machines and systems with the help of technical service means]. Monograph. SPSUACE, Saint Petersburg, RF (in Russian).

Repin SV, Rulis KV, Zazykin AV. Khovalyg NK (2008) Metodika primenenija informacionnoj avtomatizirovannoj sistemy uprav-lenija tehnicheskoj jekspluataciej stroitel'nyh mashin i avtotransporta [The method of application of automated information system for management of maintenance and operation of construction machines and vehicles]. SPSUACE, Saint Petersburg, RF (in Russian).

Repin SV, Zazykin AV, Evtyukov SS (2016) Nadezhnost' i jeffektivnost' transportno-tehnologicheskih mashin [Efficiency and Reliability of Plant Machinery and Vehicles]. Publishing House Petropolis, St. Petersburg, RF (in Russian).

Shao-Fei Jiang, Da-Bao Fu, Si-Yao Wu (2014) Structural Reliability Assessment by Integrating Sensitivity Analysis and Support Vector Machine. Mathematical Problems in Engineering, 2014. See http://dx.doi.org/10.1155/2014/586191 (accessed at 10.05.2016)

Smith P (2003) Valve Selection Handbook: Engineering Fundamentals for Selecting the Right Valve Design for Every Industrial Flow Application. Gulf Professional Publishing.




DOI: https://doi.org/10.23968/2500-0055-2016-1-2-53-57

Refbacks

  • There are currently no refbacks.




     

ISSN: 2500-0055