| | Mechanics of Solids A Journal of Russian Academy of Sciences | | Founded
in January 1966
Issued 6 times a year
Print ISSN 0025-6544 Online ISSN 1934-7936 |
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D.V. Babich and T.I. Dorodnykh, "Statistical Model of the Mechanism of Fatigue Failure of Materials," Mech. Solids. 53 (5), 591-600 (2018) |
Year |
2018 |
Volume |
53 |
Number |
5 |
Pages |
591-600 |
DOI |
10.3103/S0025654418080137 |
Title |
Statistical Model of the Mechanism of Fatigue Failure of Materials |
Author(s) |
D.V. Babich (S.P. Timoshenko Institute of Mechanics, ul. Nesterova 3, Kiev, 252680 Ukraine, babich_dv@ukr.net)
T.I. Dorodnykh (S.P. Timoshenko Institute of Mechanics, ul. Nesterova 3, Kiev, 252680 Ukraine, domval@ukr.net) |
Abstract |
Based on modern ideas about the destruction of materials, a statistical model of the mechanism of fatigue failure of materials is proposed. The mechanism of failure is associated with the accumulation in the material of scattered microdamages in the process of repeated loading. The criterion for the onset of fatigue failure is the achievement of critical values of the density of microdamages in cyclically loaded bodies that are identified with the density of microdamages formed by separation or shear during static destruction due to pure tension, compression and shear of standard material samples. Low-cycle fatigue is associated with the accumulation of predominantly microfracture shear in the area of plastic deformation, and high-cycle fatigue is associated with the microdestruction of separation during elastic deformation. |
Keywords |
low-cycle and multicycle fatigue, scattered microdestruction, statistical criterion of macrodestruction, critical density of microdestruction |
References |
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|
Received |
17 November 2016 |
Link to Fulltext |
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