A longer service life of intermediate elastic fastenings KPP-5 due to application of pads PRP-3.2
Since 2003 Ukrainian railways have used KPP-5 intermediate elastic fastenings. These fastenings unlike their predecessors (for example, terminal-bolted fastenings (KB) widely used on railways), first of all, have fewer elements. The KPP-5 fastening does not include screw joints, which considerably i...
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Online Access: | https://doi.org/10.1051/matecconf/201823001004 |
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doaj-fc6191010bf2471d843287baf6f081022021-02-02T04:42:43ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012300100410.1051/matecconf/201823001004matecconf_transbud2018_01004A longer service life of intermediate elastic fastenings KPP-5 due to application of pads PRP-3.2Darenskiy Oleksandr0Bygaets Nataliya1Horiyinova Olga2Voznenko Sergey3Kulik Stanislav4Track and Track Facility Department, Ukrainian State University of Railway TransportTrack and Track Facility Department, Ukrainian State University of Railway TransportTrack and Track Facility Department, Ukrainian State University of Railway TransportTrack and Track Facility Department, Ukrainian State University of Railway TransportThe Kupiansk–Uzlovaya track maintenance departmentSince 2003 Ukrainian railways have used KPP-5 intermediate elastic fastenings. These fastenings unlike their predecessors (for example, terminal-bolted fastenings (KB) widely used on railways), first of all, have fewer elements. The KPP-5 fastening does not include screw joints, which considerably increases the pressing force between rail and tie, and resistance to track displacement forces. This may lead to reduction of the total labour input for routine track maintenance due to cutback of track works needed for mounting terminal and insert bolts. The article deals with forecasting the operational life of PRP 3.2 (9mm depth) and PRP 3.2.1 pads (10mm depth). In engineering the operational life is a time interval (for the railway track – tonnage passed) during which the element fulfils its functions. One of the main reasons why the assembly unit KPP-5 fails is low pressing forces between rail and tie. It occurs due to many processes; among the basic ones is the changed characteristic of underrail pads. And the application of new types of pads – PRP 3.2 (9mm) and PRP 3.2.1. (10mm) may solve this problem.https://doi.org/10.1051/matecconf/201823001004 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Darenskiy Oleksandr Bygaets Nataliya Horiyinova Olga Voznenko Sergey Kulik Stanislav |
spellingShingle |
Darenskiy Oleksandr Bygaets Nataliya Horiyinova Olga Voznenko Sergey Kulik Stanislav A longer service life of intermediate elastic fastenings KPP-5 due to application of pads PRP-3.2 MATEC Web of Conferences |
author_facet |
Darenskiy Oleksandr Bygaets Nataliya Horiyinova Olga Voznenko Sergey Kulik Stanislav |
author_sort |
Darenskiy Oleksandr |
title |
A longer service life of intermediate elastic fastenings KPP-5 due to application of pads PRP-3.2 |
title_short |
A longer service life of intermediate elastic fastenings KPP-5 due to application of pads PRP-3.2 |
title_full |
A longer service life of intermediate elastic fastenings KPP-5 due to application of pads PRP-3.2 |
title_fullStr |
A longer service life of intermediate elastic fastenings KPP-5 due to application of pads PRP-3.2 |
title_full_unstemmed |
A longer service life of intermediate elastic fastenings KPP-5 due to application of pads PRP-3.2 |
title_sort |
longer service life of intermediate elastic fastenings kpp-5 due to application of pads prp-3.2 |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2018-01-01 |
description |
Since 2003 Ukrainian railways have used KPP-5 intermediate elastic fastenings. These fastenings unlike their predecessors (for example, terminal-bolted fastenings (KB) widely used on railways), first of all, have fewer elements. The KPP-5 fastening does not include screw joints, which considerably increases the pressing force between rail and tie, and resistance to track displacement forces. This may lead to reduction of the total labour input for routine track maintenance due to cutback of track works needed for mounting terminal and insert bolts. The article deals with forecasting the operational life of PRP 3.2 (9mm depth) and PRP 3.2.1 pads (10mm depth). In engineering the operational life is a time interval (for the railway track – tonnage passed) during which the element fulfils its functions. One of the main reasons why the assembly unit KPP-5 fails is low pressing forces between rail and tie. It occurs due to many processes; among the basic ones is the changed characteristic of underrail pads. And the application of new types of pads – PRP 3.2 (9mm) and PRP 3.2.1. (10mm) may solve this problem. |
url |
https://doi.org/10.1051/matecconf/201823001004 |
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