Aluminum casting antifriction alloys with increased capacity to adaptability of friction surfaces

The possibility of changing bronze in the manufacture of monometallic cast plain bearings with multicomponent aluminum antifriction alloys is considered. Due to alloying of aluminum with tin, lead, copper, zinc, silicon, magnesium and titanium, it was possible to create alloys with increased ability...

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Main Authors: A. E. Mironov, I. S. Gershman, E. I. Gershman, S. M. Zakharov, P. A. Podrabinnik
Format: Article
Language:Russian
Published: Joint Stock Company «Railway Scientific and Research Institute» 2017-12-01
Series:Вестник Научно-исследовательского института железнодорожного транспорта
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Online Access:https://www.journal-vniizht.ru/jour/article/view/172
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author A. E. Mironov
I. S. Gershman
E. I. Gershman
S. M. Zakharov
P. A. Podrabinnik
author_facet A. E. Mironov
I. S. Gershman
E. I. Gershman
S. M. Zakharov
P. A. Podrabinnik
author_sort A. E. Mironov
collection DOAJ
description The possibility of changing bronze in the manufacture of monometallic cast plain bearings with multicomponent aluminum antifriction alloys is considered. Due to alloying of aluminum with tin, lead, copper, zinc, silicon, magnesium and titanium, it was possible to create alloys with increased ability to adapt friction surfaces. According to laboratory tests, the main results of which are given in the article, it is proved that aluminum alloys on a complex of mechanical and tribotechnical properties are close or superior to the investigated bronze BrO4C4S17. Laboratory tests have shown the possibility of manufacturing monometallic plain bearings from experimental cast aluminum alloys, which by mechanical properties are not inferior to the most solid among antifriction bronzes - bronze BrO4C4S17. On a complex of tribotechnical properties, experimental alloys exceed bronze. Due to their high-fusibility, lower density, lower cost and better workability, aluminum alloys have an almost 3-5-fold advantage over economic indicators before tin bronzes. The scope of the proposed alloys will be determined in the course of bench and operational tests. To date, an experimental batch of monometallic bearings of turbochargers TK 33N-02 has been manufactured from the alloy of the AO6S3M4CT series of “Spets Dizel Servis” (Novosibirsk), which successfully passed the bench tests. Bushings 3404.00.112, 3404.00.032 and bearings 3409.00.20, made from an experimental alloy, showed the possibility of replacing the standard bronze BrO8S12 in these turbochargers. It is advisable to carry out operational tests of bearing sleeves from the alloy AO6S3M4CT for turbochargers TK 34, TK 30 and TK 33, as well as bearing inserts for diesel locomotives.
format Article
id doaj-art-9a0c7ef922d04426b57c8ec3d1f23721
institution Kabale University
issn 2223-9731
2713-2560
language Russian
publishDate 2017-12-01
publisher Joint Stock Company «Railway Scientific and Research Institute»
record_format Article
series Вестник Научно-исследовательского института железнодорожного транспорта
spelling doaj-art-9a0c7ef922d04426b57c8ec3d1f237212025-08-20T03:59:08ZrusJoint Stock Company «Railway Scientific and Research Institute»Вестник Научно-исследовательского института железнодорожного транспорта2223-97312713-25602017-12-0176633634010.21780/2223-9731-2017-76-6-336-340172Aluminum casting antifriction alloys with increased capacity to adaptability of friction surfacesA. E. Mironov0I. S. Gershman1E. I. Gershman2S. M. Zakharov3P. A. Podrabinnik4Joint Stock Company “Railway Research Institute” (JSC “VNIIZhT”)Joint Stock Company “Railway Research Institute” (JSC “VNIIZhT”)Joint Stock Company “Railway Research Institute” (JSC “VNIIZhT”)Joint Stock Company “Railway Research Institute” (JSC “VNIIZhT”)Moscow State Technological University “STANKIN” (FGBOU VO MSTU “STANKIN”)The possibility of changing bronze in the manufacture of monometallic cast plain bearings with multicomponent aluminum antifriction alloys is considered. Due to alloying of aluminum with tin, lead, copper, zinc, silicon, magnesium and titanium, it was possible to create alloys with increased ability to adapt friction surfaces. According to laboratory tests, the main results of which are given in the article, it is proved that aluminum alloys on a complex of mechanical and tribotechnical properties are close or superior to the investigated bronze BrO4C4S17. Laboratory tests have shown the possibility of manufacturing monometallic plain bearings from experimental cast aluminum alloys, which by mechanical properties are not inferior to the most solid among antifriction bronzes - bronze BrO4C4S17. On a complex of tribotechnical properties, experimental alloys exceed bronze. Due to their high-fusibility, lower density, lower cost and better workability, aluminum alloys have an almost 3-5-fold advantage over economic indicators before tin bronzes. The scope of the proposed alloys will be determined in the course of bench and operational tests. To date, an experimental batch of monometallic bearings of turbochargers TK 33N-02 has been manufactured from the alloy of the AO6S3M4CT series of “Spets Dizel Servis” (Novosibirsk), which successfully passed the bench tests. Bushings 3404.00.112, 3404.00.032 and bearings 3409.00.20, made from an experimental alloy, showed the possibility of replacing the standard bronze BrO8S12 in these turbochargers. It is advisable to carry out operational tests of bearing sleeves from the alloy AO6S3M4CT for turbochargers TK 34, TK 30 and TK 33, as well as bearing inserts for diesel locomotives.https://www.journal-vniizht.ru/jour/article/view/172aluminum alloysbronzealloyingtribotechnical propertiesplain bearings
spellingShingle A. E. Mironov
I. S. Gershman
E. I. Gershman
S. M. Zakharov
P. A. Podrabinnik
Aluminum casting antifriction alloys with increased capacity to adaptability of friction surfaces
Вестник Научно-исследовательского института железнодорожного транспорта
aluminum alloys
bronze
alloying
tribotechnical properties
plain bearings
title Aluminum casting antifriction alloys with increased capacity to adaptability of friction surfaces
title_full Aluminum casting antifriction alloys with increased capacity to adaptability of friction surfaces
title_fullStr Aluminum casting antifriction alloys with increased capacity to adaptability of friction surfaces
title_full_unstemmed Aluminum casting antifriction alloys with increased capacity to adaptability of friction surfaces
title_short Aluminum casting antifriction alloys with increased capacity to adaptability of friction surfaces
title_sort aluminum casting antifriction alloys with increased capacity to adaptability of friction surfaces
topic aluminum alloys
bronze
alloying
tribotechnical properties
plain bearings
url https://www.journal-vniizht.ru/jour/article/view/172
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AT eigershman aluminumcastingantifrictionalloyswithincreasedcapacitytoadaptabilityoffrictionsurfaces
AT smzakharov aluminumcastingantifrictionalloyswithincreasedcapacitytoadaptabilityoffrictionsurfaces
AT papodrabinnik aluminumcastingantifrictionalloyswithincreasedcapacitytoadaptabilityoffrictionsurfaces