Influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotives

For open-pit locomotives, application of the existing equations for calculation of the temperature for main-line railway transport is inappropriate, since it doesn`t take into account the specific conditions of the open-pit mining, such as increased track gradients (up to 60%, in another words 60m p...

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Main Authors: Keropyan Ambartsum, Gerasimova Alla, Goloshapov Kirill
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201712906009
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spelling doaj-35505c52c4b84a85816f9d7b39e3d2a62021-08-11T14:29:42ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011290600910.1051/matecconf/201712906009matecconf_icmtmte2017_06009Influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotivesKeropyan AmbartsumGerasimova AllaGoloshapov KirillFor open-pit locomotives, application of the existing equations for calculation of the temperature for main-line railway transport is inappropriate, since it doesn`t take into account the specific conditions of the open-pit mining, such as increased track gradients (up to 60%, in another words 60m per 1 km). Therefore we proposed to calculate the temperature in the contact zone at the wheel-rail interface according to the derived equation, which takes into account the track gradient of the open pit`s rail truck. The calculation results, which were made according developed computational technique, show satisfactory repeatability with the experimental results. As the result of theoretical and experimental investigations have been discovered, that the range of the ruling gradient of the transport incline affects on the temperature changes in the wheel-rail contact zone and characterized by temperature factor of the rail track gradient ktgr.The results of calculations, made according developed method, show satisfactory repeatability with the experimental results. The approximation error of the mining actual operating conditions factor Kmc in the range from 25% to 45% is less than 5%.https://doi.org/10.1051/matecconf/201712906009
collection DOAJ
language English
format Article
sources DOAJ
author Keropyan Ambartsum
Gerasimova Alla
Goloshapov Kirill
spellingShingle Keropyan Ambartsum
Gerasimova Alla
Goloshapov Kirill
Influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotives
MATEC Web of Conferences
author_facet Keropyan Ambartsum
Gerasimova Alla
Goloshapov Kirill
author_sort Keropyan Ambartsum
title Influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotives
title_short Influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotives
title_full Influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotives
title_fullStr Influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotives
title_full_unstemmed Influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotives
title_sort influence of the track gradient on the contact temperature at the wheel-rail zone for open-pit locomotives
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description For open-pit locomotives, application of the existing equations for calculation of the temperature for main-line railway transport is inappropriate, since it doesn`t take into account the specific conditions of the open-pit mining, such as increased track gradients (up to 60%, in another words 60m per 1 km). Therefore we proposed to calculate the temperature in the contact zone at the wheel-rail interface according to the derived equation, which takes into account the track gradient of the open pit`s rail truck. The calculation results, which were made according developed computational technique, show satisfactory repeatability with the experimental results. As the result of theoretical and experimental investigations have been discovered, that the range of the ruling gradient of the transport incline affects on the temperature changes in the wheel-rail contact zone and characterized by temperature factor of the rail track gradient ktgr.The results of calculations, made according developed method, show satisfactory repeatability with the experimental results. The approximation error of the mining actual operating conditions factor Kmc in the range from 25% to 45% is less than 5%.
url https://doi.org/10.1051/matecconf/201712906009
work_keys_str_mv AT keropyanambartsum influenceofthetrackgradientonthecontacttemperatureatthewheelrailzoneforopenpitlocomotives
AT gerasimovaalla influenceofthetrackgradientonthecontacttemperatureatthewheelrailzoneforopenpitlocomotives
AT goloshapovkirill influenceofthetrackgradientonthecontacttemperatureatthewheelrailzoneforopenpitlocomotives
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