Relation between Corrosion Energy and Rolling Fatigue Life with a Four Ball Test
The authors evaluated the fatigue life using a rolling four ball test with mineral oil samples in which an alkaline metal, a phosphorus system or a sulfur system compound were added. As a result, it was likely that a decrease of the hardness in the vicinity of the ball surface shortened the fatigue...
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Japanese Society of Tribologists
2011
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oai:doaj.org-article:40b0a338daa949478b3a3afff3d8ad212021-11-05T09:25:37ZRelation between Corrosion Energy and Rolling Fatigue Life with a Four Ball Test1881-219810.2474/trol.6.273https://doaj.org/article/40b0a338daa949478b3a3afff3d8ad212011-08-01T00:00:00Zhttps://www.jstage.jst.go.jp/article/trol/6/6/6_6_273/_pdf/-char/enhttps://doaj.org/toc/1881-2198The authors evaluated the fatigue life using a rolling four ball test with mineral oil samples in which an alkaline metal, a phosphorus system or a sulfur system compound were added. As a result, it was likely that a decrease of the hardness in the vicinity of the ball surface shortened the fatigue life. Moreover, it was found that the larger the corrosion energy in extract water of the oil sample, the shorter the fatigue life. There is a linear relationship between the corrosion energy and the fatigue life. In addition, the technology to extend the fatigue life and the investigation on additive effect are reported.Takeo TokiaiTakuma KimuraNaoki NagaseJunichi DeshimaruJapanese Society of Tribologistsarticlecorrosion energyfatigue liferolling four ball testnano-indenterfriction surface hardnessPhysicsQC1-999Engineering (General). Civil engineering (General)TA1-2040Mechanical engineering and machineryTJ1-1570ChemistryQD1-999ENTribology Online, Vol 6, Iss 6, Pp 273-276 (2011) |
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DOAJ |
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EN |
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corrosion energy fatigue life rolling four ball test nano-indenter friction surface hardness Physics QC1-999 Engineering (General). Civil engineering (General) TA1-2040 Mechanical engineering and machinery TJ1-1570 Chemistry QD1-999 |
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corrosion energy fatigue life rolling four ball test nano-indenter friction surface hardness Physics QC1-999 Engineering (General). Civil engineering (General) TA1-2040 Mechanical engineering and machinery TJ1-1570 Chemistry QD1-999 Takeo Tokiai Takuma Kimura Naoki Nagase Junichi Deshimaru Relation between Corrosion Energy and Rolling Fatigue Life with a Four Ball Test |
description |
The authors evaluated the fatigue life using a rolling four ball test with mineral oil samples in which an alkaline metal, a phosphorus system or a sulfur system compound were added. As a result, it was likely that a decrease of the hardness in the vicinity of the ball surface shortened the fatigue life. Moreover, it was found that the larger the corrosion energy in extract water of the oil sample, the shorter the fatigue life. There is a linear relationship between the corrosion energy and the fatigue life. In addition, the technology to extend the fatigue life and the investigation on additive effect are reported. |
format |
article |
author |
Takeo Tokiai Takuma Kimura Naoki Nagase Junichi Deshimaru |
author_facet |
Takeo Tokiai Takuma Kimura Naoki Nagase Junichi Deshimaru |
author_sort |
Takeo Tokiai |
title |
Relation between Corrosion Energy and Rolling Fatigue Life with a Four Ball Test |
title_short |
Relation between Corrosion Energy and Rolling Fatigue Life with a Four Ball Test |
title_full |
Relation between Corrosion Energy and Rolling Fatigue Life with a Four Ball Test |
title_fullStr |
Relation between Corrosion Energy and Rolling Fatigue Life with a Four Ball Test |
title_full_unstemmed |
Relation between Corrosion Energy and Rolling Fatigue Life with a Four Ball Test |
title_sort |
relation between corrosion energy and rolling fatigue life with a four ball test |
publisher |
Japanese Society of Tribologists |
publishDate |
2011 |
url |
https://doaj.org/article/40b0a338daa949478b3a3afff3d8ad21 |
work_keys_str_mv |
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