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Running-in in fretting, transition from near-stable friction regime to gross sliding

Hintikka, Jouko; Mäntylä, Antti; Vaara, Joona; Frondelius, Tero; Juoksukangas, Janne; Lehtovaara, Arto (2019-11)

 
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Running_in_in_fretting_transition_from_near_stable_friction_regime_to_gross_sliding.pdf (13.75Mt)
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Hintikka, Jouko
Mäntylä, Antti
Vaara, Joona
Frondelius, Tero
Juoksukangas, Janne
Lehtovaara, Arto
11 / 2019

Tribology International
106073
doi:10.1016/j.triboint.2019.106073
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202101181396

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Peer reviewed
Tiivistelmä
<p>It has been shown that quenched and tempered steel in gross-sliding fretting conditions, with tens of microns of slip amplitude, leads to fretting induced cracking and high and non-Coulomb friction. At low tangential load levels, there was only insignificant cracking. However, the running condition tends to change from stick to gross-sliding with a slip amplitude of a few micrometres. In this study, novel two-phase fretting experiments were done where quenched and tempered steel contact is run first at low loads that are initially in stick (running-in phase), followed by a gross-sliding phase with a slip amplitude of 35μm. The results show that gross-sliding phase friction was reduced and the fretting induced cracks were shorter when the running-in phase was done at high enough load level and lasted more than 10<sup>6</sup> load cycles. At the highest running-in load levels, the resulting crack lengths were approximately halved in comparison to experiments without running-in, and it was possible to achieve nearly ideal Coulomb friction in the gross-sliding phase when the running-in duration was 10.2×10<sup>6</sup> load cycles. It is concluded that it is possible to control fretting-induced friction and cracking by carefully controlled running-in.</p>
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PL 617
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Kalevantie 5
PL 617
33014 Tampereen yliopisto
oa[@]tuni.fi | Tietosuoja | Saavutettavuusseloste